blob: 0fa1b30bdcb672eca30a3732d3f63ffdd85c22db [file] [log] [blame]
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001/*
2 * Copyright (c) 2004 Video54 Technologies, Inc.
3 * Copyright (c) 2004-2008 Atheros Communications, Inc.
4 *
5 * Permission to use, copy, modify, and/or distribute this software for any
6 * purpose with or without fee is hereby granted, provided that the above
7 * copyright notice and this permission notice appear in all copies.
8 *
9 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
10 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
11 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
12 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
13 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
14 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
15 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
16 */
17
18/*
19 * Atheros rate control algorithm
20 */
21
22#include "core.h"
Johannes Berg4b7679a2008-09-18 18:14:18 +020023/* FIXME: remove this include! */
Luis R. Rodriguezf078f202008-08-04 00:16:41 -070024#include "../net/mac80211/rate.h"
25
26static u32 tx_triglevel_max;
27
28static struct ath_rate_table ar5416_11na_ratetable = {
29 42,
30 {
31 { TRUE, TRUE, WLAN_PHY_OFDM, 6000, /* 6 Mb */
32 5400, 0x0b, 0x00, 12,
33 0, 2, 1, 0, 0, 0, 0, 0 },
34 { TRUE, TRUE, WLAN_PHY_OFDM, 9000, /* 9 Mb */
35 7800, 0x0f, 0x00, 18,
36 0, 3, 1, 1, 1, 1, 1, 0 },
37 { TRUE, TRUE, WLAN_PHY_OFDM, 12000, /* 12 Mb */
38 10000, 0x0a, 0x00, 24,
39 2, 4, 2, 2, 2, 2, 2, 0 },
40 { TRUE, TRUE, WLAN_PHY_OFDM, 18000, /* 18 Mb */
41 13900, 0x0e, 0x00, 36,
42 2, 6, 2, 3, 3, 3, 3, 0 },
43 { TRUE, TRUE, WLAN_PHY_OFDM, 24000, /* 24 Mb */
44 17300, 0x09, 0x00, 48,
45 4, 10, 3, 4, 4, 4, 4, 0 },
46 { TRUE, TRUE, WLAN_PHY_OFDM, 36000, /* 36 Mb */
47 23000, 0x0d, 0x00, 72,
48 4, 14, 3, 5, 5, 5, 5, 0 },
49 { TRUE, TRUE, WLAN_PHY_OFDM, 48000, /* 48 Mb */
50 27400, 0x08, 0x00, 96,
51 4, 20, 3, 6, 6, 6, 6, 0 },
52 { TRUE, TRUE, WLAN_PHY_OFDM, 54000, /* 54 Mb */
53 29300, 0x0c, 0x00, 108,
54 4, 23, 3, 7, 7, 7, 7, 0 },
55 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 6500, /* 6.5 Mb */
56 6400, 0x80, 0x00, 0,
57 0, 2, 3, 8, 24, 8, 24, 3216 },
58 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 13000, /* 13 Mb */
59 12700, 0x81, 0x00, 1,
60 2, 4, 3, 9, 25, 9, 25, 6434 },
61 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 19500, /* 19.5 Mb */
62 18800, 0x82, 0x00, 2,
63 2, 6, 3, 10, 26, 10, 26, 9650 },
64 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 26000, /* 26 Mb */
65 25000, 0x83, 0x00, 3,
66 4, 10, 3, 11, 27, 11, 27, 12868 },
67 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 39000, /* 39 Mb */
68 36700, 0x84, 0x00, 4,
69 4, 14, 3, 12, 28, 12, 28, 19304 },
70 { FALSE, TRUE_20, WLAN_PHY_HT_20_SS, 52000, /* 52 Mb */
71 48100, 0x85, 0x00, 5,
72 4, 20, 3, 13, 29, 13, 29, 25740 },
73 { FALSE, TRUE_20, WLAN_PHY_HT_20_SS, 58500, /* 58.5 Mb */
74 53500, 0x86, 0x00, 6,
75 4, 23, 3, 14, 30, 14, 30, 28956 },
76 { FALSE, TRUE_20, WLAN_PHY_HT_20_SS, 65000, /* 65 Mb */
77 59000, 0x87, 0x00, 7,
78 4, 25, 3, 15, 31, 15, 32, 32180 },
79 { FALSE, FALSE, WLAN_PHY_HT_20_DS, 13000, /* 13 Mb */
80 12700, 0x88, 0x00,
81 8, 0, 2, 3, 16, 33, 16, 33, 6430 },
82 { FALSE, FALSE, WLAN_PHY_HT_20_DS, 26000, /* 26 Mb */
83 24800, 0x89, 0x00, 9,
84 2, 4, 3, 17, 34, 17, 34, 12860 },
85 { FALSE, FALSE, WLAN_PHY_HT_20_DS, 39000, /* 39 Mb */
86 36600, 0x8a, 0x00, 10,
87 2, 6, 3, 18, 35, 18, 35, 19300 },
88 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 52000, /* 52 Mb */
89 48100, 0x8b, 0x00, 11,
90 4, 10, 3, 19, 36, 19, 36, 25736 },
91 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 78000, /* 78 Mb */
92 69500, 0x8c, 0x00, 12,
93 4, 14, 3, 20, 37, 20, 37, 38600 },
94 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 104000, /* 104 Mb */
95 89500, 0x8d, 0x00, 13,
96 4, 20, 3, 21, 38, 21, 38, 51472 },
97 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 117000, /* 117 Mb */
98 98900, 0x8e, 0x00, 14,
99 4, 23, 3, 22, 39, 22, 39, 57890 },
100 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 130000, /* 130 Mb */
101 108300, 0x8f, 0x00, 15,
102 4, 25, 3, 23, 40, 23, 41, 64320 },
103 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 13500, /* 13.5 Mb */
104 13200, 0x80, 0x00, 0,
105 0, 2, 3, 8, 24, 24, 24, 6684 },
106 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 27500, /* 27.0 Mb */
107 25900, 0x81, 0x00, 1,
108 2, 4, 3, 9, 25, 25, 25, 13368 },
109 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 40500, /* 40.5 Mb */
110 38600, 0x82, 0x00, 2,
111 2, 6, 3, 10, 26, 26, 26, 20052 },
112 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 54000, /* 54 Mb */
113 49800, 0x83, 0x00, 3,
114 4, 10, 3, 11, 27, 27, 27, 26738 },
115 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 81500, /* 81 Mb */
116 72200, 0x84, 0x00, 4,
117 4, 14, 3, 12, 28, 28, 28, 40104 },
118 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS, 108000, /* 108 Mb */
119 92900, 0x85, 0x00, 5,
120 4, 20, 3, 13, 29, 29, 29, 53476 },
121 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS, 121500, /* 121.5 Mb */
122 102700, 0x86, 0x00, 6,
123 4, 23, 3, 14, 30, 30, 30, 60156 },
124 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS, 135000, /* 135 Mb */
125 112000, 0x87, 0x00, 7,
126 4, 25, 3, 15, 31, 32, 32, 66840 },
127 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS_HGI, 150000, /* 150 Mb */
128 122000, 0x87, 0x00, 7,
129 4, 25, 3, 15, 31, 32, 32, 74200 },
130 { FALSE, FALSE, WLAN_PHY_HT_40_DS, 27000, /* 27 Mb */
131 25800, 0x88, 0x00, 8,
132 0, 2, 3, 16, 33, 33, 33, 13360 },
133 { FALSE, FALSE, WLAN_PHY_HT_40_DS, 54000, /* 54 Mb */
134 49800, 0x89, 0x00, 9,
135 2, 4, 3, 17, 34, 34, 34, 26720 },
136 { FALSE, FALSE, WLAN_PHY_HT_40_DS, 81000, /* 81 Mb */
137 71900, 0x8a, 0x00, 10,
138 2, 6, 3, 18, 35, 35, 35, 40080 },
139 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 108000, /* 108 Mb */
140 92500, 0x8b, 0x00, 11,
141 4, 10, 3, 19, 36, 36, 36, 53440 },
142 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 162000, /* 162 Mb */
143 130300, 0x8c, 0x00, 12,
144 4, 14, 3, 20, 37, 37, 37, 80160 },
145 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 216000, /* 216 Mb */
146 162800, 0x8d, 0x00, 13,
147 4, 20, 3, 21, 38, 38, 38, 106880 },
148 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 243000, /* 243 Mb */
149 178200, 0x8e, 0x00, 14,
150 4, 23, 3, 22, 39, 39, 39, 120240 },
151 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 270000, /* 270 Mb */
152 192100, 0x8f, 0x00, 15,
153 4, 25, 3, 23, 40, 41, 41, 133600 },
154 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS_HGI, 300000, /* 300 Mb */
155 207000, 0x8f, 0x00, 15,
156 4, 25, 3, 23, 40, 41, 41, 148400 },
157 },
158 50, /* probe interval */
159 50, /* rssi reduce interval */
160 WLAN_RC_HT_FLAG, /* Phy rates allowed initially */
161};
162
163/* TRUE_ALL - valid for 20/40/Legacy,
164 * TRUE - Legacy only,
165 * TRUE_20 - HT 20 only,
166 * TRUE_40 - HT 40 only */
167
168/* 4ms frame limit not used for NG mode. The values filled
169 * for HT are the 64K max aggregate limit */
170
171static struct ath_rate_table ar5416_11ng_ratetable = {
172 46,
173 {
174 { TRUE_ALL, TRUE_ALL, WLAN_PHY_CCK, 1000, /* 1 Mb */
175 900, 0x1b, 0x00, 2,
176 0, 0, 1, 0, 0, 0, 0, 0 },
177 { TRUE_ALL, TRUE_ALL, WLAN_PHY_CCK, 2000, /* 2 Mb */
178 1900, 0x1a, 0x04, 4,
179 1, 1, 1, 1, 1, 1, 1, 0 },
180 { TRUE_ALL, TRUE_ALL, WLAN_PHY_CCK, 5500, /* 5.5 Mb */
181 4900, 0x19, 0x04, 11,
182 2, 2, 2, 2, 2, 2, 2, 0 },
183 { TRUE_ALL, TRUE_ALL, WLAN_PHY_CCK, 11000, /* 11 Mb */
184 8100, 0x18, 0x04, 22,
185 3, 3, 2, 3, 3, 3, 3, 0 },
186 { FALSE, FALSE, WLAN_PHY_OFDM, 6000, /* 6 Mb */
187 5400, 0x0b, 0x00, 12,
188 4, 2, 1, 4, 4, 4, 4, 0 },
189 { FALSE, FALSE, WLAN_PHY_OFDM, 9000, /* 9 Mb */
190 7800, 0x0f, 0x00, 18,
191 4, 3, 1, 5, 5, 5, 5, 0 },
192 { TRUE, TRUE, WLAN_PHY_OFDM, 12000, /* 12 Mb */
193 10100, 0x0a, 0x00, 24,
194 6, 4, 1, 6, 6, 6, 6, 0 },
195 { TRUE, TRUE, WLAN_PHY_OFDM, 18000, /* 18 Mb */
196 14100, 0x0e, 0x00, 36,
197 6, 6, 2, 7, 7, 7, 7, 0 },
198 { TRUE, TRUE, WLAN_PHY_OFDM, 24000, /* 24 Mb */
199 17700, 0x09, 0x00, 48,
