rc.c 49.4 KB
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/*
 * Copyright (c) 2004 Video54 Technologies, Inc.
 * Copyright (c) 2004-2008 Atheros Communications, Inc.
 *
 * Permission to use, copy, modify, and/or distribute this software for any
 * purpose with or without fee is hereby granted, provided that the above
 * copyright notice and this permission notice appear in all copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 */

#include "core.h"

static struct ath_rate_table ar5416_11na_ratetable = {
	42,
	{
S
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23
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 6000, /* 6 Mb */
24 25
			5400, 0x0b, 0x00, 12,
			0, 2, 1, 0, 0, 0, 0, 0 },
S
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26
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 9000, /* 9 Mb */
27 28
			7800,  0x0f, 0x00, 18,
			0, 3, 1, 1, 1, 1, 1, 0 },
S
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29
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 12000, /* 12 Mb */
30 31
			10000, 0x0a, 0x00, 24,
			2, 4, 2, 2, 2, 2, 2, 0 },
S
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32
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 18000, /* 18 Mb */
33 34
			13900, 0x0e, 0x00, 36,
			2, 6,  2, 3, 3, 3, 3, 0 },
S
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35
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 24000, /* 24 Mb */
36 37
			17300, 0x09, 0x00, 48,
			4, 10, 3, 4, 4, 4, 4, 0 },
S
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38
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 36000, /* 36 Mb */
39 40
			23000, 0x0d, 0x00, 72,
			4, 14, 3, 5, 5, 5, 5, 0 },
S
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41
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 48000, /* 48 Mb */
42 43
			27400, 0x08, 0x00, 96,
			4, 20, 3, 6, 6, 6, 6, 0 },
S
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44
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 54000, /* 54 Mb */
45 46
			29300, 0x0c, 0x00, 108,
			4, 23, 3, 7, 7, 7, 7, 0 },
S
Sujith 已提交
47
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 6500, /* 6.5 Mb */
48 49
			6400, 0x80, 0x00, 0,
			0, 2, 3, 8, 24, 8, 24, 3216 },
S
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50
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 13000, /* 13 Mb */
51 52
			12700, 0x81, 0x00, 1,
			2, 4, 3, 9, 25, 9, 25, 6434 },
S
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53
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 19500, /* 19.5 Mb */
54 55
			18800, 0x82, 0x00, 2,
			2, 6, 3, 10, 26, 10, 26, 9650 },
S
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56
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 26000, /* 26 Mb */
57 58
			25000, 0x83, 0x00, 3,
			4, 10, 3, 11, 27, 11, 27, 12868 },
S
Sujith 已提交
59
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 39000, /* 39 Mb */
60 61
			36700, 0x84, 0x00, 4,
			4, 14, 3, 12, 28, 12, 28, 19304 },
S
Sujith 已提交
62
		{ INVALID, VALID_20, WLAN_RC_PHY_HT_20_SS, 52000, /* 52 Mb */
63 64
			48100, 0x85, 0x00, 5,
			4, 20, 3, 13, 29, 13, 29, 25740 },
S
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65
		{ INVALID, VALID_20, WLAN_RC_PHY_HT_20_SS, 58500, /* 58.5 Mb */
66 67
			53500, 0x86, 0x00, 6,
			4, 23, 3, 14, 30, 14, 30,  28956 },
S
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68
		{ INVALID, VALID_20, WLAN_RC_PHY_HT_20_SS, 65000, /* 65 Mb */
69 70
			59000, 0x87, 0x00, 7,
			4, 25, 3, 15, 31, 15, 32, 32180 },
S
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71
		{ INVALID, INVALID, WLAN_RC_PHY_HT_20_DS, 13000, /* 13 Mb */
72 73
			12700, 0x88, 0x00,
			8, 0, 2, 3, 16, 33, 16, 33, 6430 },
S
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74
		{ INVALID, INVALID, WLAN_RC_PHY_HT_20_DS, 26000, /* 26 Mb */
75 76
			24800, 0x89, 0x00, 9,
			2, 4, 3, 17, 34, 17, 34, 12860 },
S
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77
		{ INVALID, INVALID, WLAN_RC_PHY_HT_20_DS, 39000, /* 39 Mb */
78 79
			36600, 0x8a, 0x00, 10,
			2, 6, 3, 18, 35, 18, 35, 19300 },
S
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80
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 52000, /* 52 Mb */
81 82
			48100, 0x8b, 0x00, 11,
			4, 10, 3, 19, 36, 19, 36, 25736 },
S
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83
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 78000, /* 78 Mb */
84 85
			69500, 0x8c, 0x00, 12,
			4, 14, 3, 20, 37, 20, 37, 38600 },
S
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86
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 104000, /* 104 Mb */
87 88
			89500, 0x8d, 0x00, 13,
			4, 20, 3, 21, 38, 21, 38, 51472 },
S
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89
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 117000, /* 117 Mb */
90 91
			98900, 0x8e, 0x00, 14,
			4, 23, 3, 22, 39, 22, 39, 57890 },
S
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92
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 130000, /* 130 Mb */
93 94
			108300, 0x8f, 0x00, 15,
			4, 25, 3, 23, 40, 23, 41, 64320 },
S
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95
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 13500, /* 13.5 Mb */
96 97
			13200, 0x80, 0x00, 0,
			0, 2, 3, 8, 24, 24, 24, 6684 },
S
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98
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 27500, /* 27.0 Mb */
99 100
			25900, 0x81, 0x00, 1,
			2, 4, 3, 9, 25, 25, 25, 13368 },
S
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101
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 40500, /* 40.5 Mb */
102 103
			38600, 0x82, 0x00, 2,
			2, 6, 3, 10, 26, 26, 26, 20052 },
S
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104
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 54000, /* 54 Mb */
105 106
			49800, 0x83, 0x00, 3,
			4, 10, 3, 11, 27, 27, 27, 26738 },
S
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107
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 81500, /* 81 Mb */
108 109
			72200, 0x84, 0x00, 4,
			4, 14, 3, 12, 28, 28, 28, 40104 },
S
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110
		{ INVALID, VALID_40, WLAN_RC_PHY_HT_40_SS, 108000, /* 108 Mb */
111 112
			92900, 0x85, 0x00, 5,
			4, 20, 3, 13, 29, 29, 29, 53476 },
S
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113
		{ INVALID, VALID_40, WLAN_RC_PHY_HT_40_SS, 121500, /* 121.5 Mb */
114 115
			102700, 0x86, 0x00, 6,
			4, 23, 3, 14, 30, 30, 30, 60156 },
S
Sujith 已提交
116
		{ INVALID, VALID_40, WLAN_RC_PHY_HT_40_SS, 135000, /* 135 Mb */
117 118
			112000, 0x87, 0x00, 7,
			4, 25, 3, 15, 31, 32, 32, 66840 },
S
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119
		{ INVALID, VALID_40, WLAN_RC_PHY_HT_40_SS_HGI, 150000, /* 150 Mb */
120 121
			122000, 0x87, 0x00, 7,
			4, 25, 3, 15, 31, 32, 32, 74200 },
S
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122
		{ INVALID, INVALID, WLAN_RC_PHY_HT_40_DS, 27000, /* 27 Mb */
123 124
			25800, 0x88, 0x00, 8,
			0, 2, 3, 16, 33, 33, 33, 13360 },
S
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125
		{ INVALID, INVALID, WLAN_RC_PHY_HT_40_DS, 54000, /* 54 Mb */
126 127
			49800, 0x89, 0x00, 9,
			2, 4, 3, 17, 34, 34, 34, 26720 },
S
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128
		{ INVALID, INVALID, WLAN_RC_PHY_HT_40_DS, 81000, /* 81 Mb */
129 130
			71900, 0x8a, 0x00, 10,
			2, 6, 3, 18, 35, 35, 35, 40080 },
S
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131
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 108000, /* 108 Mb */
132 133
			92500, 0x8b, 0x00, 11,
			4, 10, 3, 19, 36, 36, 36, 53440 },
S
Sujith 已提交
134
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 162000, /* 162 Mb */
135 136
			130300, 0x8c, 0x00, 12,
			4, 14, 3, 20, 37, 37, 37, 80160 },
S
Sujith 已提交
137
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 216000, /* 216 Mb */
138 139
			162800, 0x8d, 0x00, 13,
			4, 20, 3, 21, 38, 38, 38, 106880 },
S
Sujith 已提交
140
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 243000, /* 243 Mb */
141 142
			178200, 0x8e, 0x00, 14,
			4, 23, 3, 22, 39, 39, 39, 120240 },
S
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143
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 270000, /* 270 Mb */
144 145
			192100, 0x8f, 0x00, 15,
			4, 25, 3, 23, 40, 41, 41, 133600 },
S
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146
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS_HGI, 300000, /* 300 Mb */
147 148 149 150 151 152 153 154 155 156 157 158 159 160
			207000, 0x8f, 0x00, 15,
			4, 25, 3, 23, 40, 41, 41, 148400 },
	},
	50,  /* probe interval */
	50,  /* rssi reduce interval */
	WLAN_RC_HT_FLAG,  /* Phy rates allowed initially */
};

