Merge branch 'master' of git://git.kernel.org/pub/scm/linux/kernel/git/linville/wirel...
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / drivers / net / wireless / iwlwifi / iwl-dev.h
1 /******************************************************************************
2 *
3 * Copyright(c) 2003 - 2011 Intel Corporation. All rights reserved.
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of version 2 of the GNU General Public License as
7 * published by the Free Software Foundation.
8 *
9 * This program is distributed in the hope that it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
12 * more details.
13 *
14 * You should have received a copy of the GNU General Public License along with
15 * this program; if not, write to the Free Software Foundation, Inc.,
16 * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
17 *
18 * The full GNU General Public License is included in this distribution in the
19 * file called LICENSE.
20 *
21 * Contact Information:
22 * Intel Linux Wireless <ilw@linux.intel.com>
23 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
24 *
25 *****************************************************************************/
26 /*
27 * Please use this file (iwl-dev.h) for driver implementation definitions.
28 * Please use iwl-commands.h for uCode API definitions.
29 */
30
31 #ifndef __iwl_dev_h__
32 #define __iwl_dev_h__
33
34 #include <linux/interrupt.h>
35 #include <linux/pci.h> /* for struct pci_device_id */
36 #include <linux/kernel.h>
37 #include <linux/wait.h>
38 #include <linux/leds.h>
39 #include <net/ieee80211_radiotap.h>
40
41 #include "iwl-eeprom.h"
42 #include "iwl-csr.h"
43 #include "iwl-prph.h"
44 #include "iwl-fh.h"
45 #include "iwl-debug.h"
46 #include "iwl-agn-hw.h"
47 #include "iwl-led.h"
48 #include "iwl-power.h"
49 #include "iwl-agn-rs.h"
50 #include "iwl-agn-tt.h"
51
52 struct iwl_tx_queue;
53
54 /* CT-KILL constants */
55 #define CT_KILL_THRESHOLD_LEGACY 110 /* in Celsius */
56 #define CT_KILL_THRESHOLD 114 /* in Celsius */
57 #define CT_KILL_EXIT_THRESHOLD 95 /* in Celsius */
58
59 /* Default noise level to report when noise measurement is not available.
60 * This may be because we're:
61 * 1) Not associated (4965, no beacon statistics being sent to driver)
62 * 2) Scanning (noise measurement does not apply to associated channel)
63 * 3) Receiving CCK (3945 delivers noise info only for OFDM frames)
64 * Use default noise value of -127 ... this is below the range of measurable
65 * Rx dBm for either 3945 or 4965, so it can indicate "unmeasurable" to user.
66 * Also, -127 works better than 0 when averaging frames with/without
67 * noise info (e.g. averaging might be done in app); measured dBm values are
68 * always negative ... using a negative value as the default keeps all
69 * averages within an s8's (used in some apps) range of negative values. */
70 #define IWL_NOISE_MEAS_NOT_AVAILABLE (-127)
71
72 /*
73 * RTS threshold here is total size [2347] minus 4 FCS bytes
74 * Per spec:
75 * a value of 0 means RTS on all data/management packets
76 * a value > max MSDU size means no RTS
77 * else RTS for data/management frames where MPDU is larger
78 * than RTS value.
79 */
80 #define DEFAULT_RTS_THRESHOLD 2347U
81 #define MIN_RTS_THRESHOLD 0U
82 #define MAX_RTS_THRESHOLD 2347U
83 #define MAX_MSDU_SIZE 2304U
84 #define MAX_MPDU_SIZE 2346U
85 #define DEFAULT_BEACON_INTERVAL 200U
86 #define DEFAULT_SHORT_RETRY_LIMIT 7U
87 #define DEFAULT_LONG_RETRY_LIMIT 4U
88
89 struct iwl_rx_mem_buffer {
90 dma_addr_t page_dma;
91 struct page *page;
92 struct list_head list;
93 };
94
95 #define rxb_addr(r) page_address(r->page)
96
97 /* defined below */
98 struct iwl_device_cmd;
99
100 struct iwl_cmd_meta {
101 /* only for SYNC commands, iff the reply skb is wanted */
102 struct iwl_host_cmd *source;
103 /*
104 * only for ASYNC commands
105 * (which is somewhat stupid -- look at iwl-sta.c for instance
106 * which duplicates a bunch of code because the callback isn't
107 * invoked for SYNC commands, if it were and its result passed
108 * through it would be simpler...)
109 */
110 void (*callback)(struct iwl_priv *priv,
111 struct iwl_device_cmd *cmd,
112 struct iwl_rx_packet *pkt);
113
114 u32 flags;
115
116 DEFINE_DMA_UNMAP_ADDR(mapping);
117 DEFINE_DMA_UNMAP_LEN(len);
118 };
119
120 /*
121 * Generic queue structure
122 *
123 * Contains common data for Rx and Tx queues.
124 *
125 * Note the difference between n_bd and n_window: the hardware
126 * always assumes 256 descriptors, so n_bd is always 256 (unless
127 * there might be HW changes in the future). For the normal TX
128 * queues, n_window, which is the size of the software queue data
129 * is also 256; however, for the command queue, n_window is only
130 * 32 since we don't need so many commands pending. Since the HW
131 * still uses 256 BDs for DMA though, n_bd stays 256. As a result,
132 * the software buffers (in the variables @meta, @txb in struct
133 * iwl_tx_queue) only have 32 entries, while the HW buffers (@tfds
134 * in the same struct) have 256.
