iwlwifi: rename iwl4965_tx_info to iwl_tx_info
[deliverable/linux.git] / drivers / net / wireless / iwlwifi / iwl-commands.h
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1/******************************************************************************
2 *
3 * This file is provided under a dual BSD/GPLv2 license. When using or
4 * redistributing this file, you may do so under either license.
5 *
6 * GPL LICENSE SUMMARY
7 *
eb7ae89c 8 * Copyright(c) 2005 - 2008 Intel Corporation. All rights reserved.
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9 *
10 * This program is free software; you can redistribute it and/or modify
01ebd063 11 * it under the terms of version 2 of the GNU General Public License as
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12 * published by the Free Software Foundation.
13 *
14 * This program is distributed in the hope that it will be useful, but
15 * WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17 * General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
22 * USA
23 *
24 * The full GNU General Public License is included in this distribution
25 * in the file called LICENSE.GPL.
26 *
27 * Contact Information:
28 * James P. Ketrenos <ipw2100-admin@linux.intel.com>
29 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
30 *
31 * BSD LICENSE
32 *
eb7ae89c 33 * Copyright(c) 2005 - 2008 Intel Corporation. All rights reserved.
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34 * All rights reserved.
35 *
36 * Redistribution and use in source and binary forms, with or without
37 * modification, are permitted provided that the following conditions
38 * are met:
39 *
40 * * Redistributions of source code must retain the above copyright
41 * notice, this list of conditions and the following disclaimer.
42 * * Redistributions in binary form must reproduce the above copyright
43 * notice, this list of conditions and the following disclaimer in
44 * the documentation and/or other materials provided with the
45 * distribution.
46 * * Neither the name Intel Corporation nor the names of its
47 * contributors may be used to endorse or promote products derived
48 * from this software without specific prior written permission.
49 *
50 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
51 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
52 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
53 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
54 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
55 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
56 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
57 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
58 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
59 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
60 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
61 *
62 *****************************************************************************/
fcd427bb 63/*
5a36ba0e 64 * Please use this file (iwl-commands.h) only for uCode API definitions.
fcd427bb 65 * Please use iwl-4965-hw.h for hardware-related definitions.
3e0d4cb1 66 * Please use iwl-dev.h for driver implementation definitions.
fcd427bb 67 */
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69#ifndef __iwl4965_commands_h__
70#define __iwl4965_commands_h__
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71
72enum {
73 REPLY_ALIVE = 0x1,
74 REPLY_ERROR = 0x2,
75
76 /* RXON and QOS commands */
77 REPLY_RXON = 0x10,
78 REPLY_RXON_ASSOC = 0x11,
79 REPLY_QOS_PARAM = 0x13,
80 REPLY_RXON_TIMING = 0x14,
81
82 /* Multi-Station support */
83 REPLY_ADD_STA = 0x18,
84 REPLY_REMOVE_STA = 0x19, /* not used */
85 REPLY_REMOVE_ALL_STA = 0x1a, /* not used */
86
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87 /* Security */
88 REPLY_WEPKEY = 0x20,
89
b481de9c 90 /* RX, TX, LEDs */
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91 REPLY_TX = 0x1c,
92 REPLY_RATE_SCALE = 0x47, /* 3945 only */
93 REPLY_LEDS_CMD = 0x48,
94 REPLY_TX_LINK_QUALITY_CMD = 0x4e, /* 4965 only */
95
96 /* 802.11h related */
97 RADAR_NOTIFICATION = 0x70, /* not used */
98 REPLY_QUIET_CMD = 0x71, /* not used */
99 REPLY_CHANNEL_SWITCH = 0x72,
100 CHANNEL_SWITCH_NOTIFICATION = 0x73,
101 REPLY_SPECTRUM_MEASUREMENT_CMD = 0x74,
102 SPECTRUM_MEASURE_NOTIFICATION = 0x75,
103
104 /* Power Management */
105 POWER_TABLE_CMD = 0x77,
106 PM_SLEEP_NOTIFICATION = 0x7A,
107 PM_DEBUG_STATISTIC_NOTIFIC = 0x7B,
108
109 /* Scan commands and notifications */
110 REPLY_SCAN_CMD = 0x80,
111 REPLY_SCAN_ABORT_CMD = 0x81,
112 SCAN_START_NOTIFICATION = 0x82,
113 SCAN_RESULTS_NOTIFICATION = 0x83,
114 SCAN_COMPLETE_NOTIFICATION = 0x84,
115
116 /* IBSS/AP commands */
117 BEACON_NOTIFICATION = 0x90,
118 REPLY_TX_BEACON = 0x91,
119 WHO_IS_AWAKE_NOTIFICATION = 0x94, /* not used */
120
121 /* Miscellaneous commands */
122 QUIET_NOTIFICATION = 0x96, /* not used */
123 REPLY_TX_PWR_TABLE_CMD = 0x97,
124 MEASURE_ABORT_NOTIFICATION = 0x99, /* not used */
125
075416cd 126 /* Bluetooth device coexistance config command */
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127 REPLY_BT_CONFIG = 0x9b,
128
80cc0c38 129 /* Statistics */
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130 REPLY_STATISTICS_CMD = 0x9c,
131 STATISTICS_NOTIFICATION = 0x9d,
132
133 /* RF-KILL commands and notifications */
134 REPLY_CARD_STATE_CMD = 0xa0,
135 CARD_STATE_NOTIFICATION = 0xa1,
136
137 /* Missed beacons notification */
138 MISSED_BEACONS_NOTIFICATION = 0xa2,
139
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140 REPLY_CT_KILL_CONFIG_CMD = 0xa4,
141 SENSITIVITY_CMD = 0xa8,
142 REPLY_PHY_CALIBRATION_CMD = 0xb0,
143 REPLY_RX_PHY_CMD = 0xc0,
144 REPLY_RX_MPDU_CMD = 0xc1,
857485c0 145 REPLY_RX = 0xc3,
b481de9c 146 REPLY_COMPRESSED_BA = 0xc5,
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147 REPLY_MAX = 0xff
148};
149
150/******************************************************************************
151 * (0)
abceddb4 152 * Commonly used structures and definitions:
80cc0c38 153 * Command header, rate_n_flags, txpower
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154 *
155 *****************************************************************************/
156
857485c0 157/* iwl_cmd_header flags value */
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158#define IWL_CMD_FAILED_MSK 0x40
159
075416cd 160/**
857485c0 161 * struct iwl_cmd_header
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162 *
163 * This header format appears in the beginning of each command sent from the
164 * driver, and each response/notification received from uCode.
165 */
857485c0 166struct iwl_cmd_header {
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167 u8 cmd; /* Command ID: REPLY_RXON, etc. */
168 u8 flags; /* IWL_CMD_* */
169 /*
170 * The driver sets up the sequence number to values of its chosing.
171 * uCode does not use this value, but passes it back to the driver
172 * when sending the response to each driver-originated command, so
173 * the driver can match the response to the command. Since the values
174 * don't get used by uCode, the driver may set up an arbitrary format.
b481de9c 175 *
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176 * There is one exception: uCode sets bit 15 when it originates
177 * the response/notification, i.e. when the response/notification
178 * is not a direct response to a command sent by the driver. For
179 * example, uCode issues REPLY_3945_RX when it sends a received frame
180 * to the driver; it is not a direct response to any driver command.
b481de9c 181 *
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182 * The Linux driver uses the following format:
183 *
184 * 0:7 index/position within Tx queue
185 * 8:13 Tx queue selection
186 * 14:14 driver sets this to indicate command is in the 'huge'
187 * storage at the end of the command buffers, i.e. scan cmd
188 * 15:15 uCode sets this in uCode-originated response/notification
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189 */
190 __le16 sequence;
191
075416cd 192 /* command or response/notification data follows immediately */
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193 u8 data[0];
194} __attribute__ ((packed));
195
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196/**
197 * 4965 rate_n_flags bit fields
198 *
199 * rate_n_flags format is used in following 4965 commands:
857485c0 200 * REPLY_RX (response only)
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201 * REPLY_TX (both command and response)
202 * REPLY_TX_LINK_QUALITY_CMD
203 *
204 * High-throughput (HT) rate format for bits 7:0 (bit 8 must be "1"):
205 * 2-0: 0) 6 Mbps
206 * 1) 12 Mbps
207 * 2) 18 Mbps
208 * 3) 24 Mbps
209 * 4) 36 Mbps
210 * 5) 48 Mbps
211 * 6) 54 Mbps
212 * 7) 60 Mbps
213 *
214 * 3: 0) Single stream (SISO)
215 * 1) Dual stream (MIMO)
216 *
217 * 5: Value of 0x20 in bits 7:0 indicates 6 Mbps FAT duplicate data
218 *
219 * Legacy OFDM rate format for bits 7:0 (bit 8 must be "0", bit 9 "0"):
220 * 3-0: 0xD) 6 Mbps
221 * 0xF) 9 Mbps
222 * 0x5) 12 Mbps
223 * 0x7) 18 Mbps
224 * 0x9) 24 Mbps
225 * 0xB) 36 Mbps
226 * 0x1) 48 Mbps
227 * 0x3) 54 Mbps
228 *
229 * Legacy CCK rate format for bits 7:0 (bit 8 must be "0", bit 9 "1"):
230 * 3-0: 10) 1 Mbps
231 * 20) 2 Mbps
232 * 55) 5.5 Mbps
233 * 110) 11 Mbps
234 */
235#define RATE_MCS_CODE_MSK 0x7
236#define RATE_MCS_MIMO_POS 3
237#define RATE_MCS_MIMO_MSK 0x8
238#define RATE_MCS_HT_DUP_POS 5
239#define RATE_MCS_HT_DUP_MSK 0x20
240
075416cd 241/* Bit 8: (1) HT format, (0) legacy format in bits 7:0 */
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242#define RATE_MCS_FLAGS_POS 8
243#define RATE_MCS_HT_POS 8
244#define RATE_MCS_HT_MSK 0x100
245
075416cd 246/* Bit 9: (1) CCK, (0) OFDM. HT (bit 8) must be "0" for this bit to be valid */
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247#define RATE_MCS_CCK_POS 9
248#define RATE_MCS_CCK_MSK 0x200
249
075416cd 250/* Bit 10: (1) Use Green Field preamble */
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251#define RATE_MCS_GF_POS 10
252#define RATE_MCS_GF_MSK 0x400
253
075416cd 254/* Bit 11: (1) Use 40Mhz FAT chnl width, (0) use 20 MHz legacy chnl width */
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255#define RATE_MCS_FAT_POS 11
256#define RATE_MCS_FAT_MSK 0x800
257
075416cd 258/* Bit 12: (1) Duplicate data on both 20MHz chnls. FAT (bit 11) must be set. */
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259#define RATE_MCS_DUP_POS 12
260#define RATE_MCS_DUP_MSK 0x1000
261
075416cd 262/* Bit 13: (1) Short guard interval (0.4 usec), (0) normal GI (0.8 usec) */
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263#define RATE_MCS_SGI_POS 13
264#define RATE_MCS_SGI_MSK 0x2000
265
266/**
267 * rate_n_flags Tx antenna masks (4965 has 2 transmitters):
268 * bit14:15 01 B inactive, A active
269 * 10 B active, A inactive
270 * 11 Both active
271 */
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272#define RATE_MCS_ANT_POS 14
273#define RATE_MCS_ANT_A_MSK 0x04000
274#define RATE_MCS_ANT_B_MSK 0x08000
275#define RATE_MCS_ANT_C_MSK 0x10000
276#define RATE_MCS_ANT_ABC_MSK 0x1C000
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277
278
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279/**
280 * struct iwl4965_tx_power - txpower format used in REPLY_SCAN_CMD
281 *
282 * Scan uses only one transmitter, so only one analog/dsp gain pair is needed.
283 */
284struct iwl4965_tx_power {
285 u8 tx_gain; /* gain for analog radio */
286 u8 dsp_atten; /* gain for DSP */
287} __attribute__ ((packed));
288
289#define POWER_TABLE_NUM_ENTRIES 33
290#define POWER_TABLE_NUM_HT_OFDM_ENTRIES 32
291#define POWER_TABLE_CCK_ENTRY 32
292
293/**
294 * union iwl4965_tx_power_dual_stream
295 *
296 * Host format used for REPLY_TX_PWR_TABLE_CMD, REPLY_CHANNEL_SWITCH
297 * Use __le32 version (struct tx_power_dual_stream) when building command.
298 *
299 * Driver provides radio gain and DSP attenuation settings to device in pairs,
300 * one value for each transmitter chain. The first value is for transmitter A,
301 * second for transmitter B.
302 *
303 * For SISO bit rates, both values in a pair should be identical.
304 * For MIMO rates, one value may be different from the other,
305 * in order to balance the Tx output between the two transmitters.
306 *
307 * See more details in doc for TXPOWER in iwl-4965-hw.h.
308 */
309union iwl4965_tx_power_dual_stream {
310 struct {
311 u8 radio_tx_gain[2];
312 u8 dsp_predis_atten[2];
313 } s;
314 u32 dw;
315};
316
317/**
318 * struct tx_power_dual_stream
319 *
320 * Table entries in REPLY_TX_PWR_TABLE_CMD, REPLY_CHANNEL_SWITCH
321 *
322 * Same format as iwl_tx_power_dual_stream, but __le32
323 */
324struct tx_power_dual_stream {
325 __le32 dw;
326} __attribute__ ((packed));
327
328/**
329 * struct iwl4965_tx_power_db
330 *
331 * Entire table within REPLY_TX_PWR_TABLE_CMD, REPLY_CHANNEL_SWITCH
332 */
333struct iwl4965_tx_power_db {
334 struct tx_power_dual_stream power_tbl[POWER_TABLE_NUM_ENTRIES];
335} __attribute__ ((packed));
336
337
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338/******************************************************************************
339 * (0a)
340 * Alive and Error Commands & Responses:
341 *
342 *****************************************************************************/
343
344#define UCODE_VALID_OK __constant_cpu_to_le32(0x1)
345#define INITIALIZE_SUBTYPE (9)
346
347/*
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348 * ("Initialize") REPLY_ALIVE = 0x1 (response only, not a command)
349 *
350 * uCode issues this "initialize alive" notification once the initialization
351 * uCode image has completed its work, and is ready to load the runtime image.
352 * This is the *first* "alive" notification that the driver will receive after
353 * rebooting uCode; the "initialize" alive is indicated by subtype field == 9.
354 *
355 * See comments documenting "BSM" (bootstrap state machine).
356 *
357 * For 4965, this notification contains important calibration data for
358 * calculating txpower settings:
359 *
360 * 1) Power supply voltage indication. The voltage sensor outputs higher
361 * values for lower voltage, and vice versa.
362 *
363 * 2) Temperature measurement parameters, for each of two channel widths
364 * (20 MHz and 40 MHz) supported by the radios. Temperature sensing
365 * is done via one of the receiver chains, and channel width influences
366 * the results.
367 *
368 * 3) Tx gain compensation to balance 4965's 2 Tx chains for MIMO operation,
369 * for each of 5 frequency ranges.
b481de9c 370 */
075416cd 371struct iwl4965_init_alive_resp {
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372 u8 ucode_minor;
373 u8 ucode_major;
374 __le16 reserved1;
375 u8 sw_rev[8];
376 u8 ver_type;
075416cd 377 u8 ver_subtype; /* "9" for initialize alive */
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378 __le16 reserved2;
379 __le32 log_event_table_ptr;
380 __le32 error_event_table_ptr;
381 __le32 timestamp;
382 __le32 is_valid;
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383
384 /* calibration values from "initialize" uCode */
385 __le32 voltage; /* signed, higher value is lower voltage */
386 __le32 therm_r1[2]; /* signed, 1st for normal, 2nd for FAT channel*/
387 __le32 therm_r2[2]; /* signed */
388 __le32 therm_r3[2]; /* signed */
389 __le32 therm_r4[2]; /* signed */
390 __le32 tx_atten[5][2]; /* signed MIMO gain comp, 5 freq groups,
391 * 2 Tx chains */
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392} __attribute__ ((packed));
393
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394
395/**
396 * REPLY_ALIVE = 0x1 (response only, not a command)
397 *
398 * uCode issues this "alive" notification once the runtime image is ready
399 * to receive commands from the driver. This is the *second* "alive"
400 * notification that the driver will receive after rebooting uCode;
401 * this "alive" is indicated by subtype field != 9.
402 *
403 * See comments documenting "BSM" (bootstrap state machine).
404 *
405 * This response includes two pointers to structures within the device's
406 * data SRAM (access via HBUS_TARG_MEM_* regs) that are useful for debugging:
407 *
408 * 1) log_event_table_ptr indicates base of the event log. This traces
409 * a 256-entry history of uCode execution within a circular buffer.