/* 4ms frame limit not used for NG mode.  The values filled
 * for HT are the 64K max aggregate limit */

static struct ath_rate_table ar5416_11ng_ratetable = {
	46,
	{
S
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161
		{ VALID_ALL, VALID_ALL, WLAN_RC_PHY_CCK, 1000, /* 1 Mb */
162 163
			900, 0x1b, 0x00, 2,
			0, 0, 1, 0, 0, 0, 0, 0 },
S
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164
		{ VALID_ALL, VALID_ALL, WLAN_RC_PHY_CCK, 2000, /* 2 Mb */
165 166
			1900, 0x1a, 0x04, 4,
			1, 1, 1, 1, 1, 1, 1, 0 },
S
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167
		{ VALID_ALL, VALID_ALL, WLAN_RC_PHY_CCK, 5500, /* 5.5 Mb */
168 169
			4900, 0x19, 0x04, 11,
			2, 2, 2, 2, 2, 2, 2, 0 },
S
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170
		{ VALID_ALL, VALID_ALL, WLAN_RC_PHY_CCK, 11000, /* 11 Mb */
171 172
			8100, 0x18, 0x04, 22,
			3, 3, 2, 3, 3, 3, 3, 0 },
S
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173
		{ INVALID, INVALID, WLAN_RC_PHY_OFDM, 6000, /* 6 Mb */
174 175
			5400, 0x0b, 0x00, 12,
			4, 2, 1, 4, 4, 4, 4, 0 },
S
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176
		{ INVALID, INVALID, WLAN_RC_PHY_OFDM, 9000, /* 9 Mb */
177 178
			7800, 0x0f, 0x00, 18,
			4, 3, 1, 5, 5, 5, 5, 0 },
S
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179
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 12000, /* 12 Mb */
180 181
			10100, 0x0a, 0x00, 24,
			6, 4, 1, 6, 6, 6, 6, 0 },
S
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182
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 18000, /* 18 Mb */
183 184
			14100,  0x0e, 0x00, 36,
			6, 6, 2, 7, 7, 7, 7, 0 },
S
Sujith 已提交
185
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 24000, /* 24 Mb */
186 187
			17700, 0x09, 0x00, 48,
			8, 10, 3, 8, 8, 8, 8, 0 },
S
Sujith 已提交
188
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 36000, /* 36 Mb */
189 190
			23700, 0x0d, 0x00, 72,
			8, 14, 3, 9, 9, 9, 9, 0 },
S
Sujith 已提交
191
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 48000, /* 48 Mb */
192 193
			27400, 0x08, 0x00, 96,
			8, 20, 3, 10, 10, 10, 10, 0 },
S
Sujith 已提交
194
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 54000, /* 54 Mb */
195 196
			30900, 0x0c, 0x00, 108,
			8, 23, 3, 11, 11, 11, 11, 0 },
S
Sujith 已提交
197
		{ INVALID, INVALID, WLAN_RC_PHY_HT_20_SS, 6500, /* 6.5 Mb */
198 199
			6400, 0x80, 0x00, 0,
			4, 2, 3, 12, 28, 12, 28, 3216 },
S
Sujith 已提交
200
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 13000, /* 13 Mb */
201 202
			12700, 0x81, 0x00, 1,
			6, 4, 3, 13, 29, 13, 29, 6434 },
S
Sujith 已提交
203
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 19500, /* 19.5 Mb */
204 205
			18800, 0x82, 0x00, 2,
			6, 6, 3, 14, 30, 14, 30, 9650 },
S
Sujith 已提交
206
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 26000, /* 26 Mb */
207 208
			25000, 0x83, 0x00, 3,
			8, 10, 3, 15, 31, 15, 31, 12868 },
S
Sujith 已提交
209
		{ VALID_20, VALID_20, WLAN_RC_PHY_HT_20_SS, 39000, /* 39 Mb */
210 211
			36700, 0x84, 0x00, 4,
			8, 14, 3, 16, 32, 16, 32, 19304 },
S
Sujith 已提交
212
		{ INVALID, VALID_20, WLAN_RC_PHY_HT_20_SS, 52000, /* 52 Mb */
213 214
			48100, 0x85, 0x00, 5,
			8, 20, 3, 17, 33, 17, 33, 25740 },
S
Sujith 已提交
215
		{ INVALID,  VALID_20, WLAN_RC_PHY_HT_20_SS, 58500, /* 58.5 Mb */
216 217
			53500, 0x86, 0x00, 6,
			8, 23, 3, 18, 34, 18, 34, 28956 },
S
Sujith 已提交
218
		{ INVALID, VALID_20, WLAN_RC_PHY_HT_20_SS, 65000, /* 65 Mb */
219 220
			59000, 0x87, 0x00, 7,
			8, 25, 3, 19, 35, 19, 36, 32180 },
S
Sujith 已提交
221
		{ INVALID, INVALID, WLAN_RC_PHY_HT_20_DS, 13000, /* 13 Mb */
222 223
			12700, 0x88, 0x00, 8,
			4, 2, 3, 20, 37, 20, 37, 6430 },
S
Sujith 已提交
224
		{ INVALID, INVALID, WLAN_RC_PHY_HT_20_DS, 26000, /* 26 Mb */
225 226
			24800, 0x89, 0x00, 9,
			6, 4, 3, 21, 38, 21, 38, 12860 },
S
Sujith 已提交
227
		{ INVALID, INVALID, WLAN_RC_PHY_HT_20_DS, 39000, /* 39 Mb */
228 229
			36600, 0x8a, 0x00, 10,
			6, 6, 3, 22, 39, 22, 39, 19300 },
S
Sujith 已提交
230
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 52000, /* 52 Mb */
231 232
			48100, 0x8b, 0x00, 11,
			8, 10, 3, 23, 40, 23, 40, 25736 },
S
Sujith 已提交
233
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 78000, /* 78 Mb */
234 235
			69500, 0x8c, 0x00, 12,
			8, 14, 3, 24, 41, 24, 41, 38600 },
S
Sujith 已提交
236
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 104000, /* 104 Mb */
237 238
			89500, 0x8d, 0x00, 13,
			8, 20, 3, 25, 42, 25, 42, 51472 },
S
Sujith 已提交
239
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 117000, /* 117 Mb */
240 241
			98900, 0x8e, 0x00, 14,
			8, 23, 3, 26, 43, 26, 44, 57890 },
S
Sujith 已提交
242
		{ VALID_20, INVALID, WLAN_RC_PHY_HT_20_DS, 130000, /* 130 Mb */
243 244
			108300, 0x8f, 0x00, 15,
			8, 25, 3, 27, 44, 27, 45, 64320 },
S
Sujith 已提交
245
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 13500, /* 13.5 Mb */
246 247
			13200, 0x80, 0x00, 0,
			8, 2, 3, 12, 28, 28, 28, 6684 },
S
Sujith 已提交
248
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 27500, /* 27.0 Mb */
249 250
			25900, 0x81, 0x00, 1,
			8, 4, 3, 13, 29, 29, 29, 13368 },
S
Sujith 已提交
251
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 40500, /* 40.5 Mb */
252 253
			38600, 0x82, 0x00, 2,
			8, 6, 3, 14, 30, 30, 30, 20052 },
S
Sujith 已提交
254
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 54000, /* 54 Mb */
255 256
			49800, 0x83, 0x00, 3,
			8, 10, 3, 15, 31, 31, 31, 26738 },
S
Sujith 已提交
257
		{ VALID_40, VALID_40, WLAN_RC_PHY_HT_40_SS, 81500, /* 81 Mb */
258 259
			72200, 0x84, 0x00, 4,
			8, 14, 3, 16, 32, 32, 32, 40104 },
S
Sujith 已提交
260
		{ INVALID, VALID_40, WLAN_RC_PHY_HT_40_SS, 108000, /* 108 Mb */
261 262
			92900, 0x85, 0x00, 5,
			8, 20, 3, 17, 33, 33, 33, 53476 },
S
Sujith 已提交
263
		{ INVALID,  VALID_40, WLAN_RC_PHY_HT_40_SS, 121500, /* 121.5 Mb */
264 265
			102700, 0x86, 0x00, 6,
			8, 23, 3, 18, 34, 34, 34, 60156 },
S
Sujith 已提交
266
		{ INVALID, VALID_40, WLAN_RC_PHY_HT_40_SS, 135000, /* 135 Mb */
267 268
			112000, 0x87, 0x00, 7,
			8, 23, 3, 19, 35, 36, 36, 66840 },
S
Sujith 已提交
269
		{ INVALID, VALID_40, WLAN_RC_PHY_HT_40_SS_HGI, 150000, /* 150 Mb */
270 271
			122000, 0x87, 0x00, 7,
			8, 25, 3, 19, 35, 36, 36, 74200 },
S
Sujith 已提交
272
		{ INVALID, INVALID, WLAN_RC_PHY_HT_40_DS, 27000, /* 27 Mb */
273 274
			25800, 0x88, 0x00, 8,
			8, 2, 3, 20, 37, 37, 37, 13360 },
S
Sujith 已提交
275
		{ INVALID, INVALID, WLAN_RC_PHY_HT_40_DS, 54000, /* 54 Mb */
276 277
			49800, 0x89, 0x00, 9,
			8, 4, 3, 21, 38, 38, 38, 26720 },
S
Sujith 已提交
278
		{ INVALID, INVALID, WLAN_RC_PHY_HT_40_DS, 81000, /* 81 Mb */
279 280
			71900, 0x8a, 0x00, 10,
			8, 6, 3, 22, 39, 39, 39, 40080 },
S
Sujith 已提交
281
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 108000, /* 108 Mb */
282 283
			92500, 0x8b, 0x00, 11,
			8, 10, 3, 23, 40, 40, 40, 53440 },
S
Sujith 已提交
284
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 162000, /* 162 Mb */
285 286
			130300, 0x8c, 0x00, 12,
			8, 14, 3, 24, 41, 41, 41, 80160 },
S
Sujith 已提交
287
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 216000, /* 216 Mb */
288 289
			162800, 0x8d, 0x00, 13,
			8, 20, 3, 25, 42, 42, 42, 106880 },
S
Sujith 已提交
290
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 243000, /* 243 Mb */
291 292
			178200, 0x8e, 0x00, 14,
			8, 23, 3, 26, 43, 43, 43, 120240 },
S
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293
		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS, 270000, /* 270 Mb */
294 295
			192100, 0x8f, 0x00, 15,
			8, 23, 3, 27, 44, 45, 45, 133600 },
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		{ VALID_40, INVALID, WLAN_RC_PHY_HT_40_DS_HGI, 300000, /* 300 Mb */
297 298 299 300 301 302 303 304 305 306 307
			207000, 0x8f, 0x00, 15,
			8, 25, 3, 27, 44, 45, 45, 148400 },
		},
	50,  /* probe interval */
	50,  /* rssi reduce interval */
	WLAN_RC_HT_FLAG,  /* Phy rates allowed initially */
};