135 * This means that we end up with the following:
136 * HW entries: | 0 | ... | N * 32 | ... | N * 32 + 31 | ... | 255 |
137 * SW entries: | 0 | ... | 31 |
138 * where N is a number between 0 and 7. This means that the SW
139 * data is a window overlayed over the HW queue.
140 */
141 struct iwl_queue {
142 int n_bd; /* number of BDs in this queue */
143 int write_ptr; /* 1-st empty entry (index) host_w*/
144 int read_ptr; /* last used entry (index) host_r*/
145 /* use for monitoring and recovering the stuck queue */
146 dma_addr_t dma_addr; /* physical addr for BD's */
147 int n_window; /* safe queue window */
148 u32 id;
149 int low_mark; /* low watermark, resume queue if free
150 * space more than this */
151 int high_mark; /* high watermark, stop queue if free
152 * space less than this */
153 };
154
155 /* One for each TFD */
156 struct iwl_tx_info {
157 struct sk_buff *skb;
158 struct iwl_rxon_context *ctx;
159 };
160
161 /**
162 * struct iwl_tx_queue - Tx Queue for DMA
163 * @q: generic Rx/Tx queue descriptor
164 * @bd: base of circular buffer of TFDs
165 * @cmd: array of command/TX buffer pointers
166 * @meta: array of meta data for each command/tx buffer
167 * @dma_addr_cmd: physical address of cmd/tx buffer array
168 * @txb: array of per-TFD driver data
169 * @time_stamp: time (in jiffies) of last read_ptr change
170 * @need_update: indicates need to update read/write index
171 * @sched_retry: indicates queue is high-throughput aggregation (HT AGG) enabled
172 *
173 * A Tx queue consists of circular buffer of BDs (a.k.a. TFDs, transmit frame
174 * descriptors) and required locking structures.
175 */
176 #define TFD_TX_CMD_SLOTS 256
177 #define TFD_CMD_SLOTS 32
178
179 struct iwl_tx_queue {
180 struct iwl_queue q;
181 struct iwl_tfd *tfds;
182 struct iwl_device_cmd **cmd;
183 struct iwl_cmd_meta *meta;
184 struct iwl_tx_info *txb;
185 unsigned long time_stamp;
186 u8 need_update;
187 u8 sched_retry;
188 u8 active;
189 u8 swq_id;
190 };
191
192 #define IWL_NUM_SCAN_RATES (2)
193
194 /*
195 * One for each channel, holds all channel setup data
196 * Some of the fields (e.g. eeprom and flags/max_power_avg) are redundant
197 * with one another!
198 */
199 struct iwl_channel_info {
200 struct iwl_eeprom_channel eeprom; /* EEPROM regulatory limit */
201 struct iwl_eeprom_channel ht40_eeprom; /* EEPROM regulatory limit for
202 * HT40 channel */
203
204 u8 channel; /* channel number */
205 u8 flags; /* flags copied from EEPROM */
206 s8 max_power_avg; /* (dBm) regul. eeprom, normal Tx, any rate */
207 s8 curr_txpow; /* (dBm) regulatory/spectrum/user (not h/w) limit */
208 s8 min_power; /* always 0 */
209 s8 scan_power; /* (dBm) regul. eeprom, direct scans, any rate */
210
211 u8 group_index; /* 0-4, maps channel to group1/2/3/4/5 */
212 u8 band_index; /* 0-4, maps channel to band1/2/3/4/5 */
213 enum ieee80211_band band;
214
215 /* HT40 channel info */
216 s8 ht40_max_power_avg; /* (dBm) regul. eeprom, normal Tx, any rate */
217 u8 ht40_flags; /* flags copied from EEPROM */
218 u8 ht40_extension_channel; /* HT_IE_EXT_CHANNEL_* */
219 };
220
221 #define IWL_TX_FIFO_BK 0 /* shared */
222 #define IWL_TX_FIFO_BE 1
223 #define IWL_TX_FIFO_VI 2 /* shared */
224 #define IWL_TX_FIFO_VO 3
225 #define IWL_TX_FIFO_BK_IPAN IWL_TX_FIFO_BK
226 #define IWL_TX_FIFO_BE_IPAN 4
227 #define IWL_TX_FIFO_VI_IPAN IWL_TX_FIFO_VI
228 #define IWL_TX_FIFO_VO_IPAN 5
229 #define IWL_TX_FIFO_UNUSED -1
230
231 /* Minimum number of queues. MAX_NUM is defined in hw specific files.
232 * Set the minimum to accommodate the 4 standard TX queues, 1 command
233 * queue, 2 (unused) HCCA queues, and 4 HT queues (one for each AC) */
234 #define IWL_MIN_NUM_QUEUES 10
235
236 /*
237 * Command queue depends on iPAN support.
238 */
239 #define IWL_DEFAULT_CMD_QUEUE_NUM 4
240 #define IWL_IPAN_CMD_QUEUE_NUM 9
241
242 /*
243 * This queue number is required for proper operation
244 * because the ucode will stop/start the scheduler as
245 * required.