200 8, 10, 3, 8, 8, 8, 8, 0 },
201 { TRUE, TRUE, WLAN_PHY_OFDM, 36000, /* 36 Mb */
202 23700, 0x0d, 0x00, 72,
203 8, 14, 3, 9, 9, 9, 9, 0 },
204 { TRUE, TRUE, WLAN_PHY_OFDM, 48000, /* 48 Mb */
205 27400, 0x08, 0x00, 96,
206 8, 20, 3, 10, 10, 10, 10, 0 },
207 { TRUE, TRUE, WLAN_PHY_OFDM, 54000, /* 54 Mb */
208 30900, 0x0c, 0x00, 108,
209 8, 23, 3, 11, 11, 11, 11, 0 },
210 { FALSE, FALSE, WLAN_PHY_HT_20_SS, 6500, /* 6.5 Mb */
211 6400, 0x80, 0x00, 0,
212 4, 2, 3, 12, 28, 12, 28, 3216 },
213 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 13000, /* 13 Mb */
214 12700, 0x81, 0x00, 1,
215 6, 4, 3, 13, 29, 13, 29, 6434 },
216 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 19500, /* 19.5 Mb */
217 18800, 0x82, 0x00, 2,
218 6, 6, 3, 14, 30, 14, 30, 9650 },
219 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 26000, /* 26 Mb */
220 25000, 0x83, 0x00, 3,
221 8, 10, 3, 15, 31, 15, 31, 12868 },
222 { TRUE_20, TRUE_20, WLAN_PHY_HT_20_SS, 39000, /* 39 Mb */
223 36700, 0x84, 0x00, 4,
224 8, 14, 3, 16, 32, 16, 32, 19304 },
225 { FALSE, TRUE_20, WLAN_PHY_HT_20_SS, 52000, /* 52 Mb */
226 48100, 0x85, 0x00, 5,
227 8, 20, 3, 17, 33, 17, 33, 25740 },
228 { FALSE, TRUE_20, WLAN_PHY_HT_20_SS, 58500, /* 58.5 Mb */
229 53500, 0x86, 0x00, 6,
230 8, 23, 3, 18, 34, 18, 34, 28956 },
231 { FALSE, TRUE_20, WLAN_PHY_HT_20_SS, 65000, /* 65 Mb */
232 59000, 0x87, 0x00, 7,
233 8, 25, 3, 19, 35, 19, 36, 32180 },
234 { FALSE, FALSE, WLAN_PHY_HT_20_DS, 13000, /* 13 Mb */
235 12700, 0x88, 0x00, 8,
236 4, 2, 3, 20, 37, 20, 37, 6430 },
237 { FALSE, FALSE, WLAN_PHY_HT_20_DS, 26000, /* 26 Mb */
238 24800, 0x89, 0x00, 9,
239 6, 4, 3, 21, 38, 21, 38, 12860 },
240 { FALSE, FALSE, WLAN_PHY_HT_20_DS, 39000, /* 39 Mb */
241 36600, 0x8a, 0x00, 10,
242 6, 6, 3, 22, 39, 22, 39, 19300 },
243 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 52000, /* 52 Mb */
244 48100, 0x8b, 0x00, 11,
245 8, 10, 3, 23, 40, 23, 40, 25736 },
246 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 78000, /* 78 Mb */
247 69500, 0x8c, 0x00, 12,
248 8, 14, 3, 24, 41, 24, 41, 38600 },
249 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 104000, /* 104 Mb */
250 89500, 0x8d, 0x00, 13,
251 8, 20, 3, 25, 42, 25, 42, 51472 },
252 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 117000, /* 117 Mb */
253 98900, 0x8e, 0x00, 14,
254 8, 23, 3, 26, 43, 26, 44, 57890 },
255 { TRUE_20, FALSE, WLAN_PHY_HT_20_DS, 130000, /* 130 Mb */
256 108300, 0x8f, 0x00, 15,
257 8, 25, 3, 27, 44, 27, 45, 64320 },
258 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 13500, /* 13.5 Mb */
259 13200, 0x80, 0x00, 0,
260 8, 2, 3, 12, 28, 28, 28, 6684 },
261 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 27500, /* 27.0 Mb */
262 25900, 0x81, 0x00, 1,
263 8, 4, 3, 13, 29, 29, 29, 13368 },
264 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 40500, /* 40.5 Mb */
265 38600, 0x82, 0x00, 2,
266 8, 6, 3, 14, 30, 30, 30, 20052 },
267 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 54000, /* 54 Mb */
268 49800, 0x83, 0x00, 3,
269 8, 10, 3, 15, 31, 31, 31, 26738 },
270 { TRUE_40, TRUE_40, WLAN_PHY_HT_40_SS, 81500, /* 81 Mb */
271 72200, 0x84, 0x00, 4,
272 8, 14, 3, 16, 32, 32, 32, 40104 },
273 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS, 108000, /* 108 Mb */
274 92900, 0x85, 0x00, 5,
275 8, 20, 3, 17, 33, 33, 33, 53476 },
276 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS, 121500, /* 121.5 Mb */
277 102700, 0x86, 0x00, 6,
278 8, 23, 3, 18, 34, 34, 34, 60156 },
279 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS, 135000, /* 135 Mb */
280 112000, 0x87, 0x00, 7,
281 8, 23, 3, 19, 35, 36, 36, 66840 },
282 { FALSE, TRUE_40, WLAN_PHY_HT_40_SS_HGI, 150000, /* 150 Mb */
283 122000, 0x87, 0x00, 7,
284 8, 25, 3, 19, 35, 36, 36, 74200 },
285 { FALSE, FALSE, WLAN_PHY_HT_40_DS, 27000, /* 27 Mb */
286 25800, 0x88, 0x00, 8,
287 8, 2, 3, 20, 37, 37, 37, 13360 },
288 { FALSE, FALSE, WLAN_PHY_HT_40_DS, 54000, /* 54 Mb */
289 49800, 0x89, 0x00, 9,
290 8, 4, 3, 21, 38, 38, 38, 26720 },
291 { FALSE, FALSE, WLAN_PHY_HT_40_DS, 81000, /* 81 Mb */
292 71900, 0x8a, 0x00, 10,
293 8, 6, 3, 22, 39, 39, 39, 40080 },
294 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 108000, /* 108 Mb */
295 92500, 0x8b, 0x00, 11,
296 8, 10, 3, 23, 40, 40, 40, 53440 },
297 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 162000, /* 162 Mb */
298 130300, 0x8c, 0x00, 12,
299 8, 14, 3, 24, 41, 41, 41, 80160 },
300 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 216000, /* 216 Mb */
301 162800, 0x8d, 0x00, 13,
302 8, 20, 3, 25, 42, 42, 42, 106880 },
303 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 243000, /* 243 Mb */
304 178200, 0x8e, 0x00, 14,
305 8, 23, 3, 26, 43, 43, 43, 120240 },
306 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS, 270000, /* 270 Mb */
307 192100, 0x8f, 0x00, 15,
308 8, 23, 3, 27, 44, 45, 45, 133600 },
309 { TRUE_40, FALSE, WLAN_PHY_HT_40_DS_HGI, 300000, /* 300 Mb */
310 207000, 0x8f, 0x00, 15,
311 8, 25, 3, 27, 44, 45, 45, 148400 },
312 },
313 50, /* probe interval */
314 50, /* rssi reduce interval */
315 WLAN_RC_HT_FLAG, /* Phy rates allowed initially */
316};
317
318static struct ath_rate_table ar5416_11a_ratetable = {
319 8,
320 {
321 { TRUE, TRUE, WLAN_PHY_OFDM, 6000, /* 6 Mb */
322 5400, 0x0b, 0x00, (0x80|12),
323 0, 2, 1, 0, 0 },
324 { TRUE, TRUE, WLAN_PHY_OFDM, 9000, /* 9 Mb */
325 7800, 0x0f, 0x00, 18,
326 0, 3, 1, 1, 0 },
327 { TRUE, TRUE, WLAN_PHY_OFDM, 12000, /* 12 Mb */
328 10000, 0x0a, 0x00, (0x80|24),
329 2, 4, 2, 2, 0 },
330 { TRUE, TRUE, WLAN_PHY_OFDM, 18000, /* 18 Mb */
331 13900, 0x0e, 0x00, 36,
332 2, 6, 2, 3, 0 },
333 { TRUE, TRUE, WLAN_PHY_OFDM, 24000, /* 24 Mb */
334 17300, 0x09, 0x00, (0x80|48),
335 4, 10, 3, 4, 0 },
336 { TRUE, TRUE, WLAN_PHY_OFDM, 36000, /* 36 Mb */
337 23000, 0x0d, 0x00, 72,
338 4, 14, 3, 5, 0 },
339 { TRUE, TRUE, WLAN_PHY_OFDM, 48000, /* 48 Mb */
340 27400, 0x08, 0x00, 96,
341 4, 19, 3, 6, 0 },
342 { TRUE, TRUE, WLAN_PHY_OFDM, 54000, /* 54 Mb */
343 29300, 0x0c, 0x00, 108,
344 4, 23, 3, 7, 0 },
345 },
346 50, /* probe interval */
347 50, /* rssi reduce interval */
348 0, /* Phy rates allowed initially */
349};
350
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700351static struct ath_rate_table ar5416_11g_ratetable = {
352 12,
353 {
354 { TRUE, TRUE, WLAN_PHY_CCK, 1000, /* 1 Mb */
355 900, 0x1b, 0x00, 2,
356 0, 0, 1, 0, 0 },
357 { TRUE, TRUE, WLAN_PHY_CCK, 2000, /* 2 Mb */
358 1900, 0x1a, 0x04, 4,
359 1, 1, 1, 1, 0 },
360 { TRUE, TRUE, WLAN_PHY_CCK, 5500, /* 5.5 Mb */
361 4900, 0x19, 0x04, 11,
362 2, 2, 2, 2, 0 },
363 { TRUE, TRUE, WLAN_PHY_CCK, 11000, /* 11 Mb */
364 8100, 0x18, 0x04, 22,
365 3, 3, 2, 3, 0 },
366 { FALSE, FALSE, WLAN_PHY_OFDM, 6000, /* 6 Mb */
367 5400, 0x0b, 0x00, 12,
368 4, 2, 1, 4, 0 },
369 { FALSE, FALSE, WLAN_PHY_OFDM, 9000, /* 9 Mb */
370 7800, 0x0f, 0x00, 18,
371 4, 3, 1, 5, 0 },
372 { TRUE, TRUE, WLAN_PHY_OFDM, 12000, /* 12 Mb */
373 10000, 0x0a, 0x00, 24,
374 6, 4, 1, 6, 0 },
375 { TRUE, TRUE, WLAN_PHY_OFDM, 18000, /* 18 Mb */
376 13900, 0x0e, 0x00, 36,
377 6, 6, 2, 7, 0 },
378 { TRUE, TRUE, WLAN_PHY_OFDM, 24000, /* 24 Mb */
379 17300, 0x09, 0x00, 48,
380 8, 10, 3, 8, 0 },
381 { TRUE, TRUE, WLAN_PHY_OFDM, 36000, /* 36 Mb */
382 23000, 0x0d, 0x00, 72,
383 8, 14, 3, 9, 0 },
384 { TRUE, TRUE, WLAN_PHY_OFDM, 48000, /* 48 Mb */
385 27400, 0x08, 0x00, 96,
386 8, 19, 3, 10, 0 },
387 { TRUE, TRUE, WLAN_PHY_OFDM, 54000, /* 54 Mb */
388 29300, 0x0c, 0x00, 108,
389 8, 23, 3, 11, 0 },
390 },
391 50, /* probe interval */
392 50, /* rssi reduce interval */
393 0, /* Phy rates allowed initially */
394};
395
396static struct ath_rate_table ar5416_11b_ratetable = {
397 4,
398 {
399 { TRUE, TRUE, WLAN_PHY_CCK, 1000, /* 1 Mb */
400 900, 0x1b, 0x00, (0x80|2),
401 0, 0, 1, 0, 0 },
402 { TRUE, TRUE, WLAN_PHY_CCK, 2000, /* 2 Mb */
403 1800, 0x1a, 0x04, (0x80|4),
404 1, 1, 1, 1, 0 },
405 { TRUE, TRUE, WLAN_PHY_CCK, 5500, /* 5.5 Mb */
406 4300, 0x19, 0x04, (0x80|11),
407 1, 2, 2, 2, 0 },
408 { TRUE, TRUE, WLAN_PHY_CCK, 11000, /* 11 Mb */
409 7100, 0x18, 0x04, (0x80|22),
410 1, 4, 100, 3, 0 },
411 },
412 100, /* probe interval */
413 100, /* rssi reduce interval */