static struct ath_rate_table ar5416_11a_ratetable = {
	8,
	{
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 6000, /* 6 Mb */
309 310
			5400, 0x0b, 0x00, (0x80|12),
			0, 2, 1, 0, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 9000, /* 9 Mb */
312 313
			7800, 0x0f, 0x00, 18,
			0, 3, 1, 1, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 12000, /* 12 Mb */
315 316
			10000, 0x0a, 0x00, (0x80|24),
			2, 4, 2, 2, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 18000, /* 18 Mb */
318 319
			13900, 0x0e, 0x00, 36,
			2, 6, 2, 3, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 24000, /* 24 Mb */
321 322
			17300, 0x09, 0x00, (0x80|48),
			4, 10, 3, 4, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 36000, /* 36 Mb */
324 325
			23000, 0x0d, 0x00, 72,
			4, 14, 3, 5, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 48000, /* 48 Mb */
327 328
			27400, 0x08, 0x00, 96,
			4, 19, 3, 6, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 54000, /* 54 Mb */
330 331 332 333 334 335 336 337 338 339 340
			29300, 0x0c, 0x00, 108,
			4, 23, 3, 7, 0 },
	},
	50,  /* probe interval */
	50,  /* rssi reduce interval */
	0,   /* Phy rates allowed initially */
};

static struct ath_rate_table ar5416_11g_ratetable = {
	12,
	{
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 1000, /* 1 Mb */
342 343
			900, 0x1b, 0x00, 2,
			0, 0, 1, 0, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 2000, /* 2 Mb */
345 346
			1900, 0x1a, 0x04, 4,
			1, 1, 1, 1, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 5500, /* 5.5 Mb */
348 349
			4900, 0x19, 0x04, 11,
			2, 2, 2, 2, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 11000, /* 11 Mb */
351 352
			8100, 0x18, 0x04, 22,
			3, 3, 2, 3, 0 },
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		{ INVALID, INVALID, WLAN_RC_PHY_OFDM, 6000, /* 6 Mb */
354 355
			5400, 0x0b, 0x00, 12,
			4, 2, 1, 4, 0 },
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		{ INVALID, INVALID, WLAN_RC_PHY_OFDM, 9000, /* 9 Mb */
357 358
			7800, 0x0f, 0x00, 18,
			4, 3, 1, 5, 0 },
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359
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 12000, /* 12 Mb */
360 361
			10000, 0x0a, 0x00, 24,
			6, 4, 1, 6, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 18000, /* 18 Mb */
363 364
			13900, 0x0e, 0x00, 36,
			6, 6, 2, 7, 0 },
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365
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 24000, /* 24 Mb */
366 367
			17300, 0x09, 0x00, 48,
			8, 10, 3, 8, 0 },
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368
		{ VALID, VALID, WLAN_RC_PHY_OFDM, 36000, /* 36 Mb */
369 370
			23000, 0x0d, 0x00, 72,
			8, 14, 3, 9, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 48000, /* 48 Mb */
372 373
			27400, 0x08, 0x00, 96,
			8, 19, 3, 10, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_OFDM, 54000, /* 54 Mb */
375 376 377 378 379 380 381 382 383 384 385
			29300, 0x0c, 0x00, 108,
			8, 23, 3, 11, 0 },
	},
	50,  /* probe interval */
	50,  /* rssi reduce interval */
	0,   /* Phy rates allowed initially */
};

static struct ath_rate_table ar5416_11b_ratetable = {
	4,
	{
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 1000, /* 1 Mb */
387 388
			900, 0x1b,  0x00, (0x80|2),
			0, 0, 1, 0, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 2000, /* 2 Mb */
390 391
			1800, 0x1a, 0x04, (0x80|4),
			1, 1, 1, 1, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 5500, /* 5.5 Mb */
393 394
			4300, 0x19, 0x04, (0x80|11),
			1, 2, 2, 2, 0 },
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		{ VALID, VALID, WLAN_RC_PHY_CCK, 11000, /* 11 Mb */
396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422
			7100, 0x18, 0x04, (0x80|22),
			1, 4, 100, 3, 0 },
	},
	100, /* probe interval */
	100, /* rssi reduce interval */
	0,   /* Phy rates allowed initially */
};

static inline int8_t median(int8_t a, int8_t b, int8_t c)
{
	if (a >= b) {
		if (b >= c)
			return b;
		else if (a > c)
			return c;
		else
			return a;
	} else {
		if (a >= c)
			return a;
		else if (b >= c)
			return c;
		else
			return b;
	}
}

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static void ath_rc_sort_validrates(struct ath_rate_table *rate_table,
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				   struct ath_rate_priv *ath_rc_priv)
425 426 427
{
	u8 i, j, idx, idx_next;

428
	for (i = ath_rc_priv->max_valid_rate - 1; i > 0; i--) {
429
		for (j = 0; j <= i-1; j++) {
430 431
			idx = ath_rc_priv->valid_rate_index[j];
			idx_next = ath_rc_priv->valid_rate_index[j+1];
432 433 434

			if (rate_table->info[idx].ratekbps >
				rate_table->info[idx_next].ratekbps) {
435 436
				ath_rc_priv->valid_rate_index[j] = idx_next;
				ath_rc_priv->valid_rate_index[j+1] = idx;
437 438 439 440 441
			}
		}
	}
}

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static void ath_rc_init_valid_txmask(struct ath_rate_priv *ath_rc_priv)
443 444 445
{
	u8 i;

446
	for (i = 0; i < ath_rc_priv->rate_table_size; i++)
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447
		ath_rc_priv->valid_rate_index[i] = 0;
448 449
}

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static inline void ath_rc_set_valid_txmask(struct ath_rate_priv *ath_rc_priv,
451 452
					   u8 index, int valid_tx_rate)
{
453
	ASSERT(index <= ath_rc_priv->rate_table_size);
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	ath_rc_priv->valid_rate_index[index] = valid_tx_rate ? 1 : 0;
455 456
}

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static inline int ath_rc_isvalid_txmask(struct ath_rate_priv *ath_rc_priv,
458 459
					u8 index)
{
460 461
	ASSERT(index <= ath_rc_priv->rate_table_size);
	return ath_rc_priv->valid_rate_index[index];
462 463
}

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static inline int ath_rc_get_nextvalid_txrate(struct ath_rate_table *rate_table,
					      struct ath_rate_priv *ath_rc_priv,
					      u8 cur_valid_txrate,
					      u8 *next_idx)
468 469 470
{
	u8 i;

471 472 473
	for (i = 0; i < ath_rc_priv->max_valid_rate - 1; i++) {
		if (ath_rc_priv->valid_rate_index[i] == cur_valid_txrate) {
			*next_idx = ath_rc_priv->valid_rate_index[i+1];
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			return 1;
475 476 477 478 479
		}
	}

	/* No more valid rates */
	*next_idx = 0;
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	return 0;
482 483 484 485 486 487
}

/* Return true only for single stream */

static int ath_rc_valid_phyrate(u32 phy, u32 capflag, int ignore_cw)
{
488
	if (WLAN_RC_PHY_HT(phy) && !(capflag & WLAN_RC_HT_FLAG))
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		return 0;
490
	if (WLAN_RC_PHY_DS(phy) && !(capflag & WLAN_RC_DS_FLAG))
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491
		return 0;
492
	if (WLAN_RC_PHY_SGI(phy) && !(capflag & WLAN_RC_SGI_FLAG))
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		return 0;
494 495
	if (!ignore_cw && WLAN_RC_PHY_HT(phy))
		if (WLAN_RC_PHY_40(phy) && !(capflag & WLAN_RC_40_FLAG))
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			return 0;
497
		if (!WLAN_RC_PHY_40(phy) && (capflag & WLAN_RC_40_FLAG))
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498 499
			return 0;
	return 1;
500 501 502
}

static inline int
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ath_rc_get_nextlowervalid_txrate(struct ath_rate_table *rate_table,
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				 struct ath_rate_priv *ath_rc_priv,
505 506 507 508
				 u8 cur_valid_txrate, u8 *next_idx)
{
	int8_t i;

509 510 511
	for (i = 1; i < ath_rc_priv->max_valid_rate ; i++) {
		if (ath_rc_priv->valid_rate_index[i] == cur_valid_txrate) {
			*next_idx = ath_rc_priv->valid_rate_index[i-1];
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			return 1;
513 514
		}
	}
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515

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	return 0;
517 518
}

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static u8 ath_rc_init_validrates(struct ath_rate_priv *ath_rc_priv,
				 struct ath_rate_table *rate_table,
				 u32 capflag)
522 523 524 525 526 527
{
	u8 i, hi = 0;
	u32 valid;

	for (i = 0; i < rate_table->rate_cnt; i++) {
		valid = (ath_rc_priv->single_stream ?
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			 rate_table->info[i].valid_single_stream :
			 rate_table->info[i].valid);
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		if (valid == 1) {
531 532 533
			u32 phy = rate_table->info[i].phy;
			u8 valid_rate_count = 0;

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			if (!ath_rc_valid_phyrate(phy, capflag, 0))
535 536
				continue;

537
			valid_rate_count = ath_rc_priv->valid_phy_ratecnt[phy];
538

539 540
			ath_rc_priv->valid_phy_rateidx[phy][valid_rate_count] = i;
			ath_rc_priv->valid_phy_ratecnt[phy] += 1;
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			ath_rc_set_valid_txmask(ath_rc_priv, i, 1);
542 543 544
			hi = A_MAX(hi, i);
		}
	}
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546 547 548
	return hi;
}

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static u8 ath_rc_setvalid_rates(struct ath_rate_priv *ath_rc_priv,
				struct ath_rate_table *rate_table,
				struct ath_rateset *rateset,
				u32 capflag)
553 554 555 556 557 558 559 560 561 562
{
	u8 i, j, hi = 0;