246 */
247 #define IWL_IPAN_MCAST_QUEUE 8
248
249 #define IEEE80211_DATA_LEN 2304
250 #define IEEE80211_4ADDR_LEN 30
251 #define IEEE80211_HLEN (IEEE80211_4ADDR_LEN)
252 #define IEEE80211_FRAME_LEN (IEEE80211_DATA_LEN + IEEE80211_HLEN)
253
254
255 #define SEQ_TO_SN(seq) (((seq) & IEEE80211_SCTL_SEQ) >> 4)
256 #define SN_TO_SEQ(ssn) (((ssn) << 4) & IEEE80211_SCTL_SEQ)
257 #define MAX_SN ((IEEE80211_SCTL_SEQ) >> 4)
258
259 enum {
260 CMD_SYNC = 0,
261 CMD_SIZE_NORMAL = 0,
262 CMD_NO_SKB = 0,
263 CMD_ASYNC = (1 << 1),
264 CMD_WANT_SKB = (1 << 2),
265 CMD_MAPPED = (1 << 3),
266 };
267
268 #define DEF_CMD_PAYLOAD_SIZE 320
269
270 /**
271 * struct iwl_device_cmd
272 *
273 * For allocation of the command and tx queues, this establishes the overall
274 * size of the largest command we send to uCode, except for commands that
275 * aren't fully copied and use other TFD space.
276 */
277 struct iwl_device_cmd {
278 struct iwl_cmd_header hdr; /* uCode API */
279 union {
280 u32 flags;
281 u8 val8;
282 u16 val16;
283 u32 val32;
284 struct iwl_tx_cmd tx;
285 struct iwl6000_channel_switch_cmd chswitch;
286 u8 payload[DEF_CMD_PAYLOAD_SIZE];
287 } __packed cmd;
288 } __packed;
289
290 #define TFD_MAX_PAYLOAD_SIZE (sizeof(struct iwl_device_cmd))
291
292 #define IWL_MAX_CMD_TFDS 2
293
294 enum iwl_hcmd_dataflag {
295 IWL_HCMD_DFL_NOCOPY = BIT(0),
296 };
297
298 struct iwl_host_cmd {
299 const void *data[IWL_MAX_CMD_TFDS];
300 unsigned long reply_page;
301 void (*callback)(struct iwl_priv *priv,
302 struct iwl_device_cmd *cmd,
303 struct iwl_rx_packet *pkt);
304 u32 flags;
305 u16 len[IWL_MAX_CMD_TFDS];
306 u8 dataflags[IWL_MAX_CMD_TFDS];
307 u8 id;
308 };
309
310 #define SUP_RATE_11A_MAX_NUM_CHANNELS 8
311 #define SUP_RATE_11B_MAX_NUM_CHANNELS 4
312 #define SUP_RATE_11G_MAX_NUM_CHANNELS 12
313
314 /**
315 * struct iwl_rx_queue - Rx queue
316 * @bd: driver's pointer to buffer of receive buffer descriptors (rbd)
317 * @bd_dma: bus address of buffer of receive buffer descriptors (rbd)
318 * @read: Shared index to newest available Rx buffer
319 * @write: Shared index to oldest written Rx packet
320 * @free_count: Number of pre-allocated buffers in rx_free
321 * @rx_free: list of free SKBs for use
322 * @rx_used: List of Rx buffers with no SKB
323 * @need_update: flag to indicate we need to update read/write index
324 * @rb_stts: driver's pointer to receive buffer status
325 * @rb_stts_dma: bus address of receive buffer status
326 *
327 * NOTE: rx_free and rx_used are used as a FIFO for iwl_rx_mem_buffers
328 */
329 struct iwl_rx_queue {
330 __le32 *bd;
331 dma_addr_t bd_dma;
332 struct iwl_rx_mem_buffer pool[RX_QUEUE_SIZE + RX_FREE_BUFFERS];
333 struct iwl_rx_mem_buffer *queue[RX_QUEUE_SIZE];
334 u32 read;
335 u32 write;
336 u32 free_count;
337 u32 write_actual;
338 struct list_head rx_free;
339 struct list_head rx_used;
340 int need_update;
341 struct iwl_rb_status *rb_stts;
342 dma_addr_t rb_stts_dma;
343 spinlock_t lock;
344 };
345
346 #define IWL_SUPPORTED_RATES_IE_LEN 8
347
348 #define MAX_TID_COUNT 9
349
350 #define IWL_INVALID_RATE 0xFF
351 #define IWL_INVALID_VALUE -1
352
353 /**
354 * struct iwl_ht_agg -- aggregation status while waiting for block-ack
355 * @txq_id: Tx queue used for Tx attempt
356 * @frame_count: # frames attempted by Tx command
357 * @wait_for_ba: Expect block-ack before next Tx reply
358 * @start_idx: Index of 1st Transmit Frame Descriptor (TFD) in Tx window
359 * @bitmap0: Low order bitmap, one bit for each frame pending ACK in Tx window
360 * @bitmap1: High order, one bit for each frame pending ACK in Tx window
361 * @rate_n_flags: Rate at which Tx was attempted
362 *
363 * If REPLY_TX indicates that aggregation was attempted, driver must wait
364 * for block ack (REPLY_COMPRESSED_BA). This struct stores tx reply info
365 * until block ack arrives.