414 0, /* Phy rates allowed initially */
415};
416
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700417/*
418 * Return the median of three numbers
419 */
420static inline int8_t median(int8_t a, int8_t b, int8_t c)
421{
422 if (a >= b) {
423 if (b >= c)
424 return b;
425 else if (a > c)
426 return c;
427 else
428 return a;
429 } else {
430 if (a >= c)
431 return a;
432 else if (b >= c)
433 return c;
434 else
435 return b;
436 }
437}
438
439static void ath_rc_sort_validrates(const struct ath_rate_table *rate_table,
Sujith256b77592008-11-18 09:03:12 +0530440 struct ath_rate_node *ath_rc_priv)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700441{
442 u8 i, j, idx, idx_next;
443
Sujith256b77592008-11-18 09:03:12 +0530444 for (i = ath_rc_priv->max_valid_rate - 1; i > 0; i--) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700445 for (j = 0; j <= i-1; j++) {
Sujith256b77592008-11-18 09:03:12 +0530446 idx = ath_rc_priv->valid_rate_index[j];
447 idx_next = ath_rc_priv->valid_rate_index[j+1];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700448
449 if (rate_table->info[idx].ratekbps >
450 rate_table->info[idx_next].ratekbps) {
Sujith256b77592008-11-18 09:03:12 +0530451 ath_rc_priv->valid_rate_index[j] = idx_next;
452 ath_rc_priv->valid_rate_index[j+1] = idx;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700453 }
454 }
455 }
456}
457
458/* Access functions for valid_txrate_mask */
459
Sujith256b77592008-11-18 09:03:12 +0530460static void ath_rc_init_valid_txmask(struct ath_rate_node *ath_rc_priv)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700461{
462 u8 i;
463
Sujith256b77592008-11-18 09:03:12 +0530464 for (i = 0; i < ath_rc_priv->rate_table_size; i++)
465 ath_rc_priv->valid_rate_index[i] = FALSE;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700466}
467
Sujith256b77592008-11-18 09:03:12 +0530468static inline void ath_rc_set_valid_txmask(struct ath_rate_node *ath_rc_priv,
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700469 u8 index, int valid_tx_rate)
470{
Sujith256b77592008-11-18 09:03:12 +0530471 ASSERT(index <= ath_rc_priv->rate_table_size);
472 ath_rc_priv->valid_rate_index[index] = valid_tx_rate ? TRUE : FALSE;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700473}
474
Sujith256b77592008-11-18 09:03:12 +0530475static inline int ath_rc_isvalid_txmask(struct ath_rate_node *ath_rc_priv,
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700476 u8 index)
477{
Sujith256b77592008-11-18 09:03:12 +0530478 ASSERT(index <= ath_rc_priv->rate_table_size);
479 return ath_rc_priv->valid_rate_index[index];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700480}
481
482/* Iterators for valid_txrate_mask */
483static inline int
484ath_rc_get_nextvalid_txrate(const struct ath_rate_table *rate_table,
Sujith256b77592008-11-18 09:03:12 +0530485 struct ath_rate_node *ath_rc_priv,
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700486 u8 cur_valid_txrate,
487 u8 *next_idx)
488{
489 u8 i;
490
Sujith256b77592008-11-18 09:03:12 +0530491 for (i = 0; i < ath_rc_priv->max_valid_rate - 1; i++) {
492 if (ath_rc_priv->valid_rate_index[i] == cur_valid_txrate) {
493 *next_idx = ath_rc_priv->valid_rate_index[i+1];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700494 return TRUE;
495 }
496 }
497
498 /* No more valid rates */
499 *next_idx = 0;
500 return FALSE;
501}
502
503/* Return true only for single stream */
504
505static int ath_rc_valid_phyrate(u32 phy, u32 capflag, int ignore_cw)
506{
507 if (WLAN_RC_PHY_HT(phy) & !(capflag & WLAN_RC_HT_FLAG))
508 return FALSE;
509 if (WLAN_RC_PHY_DS(phy) && !(capflag & WLAN_RC_DS_FLAG))
510 return FALSE;
511 if (WLAN_RC_PHY_SGI(phy) && !(capflag & WLAN_RC_SGI_FLAG))
512 return FALSE;
513 if (!ignore_cw && WLAN_RC_PHY_HT(phy))
514 if (WLAN_RC_PHY_40(phy) && !(capflag & WLAN_RC_40_FLAG))
515 return FALSE;
516 if (!WLAN_RC_PHY_40(phy) && (capflag & WLAN_RC_40_FLAG))
517 return FALSE;
518 return TRUE;
519}
520
521static inline int
522ath_rc_get_nextlowervalid_txrate(const struct ath_rate_table *rate_table,
Sujith256b77592008-11-18 09:03:12 +0530523 struct ath_rate_node *ath_rc_priv,
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700524 u8 cur_valid_txrate, u8 *next_idx)
525{
526 int8_t i;
527
Sujith256b77592008-11-18 09:03:12 +0530528 for (i = 1; i < ath_rc_priv->max_valid_rate ; i++) {
529 if (ath_rc_priv->valid_rate_index[i] == cur_valid_txrate) {
530 *next_idx = ath_rc_priv->valid_rate_index[i-1];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700531 return TRUE;
532 }
533 }
534 return FALSE;
535}
536
537/*
538 * Initialize the Valid Rate Index from valid entries in Rate Table
539 */
540static u8
541ath_rc_sib_init_validrates(struct ath_rate_node *ath_rc_priv,
542 const struct ath_rate_table *rate_table,
543 u32 capflag)
544{
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700545 u8 i, hi = 0;
546 u32 valid;
547
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700548 for (i = 0; i < rate_table->rate_cnt; i++) {
549 valid = (ath_rc_priv->single_stream ?
Sujithdc2222a2008-08-14 13:26:55 +0530550 rate_table->info[i].valid_single_stream :
551 rate_table->info[i].valid);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700552 if (valid == TRUE) {
553 u32 phy = rate_table->info[i].phy;
554 u8 valid_rate_count = 0;
555
556 if (!ath_rc_valid_phyrate(phy, capflag, FALSE))
557 continue;
558
Sujith256b77592008-11-18 09:03:12 +0530559 valid_rate_count = ath_rc_priv->valid_phy_ratecnt[phy];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700560
Sujith256b77592008-11-18 09:03:12 +0530561 ath_rc_priv->valid_phy_rateidx[phy][valid_rate_count] = i;
562 ath_rc_priv->valid_phy_ratecnt[phy] += 1;
563 ath_rc_set_valid_txmask(ath_rc_priv, i, TRUE);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700564 hi = A_MAX(hi, i);
565 }
566 }
567 return hi;
568}
569
570/*
571 * Initialize the Valid Rate Index from Rate Set
572 */
573static u8
574ath_rc_sib_setvalid_rates(struct ath_rate_node *ath_rc_priv,
575 const struct ath_rate_table *rate_table,
576 struct ath_rateset *rateset,
577 u32 capflag)
578{
579 /* XXX: Clean me up and make identation friendly */
580 u8 i, j, hi = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700581
582 /* Use intersection of working rates and valid rates */
583 for (i = 0; i < rateset->rs_nrates; i++) {
584 for (j = 0; j < rate_table->rate_cnt; j++) {
585 u32 phy = rate_table->info[j].phy;
586 u32 valid = (ath_rc_priv->single_stream ?
587 rate_table->info[j].valid_single_stream :
588 rate_table->info[j].valid);
589
590 /* We allow a rate only if its valid and the
591 * capflag matches one of the validity
592 * (TRUE/TRUE_20/TRUE_40) flags */
593
594 /* XXX: catch the negative of this branch
595 * first and then continue */
596 if (((rateset->rs_rates[i] & 0x7F) ==
597 (rate_table->info[j].dot11rate & 0x7F)) &&
598 ((valid & WLAN_RC_CAP_MODE(capflag)) ==
599 WLAN_RC_CAP_MODE(capflag)) &&
600 !WLAN_RC_PHY_HT(phy)) {
601
602 u8 valid_rate_count = 0;
603
604 if (!ath_rc_valid_phyrate(phy, capflag, FALSE))
605 continue;
606
607 valid_rate_count =
Sujith256b77592008-11-18 09:03:12 +0530608 ath_rc_priv->valid_phy_ratecnt[phy];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700609
Sujith256b77592008-11-18 09:03:12 +0530610 ath_rc_priv->valid_phy_rateidx[phy]
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700611 [valid_rate_count] = j;
Sujith256b77592008-11-18 09:03:12 +0530612 ath_rc_priv->valid_phy_ratecnt[phy] += 1;
613 ath_rc_set_valid_txmask(ath_rc_priv, j, TRUE);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700614 hi = A_MAX(hi, j);
615 }
616 }
617 }
618 return hi;
619}
620
621static u8
622ath_rc_sib_setvalid_htrates(struct ath_rate_node *ath_rc_priv,
623 const struct ath_rate_table *rate_table,
624 u8 *mcs_set, u32 capflag)
625{
626 u8 i, j, hi = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700627
628 /* Use intersection of working rates and valid rates */
629 for (i = 0; i < ((struct ath_rateset *)mcs_set)->rs_nrates; i++) {
630 for (j = 0; j < rate_table->rate_cnt; j++) {
631 u32 phy = rate_table->info[j].phy;
632 u32 valid = (ath_rc_priv->single_stream ?