	/* Use intersection of working rates and valid rates */
	for (i = 0; i < rateset->rs_nrates; i++) {
		for (j = 0; j < rate_table->rate_cnt; j++) {
			u32 phy = rate_table->info[j].phy;
			u32 valid = (ath_rc_priv->single_stream ?
				rate_table->info[j].valid_single_stream :
				rate_table->info[j].valid);
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			u8 rate = rateset->rs_rates[i];
			u8 dot11rate = rate_table->info[j].dot11rate;
565 566 567

			/* We allow a rate only if its valid and the
			 * capflag matches one of the validity
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			 * (VALID/VALID_20/VALID_40) flags */
569

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570 571 572 573
			if (((rate & 0x7F) == (dot11rate & 0x7F)) &&
			    ((valid & WLAN_RC_CAP_MODE(capflag)) ==
			     WLAN_RC_CAP_MODE(capflag)) &&
			    !WLAN_RC_PHY_HT(phy)) {
574 575
				u8 valid_rate_count = 0;

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				if (!ath_rc_valid_phyrate(phy, capflag, 0))
577 578 579
					continue;

				valid_rate_count =
580
					ath_rc_priv->valid_phy_ratecnt[phy];
581

582
				ath_rc_priv->valid_phy_rateidx[phy]
583
					[valid_rate_count] = j;
584
				ath_rc_priv->valid_phy_ratecnt[phy] += 1;
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				ath_rc_set_valid_txmask(ath_rc_priv, j, 1);
586 587 588 589
				hi = A_MAX(hi, j);
			}
		}
	}
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591 592 593
	return hi;
}

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static u8 ath_rc_setvalid_htrates(struct ath_rate_priv *ath_rc_priv,
				  struct ath_rate_table *rate_table,
				  u8 *mcs_set, u32 capflag)
597
{
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	struct ath_rateset *rateset = (struct ath_rateset *)mcs_set;

600 601 602
	u8 i, j, hi = 0;

	/* Use intersection of working rates and valid rates */
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	for (i = 0; i < rateset->rs_nrates; i++) {
604 605 606
		for (j = 0; j < rate_table->rate_cnt; j++) {
			u32 phy = rate_table->info[j].phy;
			u32 valid = (ath_rc_priv->single_stream ?
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				     rate_table->info[j].valid_single_stream :
				     rate_table->info[j].valid);
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			u8 rate = rateset->rs_rates[i];
			u8 dot11rate = rate_table->info[j].dot11rate;
611

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			if (((rate & 0x7F) != (dot11rate & 0x7F)) ||
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613 614
			    !WLAN_RC_PHY_HT(phy) ||
			    !WLAN_RC_PHY_HT_VALID(valid, capflag))
615 616
				continue;

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617
			if (!ath_rc_valid_phyrate(phy, capflag, 0))
618 619
				continue;

620 621 622
			ath_rc_priv->valid_phy_rateidx[phy]
				[ath_rc_priv->valid_phy_ratecnt[phy]] = j;
			ath_rc_priv->valid_phy_ratecnt[phy] += 1;
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			ath_rc_set_valid_txmask(ath_rc_priv, j, 1);
624 625 626 627
			hi = A_MAX(hi, j);
		}
	}

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	return hi;
629 630 631
}

static u8 ath_rc_ratefind_ht(struct ath_softc *sc,
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			     struct ath_rate_priv *ath_rc_priv,
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			     struct ath_rate_table *rate_table,
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			     int probe_allowed, int *is_probing,
			     int is_retry)
636 637 638 639 640
{
	u32 dt, best_thruput, this_thruput, now_msec;
	u8 rate, next_rate, best_rate, maxindex, minindex;
	int8_t  rssi_last, rssi_reduce = 0, index = 0;

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	*is_probing = 0;
642

643 644 645
	rssi_last = median(ath_rc_priv->rssi_last,
			   ath_rc_priv->rssi_last_prev,
			   ath_rc_priv->rssi_last_prev2);
646 647 648 649 650 651 652 653 654 655 656

	/*
	 * Age (reduce) last ack rssi based on how old it is.
	 * The bizarre numbers are so the delta is 160msec,
	 * meaning we divide by 16.
	 *   0msec   <= dt <= 25msec:   don't derate
	 *   25msec  <= dt <= 185msec:  derate linearly from 0 to 10dB
	 *   185msec <= dt:             derate by 10dB
	 */

	now_msec = jiffies_to_msecs(jiffies);
657
	dt = now_msec - ath_rc_priv->rssi_time;
658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675

	if (dt >= 185)
		rssi_reduce = 10;
	else if (dt >= 25)
		rssi_reduce = (u8)((dt - 25) >> 4);

	/* Now reduce rssi_last by rssi_reduce */
	if (rssi_last < rssi_reduce)
		rssi_last = 0;
	else
		rssi_last -= rssi_reduce;

	/*
	 * Now look up the rate in the rssi table and return it.
	 * If no rates match then we return 0 (lowest rate)
	 */

	best_thruput = 0;
676
	maxindex = ath_rc_priv->max_valid_rate-1;
677 678 679 680 681 682 683 684 685 686 687

	minindex = 0;
	best_rate = minindex;

	/*
	 * Try the higher rate first. It will reduce memory moving time
	 * if we have very good channel characteristics.
	 */
	for (index = maxindex; index >= minindex ; index--) {
		u8 per_thres;

688 689
		rate = ath_rc_priv->valid_rate_index[index];
		if (rate > ath_rc_priv->rate_max_phy)
690 691 692 693 694 695 696 697 698 699 700 701 702
			continue;

		/*
		 * For TCP the average collision rate is around 11%,
		 * so we ignore PERs less than this.  This is to
		 * prevent the rate we are currently using (whose
		 * PER might be in the 10-15 range because of TCP
		 * collisions) looking worse than the next lower
		 * rate whose PER has decayed close to 0.  If we
		 * used to next lower rate, its PER would grow to
		 * 10-15 and we would be worse off then staying
		 * at the current rate.
		 */
703
		per_thres = ath_rc_priv->state[rate].per;
704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721
		if (per_thres < 12)
			per_thres = 12;

		this_thruput = rate_table->info[rate].user_ratekbps *
			(100 - per_thres);

		if (best_thruput <= this_thruput) {
			best_thruput = this_thruput;
			best_rate    = rate;
		}
	}

	rate = best_rate;

	/* if we are retrying for more than half the number
	 * of max retries, use the min rate for the next retry
	 */
	if (is_retry)
722
		rate = ath_rc_priv->valid_rate_index[minindex];
723

724
	ath_rc_priv->rssi_last_lookup = rssi_last;
725 726 727 728 729 730

	/*
	 * Must check the actual rate (ratekbps) to account for
	 * non-monoticity of 11g's rate table
	 */

731 732
	if (rate >= ath_rc_priv->rate_max_phy && probe_allowed) {
		rate = ath_rc_priv->rate_max_phy;
733 734 735 736

		/* Probe the next allowed phy state */
		/* FIXME:XXXX Check to make sure ratMax is checked properly */
		if (ath_rc_get_nextvalid_txrate(rate_table,
737 738
						ath_rc_priv, rate, &next_rate) &&
		    (now_msec - ath_rc_priv->probe_time >
739
		     rate_table->probe_interval) &&
740
		    (ath_rc_priv->hw_maxretry_pktcnt >= 1)) {
741
			rate = next_rate;
742 743 744
			ath_rc_priv->probe_rate = rate;
			ath_rc_priv->probe_time = now_msec;
			ath_rc_priv->hw_maxretry_pktcnt = 0;
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			*is_probing = 1;
746 747 748
		}
	}

749 750
	if (rate > (ath_rc_priv->rate_table_size - 1))
		rate = ath_rc_priv->rate_table_size - 1;
751 752

	ASSERT((rate_table->info[rate].valid && !ath_rc_priv->single_stream) ||
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	       (rate_table->info[rate].valid_single_stream &&
		ath_rc_priv->single_stream));
755 756 757 758

	return rate;
}

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static void ath_rc_rate_set_series(struct ath_rate_table *rate_table ,
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				   struct ieee80211_tx_rate *rate,
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761
				   u8 tries, u8 rix, int rtsctsenable)
762
{
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763 764 765 766 767 768 769 770 771 772 773
	rate->count = tries;
	rate->idx = rix;

	if (rtsctsenable)
		rate->flags |= IEEE80211_TX_RC_USE_RTS_CTS;
	if (WLAN_RC_PHY_40(rate_table->info[rix].phy))
		rate->flags |= IEEE80211_TX_RC_40_MHZ_WIDTH;
	if (WLAN_RC_PHY_SGI(rate_table->info[rix].phy))
		rate->flags |= IEEE80211_TX_RC_SHORT_GI;
	if (WLAN_RC_PHY_HT(rate_table->info[rix].phy))
		rate->flags |= IEEE80211_TX_RC_MCS;
774 775 776
}

static u8 ath_rc_rate_getidx(struct ath_softc *sc,
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			     struct ath_rate_priv *ath_rc_priv,
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778
			     struct ath_rate_table *rate_table,
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779 780
			     u8 rix, u16 stepdown,
			     u16 min_rate)
781 782 783 784 785 786 787
{
	u32 j;
	u8 nextindex;

	if (min_rate) {
		for (j = RATE_TABLE_SIZE; j > 0; j--) {
			if (ath_rc_get_nextlowervalid_txrate(rate_table,
788
						ath_rc_priv, rix, &nextindex))
789 790 791 792 793 794 795
				rix = nextindex;
			else
				break;
		}
	} else {
		for (j = stepdown; j > 0; j--) {
			if (ath_rc_get_nextlowervalid_txrate(rate_table,
796
						ath_rc_priv, rix, &nextindex))
797 798 799 800 801 802 803 804 805
				rix = nextindex;
			else
				break;
		}
	}
	return rix;
}

static void ath_rc_ratefind(struct ath_softc *sc,
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806 807
			    struct ath_rate_priv *ath_rc_priv,
			    int num_tries, int num_rates,
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			    struct ieee80211_tx_info *tx_info, int *is_probe,
809 810 811 812
			    int is_retry)
{
	u8 try_per_rate = 0, i = 0, rix, nrix;
	struct ath_rate_table *rate_table;
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	struct ieee80211_tx_rate *rates = tx_info->control.rates;
814