366 */
367 struct iwl_ht_agg {
368 u16 txq_id;
369 u16 frame_count;
370 u16 wait_for_ba;
371 u16 start_idx;
372 u64 bitmap;
373 u32 rate_n_flags;
374 #define IWL_AGG_OFF 0
375 #define IWL_AGG_ON 1
376 #define IWL_EMPTYING_HW_QUEUE_ADDBA 2
377 #define IWL_EMPTYING_HW_QUEUE_DELBA 3
378 u8 state;
379 u8 tx_fifo;
380 };
381
382
383 struct iwl_tid_data {
384 u16 seq_number; /* agn only */
385 u16 tfds_in_queue;
386 struct iwl_ht_agg agg;
387 };
388
389 struct iwl_hw_key {
390 u32 cipher;
391 int keylen;
392 u8 keyidx;
393 u8 key[32];
394 };
395
396 union iwl_ht_rate_supp {
397 u16 rates;
398 struct {
399 u8 siso_rate;
400 u8 mimo_rate;
401 };
402 };
403
404 #define CFG_HT_RX_AMPDU_FACTOR_8K (0x0)
405 #define CFG_HT_RX_AMPDU_FACTOR_16K (0x1)
406 #define CFG_HT_RX_AMPDU_FACTOR_32K (0x2)
407 #define CFG_HT_RX_AMPDU_FACTOR_64K (0x3)
408 #define CFG_HT_RX_AMPDU_FACTOR_DEF CFG_HT_RX_AMPDU_FACTOR_64K
409 #define CFG_HT_RX_AMPDU_FACTOR_MAX CFG_HT_RX_AMPDU_FACTOR_64K
410 #define CFG_HT_RX_AMPDU_FACTOR_MIN CFG_HT_RX_AMPDU_FACTOR_8K
411
412 /*
413 * Maximal MPDU density for TX aggregation
414 * 4 - 2us density
415 * 5 - 4us density
416 * 6 - 8us density
417 * 7 - 16us density
418 */
419 #define CFG_HT_MPDU_DENSITY_2USEC (0x4)
420 #define CFG_HT_MPDU_DENSITY_4USEC (0x5)
421 #define CFG_HT_MPDU_DENSITY_8USEC (0x6)
422 #define CFG_HT_MPDU_DENSITY_16USEC (0x7)
423 #define CFG_HT_MPDU_DENSITY_DEF CFG_HT_MPDU_DENSITY_4USEC
424 #define CFG_HT_MPDU_DENSITY_MAX CFG_HT_MPDU_DENSITY_16USEC
425 #define CFG_HT_MPDU_DENSITY_MIN (0x1)
426
427 struct iwl_ht_config {
428 bool single_chain_sufficient;
429 enum ieee80211_smps_mode smps; /* current smps mode */
430 };
431
432 /* QoS structures */
433 struct iwl_qos_info {
434 int qos_active;
435 struct iwl_qosparam_cmd def_qos_parm;
436 };
437
438 /*
439 * Structure should be accessed with sta_lock held. When station addition
440 * is in progress (IWL_STA_UCODE_INPROGRESS) it is possible to access only
441 * the commands (iwl_addsta_cmd and iwl_link_quality_cmd) without sta_lock
442 * held.
443 */
444 struct iwl_station_entry {
445 struct iwl_addsta_cmd sta;
446 struct iwl_tid_data tid[MAX_TID_COUNT];
447 u8 used, ctxid;
448 struct iwl_hw_key keyinfo;
449 struct iwl_link_quality_cmd *lq;
450 };
451
452 struct iwl_station_priv_common {
453 struct iwl_rxon_context *ctx;
454 u8 sta_id;
455 };
456
457 /*
458 * iwl_station_priv: Driver's private station information
459 *
460 * When mac80211 creates a station it reserves some space (hw->sta_data_size)
461 * in the structure for use by driver. This structure is places in that
462 * space.
463 */
464 struct iwl_station_priv {
465 struct iwl_station_priv_common common;
466 struct iwl_lq_sta lq_sta;
467 atomic_t pending_frames;
468 bool client;
469 bool asleep;
470 u8 max_agg_bufsize;
471 };
472
473 /**
474 * struct iwl_vif_priv - driver's private per-interface information
475 *
476 * When mac80211 allocates a virtual interface, it can allocate
477 * space for us to put data into.
478 */
479 struct iwl_vif_priv {
480 struct iwl_rxon_context *ctx;
481 u8 ibss_bssid_sta_id;
482 };
483
484 /* one for each uCode image (inst/data, boot/init/runtime) */
485 struct fw_desc {
486 void *v_addr; /* access by driver */
487 dma_addr_t p_addr; /* access by card's busmaster DMA */
488 u32 len; /* bytes */
489 };
490
491 struct fw_img {
492 struct fw_desc code, data;
493 };
494
495 /* v1/v2 uCode file layout */
496 struct iwl_ucode_header {
497 __le32 ver; /* major/minor/API/serial */
498 union {
499 struct {
500 __le32 inst_size; /* bytes of runtime code */
501 __le32 data_size; /* bytes of runtime data */
502 __le32 init_size; /* bytes of init code */
503 __le32 init_data_size; /* bytes of init data */
504 __le32 boot_size; /* bytes of bootstrap code */
505 u8 data[0]; /* in same order as sizes */
506 } v1;
507 struct {
508 __le32 build; /* build number */
509 __le32 inst_size; /* bytes of runtime code */
510 __le32 data_size; /* bytes of runtime data */
511 __le32 init_size; /* bytes of init code */
512 __le32 init_data_size; /* bytes of init data */
513 __le32 boot_size; /* bytes of bootstrap code */
514 u8 data[0]; /* in same order as sizes */
515 } v2;
516 } u;
517 };
518
519 /*
520 * new TLV uCode file layout
521 *
522 * The new TLV file format contains TLVs, that each specify
523 * some piece of data. To facilitate "groups", for example
524 * different instruction image with different capabilities,
525 * bundled with the same init image, an alternative mechanism
526 * is provided:
527 * When the alternative field is 0, that means that the item
528 * is always valid. When it is non-zero, then it is only
529 * valid in conjunction with items of the same alternative,
530 * in which case the driver (user) selects one alternative
531 * to use.