410 * Its header format is:
411 *
412 * __le32 log_size; log capacity (in number of entries)
413 * __le32 type; (1) timestamp with each entry, (0) no timestamp
414 * __le32 wraps; # times uCode has wrapped to top of circular buffer
415 * __le32 write_index; next circular buffer entry that uCode would fill
416 *
417 * The header is followed by the circular buffer of log entries. Entries
418 * with timestamps have the following format:
419 *
420 * __le32 event_id; range 0 - 1500
421 * __le32 timestamp; low 32 bits of TSF (of network, if associated)
422 * __le32 data; event_id-specific data value
423 *
424 * Entries without timestamps contain only event_id and data.
425 *
426 * 2) error_event_table_ptr indicates base of the error log. This contains
427 * information about any uCode error that occurs. For 4965, the format
428 * of the error log is:
429 *
430 * __le32 valid; (nonzero) valid, (0) log is empty
431 * __le32 error_id; type of error
432 * __le32 pc; program counter
433 * __le32 blink1; branch link
434 * __le32 blink2; branch link
435 * __le32 ilink1; interrupt link
436 * __le32 ilink2; interrupt link
437 * __le32 data1; error-specific data
438 * __le32 data2; error-specific data
439 * __le32 line; source code line of error
440 * __le32 bcon_time; beacon timer
441 * __le32 tsf_low; network timestamp function timer
442 * __le32 tsf_hi; network timestamp function timer
443 *
444 * The Linux driver can print both logs to the system log when a uCode error
445 * occurs.
446 */
447struct iwl4965_alive_resp {
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448 u8 ucode_minor;
449 u8 ucode_major;
450 __le16 reserved1;
451 u8 sw_rev[8];
452 u8 ver_type;
075416cd 453 u8 ver_subtype; /* not "9" for runtime alive */
b481de9c 454 __le16 reserved2;
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455 __le32 log_event_table_ptr; /* SRAM address for event log */
456 __le32 error_event_table_ptr; /* SRAM address for error log */
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457 __le32 timestamp;
458 __le32 is_valid;
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459} __attribute__ ((packed));
460
075416cd 461
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462union tsf {
463 u8 byte[8];
464 __le16 word[4];
465 __le32 dw[2];
466};
467
468/*
469 * REPLY_ERROR = 0x2 (response only, not a command)
470 */
bb8c093b 471struct iwl4965_error_resp {
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472 __le32 error_type;
473 u8 cmd_id;
474 u8 reserved1;
475 __le16 bad_cmd_seq_num;
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476 __le32 error_info;
477 union tsf timestamp;
478} __attribute__ ((packed));
479
480/******************************************************************************
481 * (1)
482 * RXON Commands & Responses:
483 *
484 *****************************************************************************/
485
486/*
487 * Rx config defines & structure
488 */
489/* rx_config device types */
490enum {
491 RXON_DEV_TYPE_AP = 1,
492 RXON_DEV_TYPE_ESS = 3,
493 RXON_DEV_TYPE_IBSS = 4,
494 RXON_DEV_TYPE_SNIFFER = 6,
495};
496
14519a0b 497
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498#define RXON_RX_CHAIN_DRIVER_FORCE_MSK __constant_cpu_to_le16(0x1 << 0)
499#define RXON_RX_CHAIN_VALID_MSK __constant_cpu_to_le16(0x7 << 1)
14519a0b 500#define RXON_RX_CHAIN_VALID_POS (1)
8a1b0245 501#define RXON_RX_CHAIN_FORCE_SEL_MSK __constant_cpu_to_le16(0x7 << 4)
14519a0b 502#define RXON_RX_CHAIN_FORCE_SEL_POS (4)
8a1b0245 503#define RXON_RX_CHAIN_FORCE_MIMO_SEL_MSK __constant_cpu_to_le16(0x7 << 7)
14519a0b 504#define RXON_RX_CHAIN_FORCE_MIMO_SEL_POS (7)
8a1b0245 505#define RXON_RX_CHAIN_CNT_MSK __constant_cpu_to_le16(0x3 << 10)
14519a0b 506#define RXON_RX_CHAIN_CNT_POS (10)
8a1b0245 507#define RXON_RX_CHAIN_MIMO_CNT_MSK __constant_cpu_to_le16(0x3 << 12)
14519a0b 508#define RXON_RX_CHAIN_MIMO_CNT_POS (12)
8a1b0245 509#define RXON_RX_CHAIN_MIMO_FORCE_MSK __constant_cpu_to_le16(0x1 << 14)
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510#define RXON_RX_CHAIN_MIMO_FORCE_POS (14)
511
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512/* rx_config flags */
513/* band & modulation selection */
514#define RXON_FLG_BAND_24G_MSK __constant_cpu_to_le32(1 << 0)
515#define RXON_FLG_CCK_MSK __constant_cpu_to_le32(1 << 1)
516/* auto detection enable */
517#define RXON_FLG_AUTO_DETECT_MSK __constant_cpu_to_le32(1 << 2)
518/* TGg protection when tx */
519#define RXON_FLG_TGG_PROTECT_MSK __constant_cpu_to_le32(1 << 3)
520/* cck short slot & preamble */
521#define RXON_FLG_SHORT_SLOT_MSK __constant_cpu_to_le32(1 << 4)
522#define RXON_FLG_SHORT_PREAMBLE_MSK __constant_cpu_to_le32(1 << 5)
523/* antenna selection */
524#define RXON_FLG_DIS_DIV_MSK __constant_cpu_to_le32(1 << 7)
525#define RXON_FLG_ANT_SEL_MSK __constant_cpu_to_le32(0x0f00)
526#define RXON_FLG_ANT_A_MSK __constant_cpu_to_le32(1 << 8)
527#define RXON_FLG_ANT_B_MSK __constant_cpu_to_le32(1 << 9)
528/* radar detection enable */
529#define RXON_FLG_RADAR_DETECT_MSK __constant_cpu_to_le32(1 << 12)
530#define RXON_FLG_TGJ_NARROW_BAND_MSK __constant_cpu_to_le32(1 << 13)
531/* rx response to host with 8-byte TSF
532* (according to ON_AIR deassertion) */
533#define RXON_FLG_TSF2HOST_MSK __constant_cpu_to_le32(1 << 15)
534
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535
536/* HT flags */
537#define RXON_FLG_CTRL_CHANNEL_LOC_POS (22)
8a1b0245 538#define RXON_FLG_CTRL_CHANNEL_LOC_HI_MSK __constant_cpu_to_le32(0x1 << 22)
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539
540#define RXON_FLG_HT_OPERATING_MODE_POS (23)
541
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542#define RXON_FLG_HT_PROT_MSK __constant_cpu_to_le32(0x1 << 23)
543#define RXON_FLG_FAT_PROT_MSK __constant_cpu_to_le32(0x2 << 23)
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544
545#define RXON_FLG_CHANNEL_MODE_POS (25)
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546#define RXON_FLG_CHANNEL_MODE_MSK __constant_cpu_to_le32(0x3 << 25)
547#define RXON_FLG_CHANNEL_MODE_PURE_40_MSK __constant_cpu_to_le32(0x1 << 25)
548#define RXON_FLG_CHANNEL_MODE_MIXED_MSK __constant_cpu_to_le32(0x2 << 25)
14519a0b 549
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550/* rx_config filter flags */
551/* accept all data frames */
552#define RXON_FILTER_PROMISC_MSK __constant_cpu_to_le32(1 << 0)
553/* pass control & management to host */
554#define RXON_FILTER_CTL2HOST_MSK __constant_cpu_to_le32(1 << 1)
555/* accept multi-cast */
556#define RXON_FILTER_ACCEPT_GRP_MSK __constant_cpu_to_le32(1 << 2)
557/* don't decrypt uni-cast frames */
558#define RXON_FILTER_DIS_DECRYPT_MSK __constant_cpu_to_le32(1 << 3)
559/* don't decrypt multi-cast frames */
560#define RXON_FILTER_DIS_GRP_DECRYPT_MSK __constant_cpu_to_le32(1 << 4)
561/* STA is associated */
562#define RXON_FILTER_ASSOC_MSK __constant_cpu_to_le32(1 << 5)
563/* transfer to host non bssid beacons in associated state */
564#define RXON_FILTER_BCON_AWARE_MSK __constant_cpu_to_le32(1 << 6)
565
80cc0c38 566/**
b481de9c 567 * REPLY_RXON = 0x10 (command, has simple generic response)
80cc0c38
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568 *
569 * RXON tunes the radio tuner to a service channel, and sets up a number
570 * of parameters that are used primarily for Rx, but also for Tx operations.
571 *
572 * NOTE: When tuning to a new channel, driver must set the
573 * RXON_FILTER_ASSOC_MSK to 0. This will clear station-dependent
574 * info within the device, including the station tables, tx retry
575 * rate tables, and txpower tables. Driver must build a new station
576 * table and txpower table before transmitting anything on the RXON
577 * channel.
578 *
579 * NOTE: All RXONs wipe clean the internal txpower table. Driver must
580 * issue a new REPLY_TX_PWR_TABLE_CMD after each REPLY_RXON (0x10),
581 * regardless of whether RXON_FILTER_ASSOC_MSK is set.
b481de9c 582 */
bb8c093b 583struct iwl4965_rxon_cmd {
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584 u8 node_addr[6];
585 __le16 reserved1;
586 u8 bssid_addr[6];
587 __le16 reserved2;
588 u8 wlap_bssid_addr[6];
589 __le16 reserved3;
590 u8 dev_type;
591 u8 air_propagation;
b481de9c 592 __le16 rx_chain;
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593 u8 ofdm_basic_rates;
594 u8 cck_basic_rates;
595 __le16 assoc_id;
596 __le32 flags;
597 __le32 filter_flags;
598 __le16 channel;
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599 u8 ofdm_ht_single_stream_basic_rates;
600 u8 ofdm_ht_dual_stream_basic_rates;
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601} __attribute__ ((packed));
602
603/*
604 * REPLY_RXON_ASSOC = 0x11 (command, has simple generic response)
605 */
bb8c093b 606struct iwl4965_rxon_assoc_cmd {
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607 __le32 flags;
608 __le32 filter_flags;
609 u8 ofdm_basic_rates;
610 u8 cck_basic_rates;
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611 u8 ofdm_ht_single_stream_basic_rates;
612 u8 ofdm_ht_dual_stream_basic_rates;
613 __le16 rx_chain_select_flags;
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614 __le16 reserved;
615} __attribute__ ((packed));
616
617/*
618 * REPLY_RXON_TIMING = 0x14 (command, has simple generic response)
619 */
bb8c093b 620struct iwl4965_rxon_time_cmd {
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621 union tsf timestamp;
622 __le16 beacon_interval;
623 __le16 atim_window;
624 __le32 beacon_init_val;
625 __le16 listen_interval;
626 __le16 reserved;
627} __attribute__ ((packed));
628
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629/*
630 * REPLY_CHANNEL_SWITCH = 0x72 (command, has simple generic response)
631 */
bb8c093b 632struct iwl4965_channel_switch_cmd {
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633 u8 band;
634 u8 expect_beacon;
635 __le16 channel;
636 __le32 rxon_flags;
637 __le32 rxon_filter_flags;
638 __le32 switch_time;
bb8c093b 639 struct iwl4965_tx_power_db tx_power;
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640} __attribute__ ((packed));
641
642/*
643 * CHANNEL_SWITCH_NOTIFICATION = 0x73 (notification only, not a command)
644 */
bb8c093b 645struct iwl4965_csa_notification {
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646 __le16 band;
647 __le16 channel;
648 __le32 status; /* 0 - OK, 1 - fail */
649} __attribute__ ((packed));
650
651/******************************************************************************
652 * (2)
653 * Quality-of-Service (QOS) Commands & Responses:
654 *
655 *****************************************************************************/
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656
657/**
658 * struct iwl_ac_qos -- QOS timing params for REPLY_QOS_PARAM
659 * One for each of 4 EDCA access categories in struct iwl_qosparam_cmd
660 *
661 * @cw_min: Contention window, start value in numbers of slots.
662 * Should be a power-of-2, minus 1. Device's default is 0x0f.
663 * @cw_max: Contention window, max value in numbers of slots.
664 * Should be a power-of-2, minus 1. Device's default is 0x3f.
665 * @aifsn: Number of slots in Arbitration Interframe Space (before
666 * performing random backoff timing prior to Tx). Device default 1.
667 * @edca_txop: Length of Tx opportunity, in uSecs. Device default is 0.
668 *
669 * Device will automatically increase contention window by (2*CW) + 1 for each
670 * transmission retry. Device uses cw_max as a bit mask, ANDed with new CW
671 * value, to cap the CW value.
672 */
bb8c093b 673struct iwl4965_ac_qos {
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674 __le16 cw_min;
675 __le16 cw_max;
676 u8 aifsn;
677 u8 reserved1;
678 __le16 edca_txop;
679} __attribute__ ((packed));
680
681/* QoS flags defines */
682#define QOS_PARAM_FLG_UPDATE_EDCA_MSK __constant_cpu_to_le32(0x01)
683#define QOS_PARAM_FLG_TGN_MSK __constant_cpu_to_le32(0x02)
684#define QOS_PARAM_FLG_TXOP_TYPE_MSK __constant_cpu_to_le32(0x10)
685
2054a00b 686/* Number of Access Categories (AC) (EDCA), queues 0..3 */
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687#define AC_NUM 4
688
689/*
690 * REPLY_QOS_PARAM = 0x13 (command, has simple generic response)
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691 *
692 * This command sets up timings for each of the 4 prioritized EDCA Tx FIFOs
693 * 0: Background, 1: Best Effort, 2: Video, 3: Voice.
b481de9c 694 */
bb8c093b 695struct iwl4965_qosparam_cmd {
b481de9c 696 __le32 qos_flags;
bb8c093b 697 struct iwl4965_ac_qos ac[AC_NUM];
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698} __attribute__ ((packed));
699
700/******************************************************************************
701 * (3)
702 * Add/Modify Stations Commands & Responses:
703 *
704 *****************************************************************************/
705/*
706 * Multi station support
707 */
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708
709/* Special, dedicated locations within device's station table */
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710#define IWL_AP_ID 0
711#define IWL_MULTICAST_ID 1
712#define IWL_STA_ID 2
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713#define IWL4965_BROADCAST_ID 31
714#define IWL4965_STATION_COUNT 32
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715#define IWL5000_BROADCAST_ID 15
716#define IWL5000_STATION_COUNT 16
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717
718#define IWL_STATION_COUNT 32 /* MAX(3945,4965)*/
719#define IWL_INVALID_STATION 255
720
8a1b0245 721#define STA_FLG_PWR_SAVE_MSK __constant_cpu_to_le32(1 << 8);
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722#define STA_FLG_RTS_MIMO_PROT_MSK __constant_cpu_to_le32(1 << 17)
723#define STA_FLG_AGG_MPDU_8US_MSK __constant_cpu_to_le32(1 << 18)
724#define STA_FLG_MAX_AGG_SIZE_POS (19)
725#define STA_FLG_MAX_AGG_SIZE_MSK __constant_cpu_to_le32(3 << 19)
726#define STA_FLG_FAT_EN_MSK __constant_cpu_to_le32(1 << 21)
727#define STA_FLG_MIMO_DIS_MSK __constant_cpu_to_le32(1 << 22)
728#define STA_FLG_AGG_MPDU_DENSITY_POS (23)
729#define STA_FLG_AGG_MPDU_DENSITY_MSK __constant_cpu_to_le32(7 << 23)
b481de9c 730
2054a00b 731/* Use in mode field. 1: modify existing entry, 0: add new station entry */
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732#define STA_CONTROL_MODIFY_MSK 0x01
733
734/* key flags __le16*/
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735#define STA_KEY_FLG_ENCRYPT_MSK __constant_cpu_to_le16(0x0007)
736#define STA_KEY_FLG_NO_ENC __constant_cpu_to_le16(0x0000)
737#define STA_KEY_FLG_WEP __constant_cpu_to_le16(0x0001)
738#define STA_KEY_FLG_CCMP __constant_cpu_to_le16(0x0002)
739#define STA_KEY_FLG_TKIP __constant_cpu_to_le16(0x0003)
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740
741#define STA_KEY_FLG_KEYID_POS 8
742#define STA_KEY_FLG_INVALID __constant_cpu_to_le16(0x0800)
eaaf7894
EG
743/* wep key is either from global key (0) or from station info array (1) */
744#define STA_KEY_FLG_MAP_KEY_MSK __constant_cpu_to_le16(0x0008)
745
746/* wep key in STA: 5-bytes (0) or 13-bytes (1) */
747#define STA_KEY_FLG_KEY_SIZE_MSK __constant_cpu_to_le16(0x1000)
748#define STA_KEY_MULTICAST_MSK __constant_cpu_to_le16(0x4000)
deb09c43 749#define STA_KEY_MAX_NUM 8
b481de9c 750
2054a00b 751/* Flags indicate whether to modify vs. don't change various station params */
b481de9c
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752#define STA_MODIFY_KEY_MASK 0x01
753#define STA_MODIFY_TID_DISABLE_TX 0x02
754#define STA_MODIFY_TX_RATE_MSK 0x04
755#define STA_MODIFY_ADDBA_TID_MSK 0x08
756#define STA_MODIFY_DELBA_TID_MSK 0x10
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757
758/* Receiver address (actually, Rx station's index into station table),
759 * combined with Traffic ID (QOS priority), in format used by Tx Scheduler */
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760#define BUILD_RAxTID(sta_id, tid) (((sta_id) << 4) + (tid))
761
bb8c093b 762struct iwl4965_keyinfo {
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763 __le16 key_flags;
764 u8 tkip_rx_tsc_byte2; /* TSC[2] for key mix ph1 detection */
765 u8 reserved1;
766 __le16 tkip_rx_ttak[5]; /* 10-byte unicast TKIP TTAK */
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767 u8 key_offset;
768 u8 reserved2;
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769 u8 key[16]; /* 16-byte unicast decryption key */
770} __attribute__ ((packed));
771
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772/* 5000 */
773struct iwl_keyinfo {
774 __le16 key_flags;
775 u8 tkip_rx_tsc_byte2; /* TSC[2] for key mix ph1 detection */
776 u8 reserved1;
777 __le16 tkip_rx_ttak[5]; /* 10-byte unicast TKIP TTAK */
778 u8 key_offset;
779 u8 reserved2;
780 u8 key[16]; /* 16-byte unicast decryption key */
781 __le64 tx_secur_seq_cnt;
782 __le64 hw_tkip_mic_rx_key;
783 __le64 hw_tkip_mic_tx_key;
784} __attribute__ ((packed));
785
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786/**
787 * struct sta_id_modify
788 * @addr[ETH_ALEN]: station's MAC address
789 * @sta_id: index of station in uCode's station table
790 * @modify_mask: STA_MODIFY_*, 1: modify, 0: don't change
791 *
792 * Driver selects unused table index when adding new station,
793 * or the index to a pre-existing station entry when modifying that station.