Sujithdc2222a2008-08-14 13:26:55 +0530633 rate_table->info[j].valid_single_stream :
634 rate_table->info[j].valid);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700635
636 if (((((struct ath_rateset *)
Sujithdc2222a2008-08-14 13:26:55 +0530637 mcs_set)->rs_rates[i] & 0x7F) !=
638 (rate_table->info[j].dot11rate & 0x7F)) ||
639 !WLAN_RC_PHY_HT(phy) ||
640 !WLAN_RC_PHY_HT_VALID(valid, capflag))
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700641 continue;
642
643 if (!ath_rc_valid_phyrate(phy, capflag, FALSE))
644 continue;
645
Sujith256b77592008-11-18 09:03:12 +0530646 ath_rc_priv->valid_phy_rateidx[phy]
647 [ath_rc_priv->valid_phy_ratecnt[phy]] = j;
648 ath_rc_priv->valid_phy_ratecnt[phy] += 1;
649 ath_rc_set_valid_txmask(ath_rc_priv, j, TRUE);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700650 hi = A_MAX(hi, j);
651 }
652 }
653 return hi;
654}
655
Sujith46494e62008-11-18 09:05:13 +0530656struct ath_rate_softc *ath_rate_attach(struct ath_softc *sc)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700657{
658 struct ath_rate_softc *asc;
659
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700660 asc = kzalloc(sizeof(struct ath_rate_softc), GFP_KERNEL);
661 if (asc == NULL)
662 return NULL;
663
Sujith46494e62008-11-18 09:05:13 +0530664 asc->hw_rate_table[ATH9K_MODE_11B] = &ar5416_11b_ratetable;
665 asc->hw_rate_table[ATH9K_MODE_11A] = &ar5416_11a_ratetable;
666 asc->hw_rate_table[ATH9K_MODE_11G] = &ar5416_11g_ratetable;
667
668 asc->hw_rate_table[ATH9K_MODE_11NA_HT20] = &ar5416_11na_ratetable;
669 asc->hw_rate_table[ATH9K_MODE_11NG_HT20] = &ar5416_11ng_ratetable;
670
671 asc->hw_rate_table[ATH9K_MODE_11NA_HT40PLUS] =
672 &ar5416_11na_ratetable;
673 asc->hw_rate_table[ATH9K_MODE_11NA_HT40MINUS] =
674 &ar5416_11na_ratetable;
675 asc->hw_rate_table[ATH9K_MODE_11NG_HT40PLUS] =
676 &ar5416_11ng_ratetable;
677 asc->hw_rate_table[ATH9K_MODE_11NG_HT40MINUS] =
678 &ar5416_11ng_ratetable;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700679
680 /* Save Maximum TX Trigger Level (used for 11n) */
Sujith46494e62008-11-18 09:05:13 +0530681 tx_triglevel_max = sc->sc_ah->ah_caps.tx_triglevel_max;
682
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700683 return asc;
684}
685
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700686void ath_rate_detach(struct ath_rate_softc *asc)
687{
688 if (asc != NULL)
689 kfree(asc);
690}
691
692u8 ath_rate_findrateix(struct ath_softc *sc,
Sujith102e0572008-10-29 10:15:16 +0530693 u8 dot11rate)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700694{
695 const struct ath_rate_table *ratetable;
696 struct ath_rate_softc *rsc = sc->sc_rc;
697 int i;
698
699 ratetable = rsc->hw_rate_table[sc->sc_curmode];
700
701 if (WARN_ON(!ratetable))
702 return 0;
703
704 for (i = 0; i < ratetable->rate_cnt; i++) {
705 if ((ratetable->info[i].dot11rate & 0x7f) == (dot11rate & 0x7f))
706 return i;
707 }
708
709 return 0;
710}
711
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700712static u8 ath_rc_ratefind_ht(struct ath_softc *sc,
Sujithdc2222a2008-08-14 13:26:55 +0530713 struct ath_rate_node *ath_rc_priv,
714 const struct ath_rate_table *rate_table,
715 int probe_allowed, int *is_probing,
716 int is_retry)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700717{
718 u32 dt, best_thruput, this_thruput, now_msec;
719 u8 rate, next_rate, best_rate, maxindex, minindex;
720 int8_t rssi_last, rssi_reduce = 0, index = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700721
722 *is_probing = FALSE;
723
Sujith256b77592008-11-18 09:03:12 +0530724 rssi_last = median(ath_rc_priv->rssi_last,
725 ath_rc_priv->rssi_last_prev,
726 ath_rc_priv->rssi_last_prev2);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700727
728 /*
729 * Age (reduce) last ack rssi based on how old it is.
730 * The bizarre numbers are so the delta is 160msec,
731 * meaning we divide by 16.
732 * 0msec <= dt <= 25msec: don't derate
733 * 25msec <= dt <= 185msec: derate linearly from 0 to 10dB
734 * 185msec <= dt: derate by 10dB
735 */
736
737 now_msec = jiffies_to_msecs(jiffies);
Sujith256b77592008-11-18 09:03:12 +0530738 dt = now_msec - ath_rc_priv->rssi_time;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700739
740 if (dt >= 185)
741 rssi_reduce = 10;
742 else if (dt >= 25)
743 rssi_reduce = (u8)((dt - 25) >> 4);
744
745 /* Now reduce rssi_last by rssi_reduce */
746 if (rssi_last < rssi_reduce)
747 rssi_last = 0;
748 else
749 rssi_last -= rssi_reduce;
750
751 /*
752 * Now look up the rate in the rssi table and return it.
753 * If no rates match then we return 0 (lowest rate)
754 */
755
756 best_thruput = 0;
Sujith256b77592008-11-18 09:03:12 +0530757 maxindex = ath_rc_priv->max_valid_rate-1;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700758
759 minindex = 0;
760 best_rate = minindex;
761
762 /*
763 * Try the higher rate first. It will reduce memory moving time
764 * if we have very good channel characteristics.
765 */
766 for (index = maxindex; index >= minindex ; index--) {
767 u8 per_thres;
768
Sujith256b77592008-11-18 09:03:12 +0530769 rate = ath_rc_priv->valid_rate_index[index];
770 if (rate > ath_rc_priv->rate_max_phy)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700771 continue;
772
773 /*
774 * For TCP the average collision rate is around 11%,
775 * so we ignore PERs less than this. This is to
776 * prevent the rate we are currently using (whose
777 * PER might be in the 10-15 range because of TCP
778 * collisions) looking worse than the next lower
779 * rate whose PER has decayed close to 0. If we
780 * used to next lower rate, its PER would grow to
781 * 10-15 and we would be worse off then staying
782 * at the current rate.
783 */
Sujith256b77592008-11-18 09:03:12 +0530784 per_thres = ath_rc_priv->state[rate].per;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700785 if (per_thres < 12)
786 per_thres = 12;
787
788 this_thruput = rate_table->info[rate].user_ratekbps *
789 (100 - per_thres);
790
791 if (best_thruput <= this_thruput) {
792 best_thruput = this_thruput;
793 best_rate = rate;
794 }
795 }
796
797 rate = best_rate;
798
799 /* if we are retrying for more than half the number
800 * of max retries, use the min rate for the next retry
801 */
802 if (is_retry)
Sujith256b77592008-11-18 09:03:12 +0530803 rate = ath_rc_priv->valid_rate_index[minindex];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700804
Sujith256b77592008-11-18 09:03:12 +0530805 ath_rc_priv->rssi_last_lookup = rssi_last;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700806
807 /*
808 * Must check the actual rate (ratekbps) to account for
809 * non-monoticity of 11g's rate table
810 */
811
Sujith256b77592008-11-18 09:03:12 +0530812 if (rate >= ath_rc_priv->rate_max_phy && probe_allowed) {
813 rate = ath_rc_priv->rate_max_phy;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700814
815 /* Probe the next allowed phy state */
816 /* FIXME:XXXX Check to make sure ratMax is checked properly */
817 if (ath_rc_get_nextvalid_txrate(rate_table,
Sujith256b77592008-11-18 09:03:12 +0530818 ath_rc_priv, rate, &next_rate) &&
819 (now_msec - ath_rc_priv->probe_time >
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700820 rate_table->probe_interval) &&
Sujith256b77592008-11-18 09:03:12 +0530821 (ath_rc_priv->hw_maxretry_pktcnt >= 1)) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700822 rate = next_rate;
Sujith256b77592008-11-18 09:03:12 +0530823 ath_rc_priv->probe_rate = rate;
824 ath_rc_priv->probe_time = now_msec;
825 ath_rc_priv->hw_maxretry_pktcnt = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700826 *is_probing = TRUE;
827 }
828 }
829
830 /*
831 * Make sure rate is not higher than the allowed maximum.
832 * We should also enforce the min, but I suspect the min is
833 * normally 1 rather than 0 because of the rate 9 vs 6 issue
834 * in the old code.
835 */
Sujith256b77592008-11-18 09:03:12 +0530836 if (rate > (ath_rc_priv->rate_table_size - 1))
837 rate = ath_rc_priv->rate_table_size - 1;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700838
839 ASSERT((rate_table->info[rate].valid && !ath_rc_priv->single_stream) ||
Sujithdc2222a2008-08-14 13:26:55 +0530840 (rate_table->info[rate].valid_single_stream &&
841 ath_rc_priv->single_stream));
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700842
843 return rate;
844}
845
846static void ath_rc_rate_set_series(const struct ath_rate_table *rate_table ,
847 struct ath_rc_series *series,
848 u8 tries,
849 u8 rix,
850 int rtsctsenable)
851{
852 series->tries = tries;
853 series->flags = (rtsctsenable ? ATH_RC_RTSCTS_FLAG : 0) |
854 (WLAN_RC_PHY_DS(rate_table->info[rix].phy) ?
855 ATH_RC_DS_FLAG : 0) |
856 (WLAN_RC_PHY_40(rate_table->info[rix].phy) ?
857 ATH_RC_CW40_FLAG : 0) |
858 (WLAN_RC_PHY_SGI(rate_table->info[rix].phy) ?