532 */
533
534 enum iwl_ucode_tlv_type {
535 IWL_UCODE_TLV_INVALID = 0, /* unused */
536 IWL_UCODE_TLV_INST = 1,
537 IWL_UCODE_TLV_DATA = 2,
538 IWL_UCODE_TLV_INIT = 3,
539 IWL_UCODE_TLV_INIT_DATA = 4,
540 IWL_UCODE_TLV_BOOT = 5,
541 IWL_UCODE_TLV_PROBE_MAX_LEN = 6, /* a u32 value */
542 IWL_UCODE_TLV_PAN = 7,
543 IWL_UCODE_TLV_RUNT_EVTLOG_PTR = 8,
544 IWL_UCODE_TLV_RUNT_EVTLOG_SIZE = 9,
545 IWL_UCODE_TLV_RUNT_ERRLOG_PTR = 10,
546 IWL_UCODE_TLV_INIT_EVTLOG_PTR = 11,
547 IWL_UCODE_TLV_INIT_EVTLOG_SIZE = 12,
548 IWL_UCODE_TLV_INIT_ERRLOG_PTR = 13,
549 IWL_UCODE_TLV_ENHANCE_SENS_TBL = 14,
550 IWL_UCODE_TLV_PHY_CALIBRATION_SIZE = 15,
551 /* 16 and 17 reserved for future use */
552 IWL_UCODE_TLV_FLAGS = 18,
553 };
554
555 /**
556 * enum iwl_ucode_tlv_flag - ucode API flags
557 * @IWL_UCODE_TLV_FLAGS_PAN: This is PAN capable microcode; this previously
558 * was a separate TLV but moved here to save space.
559 * @IWL_UCODE_TLV_FLAGS_NEWSCAN: new uCode scan behaviour on hidden SSID,
560 * treats good CRC threshold as a boolean
561 * @IWL_UCODE_TLV_FLAGS_MFP: This uCode image supports MFP (802.11w).
562 */
563 enum iwl_ucode_tlv_flag {
564 IWL_UCODE_TLV_FLAGS_PAN = BIT(0),
565 IWL_UCODE_TLV_FLAGS_NEWSCAN = BIT(1),
566 IWL_UCODE_TLV_FLAGS_MFP = BIT(2),
567 };
568
569 struct iwl_ucode_tlv {
570 __le16 type; /* see above */
571 __le16 alternative; /* see comment */
572 __le32 length; /* not including type/length fields */
573 u8 data[0];
574 } __packed;
575
576 #define IWL_TLV_UCODE_MAGIC 0x0a4c5749
577
578 struct iwl_tlv_ucode_header {
579 /*
580 * The TLV style ucode header is distinguished from
581 * the v1/v2 style header by first four bytes being
582 * zero, as such is an invalid combination of
583 * major/minor/API/serial versions.
584 */
585 __le32 zero;
586 __le32 magic;
587 u8 human_readable[64];
588 __le32 ver; /* major/minor/API/serial */
589 __le32 build;
590 __le64 alternatives; /* bitmask of valid alternatives */
591 /*
592 * The data contained herein has a TLV layout,
593 * see above for the TLV header and types.
594 * Note that each TLV is padded to a length
595 * that is a multiple of 4 for alignment.
596 */
597 u8 data[0];
598 };
599
600 struct iwl_sensitivity_ranges {
601 u16 min_nrg_cck;
602 u16 max_nrg_cck;
603
604 u16 nrg_th_cck;
605 u16 nrg_th_ofdm;
606
607 u16 auto_corr_min_ofdm;
608 u16 auto_corr_min_ofdm_mrc;
609 u16 auto_corr_min_ofdm_x1;
610 u16 auto_corr_min_ofdm_mrc_x1;
611
612 u16 auto_corr_max_ofdm;
613 u16 auto_corr_max_ofdm_mrc;
614 u16 auto_corr_max_ofdm_x1;
615 u16 auto_corr_max_ofdm_mrc_x1;
616
617 u16 auto_corr_max_cck;
618 u16 auto_corr_max_cck_mrc;
619 u16 auto_corr_min_cck;
620 u16 auto_corr_min_cck_mrc;
621
622 u16 barker_corr_th_min;
623 u16 barker_corr_th_min_mrc;
624 u16 nrg_th_cca;
625 };
626
627
628 #define KELVIN_TO_CELSIUS(x) ((x)-273)
629 #define CELSIUS_TO_KELVIN(x) ((x)+273)
630
631
632 /**
633 * struct iwl_hw_params
634 * @max_txq_num: Max # Tx queues supported
635 * @dma_chnl_num: Number of Tx DMA/FIFO channels
636 * @scd_bc_tbls_size: size of scheduler byte count tables
637 * @tfd_size: TFD size
638 * @tx/rx_chains_num: Number of TX/RX chains
639 * @valid_tx/rx_ant: usable antennas
640 * @max_rxq_size: Max # Rx frames in Rx queue (must be power-of-2)
641 * @max_rxq_log: Log-base-2 of max_rxq_size
642 * @rx_page_order: Rx buffer page order
643 * @rx_wrt_ptr_reg: FH{39}_RSCSR_CHNL0_WPTR
644 * @max_stations:
645 * @ht40_channel: is 40MHz width possible in band 2.4
646 * BIT(IEEE80211_BAND_5GHZ) BIT(IEEE80211_BAND_5GHZ)
647 * @sw_crypto: 0 for hw, 1 for sw
648 * @max_xxx_size: for ucode uses
649 * @ct_kill_threshold: temperature threshold
650 * @beacon_time_tsf_bits: number of valid tsf bits for beacon time
651 * @calib_init_cfg: setup initial calibrations for the hw
652 * @calib_rt_cfg: setup runtime calibrations for the hw
653 * @struct iwl_sensitivity_ranges: range of sensitivity values
654 */
655 struct iwl_hw_params {
656 u8 max_txq_num;
657 u8 dma_chnl_num;
658 u16 scd_bc_tbls_size;
659 u32 tfd_size;
660 u8 tx_chains_num;
661 u8 rx_chains_num;
662 u8 valid_tx_ant;
663 u8 valid_rx_ant;
664 u16 max_rxq_size;
665 u16 max_rxq_log;
666 u32 rx_page_order;
667 u32 rx_wrt_ptr_reg;
668 u8 max_stations;
669 u8 ht40_channel;
670 u8 max_beacon_itrvl; /* in 1024 ms */
671 u32 max_inst_size;
672 u32 max_data_size;
673 u32 ct_kill_threshold; /* value in hw-dependent units */
674 u32 ct_kill_exit_threshold; /* value in hw-dependent units */
675 /* for 1000, 6000 series and up */
676 u16 beacon_time_tsf_bits;
677 u32 calib_init_cfg;
678 u32 calib_rt_cfg;
679 const struct iwl_sensitivity_ranges *sens;
680 };
681
682
683 /******************************************************************************
684 *
685 * Functions implemented in core module which are forward declared here
686 * for use by iwl-[4-5].c
687 *
688 * NOTE: The implementation of these functions are not hardware specific
689 * which is why they are in the core module files.