794 * Some indexes have special purposes (IWL_AP_ID, index 0, is for AP).
795 *
796 * modify_mask flags select which parameters to modify vs. leave alone.
797 */
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798struct sta_id_modify {
799 u8 addr[ETH_ALEN];
800 __le16 reserved1;
801 u8 sta_id;
802 u8 modify_mask;
803 __le16 reserved2;
804} __attribute__ ((packed));
805
806/*
807 * REPLY_ADD_STA = 0x18 (command)
2054a00b
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808 *
809 * The device contains an internal table of per-station information,
810 * with info on security keys, aggregation parameters, and Tx rates for
811 * initial Tx attempt and any retries (4965 uses REPLY_TX_LINK_QUALITY_CMD,
812 * 3945 uses REPLY_RATE_SCALE to set up rate tables).
813 *
814 * REPLY_ADD_STA sets up the table entry for one station, either creating
815 * a new entry, or modifying a pre-existing one.
816 *
817 * NOTE: RXON command (without "associated" bit set) wipes the station table
818 * clean. Moving into RF_KILL state does this also. Driver must set up
819 * new station table before transmitting anything on the RXON channel
820 * (except active scans or active measurements; those commands carry
821 * their own txpower/rate setup data).
822 *
823 * When getting started on a new channel, driver must set up the
824 * IWL_BROADCAST_ID entry (last entry in the table). For a client
825 * station in a BSS, once an AP is selected, driver sets up the AP STA
826 * in the IWL_AP_ID entry (1st entry in the table). BROADCAST and AP
827 * are all that are needed for a BSS client station. If the device is
828 * used as AP, or in an IBSS network, driver must set up station table
829 * entries for all STAs in network, starting with index IWL_STA_ID.
b481de9c 830 */
bb8c093b 831struct iwl4965_addsta_cmd {
2054a00b 832 u8 mode; /* 1: modify existing, 0: add new station */
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833 u8 reserved[3];
834 struct sta_id_modify sta;
bb8c093b 835 struct iwl4965_keyinfo key;
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836 __le32 station_flags; /* STA_FLG_* */
837 __le32 station_flags_msk; /* STA_FLG_* */
838
839 /* bit field to disable (1) or enable (0) Tx for Traffic ID (TID)
840 * corresponding to bit (e.g. bit 5 controls TID 5).
841 * Set modify_mask bit STA_MODIFY_TID_DISABLE_TX to use this field. */
b481de9c 842 __le16 tid_disable_tx;
2054a00b 843
b481de9c 844 __le16 reserved1;
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BC
845
846 /* TID for which to add block-ack support.
847 * Set modify_mask bit STA_MODIFY_ADDBA_TID_MSK to use this field. */
b481de9c 848 u8 add_immediate_ba_tid;
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849
850 /* TID for which to remove block-ack support.
851 * Set modify_mask bit STA_MODIFY_DELBA_TID_MSK to use this field. */
b481de9c 852 u8 remove_immediate_ba_tid;
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853
854 /* Starting Sequence Number for added block-ack support.
855 * Set modify_mask bit STA_MODIFY_ADDBA_TID_MSK to use this field. */
b481de9c 856 __le16 add_immediate_ba_ssn;
2054a00b 857
b481de9c 858 __le32 reserved2;
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859} __attribute__ ((packed));
860
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861/* 5000 */
862struct iwl_addsta_cmd {
863 u8 mode; /* 1: modify existing, 0: add new station */
864 u8 reserved[3];
865 struct sta_id_modify sta;
866 struct iwl_keyinfo key;
867 __le32 station_flags; /* STA_FLG_* */
868 __le32 station_flags_msk; /* STA_FLG_* */
869
870 /* bit field to disable (1) or enable (0) Tx for Traffic ID (TID)
871 * corresponding to bit (e.g. bit 5 controls TID 5).
872 * Set modify_mask bit STA_MODIFY_TID_DISABLE_TX to use this field. */
873 __le16 tid_disable_tx;
874
875 __le16 reserved1;
876
877 /* TID for which to add block-ack support.
878 * Set modify_mask bit STA_MODIFY_ADDBA_TID_MSK to use this field. */
879 u8 add_immediate_ba_tid;
880
881 /* TID for which to remove block-ack support.
882 * Set modify_mask bit STA_MODIFY_DELBA_TID_MSK to use this field. */
883 u8 remove_immediate_ba_tid;
884
885 /* Starting Sequence Number for added block-ack support.
886 * Set modify_mask bit STA_MODIFY_ADDBA_TID_MSK to use this field. */
887 __le16 add_immediate_ba_ssn;
888
889 __le32 reserved2;
890} __attribute__ ((packed));
891
892
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893#define ADD_STA_SUCCESS_MSK 0x1
894#define ADD_STA_NO_ROOM_IN_TABLE 0x2
895#define ADD_STA_NO_BLOCK_ACK_RESOURCE 0x4
896#define ADD_STA_MODIFY_NON_EXIST_STA 0x8
b481de9c
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897/*
898 * REPLY_ADD_STA = 0x18 (response)
899 */
bb8c093b 900struct iwl4965_add_sta_resp {
2054a00b 901 u8 status; /* ADD_STA_* */
b481de9c
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902} __attribute__ ((packed));
903
0a0bed1d
EG
904/*
905 * REPLY_WEP_KEY = 0x20
906 */
907struct iwl_wep_key {
908 u8 key_index;
909 u8 key_offset;
910 u8 reserved1[2];
911 u8 key_size;
912 u8 reserved2[3];
913 u8 key[16];
914} __attribute__ ((packed));
915
916struct iwl_wep_cmd {
917 u8 num_keys;
918 u8 global_key_type;
919 u8 flags;
920 u8 reserved;
921 struct iwl_wep_key key[0];
922} __attribute__ ((packed));
923
924#define WEP_KEY_WEP_TYPE 1
925#define WEP_KEYS_MAX 4
926#define WEP_INVALID_OFFSET 0xff
927#define WEP_KEY_LEN_128 13
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928
929/******************************************************************************
930 * (4)
931 * Rx Responses:
932 *
933 *****************************************************************************/
934
bb8c093b 935struct iwl4965_rx_frame_stats {
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936 u8 phy_count;
937 u8 id;
938 u8 rssi;
939 u8 agc;
940 __le16 sig_avg;
941 __le16 noise_diff;
942 u8 payload[0];
943} __attribute__ ((packed));
944
bb8c093b 945struct iwl4965_rx_frame_hdr {
b481de9c
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946 __le16 channel;
947 __le16 phy_flags;
948 u8 reserved1;
949 u8 rate;
950 __le16 len;
951 u8 payload[0];
952} __attribute__ ((packed));
953
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954#define RX_RES_STATUS_NO_CRC32_ERROR __constant_cpu_to_le32(1 << 0)
955#define RX_RES_STATUS_NO_RXE_OVERFLOW __constant_cpu_to_le32(1 << 1)
956
957#define RX_RES_PHY_FLAGS_BAND_24_MSK __constant_cpu_to_le16(1 << 0)
958#define RX_RES_PHY_FLAGS_MOD_CCK_MSK __constant_cpu_to_le16(1 << 1)
959#define RX_RES_PHY_FLAGS_SHORT_PREAMBLE_MSK __constant_cpu_to_le16(1 << 2)
960#define RX_RES_PHY_FLAGS_NARROW_BAND_MSK __constant_cpu_to_le16(1 << 3)
961#define RX_RES_PHY_FLAGS_ANTENNA_MSK __constant_cpu_to_le16(0xf0)
962
963#define RX_RES_STATUS_SEC_TYPE_MSK (0x7 << 8)
964#define RX_RES_STATUS_SEC_TYPE_NONE (0x0 << 8)
965#define RX_RES_STATUS_SEC_TYPE_WEP (0x1 << 8)
966#define RX_RES_STATUS_SEC_TYPE_CCMP (0x2 << 8)
967#define RX_RES_STATUS_SEC_TYPE_TKIP (0x3 << 8)
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968#define RX_RES_STATUS_SEC_TYPE_ERR (0x7 << 8)
969
970#define RX_RES_STATUS_STATION_FOUND (1<<6)
971#define RX_RES_STATUS_NO_STATION_INFO_MISMATCH (1<<7)
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972
973#define RX_RES_STATUS_DECRYPT_TYPE_MSK (0x3 << 11)
974#define RX_RES_STATUS_NOT_DECRYPT (0x0 << 11)
975#define RX_RES_STATUS_DECRYPT_OK (0x3 << 11)
976#define RX_RES_STATUS_BAD_ICV_MIC (0x1 << 11)
977#define RX_RES_STATUS_BAD_KEY_TTAK (0x2 << 11)
b481de9c 978
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EG
979#define RX_MPDU_RES_STATUS_ICV_OK (0x20)
980#define RX_MPDU_RES_STATUS_MIC_OK (0x40)
981#define RX_MPDU_RES_STATUS_TTAK_OK (1 << 7)
982#define RX_MPDU_RES_STATUS_DEC_DONE_MSK (0x800)
983
bb8c093b 984struct iwl4965_rx_frame_end {
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985 __le32 status;
986 __le64 timestamp;
987 __le32 beacon_timestamp;
988} __attribute__ ((packed));
989
990/*
991 * REPLY_3945_RX = 0x1b (response only, not a command)
992 *
993 * NOTE: DO NOT dereference from casts to this structure
994 * It is provided only for calculating minimum data set size.
995 * The actual offsets of the hdr and end are dynamic based on
996 * stats.phy_count
997 */
bb8c093b
CH
998struct iwl4965_rx_frame {
999 struct iwl4965_rx_frame_stats stats;
1000 struct iwl4965_rx_frame_hdr hdr;
1001 struct iwl4965_rx_frame_end end;
b481de9c
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1002} __attribute__ ((packed));
1003
1004/* Fixed (non-configurable) rx data from phy */
1005#define RX_PHY_FLAGS_ANTENNAE_OFFSET (4)
1006#define RX_PHY_FLAGS_ANTENNAE_MASK (0x70)
1007#define IWL_AGC_DB_MASK (0x3f80) /* MASK(7,13) */
1008#define IWL_AGC_DB_POS (7)
1009struct iwl4965_rx_non_cfg_phy {
1010 __le16 ant_selection; /* ant A bit 4, ant B bit 5, ant C bit 6 */
1011 __le16 agc_info; /* agc code 0:6, agc dB 7:13, reserved 14:15 */
1012 u8 rssi_info[6]; /* we use even entries, 0/2/4 for A/B/C rssi */
1013 u8 pad[0];
1014} __attribute__ ((packed));
1015
1016/*
857485c0 1017 * REPLY_RX = 0xc3 (response only, not a command)
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1018 * Used only for legacy (non 11n) frames.
1019 */
1020#define RX_RES_PHY_CNT 14
1021struct iwl4965_rx_phy_res {
1022 u8 non_cfg_phy_cnt; /* non configurable DSP phy data byte count */
1023 u8 cfg_phy_cnt; /* configurable DSP phy data byte count */
1024 u8 stat_id; /* configurable DSP phy data set ID */
1025 u8 reserved1;
1026 __le64 timestamp; /* TSF at on air rise */
1027 __le32 beacon_time_stamp; /* beacon at on-air rise */
1028 __le16 phy_flags; /* general phy flags: band, modulation, ... */
1029 __le16 channel; /* channel number */
1030 __le16 non_cfg_phy[RX_RES_PHY_CNT]; /* upto 14 phy entries */
1031 __le32 reserved2;
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BC
1032 __le32 rate_n_flags; /* RATE_MCS_* */
1033 __le16 byte_count; /* frame's byte-count */
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ZY
1034 __le16 reserved3;
1035} __attribute__ ((packed));
1036
1037struct iwl4965_rx_mpdu_res_start {
1038 __le16 byte_count;
1039 __le16 reserved;
1040} __attribute__ ((packed));
1041
1042
1043/******************************************************************************
1044 * (5)
1045 * Tx Commands & Responses:
1046 *
52969981
BC
1047 * Driver must place each REPLY_TX command into one of the prioritized Tx
1048 * queues in host DRAM, shared between driver and device (see comments for
1049 * SCD registers and Tx/Rx Queues). When the device's Tx scheduler and uCode
1050 * are preparing to transmit, the device pulls the Tx command over the PCI
1051 * bus via one of the device's Tx DMA channels, to fill an internal FIFO
1052 * from which data will be transmitted.
1053 *
1054 * uCode handles all timing and protocol related to control frames
1055 * (RTS/CTS/ACK), based on flags in the Tx command. uCode and Tx scheduler
1056 * handle reception of block-acks; uCode updates the host driver via
1057 * REPLY_COMPRESSED_BA (4965).
1058 *
1059 * uCode handles retrying Tx when an ACK is expected but not received.
1060 * This includes trying lower data rates than the one requested in the Tx
1061 * command, as set up by the REPLY_RATE_SCALE (for 3945) or
1062 * REPLY_TX_LINK_QUALITY_CMD (4965).
1063 *
1064 * Driver sets up transmit power for various rates via REPLY_TX_PWR_TABLE_CMD.
1065 * This command must be executed after every RXON command, before Tx can occur.
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1066 *****************************************************************************/
1067
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1068/* REPLY_TX Tx flags field */
1069
1070/* 1: Use Request-To-Send protocol before this frame.
1071 * Mutually exclusive vs. TX_CMD_FLG_CTS_MSK. */
b481de9c 1072#define TX_CMD_FLG_RTS_MSK __constant_cpu_to_le32(1 << 1)
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1073
1074/* 1: Transmit Clear-To-Send to self before this frame.
1075 * Driver should set this for AUTH/DEAUTH/ASSOC-REQ/REASSOC mgmnt frames.
1076 * Mutually exclusive vs. TX_CMD_FLG_RTS_MSK. */
b481de9c 1077#define TX_CMD_FLG_CTS_MSK __constant_cpu_to_le32(1 << 2)
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1078
1079/* 1: Expect ACK from receiving station
1080 * 0: Don't expect ACK (MAC header's duration field s/b 0)
1081 * Set this for unicast frames, but not broadcast/multicast. */
b481de9c 1082#define TX_CMD_FLG_ACK_MSK __constant_cpu_to_le32(1 << 3)
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1083
1084/* For 4965:
1085 * 1: Use rate scale table (see REPLY_TX_LINK_QUALITY_CMD).
1086 * Tx command's initial_rate_index indicates first rate to try;
1087 * uCode walks through table for additional Tx attempts.
1088 * 0: Use Tx rate/MCS from Tx command's rate_n_flags field.
1089 * This rate will be used for all Tx attempts; it will not be scaled. */
b481de9c 1090#define TX_CMD_FLG_STA_RATE_MSK __constant_cpu_to_le32(1 << 4)
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1091
1092/* 1: Expect immediate block-ack.
1093 * Set when Txing a block-ack request frame. Also set TX_CMD_FLG_ACK_MSK. */
b481de9c 1094#define TX_CMD_FLG_IMM_BA_RSP_MASK __constant_cpu_to_le32(1 << 6)
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1095
1096/* 1: Frame requires full Tx-Op protection.