859 ATH_RC_SGI_FLAG : 0);
860
861 series->rix = rate_table->info[rix].base_index;
862 series->max_4ms_framelen = rate_table->info[rix].max_4ms_framelen;
863}
864
865static u8 ath_rc_rate_getidx(struct ath_softc *sc,
Sujithdc2222a2008-08-14 13:26:55 +0530866 struct ath_rate_node *ath_rc_priv,
867 const struct ath_rate_table *rate_table,
868 u8 rix, u16 stepdown,
869 u16 min_rate)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700870{
871 u32 j;
872 u8 nextindex;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700873
874 if (min_rate) {
875 for (j = RATE_TABLE_SIZE; j > 0; j--) {
876 if (ath_rc_get_nextlowervalid_txrate(rate_table,
Sujith256b77592008-11-18 09:03:12 +0530877 ath_rc_priv, rix, &nextindex))
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700878 rix = nextindex;
879 else
880 break;
881 }
882 } else {
883 for (j = stepdown; j > 0; j--) {
884 if (ath_rc_get_nextlowervalid_txrate(rate_table,
Sujith256b77592008-11-18 09:03:12 +0530885 ath_rc_priv, rix, &nextindex))
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700886 rix = nextindex;
887 else
888 break;
889 }
890 }
891 return rix;
892}
893
894static void ath_rc_ratefind(struct ath_softc *sc,
895 struct ath_rate_node *ath_rc_priv,
896 int num_tries, int num_rates, unsigned int rcflag,
897 struct ath_rc_series series[], int *is_probe,
898 int is_retry)
899{
900 u8 try_per_rate = 0, i = 0, rix, nrix;
901 struct ath_rate_softc *asc = (struct ath_rate_softc *)sc->sc_rc;
902 struct ath_rate_table *rate_table;
903
904 rate_table =
905 (struct ath_rate_table *)asc->hw_rate_table[sc->sc_curmode];
906 rix = ath_rc_ratefind_ht(sc, ath_rc_priv, rate_table,
Sujithdc2222a2008-08-14 13:26:55 +0530907 (rcflag & ATH_RC_PROBE_ALLOWED) ? 1 : 0,
908 is_probe, is_retry);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700909 nrix = rix;
910
911 if ((rcflag & ATH_RC_PROBE_ALLOWED) && (*is_probe)) {
912 /* set one try for probe rates. For the
913 * probes don't enable rts */
914 ath_rc_rate_set_series(rate_table,
915 &series[i++], 1, nrix, FALSE);
916
917 try_per_rate = (num_tries/num_rates);
918 /* Get the next tried/allowed rate. No RTS for the next series
919 * after the probe rate
920 */
921 nrix = ath_rc_rate_getidx(sc,
922 ath_rc_priv, rate_table, nrix, 1, FALSE);
923 ath_rc_rate_set_series(rate_table,
924 &series[i++], try_per_rate, nrix, 0);
925 } else {
926 try_per_rate = (num_tries/num_rates);
927 /* Set the choosen rate. No RTS for first series entry. */
928 ath_rc_rate_set_series(rate_table,
929 &series[i++], try_per_rate, nrix, FALSE);
930 }
931
932 /* Fill in the other rates for multirate retry */
933 for ( ; i < num_rates; i++) {
934 u8 try_num;
935 u8 min_rate;
936
937 try_num = ((i + 1) == num_rates) ?
938 num_tries - (try_per_rate * i) : try_per_rate ;
939 min_rate = (((i + 1) == num_rates) &&
Sujithdc2222a2008-08-14 13:26:55 +0530940 (rcflag & ATH_RC_MINRATE_LASTRATE)) ? 1 : 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700941
942 nrix = ath_rc_rate_getidx(sc, ath_rc_priv,
Sujithdc2222a2008-08-14 13:26:55 +0530943 rate_table, nrix, 1, min_rate);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700944 /* All other rates in the series have RTS enabled */
945 ath_rc_rate_set_series(rate_table,
Sujithdc2222a2008-08-14 13:26:55 +0530946 &series[i], try_num, nrix, TRUE);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700947 }
948
949 /*
950 * NB:Change rate series to enable aggregation when operating
951 * at lower MCS rates. When first rate in series is MCS2
952 * in HT40 @ 2.4GHz, series should look like:
953 *
954 * {MCS2, MCS1, MCS0, MCS0}.
955 *
956 * When first rate in series is MCS3 in HT20 @ 2.4GHz, series should
957 * look like:
958 *
959 * {MCS3, MCS2, MCS1, MCS1}
960 *
961 * So, set fourth rate in series to be same as third one for
962 * above conditions.
963 */
Sujith86b89ee2008-08-07 10:54:57 +0530964 if ((sc->sc_curmode == ATH9K_MODE_11NG_HT20) ||
Sujithdc2222a2008-08-14 13:26:55 +0530965 (sc->sc_curmode == ATH9K_MODE_11NG_HT40PLUS) ||
966 (sc->sc_curmode == ATH9K_MODE_11NG_HT40MINUS)) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700967 u8 dot11rate = rate_table->info[rix].dot11rate;
968 u8 phy = rate_table->info[rix].phy;
969 if (i == 4 &&
970 ((dot11rate == 2 && phy == WLAN_RC_PHY_HT_40_SS) ||
Sujithdc2222a2008-08-14 13:26:55 +0530971 (dot11rate == 3 && phy == WLAN_RC_PHY_HT_20_SS))) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700972 series[3].rix = series[2].rix;
973 series[3].flags = series[2].flags;
974 series[3].max_4ms_framelen = series[2].max_4ms_framelen;
975 }
976 }
977}
978
979/*
980 * Return the Tx rate series.
981 */
Sujith5701ed82008-08-26 08:11:26 +0530982static void ath_rate_findrate(struct ath_softc *sc,
983 struct ath_rate_node *ath_rc_priv,
984 int num_tries,
985 int num_rates,
986 unsigned int rcflag,
987 struct ath_rc_series series[],
988 int *is_probe,
989 int is_retry)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700990{
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700991 if (!num_rates || !num_tries)
992 return;
993
Sujith2b406f12008-11-18 09:05:35 +0530994 ath_rc_ratefind(sc, ath_rc_priv, num_tries, num_rates,
995 rcflag, series, is_probe, is_retry);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -0700996}
997
998static void ath_rc_update_ht(struct ath_softc *sc,
999 struct ath_rate_node *ath_rc_priv,
1000 struct ath_tx_info_priv *info_priv,
1001 int tx_rate, int xretries, int retries)
1002{
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001003 u32 now_msec = jiffies_to_msecs(jiffies);
1004 int state_change = FALSE, rate, count;
1005 u8 last_per;
Sujithdc2222a2008-08-14 13:26:55 +05301006 struct ath_rate_softc *asc = (struct ath_rate_softc *)sc->sc_rc;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001007 struct ath_rate_table *rate_table =
1008 (struct ath_rate_table *)asc->hw_rate_table[sc->sc_curmode];
1009
1010 static u32 nretry_to_per_lookup[10] = {
1011 100 * 0 / 1,
1012 100 * 1 / 4,
1013 100 * 1 / 2,
1014 100 * 3 / 4,
1015 100 * 4 / 5,
1016 100 * 5 / 6,
1017 100 * 6 / 7,
1018 100 * 7 / 8,
1019 100 * 8 / 9,
1020 100 * 9 / 10
1021 };
1022
1023 if (!ath_rc_priv)
1024 return;
1025
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001026 ASSERT(tx_rate >= 0);
1027 if (tx_rate < 0)
1028 return;
1029
1030 /* To compensate for some imbalance between ctrl and ext. channel */
1031
1032 if (WLAN_RC_PHY_40(rate_table->info[tx_rate].phy))
1033 info_priv->tx.ts_rssi =
1034 info_priv->tx.ts_rssi < 3 ? 0 :
1035 info_priv->tx.ts_rssi - 3;
1036
Sujith256b77592008-11-18 09:03:12 +05301037 last_per = ath_rc_priv->state[tx_rate].per;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001038
1039 if (xretries) {
1040 /* Update the PER. */
1041 if (xretries == 1) {
Sujith256b77592008-11-18 09:03:12 +05301042 ath_rc_priv->state[tx_rate].per += 30;
1043 if (ath_rc_priv->state[tx_rate].per > 100)
1044 ath_rc_priv->state[tx_rate].per = 100;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001045 } else {
1046 /* xretries == 2 */
Julia Lawall87c16872008-11-09 17:56:10 +01001047 count = ARRAY_SIZE(nretry_to_per_lookup);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001048 if (retries >= count)
1049 retries = count - 1;
1050 /* new_PER = 7/8*old_PER + 1/8*(currentPER) */
Sujith256b77592008-11-18 09:03:12 +05301051 ath_rc_priv->state[tx_rate].per =
1052 (u8)(ath_rc_priv->state[tx_rate].per -
1053 (ath_rc_priv->state[tx_rate].per >> 3) +
Sujithdc2222a2008-08-14 13:26:55 +05301054 ((100) >> 3));
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001055 }
1056
1057 /* xretries == 1 or 2 */
1058
Sujith256b77592008-11-18 09:03:12 +05301059 if (ath_rc_priv->probe_rate == tx_rate)
1060 ath_rc_priv->probe_rate = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001061
1062 } else { /* xretries == 0 */
1063 /* Update the PER. */
1064 /* Make sure it doesn't index out of array's bounds. */
Julia Lawall87c16872008-11-09 17:56:10 +01001065 count = ARRAY_SIZE(nretry_to_per_lookup);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001066 if (retries >= count)
1067 retries = count - 1;
1068 if (info_priv->n_bad_frames) {
Sujithdc2222a2008-08-14 13:26:55 +05301069 /* new_PER = 7/8*old_PER + 1/8*(currentPER)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001070 * Assuming that n_frames is not 0. The current PER
1071 * from the retries is 100 * retries / (retries+1),
1072 * since the first retries attempts failed, and the
1073 * next one worked. For the one that worked,
1074 * n_bad_frames subframes out of n_frames wored,
1075 * so the PER for that part is
1076 * 100 * n_bad_frames / n_frames, and it contributes
1077 * 100 * n_bad_frames / (n_frames * (retries+1)) to
1078 * the above PER. The expression below is a
1079 * simplified version of the sum of these two terms.
1080 */
1081 if (info_priv->n_frames > 0)
Sujith256b77592008-11-18 09:03:12 +05301082 ath_rc_priv->state[tx_rate].per
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001083 = (u8)
Sujith256b77592008-11-18 09:03:12 +05301084 (ath_rc_priv->state[tx_rate].per -
1085 (ath_rc_priv->state[tx_rate].per >> 3) +
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001086 ((100*(retries*info_priv->n_frames +
1087 info_priv->n_bad_frames) /
1088 (info_priv->n_frames *
1089 (retries+1))) >> 3));
1090 } else {
1091 /* new_PER = 7/8*old_PER + 1/8*(currentPER) */
1092
Sujith256b77592008-11-18 09:03:12 +05301093 ath_rc_priv->state[tx_rate].per = (u8)
1094 (ath_rc_priv->state[tx_rate].per -
1095 (ath_rc_priv->state[tx_rate].per >> 3) +
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001096 (nretry_to_per_lookup[retries] >> 3));
1097 }
1098
Sujith256b77592008-11-18 09:03:12 +05301099 ath_rc_priv->rssi_last_prev2 = ath_rc_priv->rssi_last_prev;
1100 ath_rc_priv->rssi_last_prev = ath_rc_priv->rssi_last;
1101 ath_rc_priv->rssi_last = info_priv->tx.ts_rssi;
1102 ath_rc_priv->rssi_time = now_msec;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001103
1104 /*
1105 * If we got at most one retry then increase the max rate if
1106 * this was a probe. Otherwise, ignore the probe.
1107 */
1108
Sujith256b77592008-11-18 09:03:12 +05301109 if (ath_rc_priv->probe_rate && ath_rc_priv->probe_rate == tx_rate) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001110 if (retries > 0 || 2 * info_priv->n_bad_frames >
1111 info_priv->n_frames) {
1112 /*
1113 * Since we probed with just a single attempt,
1114 * any retries means the probe failed. Also,
1115 * if the attempt worked, but more than half
1116 * the subframes were bad then also consider
1117 * the probe a failure.