690 *
691 * Naming convention --
692 * iwl_ <-- Is part of iwlwifi
693 * iwlXXXX_ <-- Hardware specific (implemented in iwl-XXXX.c for XXXX)
694 *
695 ****************************************************************************/
696 extern void iwl_update_chain_flags(struct iwl_priv *priv);
697 extern const u8 iwl_bcast_addr[ETH_ALEN];
698 extern int iwl_rxq_stop(struct iwl_priv *priv);
699 extern void iwl_txq_ctx_stop(struct iwl_priv *priv);
700 extern int iwl_queue_space(const struct iwl_queue *q);
701 static inline int iwl_queue_used(const struct iwl_queue *q, int i)
702 {
703 return q->write_ptr >= q->read_ptr ?
704 (i >= q->read_ptr && i < q->write_ptr) :
705 !(i < q->read_ptr && i >= q->write_ptr);
706 }
707
708
709 static inline u8 get_cmd_index(struct iwl_queue *q, u32 index)
710 {
711 return index & (q->n_window - 1);
712 }
713
714
715 struct iwl_dma_ptr {
716 dma_addr_t dma;
717 void *addr;
718 size_t size;
719 };
720
721 #define IWL_OPERATION_MODE_AUTO 0
722 #define IWL_OPERATION_MODE_HT_ONLY 1
723 #define IWL_OPERATION_MODE_MIXED 2
724 #define IWL_OPERATION_MODE_20MHZ 3
725
726 #define IWL_TX_CRC_SIZE 4
727 #define IWL_TX_DELIMITER_SIZE 4
728
729 #define TX_POWER_IWL_ILLEGAL_VOLTAGE -10000
730
731 /* Sensitivity and chain noise calibration */
732 #define INITIALIZATION_VALUE 0xFFFF
733 #define IWL_CAL_NUM_BEACONS 16
734 #define MAXIMUM_ALLOWED_PATHLOSS 15
735
736 #define CHAIN_NOISE_MAX_DELTA_GAIN_CODE 3
737
738 #define MAX_FA_OFDM 50
739 #define MIN_FA_OFDM 5
740 #define MAX_FA_CCK 50
741 #define MIN_FA_CCK 5
742
743 #define AUTO_CORR_STEP_OFDM 1
744
745 #define AUTO_CORR_STEP_CCK 3
746 #define AUTO_CORR_MAX_TH_CCK 160
747
748 #define NRG_DIFF 2
749 #define NRG_STEP_CCK 2
750 #define NRG_MARGIN 8
751 #define MAX_NUMBER_CCK_NO_FA 100
752
753 #define AUTO_CORR_CCK_MIN_VAL_DEF (125)
754
755 #define CHAIN_A 0
756 #define CHAIN_B 1
757 #define CHAIN_C 2
758 #define CHAIN_NOISE_DELTA_GAIN_INIT_VAL 4
759 #define ALL_BAND_FILTER 0xFF00
760 #define IN_BAND_FILTER 0xFF
761 #define MIN_AVERAGE_NOISE_MAX_VALUE 0xFFFFFFFF
762
763 #define NRG_NUM_PREV_STAT_L 20
764 #define NUM_RX_CHAINS 3
765
766 enum iwlagn_false_alarm_state {
767 IWL_FA_TOO_MANY = 0,
768 IWL_FA_TOO_FEW = 1,
769 IWL_FA_GOOD_RANGE = 2,
770 };
771
772 enum iwlagn_chain_noise_state {
773 IWL_CHAIN_NOISE_ALIVE = 0, /* must be 0 */
774 IWL_CHAIN_NOISE_ACCUMULATE,
775 IWL_CHAIN_NOISE_CALIBRATED,
776 IWL_CHAIN_NOISE_DONE,
777 };
778
779
780 /*
781 * enum iwl_calib
782 * defines the order in which results of initial calibrations
783 * should be sent to the runtime uCode
784 */
785 enum iwl_calib {
786 IWL_CALIB_XTAL,
787 IWL_CALIB_DC,
788 IWL_CALIB_LO,
789 IWL_CALIB_TX_IQ,
790 IWL_CALIB_TX_IQ_PERD,
791 IWL_CALIB_BASE_BAND,
792 IWL_CALIB_TEMP_OFFSET,
793 IWL_CALIB_MAX
794 };
795
796 /* Opaque calibration results */
797 struct iwl_calib_result {
798 void *buf;
799 size_t buf_len;
800 };
801
802 /* Sensitivity calib data */
803 struct iwl_sensitivity_data {
804 u32 auto_corr_ofdm;
805 u32 auto_corr_ofdm_mrc;
806 u32 auto_corr_ofdm_x1;
807 u32 auto_corr_ofdm_mrc_x1;
808 u32 auto_corr_cck;
809 u32 auto_corr_cck_mrc;
810
811 u32 last_bad_plcp_cnt_ofdm;
812 u32 last_fa_cnt_ofdm;
813 u32 last_bad_plcp_cnt_cck;
814 u32 last_fa_cnt_cck;
815
816 u32 nrg_curr_state;
817 u32 nrg_prev_state;
818 u32 nrg_value[10];