1097 * Set this if either RTS or CTS Tx Flag gets set. */
b481de9c 1098#define TX_CMD_FLG_FULL_TXOP_PROT_MSK __constant_cpu_to_le32(1 << 7)
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1099
1100/* Tx antenna selection field; used only for 3945, reserved (0) for 4965.
1101 * Set field to "0" to allow 3945 uCode to select antenna (normal usage). */
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1102#define TX_CMD_FLG_ANT_SEL_MSK __constant_cpu_to_le32(0xf00)
1103#define TX_CMD_FLG_ANT_A_MSK __constant_cpu_to_le32(1 << 8)
1104#define TX_CMD_FLG_ANT_B_MSK __constant_cpu_to_le32(1 << 9)
1105
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1106/* 1: Ignore Bluetooth priority for this frame.
1107 * 0: Delay Tx until Bluetooth device is done (normal usage). */
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1108#define TX_CMD_FLG_BT_DIS_MSK __constant_cpu_to_le32(1 << 12)
1109
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1110/* 1: uCode overrides sequence control field in MAC header.
1111 * 0: Driver provides sequence control field in MAC header.
1112 * Set this for management frames, non-QOS data frames, non-unicast frames,
1113 * and also in Tx command embedded in REPLY_SCAN_CMD for active scans. */
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1114#define TX_CMD_FLG_SEQ_CTL_MSK __constant_cpu_to_le32(1 << 13)
1115
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1116/* 1: This frame is non-last MPDU; more fragments are coming.
1117 * 0: Last fragment, or not using fragmentation. */
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1118#define TX_CMD_FLG_MORE_FRAG_MSK __constant_cpu_to_le32(1 << 14)
1119
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1120/* 1: uCode calculates and inserts Timestamp Function (TSF) in outgoing frame.
1121 * 0: No TSF required in outgoing frame.
1122 * Set this for transmitting beacons and probe responses. */
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1123#define TX_CMD_FLG_TSF_MSK __constant_cpu_to_le32(1 << 16)
1124
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1125/* 1: Driver inserted 2 bytes pad after the MAC header, for (required) dword
1126 * alignment of frame's payload data field.
1127 * 0: No pad
1128 * Set this for MAC headers with 26 or 30 bytes, i.e. those with QOS or ADDR4
1129 * field (but not both). Driver must align frame data (i.e. data following
1130 * MAC header) to DWORD boundary. */
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1131#define TX_CMD_FLG_MH_PAD_MSK __constant_cpu_to_le32(1 << 20)
1132
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1133/* accelerate aggregation support
1134 * 0 - no CCMP encryption; 1 - CCMP encryption */
1135#define TX_CMD_FLG_AGG_CCMP_MSK __constant_cpu_to_le32(1 << 22)
1136
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1137/* HCCA-AP - disable duration overwriting. */
1138#define TX_CMD_FLG_DUR_MSK __constant_cpu_to_le32(1 << 25)
1139
52969981 1140
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1141/*
1142 * TX command security control
1143 */
1144#define TX_CMD_SEC_WEP 0x01
1145#define TX_CMD_SEC_CCM 0x02
1146#define TX_CMD_SEC_TKIP 0x03
1147#define TX_CMD_SEC_MSK 0x03
1148#define TX_CMD_SEC_SHIFT 6
1149#define TX_CMD_SEC_KEY128 0x08
1150
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1151/*
1152 * security overhead sizes
1153 */
1154#define WEP_IV_LEN 4
1155#define WEP_ICV_LEN 4
1156#define CCMP_MIC_LEN 8
1157#define TKIP_ICV_LEN 4
1158
b481de9c 1159/*
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1160 * 4965 uCode updates these Tx attempt count values in host DRAM.
1161 * Used for managing Tx retries when expecting block-acks.
1162 * Driver should set these fields to 0.
b481de9c 1163 */
bb8c093b 1164struct iwl4965_dram_scratch {
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1165 u8 try_cnt; /* Tx attempts */
1166 u8 bt_kill_cnt; /* Tx attempts blocked by Bluetooth device */
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1167 __le16 reserved;
1168} __attribute__ ((packed));
1169
1170/*
1171 * REPLY_TX = 0x1c (command)
1172 */
bb8c093b 1173struct iwl4965_tx_cmd {
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1174 /*
1175 * MPDU byte count:
1176 * MAC header (24/26/30/32 bytes) + 2 bytes pad if 26/30 header size,
1177 * + 8 byte IV for CCM or TKIP (not used for WEP)
1178 * + Data payload
1179 * + 8-byte MIC (not used for CCM/WEP)
1180 * NOTE: Does not include Tx command bytes, post-MAC pad bytes,
1181 * MIC (CCM) 8 bytes, ICV (WEP/TKIP/CKIP) 4 bytes, CRC 4 bytes.i
1182 * Range: 14-2342 bytes.
1183 */
b481de9c 1184 __le16 len;
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1185
1186 /*
1187 * MPDU or MSDU byte count for next frame.
1188 * Used for fragmentation and bursting, but not 11n aggregation.
1189 * Same as "len", but for next frame. Set to 0 if not applicable.
1190 */
b481de9c 1191 __le16 next_frame_len;
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1192
1193 __le32 tx_flags; /* TX_CMD_FLG_* */
1194
1195 /* 4965's uCode may modify this field of the Tx command (in host DRAM!).
1196 * Driver must also set dram_lsb_ptr and dram_msb_ptr in this cmd. */
bb8c093b 1197 struct iwl4965_dram_scratch scratch;
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1198
1199 /* Rate for *all* Tx attempts, if TX_CMD_FLG_STA_RATE_MSK is cleared. */
1200 __le32 rate_n_flags; /* RATE_MCS_* */
1201
1202 /* Index of destination station in uCode's station table */
b481de9c 1203 u8 sta_id;
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1204
1205 /* Type of security encryption: CCM or TKIP */
1206 u8 sec_ctl; /* TX_CMD_SEC_* */
1207
1208 /*
1209 * Index into rate table (see REPLY_TX_LINK_QUALITY_CMD) for initial
1210 * Tx attempt, if TX_CMD_FLG_STA_RATE_MSK is set. Normally "0" for
1211 * data frames, this field may be used to selectively reduce initial
1212 * rate (via non-0 value) for special frames (e.g. management), while
1213 * still supporting rate scaling for all frames.
1214 */
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1215 u8 initial_rate_index;
1216 u8 reserved;
b481de9c 1217 u8 key[16];
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1218 __le16 next_frame_flags;
1219 __le16 reserved2;
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1220 union {
1221 __le32 life_time;
1222 __le32 attempt;
1223 } stop_time;
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1224
1225 /* Host DRAM physical address pointer to "scratch" in this command.
1226 * Must be dword aligned. "0" in dram_lsb_ptr disables usage. */
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1227 __le32 dram_lsb_ptr;
1228 u8 dram_msb_ptr;
52969981 1229
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1230 u8 rts_retry_limit; /*byte 50 */
1231 u8 data_retry_limit; /*byte 51 */
b481de9c 1232 u8 tid_tspec;
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1233 union {
1234 __le16 pm_frame_timeout;
1235 __le16 attempt_duration;
1236 } timeout;
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1237
1238 /*
1239 * Duration of EDCA burst Tx Opportunity, in 32-usec units.
1240 * Set this if txop time is not specified by HCCA protocol (e.g. by AP).
1241 */
b481de9c 1242 __le16 driver_txop;
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1243
1244 /*
1245 * MAC header goes here, followed by 2 bytes padding if MAC header
1246 * length is 26 or 30 bytes, followed by payload data
1247 */
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1248 u8 payload[0];
1249 struct ieee80211_hdr hdr[0];
1250} __attribute__ ((packed));
1251
1252/* TX command response is sent after *all* transmission attempts.
1253 *
1254 * NOTES:
1255 *
1256 * TX_STATUS_FAIL_NEXT_FRAG
1257 *
1258 * If the fragment flag in the MAC header for the frame being transmitted
1259 * is set and there is insufficient time to transmit the next frame, the
1260 * TX status will be returned with 'TX_STATUS_FAIL_NEXT_FRAG'.
1261 *
1262 * TX_STATUS_FIFO_UNDERRUN
1263 *
1264 * Indicates the host did not provide bytes to the FIFO fast enough while
1265 * a TX was in progress.
1266 *
1267 * TX_STATUS_FAIL_MGMNT_ABORT
1268 *
1269 * This status is only possible if the ABORT ON MGMT RX parameter was
1270 * set to true with the TX command.
1271 *
1272 * If the MSB of the status parameter is set then an abort sequence is
1273 * required. This sequence consists of the host activating the TX Abort
1274 * control line, and then waiting for the TX Abort command response. This
1275 * indicates that a the device is no longer in a transmit state, and that the
1276 * command FIFO has been cleared. The host must then deactivate the TX Abort
1277 * control line. Receiving is still allowed in this case.
1278 */
1279enum {
1280 TX_STATUS_SUCCESS = 0x01,
1281 TX_STATUS_DIRECT_DONE = 0x02,
1282 TX_STATUS_FAIL_SHORT_LIMIT = 0x82,
1283 TX_STATUS_FAIL_LONG_LIMIT = 0x83,
1284 TX_STATUS_FAIL_FIFO_UNDERRUN = 0x84,
1285 TX_STATUS_FAIL_MGMNT_ABORT = 0x85,
1286 TX_STATUS_FAIL_NEXT_FRAG = 0x86,
1287 TX_STATUS_FAIL_LIFE_EXPIRE = 0x87,
1288 TX_STATUS_FAIL_DEST_PS = 0x88,
1289 TX_STATUS_FAIL_ABORTED = 0x89,
1290 TX_STATUS_FAIL_BT_RETRY = 0x8a,
1291 TX_STATUS_FAIL_STA_INVALID = 0x8b,
1292 TX_STATUS_FAIL_FRAG_DROPPED = 0x8c,
1293 TX_STATUS_FAIL_TID_DISABLE = 0x8d,
1294 TX_STATUS_FAIL_FRAME_FLUSHED = 0x8e,
1295 TX_STATUS_FAIL_INSUFFICIENT_CF_POLL = 0x8f,
1296 TX_STATUS_FAIL_TX_LOCKED = 0x90,
1297 TX_STATUS_FAIL_NO_BEACON_ON_RADAR = 0x91,
1298};
1299
1300#define TX_PACKET_MODE_REGULAR 0x0000
1301#define TX_PACKET_MODE_BURST_SEQ 0x0100
1302#define TX_PACKET_MODE_BURST_FIRST 0x0200
1303
1304enum {
1305 TX_POWER_PA_NOT_ACTIVE = 0x0,
1306};
1307
1308enum {
1309 TX_STATUS_MSK = 0x000000ff, /* bits 0:7 */
1310 TX_STATUS_DELAY_MSK = 0x00000040,
1311 TX_STATUS_ABORT_MSK = 0x00000080,
1312 TX_PACKET_MODE_MSK = 0x0000ff00, /* bits 8:15 */
1313 TX_FIFO_NUMBER_MSK = 0x00070000, /* bits 16:18 */
1314 TX_RESERVED = 0x00780000, /* bits 19:22 */
1315 TX_POWER_PA_DETECT_MSK = 0x7f800000, /* bits 23:30 */
1316 TX_ABORT_REQUIRED_MSK = 0x80000000, /* bits 31:31 */
1317};
1318
1319/* *******************************
52969981 1320 * TX aggregation status
b481de9c
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1321 ******************************* */
1322
1323enum {
1324 AGG_TX_STATE_TRANSMITTED = 0x00,
1325 AGG_TX_STATE_UNDERRUN_MSK = 0x01,
1326 AGG_TX_STATE_BT_PRIO_MSK = 0x02,
1327 AGG_TX_STATE_FEW_BYTES_MSK = 0x04,
1328 AGG_TX_STATE_ABORT_MSK = 0x08,
1329 AGG_TX_STATE_LAST_SENT_TTL_MSK = 0x10,
1330 AGG_TX_STATE_LAST_SENT_TRY_CNT_MSK = 0x20,
1331 AGG_TX_STATE_LAST_SENT_BT_KILL_MSK = 0x40,
1332 AGG_TX_STATE_SCD_QUERY_MSK = 0x80,
1333 AGG_TX_STATE_TEST_BAD_CRC32_MSK = 0x100,
1334 AGG_TX_STATE_RESPONSE_MSK = 0x1ff,
1335 AGG_TX_STATE_DUMP_TX_MSK = 0x200,
1336 AGG_TX_STATE_DELAY_TX_MSK = 0x400
1337};
1338
1339#define AGG_TX_STATE_LAST_SENT_MSK \
1340(AGG_TX_STATE_LAST_SENT_TTL_MSK | \
1341 AGG_TX_STATE_LAST_SENT_TRY_CNT_MSK | \
1342 AGG_TX_STATE_LAST_SENT_BT_KILL_MSK)
1343
52969981 1344/* # tx attempts for first frame in aggregation */
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1345#define AGG_TX_STATE_TRY_CNT_POS 12
1346#define AGG_TX_STATE_TRY_CNT_MSK 0xf000
1347
52969981 1348/* Command ID and sequence number of Tx command for this frame */
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1349#define AGG_TX_STATE_SEQ_NUM_POS 16
1350#define AGG_TX_STATE_SEQ_NUM_MSK 0xffff0000
1351
1352/*
1353 * REPLY_TX = 0x1c (response)
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1354 *
1355 * This response may be in one of two slightly different formats, indicated
1356 * by the frame_count field:
1357 *
1358 * 1) No aggregation (frame_count == 1). This reports Tx results for
1359 * a single frame. Multiple attempts, at various bit rates, may have
1360 * been made for this frame.
1361 *
1362 * 2) Aggregation (frame_count > 1). This reports Tx results for
1363 * 2 or more frames that used block-acknowledge. All frames were
1364 * transmitted at same rate. Rate scaling may have been used if first
1365 * frame in this new agg block failed in previous agg block(s).
1366 *
1367 * Note that, for aggregation, ACK (block-ack) status is not delivered here;
1368 * block-ack has not been received by the time the 4965 records this status.
1369 * This status relates to reasons the tx might have been blocked or aborted
1370 * within the sending station (this 4965), rather than whether it was
1371 * received successfully by the destination station.
b481de9c 1372 */
bb8c093b 1373struct iwl4965_tx_resp {
b481de9c 1374 u8 frame_count; /* 1 no aggregation, >1 aggregation */
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1375 u8 bt_kill_count; /* # blocked by bluetooth (unused for agg) */
1376 u8 failure_rts; /* # failures due to unsuccessful RTS */
1377 u8 failure_frame; /* # failures due to no ACK (unused for agg) */
1378
1379 /* For non-agg: Rate at which frame was successful.
1380 * For agg: Rate at which all frames were transmitted. */
1381 __le32 rate_n_flags; /* RATE_MCS_* */
1382
1383 /* For non-agg: RTS + CTS + frame tx attempts time + ACK.
1384 * For agg: RTS + CTS + aggregation tx time + block-ack time. */
1385 __le16 wireless_media_time; /* uSecs */
1386
b481de9c 1387 __le16 reserved;
52969981 1388 __le32 pa_power1; /* RF power amplifier measurement (not used) */
b481de9c 1389 __le32 pa_power2;
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1390
1391 /*
1392 * For non-agg: frame status TX_STATUS_*
1393 * For agg: status of 1st frame, AGG_TX_STATE_*; other frame status
1394 * fields follow this one, up to frame_count.
1395 * Bit fields:
1396 * 11- 0: AGG_TX_STATE_* status code
1397 * 15-12: Retry count for 1st frame in aggregation (retries
1398 * occur if tx failed for this frame when it was a
1399 * member of a previous aggregation block). If rate
1400 * scaling is used, retry count indicates the rate
1401 * table entry used for all frames in the new agg.
1402 * 31-16: Sequence # for this frame's Tx cmd (not SSN!)