1118 */
Sujith256b77592008-11-18 09:03:12 +05301119 ath_rc_priv->probe_rate = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001120 } else {
1121 u8 probe_rate = 0;
1122
Sujith256b77592008-11-18 09:03:12 +05301123 ath_rc_priv->rate_max_phy = ath_rc_priv->probe_rate;
1124 probe_rate = ath_rc_priv->probe_rate;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001125
Sujith256b77592008-11-18 09:03:12 +05301126 if (ath_rc_priv->state[probe_rate].per > 30)
1127 ath_rc_priv->state[probe_rate].per = 20;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001128
Sujith256b77592008-11-18 09:03:12 +05301129 ath_rc_priv->probe_rate = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001130
1131 /*
1132 * Since this probe succeeded, we allow the next
1133 * probe twice as soon. This allows the maxRate
1134 * to move up faster if the probes are
1135 * succesful.
1136 */
Sujith256b77592008-11-18 09:03:12 +05301137 ath_rc_priv->probe_time = now_msec -
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001138 rate_table->probe_interval / 2;
1139 }
1140 }
1141
1142 if (retries > 0) {
1143 /*
1144 * Don't update anything. We don't know if
1145 * this was because of collisions or poor signal.
1146 *
1147 * Later: if rssi_ack is close to
Sujith256b77592008-11-18 09:03:12 +05301148 * ath_rc_priv->state[txRate].rssi_thres and we see lots
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001149 * of retries, then we could increase
Sujith256b77592008-11-18 09:03:12 +05301150 * ath_rc_priv->state[txRate].rssi_thres.
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001151 */
Sujith256b77592008-11-18 09:03:12 +05301152 ath_rc_priv->hw_maxretry_pktcnt = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001153 } else {
1154 /*
1155 * It worked with no retries. First ignore bogus (small)
1156 * rssi_ack values.
1157 */
Sujith256b77592008-11-18 09:03:12 +05301158 if (tx_rate == ath_rc_priv->rate_max_phy &&
1159 ath_rc_priv->hw_maxretry_pktcnt < 255) {
1160 ath_rc_priv->hw_maxretry_pktcnt++;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001161 }
1162
1163 if (info_priv->tx.ts_rssi >=
1164 rate_table->info[tx_rate].rssi_ack_validmin) {
1165 /* Average the rssi */
Sujith256b77592008-11-18 09:03:12 +05301166 if (tx_rate != ath_rc_priv->rssi_sum_rate) {
1167 ath_rc_priv->rssi_sum_rate = tx_rate;
1168 ath_rc_priv->rssi_sum =
1169 ath_rc_priv->rssi_sum_cnt = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001170 }
1171
Sujith256b77592008-11-18 09:03:12 +05301172 ath_rc_priv->rssi_sum += info_priv->tx.ts_rssi;
1173 ath_rc_priv->rssi_sum_cnt++;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001174
Sujith256b77592008-11-18 09:03:12 +05301175 if (ath_rc_priv->rssi_sum_cnt > 4) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001176 int32_t rssi_ackAvg =
Sujith256b77592008-11-18 09:03:12 +05301177 (ath_rc_priv->rssi_sum + 2) / 4;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001178 int8_t rssi_thres =
Sujith256b77592008-11-18 09:03:12 +05301179 ath_rc_priv->state[tx_rate].
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001180 rssi_thres;
1181 int8_t rssi_ack_vmin =
1182 rate_table->info[tx_rate].
1183 rssi_ack_validmin;
1184
Sujith256b77592008-11-18 09:03:12 +05301185 ath_rc_priv->rssi_sum =
1186 ath_rc_priv->rssi_sum_cnt = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001187
1188 /* Now reduce the current
1189 * rssi threshold. */
1190 if ((rssi_ackAvg < rssi_thres + 2) &&
Sujithdc2222a2008-08-14 13:26:55 +05301191 (rssi_thres > rssi_ack_vmin)) {
Sujith256b77592008-11-18 09:03:12 +05301192 ath_rc_priv->state[tx_rate].
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001193 rssi_thres--;
1194 }
1195
1196 state_change = TRUE;
1197 }
1198 }
1199 }
1200 }
1201
1202 /* For all cases */
1203
1204 /*
1205 * If this rate looks bad (high PER) then stop using it for
1206 * a while (except if we are probing).
1207 */
Sujith256b77592008-11-18 09:03:12 +05301208 if (ath_rc_priv->state[tx_rate].per >= 55 && tx_rate > 0 &&
Sujithdc2222a2008-08-14 13:26:55 +05301209 rate_table->info[tx_rate].ratekbps <=
Sujith256b77592008-11-18 09:03:12 +05301210 rate_table->info[ath_rc_priv->rate_max_phy].ratekbps) {
1211 ath_rc_get_nextlowervalid_txrate(rate_table, ath_rc_priv,
1212 (u8) tx_rate, &ath_rc_priv->rate_max_phy);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001213
1214 /* Don't probe for a little while. */
Sujith256b77592008-11-18 09:03:12 +05301215 ath_rc_priv->probe_time = now_msec;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001216 }
1217
1218 if (state_change) {
1219 /*
1220 * Make sure the rates above this have higher rssi thresholds.
1221 * (Note: Monotonicity is kept within the OFDM rates and
1222 * within the CCK rates. However, no adjustment is
1223 * made to keep the rssi thresholds monotonically
1224 * increasing between the CCK and OFDM rates.)
1225 */
1226 for (rate = tx_rate; rate <
Sujith256b77592008-11-18 09:03:12 +05301227 ath_rc_priv->rate_table_size - 1; rate++) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001228 if (rate_table->info[rate+1].phy !=
1229 rate_table->info[tx_rate].phy)
1230 break;
1231
Sujith256b77592008-11-18 09:03:12 +05301232 if (ath_rc_priv->state[rate].rssi_thres +
Sujithdc2222a2008-08-14 13:26:55 +05301233 rate_table->info[rate].rssi_ack_deltamin >
Sujith256b77592008-11-18 09:03:12 +05301234 ath_rc_priv->state[rate+1].rssi_thres) {
1235 ath_rc_priv->state[rate+1].rssi_thres =
1236 ath_rc_priv->state[rate].
Sujithdc2222a2008-08-14 13:26:55 +05301237 rssi_thres +
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001238 rate_table->info[rate].
Sujithdc2222a2008-08-14 13:26:55 +05301239 rssi_ack_deltamin;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001240 }
1241 }
1242
1243 /* Make sure the rates below this have lower rssi thresholds. */
1244 for (rate = tx_rate - 1; rate >= 0; rate--) {
1245 if (rate_table->info[rate].phy !=
Sujithdc2222a2008-08-14 13:26:55 +05301246 rate_table->info[tx_rate].phy)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001247 break;
1248
Sujith256b77592008-11-18 09:03:12 +05301249 if (ath_rc_priv->state[rate].rssi_thres +
Sujithdc2222a2008-08-14 13:26:55 +05301250 rate_table->info[rate].rssi_ack_deltamin >
Sujith256b77592008-11-18 09:03:12 +05301251 ath_rc_priv->state[rate+1].rssi_thres) {
1252 if (ath_rc_priv->state[rate+1].rssi_thres <
Sujithdc2222a2008-08-14 13:26:55 +05301253 rate_table->info[rate].
1254 rssi_ack_deltamin)
Sujith256b77592008-11-18 09:03:12 +05301255 ath_rc_priv->state[rate].rssi_thres = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001256 else {
Sujith256b77592008-11-18 09:03:12 +05301257 ath_rc_priv->state[rate].rssi_thres =
1258 ath_rc_priv->state[rate+1].
Sujithdc2222a2008-08-14 13:26:55 +05301259 rssi_thres -
1260 rate_table->info[rate].
1261 rssi_ack_deltamin;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001262 }
1263
Sujith256b77592008-11-18 09:03:12 +05301264 if (ath_rc_priv->state[rate].rssi_thres <
Sujithdc2222a2008-08-14 13:26:55 +05301265 rate_table->info[rate].
1266 rssi_ack_validmin) {
Sujith256b77592008-11-18 09:03:12 +05301267 ath_rc_priv->state[rate].rssi_thres =
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001268 rate_table->info[rate].
Sujithdc2222a2008-08-14 13:26:55 +05301269 rssi_ack_validmin;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001270 }
1271 }
1272 }
1273 }
1274
1275 /* Make sure the rates below this have lower PER */
1276 /* Monotonicity is kept only for rates below the current rate. */
Sujith256b77592008-11-18 09:03:12 +05301277 if (ath_rc_priv->state[tx_rate].per < last_per) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001278 for (rate = tx_rate - 1; rate >= 0; rate--) {
1279 if (rate_table->info[rate].phy !=
Sujithdc2222a2008-08-14 13:26:55 +05301280 rate_table->info[tx_rate].phy)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001281 break;
1282
Sujith256b77592008-11-18 09:03:12 +05301283 if (ath_rc_priv->state[rate].per >
1284 ath_rc_priv->state[rate+1].per) {
1285 ath_rc_priv->state[rate].per =
1286 ath_rc_priv->state[rate+1].per;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001287 }
1288 }
1289 }
1290
1291 /* Maintain monotonicity for rates above the current rate */
Sujith256b77592008-11-18 09:03:12 +05301292 for (rate = tx_rate; rate < ath_rc_priv->rate_table_size - 1; rate++) {
1293 if (ath_rc_priv->state[rate+1].per < ath_rc_priv->state[rate].per)
1294 ath_rc_priv->state[rate+1].per =
1295 ath_rc_priv->state[rate].per;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001296 }
1297
1298 /* Every so often, we reduce the thresholds and
1299 * PER (different for CCK and OFDM). */
Sujith256b77592008-11-18 09:03:12 +05301300 if (now_msec - ath_rc_priv->rssi_down_time >=
Sujithdc2222a2008-08-14 13:26:55 +05301301 rate_table->rssi_reduce_interval) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001302
Sujith256b77592008-11-18 09:03:12 +05301303 for (rate = 0; rate < ath_rc_priv->rate_table_size; rate++) {
1304 if (ath_rc_priv->state[rate].rssi_thres >
Sujithdc2222a2008-08-14 13:26:55 +05301305 rate_table->info[rate].rssi_ack_validmin)
Sujith256b77592008-11-18 09:03:12 +05301306 ath_rc_priv->state[rate].rssi_thres -= 1;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001307 }
Sujith256b77592008-11-18 09:03:12 +05301308 ath_rc_priv->rssi_down_time = now_msec;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001309 }
1310
1311 /* Every so often, we reduce the thresholds
1312 * and PER (different for CCK and OFDM). */
Sujith256b77592008-11-18 09:03:12 +05301313 if (now_msec - ath_rc_priv->per_down_time >=
Sujithdc2222a2008-08-14 13:26:55 +05301314 rate_table->rssi_reduce_interval) {
Sujith256b77592008-11-18 09:03:12 +05301315 for (rate = 0; rate < ath_rc_priv->rate_table_size; rate++) {
1316 ath_rc_priv->state[rate].per =
1317 7 * ath_rc_priv->state[rate].per / 8;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001318 }
1319
Sujith256b77592008-11-18 09:03:12 +05301320 ath_rc_priv->per_down_time = now_msec;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001321 }
1322}
1323
1324/*
1325 * This routine is called in rate control callback tx_status() to give
1326 * the status of previous frames.