819 u8 nrg_silence_rssi[NRG_NUM_PREV_STAT_L];
820 u32 nrg_silence_ref;
821 u32 nrg_energy_idx;
822 u32 nrg_silence_idx;
823 u32 nrg_th_cck;
824 s32 nrg_auto_corr_silence_diff;
825 u32 num_in_cck_no_fa;
826 u32 nrg_th_ofdm;
827
828 u16 barker_corr_th_min;
829 u16 barker_corr_th_min_mrc;
830 u16 nrg_th_cca;
831 };
832
833 /* Chain noise (differential Rx gain) calib data */
834 struct iwl_chain_noise_data {
835 u32 active_chains;
836 u32 chain_noise_a;
837 u32 chain_noise_b;
838 u32 chain_noise_c;
839 u32 chain_signal_a;
840 u32 chain_signal_b;
841 u32 chain_signal_c;
842 u16 beacon_count;
843 u8 disconn_array[NUM_RX_CHAINS];
844 u8 delta_gain_code[NUM_RX_CHAINS];
845 u8 radio_write;
846 u8 state;
847 };
848
849 #define EEPROM_SEM_TIMEOUT 10 /* milliseconds */
850 #define EEPROM_SEM_RETRY_LIMIT 1000 /* number of attempts (not time) */
851
852 #define IWL_TRAFFIC_ENTRIES (256)
853 #define IWL_TRAFFIC_ENTRY_SIZE (64)
854
855 enum {
856 MEASUREMENT_READY = (1 << 0),
857 MEASUREMENT_ACTIVE = (1 << 1),
858 };
859
860 enum iwl_nvm_type {
861 NVM_DEVICE_TYPE_EEPROM = 0,
862 NVM_DEVICE_TYPE_OTP,
863 };
864
865 /*
866 * Two types of OTP memory access modes
867 * IWL_OTP_ACCESS_ABSOLUTE - absolute address mode,
868 * based on physical memory addressing
869 * IWL_OTP_ACCESS_RELATIVE - relative address mode,
870 * based on logical memory addressing
871 */
872 enum iwl_access_mode {
873 IWL_OTP_ACCESS_ABSOLUTE,
874 IWL_OTP_ACCESS_RELATIVE,
875 };
876
877 /**
878 * enum iwl_pa_type - Power Amplifier type
879 * @IWL_PA_SYSTEM: based on uCode configuration
880 * @IWL_PA_INTERNAL: use Internal only
881 */
882 enum iwl_pa_type {
883 IWL_PA_SYSTEM = 0,
884 IWL_PA_INTERNAL = 1,
885 };
886
887 /* interrupt statistics */
888 struct isr_statistics {
889 u32 hw;
890 u32 sw;
891 u32 err_code;
892 u32 sch;
893 u32 alive;
894 u32 rfkill;
895 u32 ctkill;
896 u32 wakeup;
897 u32 rx;
898 u32 rx_handlers[REPLY_MAX];
899 u32 tx;
900 u32 unhandled;
901 };
902
903 /* reply_tx_statistics (for _agn devices) */
904 struct reply_tx_error_statistics {
905 u32 pp_delay;
906 u32 pp_few_bytes;
907 u32 pp_bt_prio;
908 u32 pp_quiet_period;
909 u32 pp_calc_ttak;
910 u32 int_crossed_retry;
911 u32 short_limit;
912 u32 long_limit;
913 u32 fifo_underrun;
914 u32 drain_flow;
915 u32 rfkill_flush;
916 u32 life_expire;
917 u32 dest_ps;
918 u32 host_abort;
919 u32 bt_retry;
920 u32 sta_invalid;
921 u32 frag_drop;
922 u32 tid_disable;
923 u32 fifo_flush;
924 u32 insuff_cf_poll;
925 u32 fail_hw_drop;
926 u32 sta_color_mismatch;
927 u32 unknown;
928 };
929
930 /* reply_agg_tx_statistics (for _agn devices) */
931 struct reply_agg_tx_error_statistics {
932 u32 underrun;
933 u32 bt_prio;
934 u32 few_bytes;
935 u32 abort;
936 u32 last_sent_ttl;
937 u32 last_sent_try;
938 u32 last_sent_bt_kill;
939 u32 scd_query;
940 u32 bad_crc32;
941 u32 response;
942 u32 dump_tx;
943 u32 delay_tx;
944 u32 unknown;
945 };
946
947 /* management statistics */
948 enum iwl_mgmt_stats {
949 MANAGEMENT_ASSOC_REQ = 0,
950 MANAGEMENT_ASSOC_RESP,
951 MANAGEMENT_REASSOC_REQ,
952 MANAGEMENT_REASSOC_RESP,
953 MANAGEMENT_PROBE_REQ,
954 MANAGEMENT_PROBE_RESP,
955 MANAGEMENT_BEACON,
956 MANAGEMENT_ATIM,
957 MANAGEMENT_DISASSOC,
958 MANAGEMENT_AUTH,
959 MANAGEMENT_DEAUTH,
960 MANAGEMENT_ACTION,
961 MANAGEMENT_MAX,
962 };
963 /* control statistics */
964 enum iwl_ctrl_stats {