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815
	rate_table = sc->cur_rate_table;
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816
	rix = ath_rc_ratefind_ht(sc, ath_rc_priv, rate_table, 1,
S
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				 is_probe, is_retry);
818 819
	nrix = rix;

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820
	if (*is_probe) {
821 822 823
		/* set one try for probe rates. For the
		 * probes don't enable rts */
		ath_rc_rate_set_series(rate_table,
S
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824
			&rates[i++], 1, nrix, 0);
825 826 827 828 829 830

		try_per_rate = (num_tries/num_rates);
		/* Get the next tried/allowed rate. No RTS for the next series
		 * after the probe rate
		 */
		nrix = ath_rc_rate_getidx(sc,
S
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831
			ath_rc_priv, rate_table, nrix, 1, 0);
832
		ath_rc_rate_set_series(rate_table,
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833
			&rates[i++], try_per_rate, nrix, 0);
834 835 836 837
	} else {
		try_per_rate = (num_tries/num_rates);
		/* Set the choosen rate. No RTS for first series entry. */
		ath_rc_rate_set_series(rate_table,
S
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838
			&rates[i++], try_per_rate, nrix, 0);
839 840 841 842 843 844 845 846 847
	}

	/* Fill in the other rates for multirate retry */
	for ( ; i < num_rates; i++) {
		u8 try_num;
		u8 min_rate;

		try_num = ((i + 1) == num_rates) ?
			num_tries - (try_per_rate * i) : try_per_rate ;
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		min_rate = (((i + 1) == num_rates) && 0);
849 850

		nrix = ath_rc_rate_getidx(sc, ath_rc_priv,
S
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851
					  rate_table, nrix, 1, min_rate);
852 853
		/* All other rates in the series have RTS enabled */
		ath_rc_rate_set_series(rate_table,
S
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854
				       &rates[i], try_num, nrix, 1);
855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871
	}

	/*
	 * NB:Change rate series to enable aggregation when operating
	 * at lower MCS rates. When first rate in series is MCS2
	 * in HT40 @ 2.4GHz, series should look like:
	 *
	 * {MCS2, MCS1, MCS0, MCS0}.
	 *
	 * When first rate in series is MCS3 in HT20 @ 2.4GHz, series should
	 * look like:
	 *
	 * {MCS3, MCS2, MCS1, MCS1}
	 *
	 * So, set fourth rate in series to be same as third one for
	 * above conditions.
	 */
872
	if ((sc->hw->conf.channel->band == IEEE80211_BAND_2GHZ) &&
873
	    (conf_is_ht(&sc->hw->conf))) {
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874
		u8 dot11rate = rate_table->info[rix].dot11rate;
875 876 877
		u8 phy = rate_table->info[rix].phy;
		if (i == 4 &&
		    ((dot11rate == 2 && phy == WLAN_RC_PHY_HT_40_SS) ||
S
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878
		     (dot11rate == 3 && phy == WLAN_RC_PHY_HT_20_SS))) {
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879 880
			rates[3].idx = rates[2].idx;
			rates[3].flags = rates[2].flags;
881 882 883 884
		}
	}
}

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static bool ath_rc_update_per(struct ath_softc *sc,
			      struct ath_rate_table *rate_table,
			      struct ath_rate_priv *ath_rc_priv,
			      struct ath_tx_info_priv *tx_info_priv,
			      int tx_rate, int xretries, int retries,
			      u32 now_msec)
891
{
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892 893
	bool state_change = false;
	int count;
894 895 896 897 898 899 900 901 902 903 904 905 906 907
	u8 last_per;
	static u32 nretry_to_per_lookup[10] = {
		100 * 0 / 1,
		100 * 1 / 4,
		100 * 1 / 2,
		100 * 3 / 4,
		100 * 4 / 5,
		100 * 5 / 6,
		100 * 6 / 7,
		100 * 7 / 8,
		100 * 8 / 9,
		100 * 9 / 10
	};

908
	last_per = ath_rc_priv->state[tx_rate].per;
909 910 911

	if (xretries) {
		if (xretries == 1) {
912 913 914
			ath_rc_priv->state[tx_rate].per += 30;
			if (ath_rc_priv->state[tx_rate].per > 100)
				ath_rc_priv->state[tx_rate].per = 100;
915 916
		} else {
			/* xretries == 2 */
917
			count = ARRAY_SIZE(nretry_to_per_lookup);
918 919
			if (retries >= count)
				retries = count - 1;
S
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920

921
			/* new_PER = 7/8*old_PER + 1/8*(currentPER) */
922
			ath_rc_priv->state[tx_rate].per =
S
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923
				(u8)(last_per - (last_per >> 3) + (100 >> 3));
924 925 926 927
		}

		/* xretries == 1 or 2 */

928 929
		if (ath_rc_priv->probe_rate == tx_rate)
			ath_rc_priv->probe_rate = 0;
930

S
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931
	} else { /* xretries == 0 */
932
		count = ARRAY_SIZE(nretry_to_per_lookup);
933 934
		if (retries >= count)
			retries = count - 1;
S
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935

S
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936
		if (tx_info_priv->n_bad_frames) {
S
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937
			/* new_PER = 7/8*old_PER + 1/8*(currentPER)
938 939 940 941 942 943 944 945 946 947 948
			 * Assuming that n_frames is not 0.  The current PER
			 * from the retries is 100 * retries / (retries+1),
			 * since the first retries attempts failed, and the
			 * next one worked.  For the one that worked,
			 * n_bad_frames subframes out of n_frames wored,
			 * so the PER for that part is
			 * 100 * n_bad_frames / n_frames, and it contributes
			 * 100 * n_bad_frames / (n_frames * (retries+1)) to
			 * the above PER.  The expression below is a
			 * simplified version of the sum of these two terms.
			 */
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949 950 951 952 953 954 955 956 957 958 959
			if (tx_info_priv->n_frames > 0) {
				int n_frames, n_bad_frames;
				u8 cur_per, new_per;

				n_bad_frames = retries * tx_info_priv->n_frames +
					tx_info_priv->n_bad_frames;
				n_frames = tx_info_priv->n_frames * (retries + 1);
				cur_per = (100 * n_bad_frames / n_frames) >> 3;
				new_per = (u8)(last_per - (last_per >> 3) + cur_per);
				ath_rc_priv->state[tx_rate].per = new_per;
			}
960
		} else {
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961 962 963
			ath_rc_priv->state[tx_rate].per =
				(u8)(last_per - (last_per >> 3) +
				     (nretry_to_per_lookup[retries] >> 3));
964 965
		}

966 967
		ath_rc_priv->rssi_last_prev2 = ath_rc_priv->rssi_last_prev;
		ath_rc_priv->rssi_last_prev  = ath_rc_priv->rssi_last;
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		ath_rc_priv->rssi_last = tx_info_priv->tx.ts_rssi;
969
		ath_rc_priv->rssi_time = now_msec;
970 971 972 973 974

		/*
		 * If we got at most one retry then increase the max rate if
		 * this was a probe.  Otherwise, ignore the probe.
		 */
975
		if (ath_rc_priv->probe_rate && ath_rc_priv->probe_rate == tx_rate) {
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976 977
			if (retries > 0 || 2 * tx_info_priv->n_bad_frames >
				tx_info_priv->n_frames) {
978 979 980 981 982 983 984
				/*
				 * Since we probed with just a single attempt,
				 * any retries means the probe failed.  Also,
				 * if the attempt worked, but more than half
				 * the subframes were bad then also consider
				 * the probe a failure.
				 */
985
				ath_rc_priv->probe_rate = 0;
986 987 988
			} else {
				u8 probe_rate = 0;

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989 990
				ath_rc_priv->rate_max_phy =
					ath_rc_priv->probe_rate;
991
				probe_rate = ath_rc_priv->probe_rate;
992

993 994
				if (ath_rc_priv->state[probe_rate].per > 30)
					ath_rc_priv->state[probe_rate].per = 20;
995

996
				ath_rc_priv->probe_rate = 0;
997 998 999 1000 1001 1002 1003

				/*
				 * Since this probe succeeded, we allow the next
				 * probe twice as soon.  This allows the maxRate
				 * to move up faster if the probes are
				 * succesful.
				 */
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				ath_rc_priv->probe_time =
					now_msec - rate_table->probe_interval / 2;
1006 1007 1008 1009 1010 1011 1012 1013 1014
			}
		}

		if (retries > 0) {
			/*
			 * Don't update anything.  We don't know if
			 * this was because of collisions or poor signal.
			 *
			 * Later: if rssi_ack is close to
1015
			 * ath_rc_priv->state[txRate].rssi_thres and we see lots
1016
			 * of retries, then we could increase
1017
			 * ath_rc_priv->state[txRate].rssi_thres.
1018
			 */
1019
			ath_rc_priv->hw_maxretry_pktcnt = 0;
1020
		} else {
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1021 1022 1023 1024
			int32_t rssi_ackAvg;
			int8_t rssi_thres;
			int8_t rssi_ack_vmin;

1025 1026 1027 1028
			/*
			 * It worked with no retries. First ignore bogus (small)
			 * rssi_ack values.
			 */
1029 1030 1031
			if (tx_rate == ath_rc_priv->rate_max_phy &&
			    ath_rc_priv->hw_maxretry_pktcnt < 255) {
				ath_rc_priv->hw_maxretry_pktcnt++;
1032 1033
			}