1327 */
1328static void ath_rc_update(struct ath_softc *sc,
1329 struct ath_rate_node *ath_rc_priv,
1330 struct ath_tx_info_priv *info_priv, int final_ts_idx,
1331 int xretries, int long_retry)
1332{
Sujithdc2222a2008-08-14 13:26:55 +05301333 struct ath_rate_softc *asc = (struct ath_rate_softc *)sc->sc_rc;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001334 struct ath_rate_table *rate_table;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001335 struct ath_rc_series rcs[4];
1336 u8 flags;
1337 u32 series = 0, rix;
1338
1339 memcpy(rcs, info_priv->rcs, 4 * sizeof(rcs[0]));
1340 rate_table = (struct ath_rate_table *)
1341 asc->hw_rate_table[sc->sc_curmode];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001342 ASSERT(rcs[0].tries != 0);
1343
1344 /*
1345 * If the first rate is not the final index, there
1346 * are intermediate rate failures to be processed.
1347 */
1348 if (final_ts_idx != 0) {
1349 /* Process intermediate rates that failed.*/
1350 for (series = 0; series < final_ts_idx ; series++) {
1351 if (rcs[series].tries != 0) {
1352 flags = rcs[series].flags;
1353 /* If HT40 and we have switched mode from
1354 * 40 to 20 => don't update */
1355 if ((flags & ATH_RC_CW40_FLAG) &&
Sujith256b77592008-11-18 09:03:12 +05301356 (ath_rc_priv->rc_phy_mode !=
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001357 (flags & ATH_RC_CW40_FLAG)))
1358 return;
1359 if ((flags & ATH_RC_CW40_FLAG) &&
1360 (flags & ATH_RC_SGI_FLAG))
1361 rix = rate_table->info[
1362 rcs[series].rix].ht_index;
1363 else if (flags & ATH_RC_SGI_FLAG)
1364 rix = rate_table->info[
1365 rcs[series].rix].sgi_index;
1366 else if (flags & ATH_RC_CW40_FLAG)
1367 rix = rate_table->info[
1368 rcs[series].rix].cw40index;
1369 else
1370 rix = rate_table->info[
1371 rcs[series].rix].base_index;
1372 ath_rc_update_ht(sc, ath_rc_priv,
1373 info_priv, rix,
1374 xretries ? 1 : 2,
1375 rcs[series].tries);
1376 }
1377 }
1378 } else {
1379 /*
1380 * Handle the special case of MIMO PS burst, where the second
1381 * aggregate is sent out with only one rate and one try.
1382 * Treating it as an excessive retry penalizes the rate
1383 * inordinately.
1384 */
1385 if (rcs[0].tries == 1 && xretries == 1)
1386 xretries = 2;
1387 }
1388
1389 flags = rcs[series].flags;
1390 /* If HT40 and we have switched mode from 40 to 20 => don't update */
1391 if ((flags & ATH_RC_CW40_FLAG) &&
Sujith256b77592008-11-18 09:03:12 +05301392 (ath_rc_priv->rc_phy_mode != (flags & ATH_RC_CW40_FLAG)))
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001393 return;
1394
1395 if ((flags & ATH_RC_CW40_FLAG) && (flags & ATH_RC_SGI_FLAG))
1396 rix = rate_table->info[rcs[series].rix].ht_index;
1397 else if (flags & ATH_RC_SGI_FLAG)
1398 rix = rate_table->info[rcs[series].rix].sgi_index;
1399 else if (flags & ATH_RC_CW40_FLAG)
1400 rix = rate_table->info[rcs[series].rix].cw40index;
1401 else
1402 rix = rate_table->info[rcs[series].rix].base_index;
1403
1404 ath_rc_update_ht(sc, ath_rc_priv, info_priv, rix,
1405 xretries, long_retry);
1406}
1407
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001408/*
1409 * Process a tx descriptor for a completed transmit (success or failure).
1410 */
1411static void ath_rate_tx_complete(struct ath_softc *sc,
1412 struct ath_node *an,
1413 struct ath_rate_node *rc_priv,
1414 struct ath_tx_info_priv *info_priv)
1415{
1416 int final_ts_idx = info_priv->tx.ts_rateindex;
1417 int tx_status = 0, is_underrun = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001418
Sujith2b406f12008-11-18 09:05:35 +05301419 if (info_priv->tx.ts_status & ATH9K_TXERR_FILT)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001420 return;
1421
1422 if (info_priv->tx.ts_rssi > 0) {
1423 ATH_RSSI_LPF(an->an_chainmask_sel.tx_avgrssi,
Sujithdc2222a2008-08-14 13:26:55 +05301424 info_priv->tx.ts_rssi);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001425 }
1426
1427 /*
1428 * If underrun error is seen assume it as an excessive retry only
1429 * if prefetch trigger level have reached the max (0x3f for 5416)
1430 * Adjust the long retry as if the frame was tried ATH_11N_TXMAXTRY
1431 * times. This affects how ratectrl updates PER for the failed rate.
1432 */
1433 if (info_priv->tx.ts_flags &
1434 (ATH9K_TX_DATA_UNDERRUN | ATH9K_TX_DELIM_UNDERRUN) &&
1435 ((sc->sc_ah->ah_txTrigLevel) >= tx_triglevel_max)) {
1436 tx_status = 1;
1437 is_underrun = 1;
1438 }
1439
1440 if ((info_priv->tx.ts_status & ATH9K_TXERR_XRETRY) ||
1441 (info_priv->tx.ts_status & ATH9K_TXERR_FIFO))
1442 tx_status = 1;
1443
1444 ath_rc_update(sc, rc_priv, info_priv, final_ts_idx, tx_status,
1445 (is_underrun) ? ATH_11N_TXMAXTRY :
1446 info_priv->tx.ts_longretry);
1447}
1448
Sujith5ddfac32008-11-18 09:06:44 +05301449static void ath_rc_init(struct ath_softc *sc,
1450 struct ath_rate_node *ath_rc_priv,
1451 struct ieee80211_supported_band *sband,
1452 struct ieee80211_sta *sta)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001453{
1454 struct ath_rate_table *rate_table = NULL;
1455 struct ath_rate_softc *asc = (struct ath_rate_softc *)sc->sc_rc;
Sujith5ddfac32008-11-18 09:06:44 +05301456 struct ath_rateset *rateset = &ath_rc_priv->neg_rates;
1457 u8 *ht_mcs = (u8 *)&ath_rc_priv->neg_ht_rates;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001458 u8 i, j, k, hi = 0, hthi = 0;
1459
1460 rate_table = (struct ath_rate_table *)
1461 asc->hw_rate_table[sc->sc_curmode];
1462
Sujith5ddfac32008-11-18 09:06:44 +05301463 if (sta->ht_cap.ht_supported) {
1464 if (sband->band == IEEE80211_BAND_2GHZ)
1465 rate_table = (struct ath_rate_table *)
1466 asc->hw_rate_table[ATH9K_MODE_11NG_HT20];
1467 else
1468 rate_table = (struct ath_rate_table *)
1469 asc->hw_rate_table[ATH9K_MODE_11NA_HT20];
1470
1471 ath_rc_priv->ht_cap = (WLAN_RC_HT_FLAG | WLAN_RC_DS_FLAG);
1472 if (sta->ht_cap.cap & IEEE80211_HT_CAP_SUP_WIDTH_20_40)
1473 ath_rc_priv->ht_cap |= WLAN_RC_40_FLAG;
1474 }
1475
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001476 /* Initial rate table size. Will change depending
1477 * on the working rate set */
Sujith256b77592008-11-18 09:03:12 +05301478 ath_rc_priv->rate_table_size = MAX_TX_RATE_TBL;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001479
1480 /* Initialize thresholds according to the global rate table */
Sujith5ddfac32008-11-18 09:06:44 +05301481 for (i = 0 ; i < ath_rc_priv->rate_table_size; i++) {
Sujith256b77592008-11-18 09:03:12 +05301482 ath_rc_priv->state[i].rssi_thres =
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001483 rate_table->info[i].rssi_ack_validmin;
Sujith256b77592008-11-18 09:03:12 +05301484 ath_rc_priv->state[i].per = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001485 }
1486
1487 /* Determine the valid rates */
Sujith256b77592008-11-18 09:03:12 +05301488 ath_rc_init_valid_txmask(ath_rc_priv);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001489
1490 for (i = 0; i < WLAN_RC_PHY_MAX; i++) {
1491 for (j = 0; j < MAX_TX_RATE_PHY; j++)
Sujith256b77592008-11-18 09:03:12 +05301492 ath_rc_priv->valid_phy_rateidx[i][j] = 0;
1493 ath_rc_priv->valid_phy_ratecnt[i] = 0;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001494 }
Sujith5ddfac32008-11-18 09:06:44 +05301495 ath_rc_priv->rc_phy_mode = (ath_rc_priv->ht_cap & WLAN_RC_40_FLAG);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001496
1497 /* Set stream capability */
Sujith5ddfac32008-11-18 09:06:44 +05301498 ath_rc_priv->single_stream = (ath_rc_priv->ht_cap & WLAN_RC_DS_FLAG) ? 0 : 1;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001499
1500 if (!rateset->rs_nrates) {
1501 /* No working rate, just initialize valid rates */
1502 hi = ath_rc_sib_init_validrates(ath_rc_priv, rate_table,
Sujith5ddfac32008-11-18 09:06:44 +05301503 ath_rc_priv->ht_cap);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001504 } else {
1505 /* Use intersection of working rates and valid rates */
1506 hi = ath_rc_sib_setvalid_rates(ath_rc_priv, rate_table,
Sujith5ddfac32008-11-18 09:06:44 +05301507 rateset, ath_rc_priv->ht_cap);
1508 if (ath_rc_priv->ht_cap & WLAN_RC_HT_FLAG) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001509 hthi = ath_rc_sib_setvalid_htrates(ath_rc_priv,
1510 rate_table,
1511 ht_mcs,
Sujith5ddfac32008-11-18 09:06:44 +05301512 ath_rc_priv->ht_cap);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001513 }
1514 hi = A_MAX(hi, hthi);
1515 }
1516
Sujith256b77592008-11-18 09:03:12 +05301517 ath_rc_priv->rate_table_size = hi + 1;
1518 ath_rc_priv->rate_max_phy = 0;
1519 ASSERT(ath_rc_priv->rate_table_size <= MAX_TX_RATE_TBL);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001520
1521 for (i = 0, k = 0; i < WLAN_RC_PHY_MAX; i++) {
Sujith256b77592008-11-18 09:03:12 +05301522 for (j = 0; j < ath_rc_priv->valid_phy_ratecnt[i]; j++) {
1523 ath_rc_priv->valid_rate_index[k++] =
1524 ath_rc_priv->valid_phy_rateidx[i][j];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001525 }
1526
1527 if (!ath_rc_valid_phyrate(i, rate_table->initial_ratemax, TRUE)
Sujith256b77592008-11-18 09:03:12 +05301528 || !ath_rc_priv->valid_phy_ratecnt[i])
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001529 continue;
1530
Sujith256b77592008-11-18 09:03:12 +05301531 ath_rc_priv->rate_max_phy = ath_rc_priv->valid_phy_rateidx[i][j-1];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001532 }
Sujith256b77592008-11-18 09:03:12 +05301533 ASSERT(ath_rc_priv->rate_table_size <= MAX_TX_RATE_TBL);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001534 ASSERT(k <= MAX_TX_RATE_TBL);
1535
Sujith256b77592008-11-18 09:03:12 +05301536 ath_rc_priv->max_valid_rate = k;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001537 /*
1538 * Some third party vendors don't send the supported rate series in
1539 * order. So sorting to make sure its in order, otherwise our RateFind
1540 * Algo will select wrong rates
1541 */
Sujith256b77592008-11-18 09:03:12 +05301542 ath_rc_sort_validrates(rate_table, ath_rc_priv);