1403 */
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1404 __le32 status; /* TX status (for aggregation status of 1st frame) */
1405} __attribute__ ((packed));
1406
fe01b477
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1407struct agg_tx_status {
1408 __le16 status;
1409 __le16 sequence;
1410} __attribute__ ((packed));
1411
1412struct iwl4965_tx_resp_agg {
1413 u8 frame_count; /* 1 no aggregation, >1 aggregation */
1414 u8 reserved1;
1415 u8 failure_rts;
1416 u8 failure_frame;
1417 __le32 rate_n_flags;
1418 __le16 wireless_media_time;
1419 __le16 reserved3;
1420 __le32 pa_power1;
1421 __le32 pa_power2;
1422 struct agg_tx_status status; /* TX status (for aggregation status */
1423 /* of 1st frame) */
1424} __attribute__ ((packed));
1425
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1426/*
1427 * REPLY_COMPRESSED_BA = 0xc5 (response only, not a command)
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1428 *
1429 * Reports Block-Acknowledge from recipient station
b481de9c 1430 */
bb8c093b 1431struct iwl4965_compressed_ba_resp {
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1432 __le32 sta_addr_lo32;
1433 __le16 sta_addr_hi16;
1434 __le16 reserved;
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1435
1436 /* Index of recipient (BA-sending) station in uCode's station table */
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1437 u8 sta_id;
1438 u8 tid;
fe01b477
RR
1439 __le16 seq_ctl;
1440 __le64 bitmap;
b481de9c
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1441 __le16 scd_flow;
1442 __le16 scd_ssn;
1443} __attribute__ ((packed));
1444
1445/*
1446 * REPLY_TX_PWR_TABLE_CMD = 0x97 (command, has simple generic response)
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1447 *
1448 * See details under "TXPOWER" in iwl-4965-hw.h.
b481de9c 1449 */
bb8c093b 1450struct iwl4965_txpowertable_cmd {
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1451 u8 band; /* 0: 5 GHz, 1: 2.4 GHz */
1452 u8 reserved;
1453 __le16 channel;
bb8c093b 1454 struct iwl4965_tx_power_db tx_power;
b481de9c
ZY
1455} __attribute__ ((packed));
1456
b481de9c 1457/*RS_NEW_API: only TLC_RTS remains and moved to bit 0 */
8a1b0245 1458#define LINK_QUAL_FLAGS_SET_STA_TLC_RTS_MSK (1 << 0)
b481de9c 1459
2bdc7031 1460/* # of EDCA prioritized tx fifos */
b481de9c 1461#define LINK_QUAL_AC_NUM AC_NUM
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1462
1463/* # entries in rate scale table to support Tx retries */
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1464#define LINK_QUAL_MAX_RETRY_NUM 16
1465
2bdc7031 1466/* Tx antenna selection values */
8a1b0245
RC
1467#define LINK_QUAL_ANT_A_MSK (1 << 0)
1468#define LINK_QUAL_ANT_B_MSK (1 << 1)
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ZY
1469#define LINK_QUAL_ANT_MSK (LINK_QUAL_ANT_A_MSK|LINK_QUAL_ANT_B_MSK)
1470
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1471
1472/**
66c73db7 1473 * struct iwl_link_qual_general_params
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1474 *
1475 * Used in REPLY_TX_LINK_QUALITY_CMD
1476 */
66c73db7 1477struct iwl_link_qual_general_params {
b481de9c 1478 u8 flags;
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1479
1480 /* No entries at or above this (driver chosen) index contain MIMO */
b481de9c 1481 u8 mimo_delimiter;
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1482
1483 /* Best single antenna to use for single stream (legacy, SISO). */
1484 u8 single_stream_ant_msk; /* LINK_QUAL_ANT_* */
1485
1486 /* Best antennas to use for MIMO (unused for 4965, assumes both). */
1487 u8 dual_stream_ant_msk; /* LINK_QUAL_ANT_* */
1488
1489 /*
1490 * If driver needs to use different initial rates for different
1491 * EDCA QOS access categories (as implemented by tx fifos 0-3),
1492 * this table will set that up, by indicating the indexes in the
1493 * rs_table[LINK_QUAL_MAX_RETRY_NUM] rate table at which to start.
1494 * Otherwise, driver should set all entries to 0.
1495 *
1496 * Entry usage:
1497 * 0 = Background, 1 = Best Effort (normal), 2 = Video, 3 = Voice
1498 * TX FIFOs above 3 use same value (typically 0) as TX FIFO 3.
1499 */
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1500 u8 start_rate_index[LINK_QUAL_AC_NUM];
1501} __attribute__ ((packed));
1502
2bdc7031 1503/**
66c73db7 1504 * struct iwl_link_qual_agg_params
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1505 *
1506 * Used in REPLY_TX_LINK_QUALITY_CMD
1507 */
66c73db7 1508struct iwl_link_qual_agg_params {
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1509
1510 /* Maximum number of uSec in aggregation.
1511 * Driver should set this to 4000 (4 milliseconds). */
b481de9c 1512 __le16 agg_time_limit;
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1513
1514 /*
1515 * Number of Tx retries allowed for a frame, before that frame will
1516 * no longer be considered for the start of an aggregation sequence
1517 * (scheduler will then try to tx it as single frame).
1518 * Driver should set this to 3.
1519 */
b481de9c 1520 u8 agg_dis_start_th;
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1521
1522 /*
1523 * Maximum number of frames in aggregation.
1524 * 0 = no limit (default). 1 = no aggregation.
1525 * Other values = max # frames in aggregation.
1526 */
b481de9c 1527 u8 agg_frame_cnt_limit;
2bdc7031 1528
b481de9c
ZY
1529 __le32 reserved;
1530} __attribute__ ((packed));
1531
1532/*
1533 * REPLY_TX_LINK_QUALITY_CMD = 0x4e (command, has simple generic response)
2bdc7031
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1534 *
1535 * For 4965 only; 3945 uses REPLY_RATE_SCALE.
1536 *
1537 * Each station in the 4965's internal station table has its own table of 16
1538 * Tx rates and modulation modes (e.g. legacy/SISO/MIMO) for retrying Tx when
1539 * an ACK is not received. This command replaces the entire table for
1540 * one station.
1541 *
1542 * NOTE: Station must already be in 4965's station table. Use REPLY_ADD_STA.
1543 *
1544 * The rate scaling procedures described below work well. Of course, other
1545 * procedures are possible, and may work better for particular environments.
1546 *
1547 *
1548 * FILLING THE RATE TABLE
1549 *
1550 * Given a particular initial rate and mode, as determined by the rate
1551 * scaling algorithm described below, the Linux driver uses the following
1552 * formula to fill the rs_table[LINK_QUAL_MAX_RETRY_NUM] rate table in the
1553 * Link Quality command:
1554 *
1555 *
1556 * 1) If using High-throughput (HT) (SISO or MIMO) initial rate:
1557 * a) Use this same initial rate for first 3 entries.
1558 * b) Find next lower available rate using same mode (SISO or MIMO),
1559 * use for next 3 entries. If no lower rate available, switch to
1560 * legacy mode (no FAT channel, no MIMO, no short guard interval).
1561 * c) If using MIMO, set command's mimo_delimiter to number of entries
1562 * using MIMO (3 or 6).
1563 * d) After trying 2 HT rates, switch to legacy mode (no FAT channel,
1564 * no MIMO, no short guard interval), at the next lower bit rate
1565 * (e.g. if second HT bit rate was 54, try 48 legacy), and follow
1566 * legacy procedure for remaining table entries.
1567 *
1568 * 2) If using legacy initial rate:
1569 * a) Use the initial rate for only one entry.
1570 * b) For each following entry, reduce the rate to next lower available
1571 * rate, until reaching the lowest available rate.
1572 * c) When reducing rate, also switch antenna selection.
1573 * d) Once lowest available rate is reached, repeat this rate until
1574 * rate table is filled (16 entries), switching antenna each entry.
1575 *
1576 *
1577 * ACCUMULATING HISTORY
1578 *
1579 * The rate scaling algorithm for 4965, as implemented in Linux driver, uses
1580 * two sets of frame Tx success history: One for the current/active modulation
1581 * mode, and one for a speculative/search mode that is being attempted. If the
1582 * speculative mode turns out to be more effective (i.e. actual transfer
1583 * rate is better), then the driver continues to use the speculative mode
1584 * as the new current active mode.
1585 *
1586 * Each history set contains, separately for each possible rate, data for a
1587 * sliding window of the 62 most recent tx attempts at that rate. The data
1588 * includes a shifting bitmap of success(1)/failure(0), and sums of successful
1589 * and attempted frames, from which the driver can additionally calculate a
1590 * success ratio (success / attempted) and number of failures
1591 * (attempted - success), and control the size of the window (attempted).
1592 * The driver uses the bit map to remove successes from the success sum, as
1593 * the oldest tx attempts fall out of the window.
1594 *
1595 * When the 4965 makes multiple tx attempts for a given frame, each attempt
1596 * might be at a different rate, and have different modulation characteristics
1597 * (e.g. antenna, fat channel, short guard interval), as set up in the rate
1598 * scaling table in the Link Quality command. The driver must determine
1599 * which rate table entry was used for each tx attempt, to determine which
1600 * rate-specific history to update, and record only those attempts that
1601 * match the modulation characteristics of the history set.
1602 *
1603 * When using block-ack (aggregation), all frames are transmitted at the same
1604 * rate, since there is no per-attempt acknowledgement from the destination
1605 * station. The Tx response struct iwl_tx_resp indicates the Tx rate in
1606 * rate_n_flags field. After receiving a block-ack, the driver can update
1607 * history for the entire block all at once.
1608 *
1609 *
1610 * FINDING BEST STARTING RATE:
1611 *
1612 * When working with a selected initial modulation mode (see below), the
1613 * driver attempts to find a best initial rate. The initial rate is the
1614 * first entry in the Link Quality command's rate table.
1615 *
1616 * 1) Calculate actual throughput (success ratio * expected throughput, see
1617 * table below) for current initial rate. Do this only if enough frames
1618 * have been attempted to make the value meaningful: at least 6 failed
1619 * tx attempts, or at least 8 successes. If not enough, don't try rate
1620 * scaling yet.
1621 *
1622 * 2) Find available rates adjacent to current initial rate. Available means:
1623 * a) supported by hardware &&
1624 * b) supported by association &&
1625 * c) within any constraints selected by user
1626 *
1627 * 3) Gather measured throughputs for adjacent rates. These might not have
1628 * enough history to calculate a throughput. That's okay, we might try
1629 * using one of them anyway!
1630 *
1631 * 4) Try decreasing rate if, for current rate:
1632 * a) success ratio is < 15% ||
1633 * b) lower adjacent rate has better measured throughput ||
1634 * c) higher adjacent rate has worse throughput, and lower is unmeasured
1635 *
1636 * As a sanity check, if decrease was determined above, leave rate
1637 * unchanged if:
1638 * a) lower rate unavailable
1639 * b) success ratio at current rate > 85% (very good)
1640 * c) current measured throughput is better than expected throughput
1641 * of lower rate (under perfect 100% tx conditions, see table below)
1642 *
1643 * 5) Try increasing rate if, for current rate:
1644 * a) success ratio is < 15% ||
1645 * b) both adjacent rates' throughputs are unmeasured (try it!) ||
1646 * b) higher adjacent rate has better measured throughput ||
1647 * c) lower adjacent rate has worse throughput, and higher is unmeasured
1648 *
1649 * As a sanity check, if increase was determined above, leave rate
1650 * unchanged if:
1651 * a) success ratio at current rate < 70%. This is not particularly
1652 * good performance; higher rate is sure to have poorer success.
1653 *
1654 * 6) Re-evaluate the rate after each tx frame. If working with block-
1655 * acknowledge, history and statistics may be calculated for the entire
1656 * block (including prior history that fits within the history windows),
1657 * before re-evaluation.
1658 *
1659 * FINDING BEST STARTING MODULATION MODE:
1660 *
1661 * After working with a modulation mode for a "while" (and doing rate scaling),
1662 * the driver searches for a new initial mode in an attempt to improve
1663 * throughput. The "while" is measured by numbers of attempted frames:
1664 *
1665 * For legacy mode, search for new mode after:
1666 * 480 successful frames, or 160 failed frames
1667 * For high-throughput modes (SISO or MIMO), search for new mode after:
1668 * 4500 successful frames, or 400 failed frames
1669 *
1670 * Mode switch possibilities are (3 for each mode):
1671 *
1672 * For legacy:
1673 * Change antenna, try SISO (if HT association), try MIMO (if HT association)
1674 * For SISO:
1675 * Change antenna, try MIMO, try shortened guard interval (SGI)
1676 * For MIMO:
1677 * Try SISO antenna A, SISO antenna B, try shortened guard interval (SGI)
1678 *
1679 * When trying a new mode, use the same bit rate as the old/current mode when
1680 * trying antenna switches and shortened guard interval. When switching to
1681 * SISO from MIMO or legacy, or to MIMO from SISO or legacy, use a rate
1682 * for which the expected throughput (under perfect conditions) is about the
1683 * same or slightly better than the actual measured throughput delivered by
1684 * the old/current mode.
1685 *
1686 * Actual throughput can be estimated by multiplying the expected throughput
1687 * by the success ratio (successful / attempted tx frames). Frame size is
1688 * not considered in this calculation; it assumes that frame size will average
1689 * out to be fairly consistent over several samples. The following are
1690 * metric values for expected throughput assuming 100% success ratio.
1691 * Only G band has support for CCK rates:
1692 *
1693 * RATE: 1 2 5 11 6 9 12 18 24 36 48 54 60
1694 *
1695 * G: 7 13 35 58 40 57 72 98 121 154 177 186 186
1696 * A: 0 0 0 0 40 57 72 98 121 154 177 186 186
1697 * SISO 20MHz: 0 0 0 0 42 42 76 102 124 159 183 193 202
1698 * SGI SISO 20MHz: 0 0 0 0 46 46 82 110 132 168 192 202 211
1699 * MIMO 20MHz: 0 0 0 0 74 74 123 155 179 214 236 244 251
1700 * SGI MIMO 20MHz: 0 0 0 0 81 81 131 164 188 222 243 251 257
1701 * SISO 40MHz: 0 0 0 0 77 77 127 160 184 220 242 250 257
1702 * SGI SISO 40MHz: 0 0 0 0 83 83 135 169 193 229 250 257 264
1703 * MIMO 40MHz: 0 0 0 0 123 123 182 214 235 264 279 285 289
1704 * SGI MIMO 40MHz: 0 0 0 0 131 131 191 222 242 270 284 289 293
1705 *
1706 * After the new mode has been tried for a short while (minimum of 6 failed
1707 * frames or 8 successful frames), compare success ratio and actual throughput
1708 * estimate of the new mode with the old. If either is better with the new
1709 * mode, continue to use the new mode.
1710 *
1711 * Continue comparing modes until all 3 possibilities have been tried.
1712 * If moving from legacy to HT, try all 3 possibilities from the new HT
1713 * mode. After trying all 3, a best mode is found. Continue to use this mode
1714 * for the longer "while" described above (e.g. 480 successful frames for
1715 * legacy), and then repeat the search process.
1716 *
b481de9c 1717 */
66c73db7 1718struct iwl_link_quality_cmd {
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1719
1720 /* Index of destination/recipient station in uCode's station table */
b481de9c
ZY
1721 u8 sta_id;
1722 u8 reserved1;
2bdc7031 1723 __le16 control; /* not used */
66c73db7
TW
1724 struct iwl_link_qual_general_params general_params;
1725 struct iwl_link_qual_agg_params agg_params;
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BC
1726
1727 /*
1728 * Rate info; when using rate-scaling, Tx command's initial_rate_index
1729 * specifies 1st Tx rate attempted, via index into this table.
1730 * 4965 works its way through table when retrying Tx.