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1034 1035 1036
			if (tx_info_priv->tx.ts_rssi <
			    rate_table->info[tx_rate].rssi_ack_validmin)
				goto exit;
1037

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1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064
			/* Average the rssi */
			if (tx_rate != ath_rc_priv->rssi_sum_rate) {
				ath_rc_priv->rssi_sum_rate = tx_rate;
				ath_rc_priv->rssi_sum =
					ath_rc_priv->rssi_sum_cnt = 0;
			}

			ath_rc_priv->rssi_sum += tx_info_priv->tx.ts_rssi;
			ath_rc_priv->rssi_sum_cnt++;

			if (ath_rc_priv->rssi_sum_cnt < 4)
				goto exit;

			rssi_ackAvg =
				(ath_rc_priv->rssi_sum + 2) / 4;
			rssi_thres =
				ath_rc_priv->state[tx_rate].rssi_thres;
			rssi_ack_vmin =
				rate_table->info[tx_rate].rssi_ack_validmin;

			ath_rc_priv->rssi_sum =
				ath_rc_priv->rssi_sum_cnt = 0;

			/* Now reduce the current rssi threshold */
			if ((rssi_ackAvg < rssi_thres + 2) &&
			    (rssi_thres > rssi_ack_vmin)) {
				ath_rc_priv->state[tx_rate].rssi_thres--;
1065
			}
S
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1066 1067

			state_change = true;
1068 1069
		}
	}
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1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090
exit:
	return state_change;
}

/* Update PER, RSSI and whatever else that the code thinks it is doing.
   If you can make sense of all this, you really need to go out more. */

static void ath_rc_update_ht(struct ath_softc *sc,
			     struct ath_rate_priv *ath_rc_priv,
			     struct ath_tx_info_priv *tx_info_priv,
			     int tx_rate, int xretries, int retries)
{
#define CHK_RSSI(rate)					\
	((ath_rc_priv->state[(rate)].rssi_thres +	\
	  rate_table->info[(rate)].rssi_ack_deltamin) > \
	 ath_rc_priv->state[(rate)+1].rssi_thres)

	u32 now_msec = jiffies_to_msecs(jiffies);
	int rate;
	u8 last_per;
	bool state_change = false;
S
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1091
	struct ath_rate_table *rate_table = sc->cur_rate_table;
S
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1092 1093 1094 1095
	int size = ath_rc_priv->rate_table_size;

	if ((tx_rate < 0) || (tx_rate > rate_table->rate_cnt))
		return;
1096

S
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1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109
	/* To compensate for some imbalance between ctrl and ext. channel */

	if (WLAN_RC_PHY_40(rate_table->info[tx_rate].phy))
		tx_info_priv->tx.ts_rssi =
			tx_info_priv->tx.ts_rssi < 3 ? 0 :
			tx_info_priv->tx.ts_rssi - 3;

	last_per = ath_rc_priv->state[tx_rate].per;

	/* Update PER first */
	state_change = ath_rc_update_per(sc, rate_table, ath_rc_priv,
					 tx_info_priv, tx_rate, xretries,
					 retries, now_msec);
1110 1111 1112 1113 1114

	/*
	 * If this rate looks bad (high PER) then stop using it for
	 * a while (except if we are probing).
	 */
1115
	if (ath_rc_priv->state[tx_rate].per >= 55 && tx_rate > 0 &&
S
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1116
	    rate_table->info[tx_rate].ratekbps <=
1117 1118
	    rate_table->info[ath_rc_priv->rate_max_phy].ratekbps) {
		ath_rc_get_nextlowervalid_txrate(rate_table, ath_rc_priv,
S
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1119
				 (u8)tx_rate, &ath_rc_priv->rate_max_phy);
1120 1121

		/* Don't probe for a little while. */
1122
		ath_rc_priv->probe_time = now_msec;
1123 1124 1125 1126 1127 1128 1129 1130 1131 1132
	}

	if (state_change) {
		/*
		 * Make sure the rates above this have higher rssi thresholds.
		 * (Note:  Monotonicity is kept within the OFDM rates and
		 *         within the CCK rates. However, no adjustment is
		 *         made to keep the rssi thresholds monotonically
		 *         increasing between the CCK and OFDM rates.)
		 */
S
Sujith 已提交
1133
		for (rate = tx_rate; rate < size - 1; rate++) {
1134
			if (rate_table->info[rate+1].phy !=
S
Sujith 已提交
1135
			    rate_table->info[tx_rate].phy)
1136 1137
				break;

S
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1138
			if (CHK_RSSI(rate)) {
1139
				ath_rc_priv->state[rate+1].rssi_thres =
S
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1140 1141
					ath_rc_priv->state[rate].rssi_thres +
					rate_table->info[rate].rssi_ack_deltamin;
1142 1143 1144 1145 1146 1147
			}
		}

		/* Make sure the rates below this have lower rssi thresholds. */
		for (rate = tx_rate - 1; rate >= 0; rate--) {
			if (rate_table->info[rate].phy !=
S
Sujith 已提交
1148
			    rate_table->info[tx_rate].phy)
1149 1150
				break;

S
Sujith 已提交
1151
			if (CHK_RSSI(rate)) {
1152
				if (ath_rc_priv->state[rate+1].rssi_thres <
S
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1153
				    rate_table->info[rate].rssi_ack_deltamin)
1154
					ath_rc_priv->state[rate].rssi_thres = 0;
1155
				else {
1156
					ath_rc_priv->state[rate].rssi_thres =
S
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1157 1158
					ath_rc_priv->state[rate+1].rssi_thres -
					rate_table->info[rate].rssi_ack_deltamin;
1159 1160
				}

1161
				if (ath_rc_priv->state[rate].rssi_thres <
S
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1162
				    rate_table->info[rate].rssi_ack_validmin) {
1163
					ath_rc_priv->state[rate].rssi_thres =
S
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1164
					rate_table->info[rate].rssi_ack_validmin;
1165 1166 1167 1168 1169 1170 1171
				}
			}
		}
	}

	/* Make sure the rates below this have lower PER */
	/* Monotonicity is kept only for rates below the current rate. */
1172
	if (ath_rc_priv->state[tx_rate].per < last_per) {
1173 1174
		for (rate = tx_rate - 1; rate >= 0; rate--) {
			if (rate_table->info[rate].phy !=
S
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1175
			    rate_table->info[tx_rate].phy)
1176 1177
				break;

1178 1179 1180 1181
			if (ath_rc_priv->state[rate].per >
			    ath_rc_priv->state[rate+1].per) {
				ath_rc_priv->state[rate].per =
					ath_rc_priv->state[rate+1].per;
1182 1183 1184 1185 1186
			}
		}
	}

	/* Maintain monotonicity for rates above the current rate */
S
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1187 1188 1189
	for (rate = tx_rate; rate < size - 1; rate++) {
		if (ath_rc_priv->state[rate+1].per <
		    ath_rc_priv->state[rate].per)
1190 1191
			ath_rc_priv->state[rate+1].per =
				ath_rc_priv->state[rate].per;
1192 1193 1194 1195
	}

	/* Every so often, we reduce the thresholds and
	 * PER (different for CCK and OFDM). */
1196
	if (now_msec - ath_rc_priv->rssi_down_time >=
S
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1197
	    rate_table->rssi_reduce_interval) {
1198

S
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1199
		for (rate = 0; rate < size; rate++) {
1200
			if (ath_rc_priv->state[rate].rssi_thres >
S
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1201
			    rate_table->info[rate].rssi_ack_validmin)
1202
				ath_rc_priv->state[rate].rssi_thres -= 1;
1203
		}
1204
		ath_rc_priv->rssi_down_time = now_msec;
1205 1206 1207 1208
	}

	/* Every so often, we reduce the thresholds
	 * and PER (different for CCK and OFDM). */
1209
	if (now_msec - ath_rc_priv->per_down_time >=
S
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1210
	    rate_table->rssi_reduce_interval) {
S
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1211
		for (rate = 0; rate < size; rate++) {
1212 1213
			ath_rc_priv->state[rate].per =
				7 * ath_rc_priv->state[rate].per / 8;
1214 1215
		}

1216
		ath_rc_priv->per_down_time = now_msec;
1217
	}
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1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237

#undef CHK_RSSI
}

static int ath_rc_get_rateindex(struct ath_rate_table *rate_table,
				struct ieee80211_tx_rate *rate)
{
	int rix;

	if ((rate->flags & IEEE80211_TX_RC_40_MHZ_WIDTH) &&
	    (rate->flags & IEEE80211_TX_RC_SHORT_GI))
		rix = rate_table->info[rate->idx].ht_index;
	else if (rate->flags & IEEE80211_TX_RC_SHORT_GI)
		rix = rate_table->info[rate->idx].sgi_index;
	else if (rate->flags & IEEE80211_TX_RC_40_MHZ_WIDTH)
		rix = rate_table->info[rate->idx].cw40index;
	else
		rix = rate_table->info[rate->idx].base_index;

	return rix;
1238 1239
}

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1240 1241 1242 1243
static void ath_rc_tx_status(struct ath_softc *sc,
			     struct ath_rate_priv *ath_rc_priv,
			     struct ieee80211_tx_info *tx_info,
			     int final_ts_idx, int xretries, int long_retry)
1244
{
S
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1245
	struct ath_tx_info_priv *tx_info_priv = ATH_TX_INFO_PRIV(tx_info);
1246
	struct ath_rate_table *rate_table;
S
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1247
	struct ieee80211_tx_rate *rates = tx_info->status.rates;
1248
	u8 flags;
S
Sujith 已提交
1249
	u32 i = 0, rix;
1250

S
Sujith 已提交
1251
	rate_table = sc->cur_rate_table;
1252 1253 1254 1255 1256 1257 1258

	/*
	 * If the first rate is not the final index, there
	 * are intermediate rate failures to be processed.
	 */
	if (final_ts_idx != 0) {
		/* Process intermediate rates that failed.*/
S
Sujith 已提交
1259 1260 1261 1262
		for (i = 0; i < final_ts_idx ; i++) {
			if (rates[i].count != 0 && (rates[i].idx >= 0)) {
				flags = rates[i].flags;