1543 ath_rc_priv->rate_max_phy = ath_rc_priv->valid_rate_index[k-4];
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001544}
1545
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001546/* Rate Control callbacks */
Johannes Berg4b7679a2008-09-18 18:14:18 +02001547static void ath_tx_status(void *priv, struct ieee80211_supported_band *sband,
1548 struct ieee80211_sta *sta, void *priv_sta,
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001549 struct sk_buff *skb)
1550{
1551 struct ath_softc *sc = priv;
1552 struct ath_tx_info_priv *tx_info_priv;
1553 struct ath_node *an;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001554 struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
1555 struct ieee80211_hdr *hdr;
1556 __le16 fc;
1557
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001558 hdr = (struct ieee80211_hdr *)skb->data;
1559 fc = hdr->frame_control;
Johannes Berge6a98542008-10-21 12:40:02 +02001560 /* XXX: UGLY HACK!! */
1561 tx_info_priv = (struct ath_tx_info_priv *)tx_info->control.vif;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001562
Sujithb5aa9bf2008-10-29 10:13:31 +05301563 an = (struct ath_node *)sta->drv_priv;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001564
Johannes Berge6a98542008-10-21 12:40:02 +02001565 if (tx_info_priv == NULL)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001566 return;
Johannes Berge6a98542008-10-21 12:40:02 +02001567
1568 if (an && priv_sta && ieee80211_is_data(fc))
Johannes Berg4b7679a2008-09-18 18:14:18 +02001569 ath_rate_tx_complete(sc, an, priv_sta, tx_info_priv);
Johannes Berge6a98542008-10-21 12:40:02 +02001570
1571 kfree(tx_info_priv);
1572 tx_info->control.vif = NULL;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001573}
1574
Johannes Berge6a98542008-10-21 12:40:02 +02001575static void ath_get_rate(void *priv, struct ieee80211_sta *sta, void *priv_sta,
1576 struct ieee80211_tx_rate_control *txrc)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001577{
Johannes Berge6a98542008-10-21 12:40:02 +02001578 struct ieee80211_supported_band *sband = txrc->sband;
1579 struct sk_buff *skb = txrc->skb;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001580 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
Johannes Berg4b7679a2008-09-18 18:14:18 +02001581 struct ath_softc *sc = priv;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001582 struct ieee80211_hw *hw = sc->hw;
1583 struct ath_tx_info_priv *tx_info_priv;
Johannes Berg4b7679a2008-09-18 18:14:18 +02001584 struct ath_rate_node *ath_rc_priv = priv_sta;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001585 struct ath_node *an;
1586 struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
Sujithccc75c52008-10-29 10:18:14 +05301587 int is_probe = FALSE;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001588 s8 lowest_idx;
1589 __le16 fc = hdr->frame_control;
1590 u8 *qc, tid;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001591
1592 DPRINTF(sc, ATH_DBG_RATE, "%s\n", __func__);
1593
Johannes Berge6a98542008-10-21 12:40:02 +02001594 /* allocate driver private area of tx_info, XXX: UGLY HACK! */
1595 tx_info->control.vif = kzalloc(sizeof(*tx_info_priv), GFP_ATOMIC);
1596 tx_info_priv = (struct ath_tx_info_priv *)tx_info->control.vif;
1597 ASSERT(tx_info_priv != NULL);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001598
Johannes Berg4b7679a2008-09-18 18:14:18 +02001599 lowest_idx = rate_lowest_index(sband, sta);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001600 tx_info_priv->min_rate = (sband->bitrates[lowest_idx].bitrate * 2) / 10;
1601 /* lowest rate for management and multicast/broadcast frames */
1602 if (!ieee80211_is_data(fc) ||
Sujithdc2222a2008-08-14 13:26:55 +05301603 is_multicast_ether_addr(hdr->addr1) || !sta) {
Johannes Berge6a98542008-10-21 12:40:02 +02001604 tx_info->control.rates[0].idx = lowest_idx;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001605 return;
1606 }
1607
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001608 /* Find tx rate for unicast frames */
1609 ath_rate_findrate(sc, ath_rc_priv,
1610 ATH_11N_TXMAXTRY, 4,
1611 ATH_RC_PROBE_ALLOWED,
1612 tx_info_priv->rcs,
1613 &is_probe,
1614 false);
Johannes Berge6a98542008-10-21 12:40:02 +02001615#if 0
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001616 if (is_probe)
Johannes Berg4b7679a2008-09-18 18:14:18 +02001617 sel->probe_idx = ath_rc_priv->tx_ratectrl.probe_rate;
Johannes Berge6a98542008-10-21 12:40:02 +02001618#endif
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001619
1620 /* Ratecontrol sometimes returns invalid rate index */
1621 if (tx_info_priv->rcs[0].rix != 0xff)
1622 ath_rc_priv->prev_data_rix = tx_info_priv->rcs[0].rix;
1623 else
1624 tx_info_priv->rcs[0].rix = ath_rc_priv->prev_data_rix;
1625
Johannes Berge6a98542008-10-21 12:40:02 +02001626 tx_info->control.rates[0].idx = tx_info_priv->rcs[0].rix;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001627
1628 /* Check if aggregation has to be enabled for this tid */
1629
Johannes Bergae5eb022008-10-14 16:58:37 +02001630 if (hw->conf.ht.enabled) {
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001631 if (ieee80211_is_data_qos(fc)) {
1632 qc = ieee80211_get_qos_ctl(hdr);
1633 tid = qc[0] & 0xf;
Sujithb5aa9bf2008-10-29 10:13:31 +05301634 an = (struct ath_node *)sta->drv_priv;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001635
Sujithccc75c52008-10-29 10:18:14 +05301636 if(ath_tx_aggr_check(sc, an, tid))
1637 ieee80211_start_tx_ba_session(hw, hdr->addr1, tid);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001638 }
1639 }
1640}
1641
Johannes Berg4b7679a2008-09-18 18:14:18 +02001642static void ath_rate_init(void *priv, struct ieee80211_supported_band *sband,
1643 struct ieee80211_sta *sta, void *priv_sta)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001644{
Johannes Berg4b7679a2008-09-18 18:14:18 +02001645 struct ath_softc *sc = priv;
Sujithdc2222a2008-08-14 13:26:55 +05301646 struct ath_rate_node *ath_rc_priv = priv_sta;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001647 int i, j = 0;
1648
Sujith7b4d2732008-11-18 09:04:00 +05301649 for (i = 0; i < sband->n_bitrates; i++) {
1650 if (sta->supp_rates[sband->band] & BIT(i)) {
1651 ath_rc_priv->neg_rates.rs_rates[j]
1652 = (sband->bitrates[i].bitrate * 2) / 10;
1653 j++;
1654 }
1655 }
1656 ath_rc_priv->neg_rates.rs_nrates = j;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001657
Sujitha4510bf2008-10-23 12:15:19 +05301658 if (sta->ht_cap.ht_supported) {
Sujith7b4d2732008-11-18 09:04:00 +05301659 for (i = 0, j = 0; i < 77; i++) {
Johannes Bergae5eb022008-10-14 16:58:37 +02001660 if (sta->ht_cap.mcs.rx_mask[i/8] & (1<<(i%8)))
Sujithdc2222a2008-08-14 13:26:55 +05301661 ath_rc_priv->neg_ht_rates.rs_rates[j++] = i;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001662 if (j == ATH_RATE_MAX)
1663 break;
1664 }
Sujithdc2222a2008-08-14 13:26:55 +05301665 ath_rc_priv->neg_ht_rates.rs_nrates = j;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001666 }
Sujith7b4d2732008-11-18 09:04:00 +05301667
Sujith5ddfac32008-11-18 09:06:44 +05301668 ath_rc_init(sc, priv_sta, sband, sta);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001669}
1670
Johannes Berg4b7679a2008-09-18 18:14:18 +02001671static void *ath_rate_alloc(struct ieee80211_hw *hw, struct dentry *debugfsdir)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001672{
Johannes Berg4b7679a2008-09-18 18:14:18 +02001673 return hw->priv;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001674}
1675
1676static void ath_rate_free(void *priv)
1677{
1678 return;
1679}
1680
Johannes Berg4b7679a2008-09-18 18:14:18 +02001681static void *ath_rate_alloc_sta(void *priv, struct ieee80211_sta *sta, gfp_t gfp)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001682{
1683 struct ath_softc *sc = priv;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001684 struct ath_rate_node *rate_priv;
1685
Sujithfe605942008-11-18 09:03:36 +05301686 rate_priv = kzalloc(sizeof(struct ath_rate_node), gfp);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001687 if (!rate_priv) {
Sujithdc2222a2008-08-14 13:26:55 +05301688 DPRINTF(sc, ATH_DBG_FATAL,
1689 "%s: Unable to allocate private rc structure\n",
1690 __func__);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001691 return NULL;
1692 }
Sujithfe605942008-11-18 09:03:36 +05301693
Sujithfe605942008-11-18 09:03:36 +05301694 rate_priv->asc = sc->sc_rc;
Sujithfe605942008-11-18 09:03:36 +05301695 rate_priv->rssi_down_time = jiffies_to_msecs(jiffies);
Sujithdc2222a2008-08-14 13:26:55 +05301696
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001697 return rate_priv;
1698}
1699
Johannes Berg4b7679a2008-09-18 18:14:18 +02001700static void ath_rate_free_sta(void *priv, struct ieee80211_sta *sta,
1701 void *priv_sta)
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001702{
1703 struct ath_rate_node *rate_priv = priv_sta;
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001704
Sujithfe605942008-11-18 09:03:36 +05301705 kfree(rate_priv);
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001706}
1707
1708static struct rate_control_ops ath_rate_ops = {
1709 .module = NULL,
1710 .name = "ath9k_rate_control",
1711 .tx_status = ath_tx_status,
1712 .get_rate = ath_get_rate,
1713 .rate_init = ath_rate_init,
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001714 .alloc = ath_rate_alloc,
1715 .free = ath_rate_free,
1716 .alloc_sta = ath_rate_alloc_sta,
Johannes Berg4b7679a2008-09-18 18:14:18 +02001717 .free_sta = ath_rate_free_sta,
Luis R. Rodriguezf078f202008-08-04 00:16:41 -07001718};
1719
1720int ath_rate_control_register(void)
1721{
1722 return ieee80211_rate_control_register(&ath_rate_ops);
1723}
1724
1725void ath_rate_control_unregister(void)
1726{
1727 ieee80211_rate_control_unregister(&ath_rate_ops);
1728}
1729