1731 */
b481de9c 1732 struct {
2bdc7031 1733 __le32 rate_n_flags; /* RATE_MCS_*, IWL_RATE_* */
b481de9c
ZY
1734 } rs_table[LINK_QUAL_MAX_RETRY_NUM];
1735 __le32 reserved2;
1736} __attribute__ ((packed));
b481de9c
ZY
1737
1738/*
1739 * REPLY_BT_CONFIG = 0x9b (command, has simple generic response)
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1740 *
1741 * 3945 and 4965 support hardware handshake with Bluetooth device on
1742 * same platform. Bluetooth device alerts wireless device when it will Tx;
1743 * wireless device can delay or kill its own Tx to accomodate.
b481de9c 1744 */
bb8c093b 1745struct iwl4965_bt_cmd {
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1746 u8 flags;
1747 u8 lead_time;
1748 u8 max_kill;
1749 u8 reserved;
1750 __le32 kill_ack_mask;
1751 __le32 kill_cts_mask;
1752} __attribute__ ((packed));
1753
1754/******************************************************************************
1755 * (6)
1756 * Spectrum Management (802.11h) Commands, Responses, Notifications:
1757 *
1758 *****************************************************************************/
1759
1760/*
1761 * Spectrum Management
1762 */
1763#define MEASUREMENT_FILTER_FLAG (RXON_FILTER_PROMISC_MSK | \
1764 RXON_FILTER_CTL2HOST_MSK | \
1765 RXON_FILTER_ACCEPT_GRP_MSK | \
1766 RXON_FILTER_DIS_DECRYPT_MSK | \
1767 RXON_FILTER_DIS_GRP_DECRYPT_MSK | \
1768 RXON_FILTER_ASSOC_MSK | \
1769 RXON_FILTER_BCON_AWARE_MSK)
1770
bb8c093b 1771struct iwl4965_measure_channel {
b481de9c
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1772 __le32 duration; /* measurement duration in extended beacon
1773 * format */
1774 u8 channel; /* channel to measure */
bb8c093b 1775 u8 type; /* see enum iwl4965_measure_type */
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1776 __le16 reserved;
1777} __attribute__ ((packed));
1778
1779/*
1780 * REPLY_SPECTRUM_MEASUREMENT_CMD = 0x74 (command)
1781 */
bb8c093b 1782struct iwl4965_spectrum_cmd {
b481de9c
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1783 __le16 len; /* number of bytes starting from token */
1784 u8 token; /* token id */
1785 u8 id; /* measurement id -- 0 or 1 */
1786 u8 origin; /* 0 = TGh, 1 = other, 2 = TGk */
1787 u8 periodic; /* 1 = periodic */
1788 __le16 path_loss_timeout;
1789 __le32 start_time; /* start time in extended beacon format */
1790 __le32 reserved2;
1791 __le32 flags; /* rxon flags */
1792 __le32 filter_flags; /* rxon filter flags */
1793 __le16 channel_count; /* minimum 1, maximum 10 */
1794 __le16 reserved3;
bb8c093b 1795 struct iwl4965_measure_channel channels[10];
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1796} __attribute__ ((packed));
1797
1798/*
1799 * REPLY_SPECTRUM_MEASUREMENT_CMD = 0x74 (response)
1800 */
bb8c093b 1801struct iwl4965_spectrum_resp {
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1802 u8 token;
1803 u8 id; /* id of the prior command replaced, or 0xff */
1804 __le16 status; /* 0 - command will be handled
1805 * 1 - cannot handle (conflicts with another
1806 * measurement) */
1807} __attribute__ ((packed));
1808
bb8c093b 1809enum iwl4965_measurement_state {
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1810 IWL_MEASUREMENT_START = 0,
1811 IWL_MEASUREMENT_STOP = 1,
1812};
1813
bb8c093b 1814enum iwl4965_measurement_status {
b481de9c
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1815 IWL_MEASUREMENT_OK = 0,
1816 IWL_MEASUREMENT_CONCURRENT = 1,
1817 IWL_MEASUREMENT_CSA_CONFLICT = 2,
1818 IWL_MEASUREMENT_TGH_CONFLICT = 3,
1819 /* 4-5 reserved */
1820 IWL_MEASUREMENT_STOPPED = 6,
1821 IWL_MEASUREMENT_TIMEOUT = 7,
1822 IWL_MEASUREMENT_PERIODIC_FAILED = 8,
1823};
1824
1825#define NUM_ELEMENTS_IN_HISTOGRAM 8
1826
bb8c093b 1827struct iwl4965_measurement_histogram {
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ZY
1828 __le32 ofdm[NUM_ELEMENTS_IN_HISTOGRAM]; /* in 0.8usec counts */
1829 __le32 cck[NUM_ELEMENTS_IN_HISTOGRAM]; /* in 1usec counts */
1830} __attribute__ ((packed));
1831
1832/* clear channel availability counters */
bb8c093b 1833struct iwl4965_measurement_cca_counters {
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1834 __le32 ofdm;
1835 __le32 cck;
1836} __attribute__ ((packed));
1837
bb8c093b 1838enum iwl4965_measure_type {
b481de9c
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1839 IWL_MEASURE_BASIC = (1 << 0),
1840 IWL_MEASURE_CHANNEL_LOAD = (1 << 1),
1841 IWL_MEASURE_HISTOGRAM_RPI = (1 << 2),
1842 IWL_MEASURE_HISTOGRAM_NOISE = (1 << 3),
1843 IWL_MEASURE_FRAME = (1 << 4),
1844 /* bits 5:6 are reserved */
1845 IWL_MEASURE_IDLE = (1 << 7),
1846};
1847
1848/*
1849 * SPECTRUM_MEASURE_NOTIFICATION = 0x75 (notification only, not a command)
1850 */
bb8c093b 1851struct iwl4965_spectrum_notification {
b481de9c
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1852 u8 id; /* measurement id -- 0 or 1 */
1853 u8 token;
1854 u8 channel_index; /* index in measurement channel list */
1855 u8 state; /* 0 - start, 1 - stop */
1856 __le32 start_time; /* lower 32-bits of TSF */
1857 u8 band; /* 0 - 5.2GHz, 1 - 2.4GHz */
1858 u8 channel;
bb8c093b 1859 u8 type; /* see enum iwl4965_measurement_type */
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1860 u8 reserved1;
1861 /* NOTE: cca_ofdm, cca_cck, basic_type, and histogram are only only
1862 * valid if applicable for measurement type requested. */
1863 __le32 cca_ofdm; /* cca fraction time in 40Mhz clock periods */
1864 __le32 cca_cck; /* cca fraction time in 44Mhz clock periods */
1865 __le32 cca_time; /* channel load time in usecs */
1866 u8 basic_type; /* 0 - bss, 1 - ofdm preamble, 2 -
1867 * unidentified */
1868 u8 reserved2[3];
bb8c093b 1869 struct iwl4965_measurement_histogram histogram;
b481de9c 1870 __le32 stop_time; /* lower 32-bits of TSF */
bb8c093b 1871 __le32 status; /* see iwl4965_measurement_status */
b481de9c
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1872} __attribute__ ((packed));
1873
1874/******************************************************************************
1875 * (7)
1876 * Power Management Commands, Responses, Notifications:
1877 *
1878 *****************************************************************************/
1879
1880/**
bb8c093b 1881 * struct iwl4965_powertable_cmd - Power Table Command
b481de9c
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1882 * @flags: See below:
1883 *
1884 * POWER_TABLE_CMD = 0x77 (command, has simple generic response)
1885 *
1886 * PM allow:
1887 * bit 0 - '0' Driver not allow power management
1888 * '1' Driver allow PM (use rest of parameters)
1889 * uCode send sleep notifications:
1890 * bit 1 - '0' Don't send sleep notification
1891 * '1' send sleep notification (SEND_PM_NOTIFICATION)
1892 * Sleep over DTIM
1893 * bit 2 - '0' PM have to walk up every DTIM
1894 * '1' PM could sleep over DTIM till listen Interval.
1895 * PCI power managed
1896 * bit 3 - '0' (PCI_LINK_CTRL & 0x1)
1897 * '1' !(PCI_LINK_CTRL & 0x1)
1898 * Force sleep Modes
1899 * bit 31/30- '00' use both mac/xtal sleeps
1900 * '01' force Mac sleep
1901 * '10' force xtal sleep
1902 * '11' Illegal set
1903 *
1904 * NOTE: if sleep_interval[SLEEP_INTRVL_TABLE_SIZE-1] > DTIM period then
1905 * ucode assume sleep over DTIM is allowed and we don't need to wakeup
1906 * for every DTIM.
1907 */
1908#define IWL_POWER_VEC_SIZE 5
1909
8a1b0245
RC
1910#define IWL_POWER_DRIVER_ALLOW_SLEEP_MSK __constant_cpu_to_le16(1 << 0)
1911#define IWL_POWER_SLEEP_OVER_DTIM_MSK __constant_cpu_to_le16(1 << 2)
1912#define IWL_POWER_PCI_PM_MSK __constant_cpu_to_le16(1 << 3)
5da4b55f 1913#define IWL_POWER_FAST_PD __constant_cpu_to_le16(1 << 4)
b481de9c 1914
bb8c093b 1915struct iwl4965_powertable_cmd {
b481de9c
ZY
1916 __le16 flags;
1917 u8 keep_alive_seconds;
1918 u8 debug_flags;
1919 __le32 rx_data_timeout;
1920 __le32 tx_data_timeout;
1921 __le32 sleep_interval[IWL_POWER_VEC_SIZE];
1922 __le32 keep_alive_beacons;
1923} __attribute__ ((packed));
b481de9c
ZY
1924
1925/*
1926 * PM_SLEEP_NOTIFICATION = 0x7A (notification only, not a command)
1927 * 3945 and 4965 identical.
1928 */
bb8c093b 1929struct iwl4965_sleep_notification {
b481de9c
ZY
1930 u8 pm_sleep_mode;
1931 u8 pm_wakeup_src;
1932 __le16 reserved;
1933 __le32 sleep_time;
1934 __le32 tsf_low;
1935 __le32 bcon_timer;
1936} __attribute__ ((packed));
1937
1938/* Sleep states. 3945 and 4965 identical. */
1939enum {
1940 IWL_PM_NO_SLEEP = 0,
1941 IWL_PM_SLP_MAC = 1,
1942 IWL_PM_SLP_FULL_MAC_UNASSOCIATE = 2,
1943 IWL_PM_SLP_FULL_MAC_CARD_STATE = 3,
1944 IWL_PM_SLP_PHY = 4,
1945 IWL_PM_SLP_REPENT = 5,
1946 IWL_PM_WAKEUP_BY_TIMER = 6,
1947 IWL_PM_WAKEUP_BY_DRIVER = 7,
1948 IWL_PM_WAKEUP_BY_RFKILL = 8,
1949 /* 3 reserved */
1950 IWL_PM_NUM_OF_MODES = 12,
1951};
1952
1953/*
1954 * REPLY_CARD_STATE_CMD = 0xa0 (command, has simple generic response)
1955 */
1956#define CARD_STATE_CMD_DISABLE 0x00 /* Put card to sleep */
1957#define CARD_STATE_CMD_ENABLE 0x01 /* Wake up card */
1958#define CARD_STATE_CMD_HALT 0x02 /* Power down permanently */
bb8c093b 1959struct iwl4965_card_state_cmd {
b481de9c
ZY
1960 __le32 status; /* CARD_STATE_CMD_* request new power state */
1961} __attribute__ ((packed));
1962
1963/*
1964 * CARD_STATE_NOTIFICATION = 0xa1 (notification only, not a command)
1965 */
bb8c093b 1966struct iwl4965_card_state_notif {
b481de9c
ZY
1967 __le32 flags;
1968} __attribute__ ((packed));
1969
1970#define HW_CARD_DISABLED 0x01
1971#define SW_CARD_DISABLED 0x02
1972#define RF_CARD_DISABLED 0x04
1973#define RXON_CARD_DISABLED 0x10
1974
bb8c093b 1975struct iwl4965_ct_kill_config {
b481de9c
ZY
1976 __le32 reserved;
1977 __le32 critical_temperature_M;
1978 __le32 critical_temperature_R;
1979} __attribute__ ((packed));
1980
1981/******************************************************************************
1982 * (8)
1983 * Scan Commands, Responses, Notifications:
1984 *
1985 *****************************************************************************/
1986
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BC
1987/**
1988 * struct iwl4965_scan_channel - entry in REPLY_SCAN_CMD channel table
1989 *
1990 * One for each channel in the scan list.
1991 * Each channel can independently select:
1992 * 1) SSID for directed active scans
1993 * 2) Txpower setting (for rate specified within Tx command)
1994 * 3) How long to stay on-channel (behavior may be modified by quiet_time,
1995 * quiet_plcp_th, good_CRC_th)
1996 *
1997 * To avoid uCode errors, make sure the following are true (see comments
1998 * under struct iwl4965_scan_cmd about max_out_time and quiet_time):
1999 * 1) If using passive_dwell (i.e. passive_dwell != 0):
2000 * active_dwell <= passive_dwell (< max_out_time if max_out_time != 0)
2001 * 2) quiet_time <= active_dwell
2002 * 3) If restricting off-channel time (i.e. max_out_time !=0):
2003 * passive_dwell < max_out_time
2004 * active_dwell < max_out_time
2005 */
bb8c093b 2006struct iwl4965_scan_channel {
3058f021
BC
2007 /*
2008 * type is defined as:
2009 * 0:0 1 = active, 0 = passive
2010 * 1:4 SSID direct bit map; if a bit is set, then corresponding
2011 * SSID IE is transmitted in probe request.
b481de9c
ZY
2012 * 5:7 reserved
2013 */
2014 u8 type;
3058f021 2015 u8 channel; /* band is selected by iwl4965_scan_cmd "flags" field */
bb8c093b 2016 struct iwl4965_tx_power tpc;
3058f021
BC
2017 __le16 active_dwell; /* in 1024-uSec TU (time units), typ 5-50 */
2018 __le16 passive_dwell; /* in 1024-uSec TU (time units), typ 20-500 */
b481de9c
ZY
2019} __attribute__ ((packed));
2020
3058f021
BC
2021/**
2022 * struct iwl4965_ssid_ie - directed scan network information element
2023 *
2024 * Up to 4 of these may appear in REPLY_SCAN_CMD, selected by "type" field
2025 * in struct iwl4965_scan_channel; each channel may select different ssids from
2026 * among the 4 entries. SSID IEs get transmitted in reverse order of entry.
2027 */
bb8c093b 2028struct iwl4965_ssid_ie {
b481de9c
ZY
2029 u8 id;
2030 u8 len;
2031 u8 ssid[32];
2032} __attribute__ ((packed));
2033
2034#define PROBE_OPTION_MAX 0x4
2035#define TX_CMD_LIFE_TIME_INFINITE __constant_cpu_to_le32(0xFFFFFFFF)
2036#define IWL_GOOD_CRC_TH __constant_cpu_to_le16(1)
2037#define IWL_MAX_SCAN_SIZE 1024
2038
2039/*
2040 * REPLY_SCAN_CMD = 0x80 (command)
3058f021
BC
2041 *
2042 * The hardware scan command is very powerful; the driver can set it up to
2043 * maintain (relatively) normal network traffic while doing a scan in the
2044 * background. The max_out_time and suspend_time control the ratio of how
2045 * long the device stays on an associated network channel ("service channel")
2046 * vs. how long it's away from the service channel, i.e. tuned to other channels
2047 * for scanning.
2048 *
2049 * max_out_time is the max time off-channel (in usec), and suspend_time
2050 * is how long (in "extended beacon" format) that the scan is "suspended"
2051 * after returning to the service channel. That is, suspend_time is the
2052 * time that we stay on the service channel, doing normal work, between
2053 * scan segments. The driver may set these parameters differently to support
2054 * scanning when associated vs. not associated, and light vs. heavy traffic
2055 * loads when associated.
2056 *
2057 * After receiving this command, the device's scan engine does the following;
2058 *
2059 * 1) Sends SCAN_START notification to driver
2060 * 2) Checks to see if it has time to do scan for one channel
2061 * 3) Sends NULL packet, with power-save (PS) bit set to 1,
2062 * to tell AP that we're going off-channel
2063 * 4) Tunes to first channel in scan list, does active or passive scan
2064 * 5) Sends SCAN_RESULT notification to driver
2065 * 6) Checks to see if it has time to do scan on *next* channel in list
2066 * 7) Repeats 4-6 until it no longer has time to scan the next channel
2067 * before max_out_time expires
2068 * 8) Returns to service channel
2069 * 9) Sends NULL packet with PS=0 to tell AP that we're back
2070 * 10) Stays on service channel until suspend_time expires
2071 * 11) Repeats entire process 2-10 until list is complete
2072 * 12) Sends SCAN_COMPLETE notification
2073 *
2074 * For fast, efficient scans, the scan command also has support for staying on
2075 * a channel for just a short time, if doing active scanning and getting no
2076 * responses to the transmitted probe request. This time is controlled by
2077 * quiet_time, and the number of received packets below which a channel is
2078 * considered "quiet" is controlled by quiet_plcp_threshold.
2079 *
2080 * For active scanning on channels that have regulatory restrictions against
2081 * blindly transmitting, the scan can listen before transmitting, to make sure
2082 * that there is already legitimate activity on the channel. If enough
2083 * packets are cleanly received on the channel (controlled by good_CRC_th,
2084 * typical value 1), the scan engine starts transmitting probe requests.
2085 *
2086 * Driver must use separate scan commands for 2.4 vs. 5 GHz bands.
2087 *
2088 * To avoid uCode errors, see timing restrictions described under
2089 * struct iwl4965_scan_channel.
b481de9c 2090 */
bb8c093b 2091struct iwl4965_scan_cmd {
b481de9c
ZY
2092 __le16 len;
2093 u8 reserved0;
3058f021
BC
2094 u8 channel_count; /* # channels in channel list */
2095 __le16 quiet_time; /* dwell only this # millisecs on quiet channel
2096 * (only for active scan) */
2097 __le16 quiet_plcp_th; /* quiet chnl is < this # pkts (typ. 1) */
2098 __le16 good_CRC_th; /* passive -> active promotion threshold */
2099 __le16 rx_chain; /* RXON_RX_CHAIN_* */
2100 __le32 max_out_time; /* max usec to be away from associated (service)
2101 * channel */
2102 __le32 suspend_time; /* pause scan this long (in "extended beacon
2103 * format") when returning to service chnl:
2104 * 3945; 31:24 # beacons, 19:0 additional usec,
2105 * 4965; 31:22 # beacons, 21:0 additional usec.
2106 */
2107 __le32 flags; /* RXON_FLG_* */
2108 __le32 filter_flags; /* RXON_FILTER_* */
2109
2110 /* For active scans (set to all-0s for passive scans).
2111 * Does not include payload. Must specify Tx rate; no rate scaling. */
bb8c093b 2112 struct iwl4965_tx_cmd tx_cmd;
3058f021
BC
2113
2114 /* For directed active scans (set to all-0s otherwise) */
bb8c093b 2115 struct iwl4965_ssid_ie direct_scan[PROBE_OPTION_MAX];
b481de9c 2116
b481de9c 2117 /*
3058f021
BC
2118 * Probe request frame, followed by channel list.
2119 *
2120 * Size of probe request frame is specified by byte count in tx_cmd.