1263 1264
				/* If HT40 and we have switched mode from
				 * 40 to 20 => don't update */
S
Sujith 已提交
1265

S
Sujith 已提交
1266
				if ((flags & IEEE80211_TX_RC_40_MHZ_WIDTH) &&
S
Sujith 已提交
1267
				    (ath_rc_priv->rc_phy_mode != WLAN_RC_40_FLAG))
1268
					return;
S
Sujith 已提交
1269

S
Sujith 已提交
1270
				rix = ath_rc_get_rateindex(rate_table, &rates[i]);
1271
				ath_rc_update_ht(sc, ath_rc_priv,
S
Sujith 已提交
1272
						tx_info_priv, rix,
1273
						xretries ? 1 : 2,
S
Sujith 已提交
1274
						rates[i].count);
1275 1276 1277 1278 1279 1280 1281 1282 1283
			}
		}
	} else {
		/*
		 * Handle the special case of MIMO PS burst, where the second
		 * aggregate is sent out with only one rate and one try.
		 * Treating it as an excessive retry penalizes the rate
		 * inordinately.
		 */
S
Sujith 已提交
1284
		if (rates[0].count == 1 && xretries == 1)
1285 1286 1287
			xretries = 2;
	}

S
Sujith 已提交
1288 1289
	flags = rates[i].flags;

1290
	/* If HT40 and we have switched mode from 40 to 20 => don't update */
S
Sujith 已提交
1291
	if ((flags & IEEE80211_TX_RC_40_MHZ_WIDTH) &&
S
Sujith 已提交
1292
	    (ath_rc_priv->rc_phy_mode != WLAN_RC_40_FLAG)) {
1293
		return;
S
Sujith 已提交
1294
	}
1295

S
Sujith 已提交
1296
	rix = ath_rc_get_rateindex(rate_table, &rates[i]);
S
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1297
	ath_rc_update_ht(sc, ath_rc_priv, tx_info_priv, rix,
S
Sujith 已提交
1298
			 xretries, long_retry);
1299 1300
}

1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322
static struct ath_rate_table *ath_choose_rate_table(struct ath_softc *sc,
						    enum ieee80211_band band,
						    bool is_ht, bool is_cw_40)
{
	int mode = 0;

	switch(band) {
	case IEEE80211_BAND_2GHZ:
		mode = ATH9K_MODE_11G;
		if (is_ht)
			mode = ATH9K_MODE_11NG_HT20;
		if (is_cw_40)
			mode = ATH9K_MODE_11NG_HT40PLUS;
		break;
	case IEEE80211_BAND_5GHZ:
		mode = ATH9K_MODE_11A;
		if (is_ht)
			mode = ATH9K_MODE_11NA_HT20;
		if (is_cw_40)
			mode = ATH9K_MODE_11NA_HT40PLUS;
		break;
	default:
S
Sujith 已提交
1323
		DPRINTF(sc, ATH_DBG_CONFIG, "Invalid band\n");
1324 1325 1326 1327 1328
		return NULL;
	}

	BUG_ON(mode >= ATH9K_MODE_MAX);

S
Sujith 已提交
1329
	DPRINTF(sc, ATH_DBG_CONFIG, "Choosing rate table for mode: %d\n", mode);
1330 1331 1332
	return sc->hw_rate_table[mode];
}

1333
static void ath_rc_init(struct ath_softc *sc,
S
Sujith 已提交
1334
			struct ath_rate_priv *ath_rc_priv,
1335 1336
			struct ieee80211_supported_band *sband,
			struct ieee80211_sta *sta)
1337 1338
{
	struct ath_rate_table *rate_table = NULL;
1339 1340
	struct ath_rateset *rateset = &ath_rc_priv->neg_rates;
	u8 *ht_mcs = (u8 *)&ath_rc_priv->neg_ht_rates;
1341 1342
	u8 i, j, k, hi = 0, hthi = 0;

1343
	/* FIXME: Adhoc */
1344 1345
	if ((sc->sc_ah->ah_opmode == NL80211_IFTYPE_STATION) ||
	    (sc->sc_ah->ah_opmode == NL80211_IFTYPE_ADHOC)) {
1346 1347 1348 1349
		bool is_cw_40 = sta->ht_cap.cap & IEEE80211_HT_CAP_SUP_WIDTH_20_40;
		rate_table = ath_choose_rate_table(sc, sband->band,
						   sta->ht_cap.ht_supported,
						   is_cw_40);
1350
	} else if (sc->sc_ah->ah_opmode == NL80211_IFTYPE_AP) {
1351 1352
		/* cur_rate_table would be set on init through config() */
		rate_table = sc->cur_rate_table;
1353
	}
1354

1355 1356 1357 1358
	if (!rate_table) {
		DPRINTF(sc, ATH_DBG_FATAL, "Rate table not initialized\n");
		return;
	}
1359

1360
	if (sta->ht_cap.ht_supported) {
1361
		ath_rc_priv->ht_cap = WLAN_RC_HT_FLAG;
S
Sujith 已提交
1362
		if (sc->sc_ah->ah_caps.tx_chainmask != 1)
1363
			ath_rc_priv->ht_cap |= WLAN_RC_DS_FLAG;
1364 1365
		if (sta->ht_cap.cap & IEEE80211_HT_CAP_SUP_WIDTH_20_40)
			ath_rc_priv->ht_cap |= WLAN_RC_40_FLAG;
1366 1367
		if (sta->ht_cap.cap & IEEE80211_HT_CAP_SGI_40)
			ath_rc_priv->ht_cap |= WLAN_RC_SGI_FLAG;
1368 1369
	}

1370 1371
	/* Initial rate table size. Will change depending
	 * on the working rate set */
S
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1372
	ath_rc_priv->rate_table_size = RATE_TABLE_SIZE;
1373 1374

	/* Initialize thresholds according to the global rate table */
1375
	for (i = 0 ; i < ath_rc_priv->rate_table_size; i++) {
1376
		ath_rc_priv->state[i].rssi_thres =
1377
			rate_table->info[i].rssi_ack_validmin;
1378
		ath_rc_priv->state[i].per = 0;
1379 1380 1381
	}

	/* Determine the valid rates */
1382
	ath_rc_init_valid_txmask(ath_rc_priv);
1383 1384 1385

	for (i = 0; i < WLAN_RC_PHY_MAX; i++) {
		for (j = 0; j < MAX_TX_RATE_PHY; j++)
1386 1387
			ath_rc_priv->valid_phy_rateidx[i][j] = 0;
		ath_rc_priv->valid_phy_ratecnt[i] = 0;
1388
	}
1389
	ath_rc_priv->rc_phy_mode = (ath_rc_priv->ht_cap & WLAN_RC_40_FLAG);
1390 1391

	/* Set stream capability */
1392
	ath_rc_priv->single_stream = (ath_rc_priv->ht_cap & WLAN_RC_DS_FLAG) ? 0 : 1;
1393 1394 1395

	if (!rateset->rs_nrates) {
		/* No working rate, just initialize valid rates */
S
Sujith 已提交
1396
		hi = ath_rc_init_validrates(ath_rc_priv, rate_table,
1397
						ath_rc_priv->ht_cap);
1398 1399
	} else {
		/* Use intersection of working rates and valid rates */
S
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1400
		hi = ath_rc_setvalid_rates(ath_rc_priv, rate_table,
1401 1402
					       rateset, ath_rc_priv->ht_cap);
		if (ath_rc_priv->ht_cap & WLAN_RC_HT_FLAG) {
S
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1403
			hthi = ath_rc_setvalid_htrates(ath_rc_priv,
1404 1405
							   rate_table,
							   ht_mcs,
1406
							   ath_rc_priv->ht_cap);
1407 1408 1409 1410
		}
		hi = A_MAX(hi, hthi);
	}

1411 1412
	ath_rc_priv->rate_table_size = hi + 1;
	ath_rc_priv->rate_max_phy = 0;
S
Sujith 已提交
1413
	ASSERT(ath_rc_priv->rate_table_size <= RATE_TABLE_SIZE);
1414 1415

	for (i = 0, k = 0; i < WLAN_RC_PHY_MAX; i++) {
1416 1417 1418
		for (j = 0; j < ath_rc_priv->valid_phy_ratecnt[i]; j++) {
			ath_rc_priv->valid_rate_index[k++] =
				ath_rc_priv->valid_phy_rateidx[i][j];
1419 1420
		}

S
Sujith 已提交
1421
		if (!ath_rc_valid_phyrate(i, rate_table->initial_ratemax, 1)
1422
		    || !ath_rc_priv->valid_phy_ratecnt[i])
1423 1424
			continue;

1425
		ath_rc_priv->rate_max_phy = ath_rc_priv->valid_phy_rateidx[i][j-1];
1426
	}
S
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1427 1428
	ASSERT(ath_rc_priv->rate_table_size <= RATE_TABLE_SIZE);
	ASSERT(k <= RATE_TABLE_SIZE);
1429

1430 1431 1432
	ath_rc_priv->max_valid_rate = k;
	ath_rc_sort_validrates(rate_table, ath_rc_priv);
	ath_rc_priv->rate_max_phy = ath_rc_priv->valid_rate_index[k-4];
S
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1433
	sc->cur_rate_table = rate_table;
1434 1435 1436
}

/* Rate Control callbacks */
1437 1438
static void ath_tx_status(void *priv, struct ieee80211_supported_band *sband,
			  struct ieee80211_sta *sta, void *priv_sta,
1439 1440 1441
			  struct sk_buff *skb)
{
	struct ath_softc *sc = priv;
S
Sujith 已提交
1442 1443
	struct ath_rate_priv *ath_rc_priv = priv_sta;
	struct ath_tx_info_priv *tx_info_priv = NULL;
1444 1445
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
	struct ieee80211_hdr *hdr;
S
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1446
	int final_ts_idx, tx_status = 0, is_underrun = 0;
1447 1448 1449 1450
	__le16 fc;

	hdr = (struct ieee80211_hdr *)skb->data;
	fc = hdr->frame_control;
S
Sujith 已提交
1451 1452
	tx_info_priv = ATH_TX_INFO_PRIV(tx_info);
	final_ts_idx = tx_info_priv->tx.ts_rateindex;
1453