2121 * Channel list follows immediately after probe request frame.
2122 * Number of channels in list is specified by channel_count.
2123 * Each channel in list is of type:
b481de9c 2124 *
bb8c093b 2125 * struct iwl4965_scan_channel channels[0];
b481de9c
ZY
2126 *
2127 * NOTE: Only one band of channels can be scanned per pass. You
3058f021
BC
2128 * must not mix 2.4GHz channels and 5.2GHz channels, and you must wait
2129 * for one scan to complete (i.e. receive SCAN_COMPLETE_NOTIFICATION)
2130 * before requesting another scan.
b481de9c 2131 */
3058f021 2132 u8 data[0];
b481de9c
ZY
2133} __attribute__ ((packed));
2134
2135/* Can abort will notify by complete notification with abort status. */
2136#define CAN_ABORT_STATUS __constant_cpu_to_le32(0x1)
2137/* complete notification statuses */
2138#define ABORT_STATUS 0x2
2139
2140/*
2141 * REPLY_SCAN_CMD = 0x80 (response)
2142 */
bb8c093b 2143struct iwl4965_scanreq_notification {
b481de9c
ZY
2144 __le32 status; /* 1: okay, 2: cannot fulfill request */
2145} __attribute__ ((packed));
2146
2147/*
2148 * SCAN_START_NOTIFICATION = 0x82 (notification only, not a command)
2149 */
bb8c093b 2150struct iwl4965_scanstart_notification {
b481de9c
ZY
2151 __le32 tsf_low;
2152 __le32 tsf_high;
2153 __le32 beacon_timer;
2154 u8 channel;
2155 u8 band;
2156 u8 reserved[2];
2157 __le32 status;
2158} __attribute__ ((packed));
2159
2160#define SCAN_OWNER_STATUS 0x1;
2161#define MEASURE_OWNER_STATUS 0x2;
2162
2163#define NUMBER_OF_STATISTICS 1 /* first __le32 is good CRC */
2164/*
2165 * SCAN_RESULTS_NOTIFICATION = 0x83 (notification only, not a command)
2166 */
bb8c093b 2167struct iwl4965_scanresults_notification {
b481de9c
ZY
2168 u8 channel;
2169 u8 band;
2170 u8 reserved[2];
2171 __le32 tsf_low;
2172 __le32 tsf_high;
2173 __le32 statistics[NUMBER_OF_STATISTICS];
2174} __attribute__ ((packed));
2175
2176/*
2177 * SCAN_COMPLETE_NOTIFICATION = 0x84 (notification only, not a command)
2178 */
bb8c093b 2179struct iwl4965_scancomplete_notification {
b481de9c
ZY
2180 u8 scanned_channels;
2181 u8 status;
2182 u8 reserved;
2183 u8 last_channel;
2184 __le32 tsf_low;
2185 __le32 tsf_high;
2186} __attribute__ ((packed));
2187
2188
2189/******************************************************************************
2190 * (9)
2191 * IBSS/AP Commands and Notifications:
2192 *
2193 *****************************************************************************/
2194
2195/*
2196 * BEACON_NOTIFICATION = 0x90 (notification only, not a command)
2197 */
bb8c093b
CH
2198struct iwl4965_beacon_notif {
2199 struct iwl4965_tx_resp beacon_notify_hdr;
b481de9c
ZY
2200 __le32 low_tsf;
2201 __le32 high_tsf;
2202 __le32 ibss_mgr_status;
2203} __attribute__ ((packed));
2204
2205/*
2206 * REPLY_TX_BEACON = 0x91 (command, has simple generic response)
2207 */
bb8c093b
CH
2208struct iwl4965_tx_beacon_cmd {
2209 struct iwl4965_tx_cmd tx;
b481de9c
ZY
2210 __le16 tim_idx;
2211 u8 tim_size;
2212 u8 reserved1;
2213 struct ieee80211_hdr frame[0]; /* beacon frame */
2214} __attribute__ ((packed));
2215
2216/******************************************************************************
2217 * (10)
2218 * Statistics Commands and Notifications:
2219 *
2220 *****************************************************************************/
2221
2222#define IWL_TEMP_CONVERT 260
2223
2224#define SUP_RATE_11A_MAX_NUM_CHANNELS 8
2225#define SUP_RATE_11B_MAX_NUM_CHANNELS 4
2226#define SUP_RATE_11G_MAX_NUM_CHANNELS 12
2227
2228/* Used for passing to driver number of successes and failures per rate */
2229struct rate_histogram {
2230 union {
2231 __le32 a[SUP_RATE_11A_MAX_NUM_CHANNELS];
2232 __le32 b[SUP_RATE_11B_MAX_NUM_CHANNELS];
2233 __le32 g[SUP_RATE_11G_MAX_NUM_CHANNELS];
2234 } success;
2235 union {
2236 __le32 a[SUP_RATE_11A_MAX_NUM_CHANNELS];
2237 __le32 b[SUP_RATE_11B_MAX_NUM_CHANNELS];
2238 __le32 g[SUP_RATE_11G_MAX_NUM_CHANNELS];
2239 } failed;
2240} __attribute__ ((packed));
2241
2242/* statistics command response */
2243
2244struct statistics_rx_phy {
2245 __le32 ina_cnt;
2246 __le32 fina_cnt;
2247 __le32 plcp_err;
2248 __le32 crc32_err;
2249 __le32 overrun_err;
2250 __le32 early_overrun_err;
2251 __le32 crc32_good;
2252 __le32 false_alarm_cnt;
2253 __le32 fina_sync_err_cnt;
2254 __le32 sfd_timeout;
2255 __le32 fina_timeout;
2256 __le32 unresponded_rts;
2257 __le32 rxe_frame_limit_overrun;
2258 __le32 sent_ack_cnt;
2259 __le32 sent_cts_cnt;
b481de9c
ZY
2260 __le32 sent_ba_rsp_cnt;
2261 __le32 dsp_self_kill;
2262 __le32 mh_format_err;
2263 __le32 re_acq_main_rssi_sum;
2264 __le32 reserved3;
b481de9c
ZY
2265} __attribute__ ((packed));
2266
b481de9c
ZY
2267struct statistics_rx_ht_phy {
2268 __le32 plcp_err;
2269 __le32 overrun_err;
2270 __le32 early_overrun_err;
2271 __le32 crc32_good;
2272 __le32 crc32_err;
2273 __le32 mh_format_err;
2274 __le32 agg_crc32_good;
2275 __le32 agg_mpdu_cnt;
2276 __le32 agg_cnt;
2277 __le32 reserved2;
2278} __attribute__ ((packed));
b481de9c
ZY
2279
2280struct statistics_rx_non_phy {
2281 __le32 bogus_cts; /* CTS received when not expecting CTS */
2282 __le32 bogus_ack; /* ACK received when not expecting ACK */
2283 __le32 non_bssid_frames; /* number of frames with BSSID that
2284 * doesn't belong to the STA BSSID */
2285 __le32 filtered_frames; /* count frames that were dumped in the
2286 * filtering process */
2287 __le32 non_channel_beacons; /* beacons with our bss id but not on
2288 * our serving channel */
b481de9c
ZY
2289 __le32 channel_beacons; /* beacons with our bss id and in our
2290 * serving channel */
2291 __le32 num_missed_bcon; /* number of missed beacons */
2292 __le32 adc_rx_saturation_time; /* count in 0.8us units the time the
2293 * ADC was in saturation */
2294 __le32 ina_detection_search_time;/* total time (in 0.8us) searched
2295 * for INA */
2296 __le32 beacon_silence_rssi_a; /* RSSI silence after beacon frame */
2297 __le32 beacon_silence_rssi_b; /* RSSI silence after beacon frame */
2298 __le32 beacon_silence_rssi_c; /* RSSI silence after beacon frame */
2299 __le32 interference_data_flag; /* flag for interference data
2300 * availability. 1 when data is
2301 * available. */
3058f021 2302 __le32 channel_load; /* counts RX Enable time in uSec */
b481de9c
ZY
2303 __le32 dsp_false_alarms; /* DSP false alarm (both OFDM
2304 * and CCK) counter */
2305 __le32 beacon_rssi_a;
2306 __le32 beacon_rssi_b;
2307 __le32 beacon_rssi_c;
2308 __le32 beacon_energy_a;
2309 __le32 beacon_energy_b;
2310 __le32 beacon_energy_c;
b481de9c
ZY
2311} __attribute__ ((packed));
2312
2313struct statistics_rx {
2314 struct statistics_rx_phy ofdm;
2315 struct statistics_rx_phy cck;
2316 struct statistics_rx_non_phy general;
b481de9c 2317 struct statistics_rx_ht_phy ofdm_ht;
b481de9c
ZY
2318} __attribute__ ((packed));
2319
b481de9c
ZY
2320struct statistics_tx_non_phy_agg {
2321 __le32 ba_timeout;
2322 __le32 ba_reschedule_frames;
2323 __le32 scd_query_agg_frame_cnt;
2324 __le32 scd_query_no_agg;
2325 __le32 scd_query_agg;
2326 __le32 scd_query_mismatch;
2327 __le32 frame_not_ready;
2328 __le32 underrun;
2329 __le32 bt_prio_kill;
2330 __le32 rx_ba_rsp_cnt;
2331 __le32 reserved2;
2332 __le32 reserved3;
2333} __attribute__ ((packed));
b481de9c
ZY
2334
2335struct statistics_tx {
2336 __le32 preamble_cnt;
2337 __le32 rx_detected_cnt;
2338 __le32 bt_prio_defer_cnt;
2339 __le32 bt_prio_kill_cnt;
2340 __le32 few_bytes_cnt;
2341 __le32 cts_timeout;
2342 __le32 ack_timeout;
2343 __le32 expected_ack_cnt;
2344 __le32 actual_ack_cnt;
b481de9c
ZY
2345 __le32 dump_msdu_cnt;
2346 __le32 burst_abort_next_frame_mismatch_cnt;
2347 __le32 burst_abort_missing_next_frame_cnt;
2348 __le32 cts_timeout_collision;
2349 __le32 ack_or_ba_timeout_collision;
2350 struct statistics_tx_non_phy_agg agg;
b481de9c
ZY
2351} __attribute__ ((packed));
2352
2353struct statistics_dbg {
2354 __le32 burst_check;
2355 __le32 burst_count;
2356 __le32 reserved[4];
2357} __attribute__ ((packed));
2358
2359struct statistics_div {
2360 __le32 tx_on_a;
2361 __le32 tx_on_b;
2362 __le32 exec_time;
2363 __le32 probe_time;
b481de9c
ZY
2364 __le32 reserved1;
2365 __le32 reserved2;
b481de9c
ZY
2366} __attribute__ ((packed));
2367
2368struct statistics_general {
2369 __le32 temperature;
b481de9c 2370 __le32 temperature_m;
b481de9c
ZY
2371 struct statistics_dbg dbg;
2372 __le32 sleep_time;
2373 __le32 slots_out;
2374 __le32 slots_idle;
2375 __le32 ttl_timestamp;
2376 struct statistics_div div;
b481de9c
ZY
2377 __le32 rx_enable_counter;
2378 __le32 reserved1;
2379 __le32 reserved2;
2380 __le32 reserved3;
b481de9c
ZY
2381} __attribute__ ((packed));
2382
2383/*
2384 * REPLY_STATISTICS_CMD = 0x9c,
2385 * 3945 and 4965 identical.
2386 *
2387 * This command triggers an immediate response containing uCode statistics.
2388 * The response is in the same format as STATISTICS_NOTIFICATION 0x9d, below.
2389 *
2390 * If the CLEAR_STATS configuration flag is set, uCode will clear its
2391 * internal copy of the statistics (counters) after issuing the response.
2392 * This flag does not affect STATISTICS_NOTIFICATIONs after beacons (see below).
2393 *
2394 * If the DISABLE_NOTIF configuration flag is set, uCode will not issue
2395 * STATISTICS_NOTIFICATIONs after received beacons (see below). This flag
2396 * does not affect the response to the REPLY_STATISTICS_CMD 0x9c itself.
2397 */
2398#define IWL_STATS_CONF_CLEAR_STATS __constant_cpu_to_le32(0x1) /* see above */
2399#define IWL_STATS_CONF_DISABLE_NOTIF __constant_cpu_to_le32(0x2)/* see above */
bb8c093b 2400struct iwl4965_statistics_cmd {
b481de9c
ZY
2401 __le32 configuration_flags; /* IWL_STATS_CONF_* */
2402} __attribute__ ((packed));
2403
2404/*
2405 * STATISTICS_NOTIFICATION = 0x9d (notification only, not a command)
2406 *
2407 * By default, uCode issues this notification after receiving a beacon
2408 * while associated. To disable this behavior, set DISABLE_NOTIF flag in the
2409 * REPLY_STATISTICS_CMD 0x9c, above.
2410 *
2411 * Statistics counters continue to increment beacon after beacon, but are
2412 * cleared when changing channels or when driver issues REPLY_STATISTICS_CMD
2413 * 0x9c with CLEAR_STATS bit set (see above).
2414 *
2415 * uCode also issues this notification during scans. uCode clears statistics
2416 * appropriately so that each notification contains statistics for only the
2417 * one channel that has just been scanned.
2418 */
2419#define STATISTICS_REPLY_FLG_BAND_24G_MSK __constant_cpu_to_le32(0x2)
2420#define STATISTICS_REPLY_FLG_FAT_MODE_MSK __constant_cpu_to_le32(0x8)
bb8c093b 2421struct iwl4965_notif_statistics {
b481de9c
ZY
2422 __le32 flag;
2423 struct statistics_rx rx;
2424 struct statistics_tx tx;
2425 struct statistics_general general;
2426} __attribute__ ((packed));
2427
2428
2429/*
2430 * MISSED_BEACONS_NOTIFICATION = 0xa2 (notification only, not a command)
2431 */
2432/* if ucode missed CONSECUTIVE_MISSED_BCONS_TH beacons in a row,
2433 * then this notification will be sent. */
2434#define CONSECUTIVE_MISSED_BCONS_TH 20
2435
bb8c093b 2436struct iwl4965_missed_beacon_notif {
b481de9c
ZY
2437 __le32 consequtive_missed_beacons;
2438 __le32 total_missed_becons;
2439 __le32 num_expected_beacons;
2440 __le32 num_recvd_beacons;
2441} __attribute__ ((packed));
2442
f7d09d7c 2443
b481de9c
ZY
2444/******************************************************************************
2445 * (11)
2446 * Rx Calibration Commands:
2447 *
f7d09d7c
BC
2448 * With the uCode used for open source drivers, most Tx calibration (except
2449 * for Tx Power) and most Rx calibration is done by uCode during the
2450 * "initialize" phase of uCode boot. Driver must calibrate only:
2451 *
2452 * 1) Tx power (depends on temperature), described elsewhere
2453 * 2) Receiver gain balance (optimize MIMO, and detect disconnected antennas)
2454 * 3) Receiver sensitivity (to optimize signal detection)
2455 *
b481de9c
ZY
2456 *****************************************************************************/
2457
f7d09d7c
BC
2458/**
2459 * SENSITIVITY_CMD = 0xa8 (command, has simple generic response)
2460 *
2461 * This command sets up the Rx signal detector for a sensitivity level that
2462 * is high enough to lock onto all signals within the associated network,
2463 * but low enough to ignore signals that are below a certain threshold, so as
2464 * not to have too many "false alarms". False alarms are signals that the
2465 * Rx DSP tries to lock onto, but then discards after determining that they
2466 * are noise.
2467 *
2468 * The optimum number of false alarms is between 5 and 50 per 200 TUs
2469 * (200 * 1024 uSecs, i.e. 204.8 milliseconds) of actual Rx time (i.e.
2470 * time listening, not transmitting). Driver must adjust sensitivity so that
2471 * the ratio of actual false alarms to actual Rx time falls within this range.
2472 *
2473 * While associated, uCode delivers STATISTICS_NOTIFICATIONs after each
2474 * received beacon. These provide information to the driver to analyze the
2475 * sensitivity. Don't analyze statistics that come in from scanning, or any
2476 * other non-associated-network source. Pertinent statistics include:
2477 *
2478 * From "general" statistics (struct statistics_rx_non_phy):
2479 *
2480 * (beacon_energy_[abc] & 0x0FF00) >> 8 (unsigned, higher value is lower level)
2481 * Measure of energy of desired signal. Used for establishing a level
2482 * below which the device does not detect signals.
2483 *
2484 * (beacon_silence_rssi_[abc] & 0x0FF00) >> 8 (unsigned, units in dB)
2485 * Measure of background noise in silent period after beacon.
2486 *
2487 * channel_load
2488 * uSecs of actual Rx time during beacon period (varies according to
2489 * how much time was spent transmitting).
2490 *
2491 * From "cck" and "ofdm" statistics (struct statistics_rx_phy), separately:
2492 *
2493 * false_alarm_cnt
2494 * Signal locks abandoned early (before phy-level header).
2495 *
2496 * plcp_err
2497 * Signal locks abandoned late (during phy-level header).