S
Sujith 已提交
1454
	if (!priv_sta || !ieee80211_is_data(fc) ||
1455
	    !tx_info_priv->update_rc)
S
Sujith 已提交
1456
		goto exit;
1457

S
Sujith 已提交
1458 1459
	if (tx_info_priv->tx.ts_status & ATH9K_TXERR_FILT)
		goto exit;
1460

S
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1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482
	/*
	 * If underrun error is seen assume it as an excessive retry only
	 * if prefetch trigger level have reached the max (0x3f for 5416)
	 * Adjust the long retry as if the frame was tried ATH_11N_TXMAXTRY
	 * times. This affects how ratectrl updates PER for the failed rate.
	 */
	if (tx_info_priv->tx.ts_flags &
	    (ATH9K_TX_DATA_UNDERRUN | ATH9K_TX_DELIM_UNDERRUN) &&
	    ((sc->sc_ah->ah_txTrigLevel) >= ath_rc_priv->tx_triglevel_max)) {
		tx_status = 1;
		is_underrun = 1;
	}

	if ((tx_info_priv->tx.ts_status & ATH9K_TXERR_XRETRY) ||
	    (tx_info_priv->tx.ts_status & ATH9K_TXERR_FIFO))
		tx_status = 1;

	ath_rc_tx_status(sc, ath_rc_priv, tx_info, final_ts_idx, tx_status,
			 (is_underrun) ? ATH_11N_TXMAXTRY :
			 tx_info_priv->tx.ts_longretry);

exit:
1483
	kfree(tx_info_priv);
1484 1485
}

1486 1487
static void ath_get_rate(void *priv, struct ieee80211_sta *sta, void *priv_sta,
			 struct ieee80211_tx_rate_control *txrc)
1488
{
1489 1490
	struct ieee80211_supported_band *sband = txrc->sband;
	struct sk_buff *skb = txrc->skb;
1491
	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
1492
	struct ath_softc *sc = priv;
1493
	struct ieee80211_hw *hw = sc->hw;
S
Sujith 已提交
1494
	struct ath_rate_priv *ath_rc_priv = priv_sta;
1495
	struct ieee80211_tx_info *tx_info = IEEE80211_SKB_CB(skb);
S
Sujith 已提交
1496
	int is_probe = 0;
1497 1498 1499
	__le16 fc = hdr->frame_control;

	/* lowest rate for management and multicast/broadcast frames */
1500 1501
	if (!ieee80211_is_data(fc) || is_multicast_ether_addr(hdr->addr1) ||
	    !sta) {
S
Sujith 已提交
1502 1503 1504
		tx_info->control.rates[0].idx = rate_lowest_index(sband, sta);
		tx_info->control.rates[0].count =
			is_multicast_ether_addr(hdr->addr1) ? 1 : ATH_MGT_TXMAXTRY;
1505 1506 1507 1508
		return;
	}

	/* Find tx rate for unicast frames */
S
Sujith 已提交
1509 1510
	ath_rc_ratefind(sc, ath_rc_priv, ATH_11N_TXMAXTRY, 4,
			tx_info, &is_probe, false);
1511 1512

	/* Check if aggregation has to be enabled for this tid */
1513
	if (conf_is_ht(&hw->conf)) {
1514
		if (ieee80211_is_data_qos(fc)) {
S
Sujith 已提交
1515 1516 1517
			u8 *qc, tid;
			struct ath_node *an;

1518 1519
			qc = ieee80211_get_qos_ctl(hdr);
			tid = qc[0] & 0xf;
S
Sujith 已提交
1520
			an = (struct ath_node *)sta->drv_priv;
1521

S
Sujith 已提交
1522 1523
			if(ath_tx_aggr_check(sc, an, tid))
				ieee80211_start_tx_ba_session(hw, hdr->addr1, tid);
1524 1525 1526 1527
		}
	}
}

1528 1529
static void ath_rate_init(void *priv, struct ieee80211_supported_band *sband,
                          struct ieee80211_sta *sta, void *priv_sta)
1530
{
1531
	struct ath_softc *sc = priv;
S
Sujith 已提交
1532
	struct ath_rate_priv *ath_rc_priv = priv_sta;
1533 1534
	int i, j = 0;

S
Sujith 已提交
1535 1536 1537 1538 1539 1540 1541 1542
	for (i = 0; i < sband->n_bitrates; i++) {
		if (sta->supp_rates[sband->band] & BIT(i)) {
			ath_rc_priv->neg_rates.rs_rates[j]
				= (sband->bitrates[i].bitrate * 2) / 10;
			j++;
		}
	}
	ath_rc_priv->neg_rates.rs_nrates = j;
1543

1544
	if (sta->ht_cap.ht_supported) {
S
Sujith 已提交
1545
		for (i = 0, j = 0; i < 77; i++) {
J
Johannes Berg 已提交
1546
			if (sta->ht_cap.mcs.rx_mask[i/8] & (1<<(i%8)))
S
Sujith 已提交
1547
				ath_rc_priv->neg_ht_rates.rs_rates[j++] = i;
1548 1549 1550
			if (j == ATH_RATE_MAX)
				break;
		}
S
Sujith 已提交
1551
		ath_rc_priv->neg_ht_rates.rs_nrates = j;
1552
	}
S
Sujith 已提交
1553

1554
	ath_rc_init(sc, priv_sta, sband, sta);
1555 1556
}

1557
static void *ath_rate_alloc(struct ieee80211_hw *hw, struct dentry *debugfsdir)
1558
{
1559
	return hw->priv;
1560 1561 1562 1563 1564 1565 1566
}

static void ath_rate_free(void *priv)
{
	return;
}

1567
static void *ath_rate_alloc_sta(void *priv, struct ieee80211_sta *sta, gfp_t gfp)
1568 1569
{
	struct ath_softc *sc = priv;
S
Sujith 已提交
1570
	struct ath_rate_priv *rate_priv;
1571

S
Sujith 已提交
1572
	rate_priv = kzalloc(sizeof(struct ath_rate_priv), gfp);
1573
	if (!rate_priv) {
S
Sujith 已提交
1574
		DPRINTF(sc, ATH_DBG_FATAL,
S
Sujith 已提交
1575
			"Unable to allocate private rc structure\n");
1576 1577
		return NULL;
	}
S
Sujith 已提交
1578 1579

	rate_priv->rssi_down_time = jiffies_to_msecs(jiffies);
S
Sujith 已提交
1580
	rate_priv->tx_triglevel_max = sc->sc_ah->ah_caps.tx_triglevel_max;
S
Sujith 已提交
1581

1582 1583 1584
	return rate_priv;
}

1585 1586
static void ath_rate_free_sta(void *priv, struct ieee80211_sta *sta,
			      void *priv_sta)
1587
{
S
Sujith 已提交
1588
	struct ath_rate_priv *rate_priv = priv_sta;
S
Sujith 已提交
1589
	kfree(rate_priv);
1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600
}

static struct rate_control_ops ath_rate_ops = {
	.module = NULL,
	.name = "ath9k_rate_control",
	.tx_status = ath_tx_status,
	.get_rate = ath_get_rate,
	.rate_init = ath_rate_init,
	.alloc = ath_rate_alloc,
	.free = ath_rate_free,
	.alloc_sta = ath_rate_alloc_sta,
1601
	.free_sta = ath_rate_free_sta,
1602 1603
};

S
Sujith 已提交
1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624
static void ath_setup_rate_table(struct ath_softc *sc,
				 struct ath_rate_table *rate_table)
{
	int i;

	for (i = 0; i < rate_table->rate_cnt; i++) {
		u8 cix = rate_table->info[i].ctrl_rate;

		rate_table->info[i].lpAckDuration =
			ath9k_hw_computetxtime(sc->sc_ah, rate_table,
					       WLAN_CTRL_FRAME_SIZE,
					       cix,
					       false);
		rate_table->info[i].spAckDuration =
			ath9k_hw_computetxtime(sc->sc_ah, rate_table,
					       WLAN_CTRL_FRAME_SIZE,
					       cix,
					       true);
	}
}

S
Sujith 已提交
1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644
void ath_rate_attach(struct ath_softc *sc)
{
	sc->hw_rate_table[ATH9K_MODE_11B] =
		&ar5416_11b_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11A] =
		&ar5416_11a_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11G] =
		&ar5416_11g_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11NA_HT20] =
		&ar5416_11na_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11NG_HT20] =
		&ar5416_11ng_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11NA_HT40PLUS] =
		&ar5416_11na_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11NA_HT40MINUS] =
		&ar5416_11na_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11NG_HT40PLUS] =
		&ar5416_11ng_ratetable;
	sc->hw_rate_table[ATH9K_MODE_11NG_HT40MINUS] =
		&ar5416_11ng_ratetable;
S
Sujith 已提交
1645 1646 1647 1648 1649 1650

	ath_setup_rate_table(sc, &ar5416_11b_ratetable);
	ath_setup_rate_table(sc, &ar5416_11a_ratetable);
	ath_setup_rate_table(sc, &ar5416_11g_ratetable);
	ath_setup_rate_table(sc, &ar5416_11na_ratetable);
	ath_setup_rate_table(sc, &ar5416_11ng_ratetable);
S
Sujith 已提交
1651 1652
}

1653 1654 1655 1656 1657 1658 1659 1660 1661
int ath_rate_control_register(void)
{
	return ieee80211_rate_control_register(&ath_rate_ops);
}

void ath_rate_control_unregister(void)
{
	ieee80211_rate_control_unregister(&ath_rate_ops);
}