2498 *
2499 * NOTE: Both false_alarm_cnt and plcp_err increment monotonically from
2500 * beacon to beacon, i.e. each value is an accumulation of all errors
2501 * before and including the latest beacon. Values will wrap around to 0
2502 * after counting up to 2^32 - 1. Driver must differentiate vs.
2503 * previous beacon's values to determine # false alarms in the current
2504 * beacon period.
2505 *
2506 * Total number of false alarms = false_alarms + plcp_errs
2507 *
2508 * For OFDM, adjust the following table entries in struct iwl_sensitivity_cmd
2509 * (notice that the start points for OFDM are at or close to settings for
2510 * maximum sensitivity):
2511 *
2512 * START / MIN / MAX
2513 * HD_AUTO_CORR32_X1_TH_ADD_MIN_INDEX 90 / 85 / 120
2514 * HD_AUTO_CORR32_X1_TH_ADD_MIN_MRC_INDEX 170 / 170 / 210
2515 * HD_AUTO_CORR32_X4_TH_ADD_MIN_INDEX 105 / 105 / 140
2516 * HD_AUTO_CORR32_X4_TH_ADD_MIN_MRC_INDEX 220 / 220 / 270
2517 *
2518 * If actual rate of OFDM false alarms (+ plcp_errors) is too high
2519 * (greater than 50 for each 204.8 msecs listening), reduce sensitivity
2520 * by *adding* 1 to all 4 of the table entries above, up to the max for
2521 * each entry. Conversely, if false alarm rate is too low (less than 5
2522 * for each 204.8 msecs listening), *subtract* 1 from each entry to
2523 * increase sensitivity.
2524 *
2525 * For CCK sensitivity, keep track of the following:
2526 *
2527 * 1). 20-beacon history of maximum background noise, indicated by
2528 * (beacon_silence_rssi_[abc] & 0x0FF00), units in dB, across the
2529 * 3 receivers. For any given beacon, the "silence reference" is
2530 * the maximum of last 60 samples (20 beacons * 3 receivers).
2531 *
2532 * 2). 10-beacon history of strongest signal level, as indicated
2533 * by (beacon_energy_[abc] & 0x0FF00) >> 8, across the 3 receivers,
2534 * i.e. the strength of the signal through the best receiver at the
2535 * moment. These measurements are "upside down", with lower values
2536 * for stronger signals, so max energy will be *minimum* value.
2537 *
2538 * Then for any given beacon, the driver must determine the *weakest*
2539 * of the strongest signals; this is the minimum level that needs to be
2540 * successfully detected, when using the best receiver at the moment.
2541 * "Max cck energy" is the maximum (higher value means lower energy!)
2542 * of the last 10 minima. Once this is determined, driver must add
2543 * a little margin by adding "6" to it.
2544 *
2545 * 3). Number of consecutive beacon periods with too few false alarms.
2546 * Reset this to 0 at the first beacon period that falls within the
2547 * "good" range (5 to 50 false alarms per 204.8 milliseconds rx).
2548 *
2549 * Then, adjust the following CCK table entries in struct iwl_sensitivity_cmd
2550 * (notice that the start points for CCK are at maximum sensitivity):
2551 *
2552 * START / MIN / MAX
2553 * HD_AUTO_CORR40_X4_TH_ADD_MIN_INDEX 125 / 125 / 200
2554 * HD_AUTO_CORR40_X4_TH_ADD_MIN_MRC_INDEX 200 / 200 / 400
2555 * HD_MIN_ENERGY_CCK_DET_INDEX 100 / 0 / 100
2556 *
2557 * If actual rate of CCK false alarms (+ plcp_errors) is too high
2558 * (greater than 50 for each 204.8 msecs listening), method for reducing
2559 * sensitivity is:
2560 *
2561 * 1) *Add* 3 to value in HD_AUTO_CORR40_X4_TH_ADD_MIN_MRC_INDEX,
2562 * up to max 400.
2563 *
2564 * 2) If current value in HD_AUTO_CORR40_X4_TH_ADD_MIN_INDEX is < 160,
2565 * sensitivity has been reduced a significant amount; bring it up to
2566 * a moderate 161. Otherwise, *add* 3, up to max 200.
2567 *
2568 * 3) a) If current value in HD_AUTO_CORR40_X4_TH_ADD_MIN_INDEX is > 160,
2569 * sensitivity has been reduced only a moderate or small amount;
2570 * *subtract* 2 from value in HD_MIN_ENERGY_CCK_DET_INDEX,
2571 * down to min 0. Otherwise (if gain has been significantly reduced),
2572 * don't change the HD_MIN_ENERGY_CCK_DET_INDEX value.
2573 *
2574 * b) Save a snapshot of the "silence reference".
2575 *
2576 * If actual rate of CCK false alarms (+ plcp_errors) is too low
2577 * (less than 5 for each 204.8 msecs listening), method for increasing
2578 * sensitivity is used only if:
2579 *
2580 * 1a) Previous beacon did not have too many false alarms
2581 * 1b) AND difference between previous "silence reference" and current
2582 * "silence reference" (prev - current) is 2 or more,
2583 * OR 2) 100 or more consecutive beacon periods have had rate of
2584 * less than 5 false alarms per 204.8 milliseconds rx time.
2585 *
2586 * Method for increasing sensitivity:
2587 *
2588 * 1) *Subtract* 3 from value in HD_AUTO_CORR40_X4_TH_ADD_MIN_INDEX,
2589 * down to min 125.
2590 *
2591 * 2) *Subtract* 3 from value in HD_AUTO_CORR40_X4_TH_ADD_MIN_MRC_INDEX,
2592 * down to min 200.
2593 *
2594 * 3) *Add* 2 to value in HD_MIN_ENERGY_CCK_DET_INDEX, up to max 100.
2595 *
2596 * If actual rate of CCK false alarms (+ plcp_errors) is within good range
2597 * (between 5 and 50 for each 204.8 msecs listening):
2598 *
2599 * 1) Save a snapshot of the silence reference.
2600 *
2601 * 2) If previous beacon had too many CCK false alarms (+ plcp_errors),
2602 * give some extra margin to energy threshold by *subtracting* 8
2603 * from value in HD_MIN_ENERGY_CCK_DET_INDEX.
2604 *
2605 * For all cases (too few, too many, good range), make sure that the CCK
2606 * detection threshold (energy) is below the energy level for robust
2607 * detection over the past 10 beacon periods, the "Max cck energy".
2608 * Lower values mean higher energy; this means making sure that the value
2609 * in HD_MIN_ENERGY_CCK_DET_INDEX is at or *above* "Max cck energy".
2610 *
2611 * Driver should set the following entries to fixed values:
2612 *
2613 * HD_MIN_ENERGY_OFDM_DET_INDEX 100
2614 * HD_BARKER_CORR_TH_ADD_MIN_INDEX 190
2615 * HD_BARKER_CORR_TH_ADD_MIN_MRC_INDEX 390
2616 * HD_OFDM_ENERGY_TH_IN_INDEX 62
2617 */
2618
2619/*
f0832f13 2620 * Table entries in SENSITIVITY_CMD (struct iwl_sensitivity_cmd)
f7d09d7c
BC
2621 */
2622#define HD_TABLE_SIZE (11) /* number of entries */
2623#define HD_MIN_ENERGY_CCK_DET_INDEX (0) /* table indexes */
2624#define HD_MIN_ENERGY_OFDM_DET_INDEX (1)
2625#define HD_AUTO_CORR32_X1_TH_ADD_MIN_INDEX (2)
2626#define HD_AUTO_CORR32_X1_TH_ADD_MIN_MRC_INDEX (3)
2627#define HD_AUTO_CORR40_X4_TH_ADD_MIN_MRC_INDEX (4)
2628#define HD_AUTO_CORR32_X4_TH_ADD_MIN_INDEX (5)
2629#define HD_AUTO_CORR32_X4_TH_ADD_MIN_MRC_INDEX (6)
2630#define HD_BARKER_CORR_TH_ADD_MIN_INDEX (7)
2631#define HD_BARKER_CORR_TH_ADD_MIN_MRC_INDEX (8)
2632#define HD_AUTO_CORR40_X4_TH_ADD_MIN_INDEX (9)
2633#define HD_OFDM_ENERGY_TH_IN_INDEX (10)
2634
f0832f13 2635/* Control field in struct iwl_sensitivity_cmd */
f7d09d7c
BC
2636#define SENSITIVITY_CMD_CONTROL_DEFAULT_TABLE __constant_cpu_to_le16(0)
2637#define SENSITIVITY_CMD_CONTROL_WORK_TABLE __constant_cpu_to_le16(1)
b481de9c 2638
f7d09d7c 2639/**
f0832f13 2640 * struct iwl_sensitivity_cmd
f7d09d7c
BC
2641 * @control: (1) updates working table, (0) updates default table
2642 * @table: energy threshold values, use HD_* as index into table
2643 *
2644 * Always use "1" in "control" to update uCode's working table and DSP.
2645 */
f0832f13 2646struct iwl_sensitivity_cmd {
f7d09d7c
BC
2647 __le16 control; /* always use "1" */
2648 __le16 table[HD_TABLE_SIZE]; /* use HD_* as index */
b481de9c
ZY
2649} __attribute__ ((packed));
2650
f7d09d7c
BC
2651
2652/**
2653 * REPLY_PHY_CALIBRATION_CMD = 0xb0 (command, has simple generic response)
2654 *
2655 * This command sets the relative gains of 4965's 3 radio receiver chains.
2656 *
2657 * After the first association, driver should accumulate signal and noise
2658 * statistics from the STATISTICS_NOTIFICATIONs that follow the first 20
2659 * beacons from the associated network (don't collect statistics that come
2660 * in from scanning, or any other non-network source).
2661 *
2662 * DISCONNECTED ANTENNA:
2663 *
2664 * Driver should determine which antennas are actually connected, by comparing
2665 * average beacon signal levels for the 3 Rx chains. Accumulate (add) the
2666 * following values over 20 beacons, one accumulator for each of the chains
2667 * a/b/c, from struct statistics_rx_non_phy:
2668 *
2669 * beacon_rssi_[abc] & 0x0FF (unsigned, units in dB)
2670 *
2671 * Find the strongest signal from among a/b/c. Compare the other two to the
2672 * strongest. If any signal is more than 15 dB (times 20, unless you
2673 * divide the accumulated values by 20) below the strongest, the driver
2674 * considers that antenna to be disconnected, and should not try to use that
2675 * antenna/chain for Rx or Tx. If both A and B seem to be disconnected,
2676 * driver should declare the stronger one as connected, and attempt to use it
2677 * (A and B are the only 2 Tx chains!).
2678 *
2679 *
2680 * RX BALANCE:
2681 *
2682 * Driver should balance the 3 receivers (but just the ones that are connected
2683 * to antennas, see above) for gain, by comparing the average signal levels
2684 * detected during the silence after each beacon (background noise).
2685 * Accumulate (add) the following values over 20 beacons, one accumulator for
2686 * each of the chains a/b/c, from struct statistics_rx_non_phy:
2687 *
2688 * beacon_silence_rssi_[abc] & 0x0FF (unsigned, units in dB)
2689 *
2690 * Find the weakest background noise level from among a/b/c. This Rx chain
2691 * will be the reference, with 0 gain adjustment. Attenuate other channels by
2692 * finding noise difference:
2693 *
2694 * (accum_noise[i] - accum_noise[reference]) / 30
2695 *
2696 * The "30" adjusts the dB in the 20 accumulated samples to units of 1.5 dB.
2697 * For use in diff_gain_[abc] fields of struct iwl_calibration_cmd, the
2698 * driver should limit the difference results to a range of 0-3 (0-4.5 dB),
2699 * and set bit 2 to indicate "reduce gain". The value for the reference
2700 * (weakest) chain should be "0".
2701 *
2702 * diff_gain_[abc] bit fields:
2703 * 2: (1) reduce gain, (0) increase gain
2704 * 1-0: amount of gain, units of 1.5 dB
2705 */
2706
2707/* "Differential Gain" opcode used in REPLY_PHY_CALIBRATION_CMD. */
2708#define PHY_CALIBRATE_DIFF_GAIN_CMD (7)
2709
bb8c093b 2710struct iwl4965_calibration_cmd {
f7d09d7c
BC
2711 u8 opCode; /* PHY_CALIBRATE_DIFF_GAIN_CMD (7) */
2712 u8 flags; /* not used */
b481de9c 2713 __le16 reserved;
f7d09d7c 2714 s8 diff_gain_a; /* see above */
b481de9c
ZY
2715 s8 diff_gain_b;
2716 s8 diff_gain_c;
2717 u8 reserved1;
2718} __attribute__ ((packed));
2719
33fd5033
EG
2720/* Phy calibration command for 5000 series */
2721
2722enum {
2723 IWL5000_PHY_CALIBRATE_DC_CMD = 8,
2724 IWL5000_PHY_CALIBRATE_LO_CMD = 9,
2725 IWL5000_PHY_CALIBRATE_RX_BB_CMD = 10,
2726 IWL5000_PHY_CALIBRATE_TX_IQ_CMD = 11,
2727 IWL5000_PHY_CALIBRATE_RX_IQ_CMD = 12,
2728 IWL5000_PHY_CALIBRATION_NOISE_CMD = 13,
2729 IWL5000_PHY_CALIBRATE_AGC_TABLE_CMD = 14,
2730 IWL5000_PHY_CALIBRATE_CRYSTAL_FRQ_CMD = 15,
2731 IWL5000_PHY_CALIBRATE_BASE_BAND_CMD = 16,
2732 IWL5000_PHY_CALIBRATE_CHAIN_NOISE_RESET_CMD = 18,
2733 IWL5000_PHY_CALIBRATE_CHAIN_NOISE_GAIN_CMD = 19,
2734};
2735
2736struct iwl5000_calibration_chain_noise_reset_cmd {
2737 u8 op_code; /* IWL5000_PHY_CALIBRATE_CHAIN_NOISE_RESET_CMD */
2738 u8 flags; /* not used */
2739 __le16 reserved;
2740} __attribute__ ((packed));
2741
2742struct iwl5000_calibration_chain_noise_gain_cmd {
2743 u8 op_code; /* IWL5000_PHY_CALIBRATE_CHAIN_NOISE_GAIN_CMD */
2744 u8 flags; /* not used */
2745 __le16 reserved;
2746 u8 delta_gain_1;
2747 u8 delta_gain_2;
2748 __le16 reserved1;
2749} __attribute__ ((packed));
2750
b481de9c
ZY
2751/******************************************************************************
2752 * (12)
2753 * Miscellaneous Commands:
2754 *
2755 *****************************************************************************/
2756
2757/*
2758 * LEDs Command & Response
2759 * REPLY_LEDS_CMD = 0x48 (command, has simple generic response)
2760 *
2761 * For each of 3 possible LEDs (Activity/Link/Tech, selected by "id" field),
2762 * this command turns it on or off, or sets up a periodic blinking cycle.
2763 */
bb8c093b 2764struct iwl4965_led_cmd {
b481de9c
ZY
2765 __le32 interval; /* "interval" in uSec */
2766 u8 id; /* 1: Activity, 2: Link, 3: Tech */
2767 u8 off; /* # intervals off while blinking;
2768 * "0", with >0 "on" value, turns LED on */
2769 u8 on; /* # intervals on while blinking;
2770 * "0", regardless of "off", turns LED off */
2771 u8 reserved;
2772} __attribute__ ((packed));
2773
2774/******************************************************************************
2775 * (13)
2776 * Union of all expected notifications/responses:
2777 *
2778 *****************************************************************************/
2779
db11d634 2780struct iwl_rx_packet {
b481de9c 2781 __le32 len;
857485c0 2782 struct iwl_cmd_header hdr;
b481de9c 2783 union {
bb8c093b
CH
2784 struct iwl4965_alive_resp alive_frame;
2785 struct iwl4965_rx_frame rx_frame;
2786 struct iwl4965_tx_resp tx_resp;
2787 struct iwl4965_spectrum_notification spectrum_notif;
2788 struct iwl4965_csa_notification csa_notif;
2789 struct iwl4965_error_resp err_resp;
2790 struct iwl4965_card_state_notif card_state_notif;
2791 struct iwl4965_beacon_notif beacon_status;
2792 struct iwl4965_add_sta_resp add_sta;
2793 struct iwl4965_sleep_notification sleep_notif;
2794 struct iwl4965_spectrum_resp spectrum;
2795 struct iwl4965_notif_statistics stats;
2796 struct iwl4965_compressed_ba_resp compressed_ba;
2797 struct iwl4965_missed_beacon_notif missed_beacon;
b481de9c
ZY
2798 __le32 status;
2799 u8 raw[0];
2800 } u;
2801} __attribute__ ((packed));
2802
bb8c093b 2803#define IWL_RX_FRAME_SIZE (4 + sizeof(struct iwl4965_rx_frame))
b481de9c 2804
bb8c093b 2805#endif /* __iwl4965_commands_h__ */
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