965 CONTROL_BACK_REQ = 0,
966 CONTROL_BACK,
967 CONTROL_PSPOLL,
968 CONTROL_RTS,
969 CONTROL_CTS,
970 CONTROL_ACK,
971 CONTROL_CFEND,
972 CONTROL_CFENDACK,
973 CONTROL_MAX,
974 };
975
976 struct traffic_stats {
977 #ifdef CONFIG_IWLWIFI_DEBUGFS
978 u32 mgmt[MANAGEMENT_MAX];
979 u32 ctrl[CONTROL_MAX];
980 u32 data_cnt;
981 u64 data_bytes;
982 #endif
983 };
984
985 /*
986 * schedule the timer to wake up every UCODE_TRACE_PERIOD milliseconds
987 * to perform continuous uCode event logging operation if enabled
988 */
989 #define UCODE_TRACE_PERIOD (100)
990
991 /*
992 * iwl_event_log: current uCode event log position
993 *
994 * @ucode_trace: enable/disable ucode continuous trace timer
995 * @num_wraps: how many times the event buffer wraps
996 * @next_entry: the entry just before the next one that uCode would fill
997 * @non_wraps_count: counter for no wrap detected when dump ucode events
998 * @wraps_once_count: counter for wrap once detected when dump ucode events
999 * @wraps_more_count: counter for wrap more than once detected
1000 * when dump ucode events
1001 */
1002 struct iwl_event_log {
1003 bool ucode_trace;
1004 u32 num_wraps;
1005 u32 next_entry;
1006 int non_wraps_count;
1007 int wraps_once_count;
1008 int wraps_more_count;
1009 };
1010
1011 /*
1012 * host interrupt timeout value
1013 * used with setting interrupt coalescing timer
1014 * the CSR_INT_COALESCING is an 8 bit register in 32-usec unit
1015 *
1016 * default interrupt coalescing timer is 64 x 32 = 2048 usecs
1017 * default interrupt coalescing calibration timer is 16 x 32 = 512 usecs
1018 */
1019 #define IWL_HOST_INT_TIMEOUT_MAX (0xFF)
1020 #define IWL_HOST_INT_TIMEOUT_DEF (0x40)
1021 #define IWL_HOST_INT_TIMEOUT_MIN (0x0)
1022 #define IWL_HOST_INT_CALIB_TIMEOUT_MAX (0xFF)
1023 #define IWL_HOST_INT_CALIB_TIMEOUT_DEF (0x10)
1024 #define IWL_HOST_INT_CALIB_TIMEOUT_MIN (0x0)
1025
1026 /*
1027 * This is the threshold value of plcp error rate per 100mSecs. It is
1028 * used to set and check for the validity of plcp_delta.
1029 */
1030 #define IWL_MAX_PLCP_ERR_THRESHOLD_MIN (1)
1031 #define IWL_MAX_PLCP_ERR_THRESHOLD_DEF (50)
1032 #define IWL_MAX_PLCP_ERR_LONG_THRESHOLD_DEF (100)
1033 #define IWL_MAX_PLCP_ERR_EXT_LONG_THRESHOLD_DEF (200)
1034 #define IWL_MAX_PLCP_ERR_THRESHOLD_MAX (255)
1035 #define IWL_MAX_PLCP_ERR_THRESHOLD_DISABLE (0)
1036
1037 #define IWL_DELAY_NEXT_FORCE_RF_RESET (HZ*3)
1038 #define IWL_DELAY_NEXT_FORCE_FW_RELOAD (HZ*5)
1039
1040 /* TX queue watchdog timeouts in mSecs */
1041 #define IWL_DEF_WD_TIMEOUT (2000)
1042 #define IWL_LONG_WD_TIMEOUT (10000)
1043 #define IWL_MAX_WD_TIMEOUT (120000)
1044
1045 /* BT Antenna Coupling Threshold (dB) */
1046 #define IWL_BT_ANTENNA_COUPLING_THRESHOLD (35)
1047
1048 /* Firmware reload counter and Timestamp */
1049 #define IWL_MIN_RELOAD_DURATION 1000 /* 1000 ms */
1050 #define IWL_MAX_CONTINUE_RELOAD_CNT 4
1051
1052
1053 enum iwl_reset {
1054 IWL_RF_RESET = 0,
1055 IWL_FW_RESET,
1056 IWL_MAX_FORCE_RESET,
1057 };
1058
1059 struct iwl_force_reset {
1060 int reset_request_count;
1061 int reset_success_count;
1062 int reset_reject_count;
1063 unsigned long reset_duration;
1064 unsigned long last_force_reset_jiffies;
1065 };
1066
1067 /* extend beacon time format bit shifting */
1068 /*
1069 * for _agn devices
1070 * bits 31:22 - extended
1071 * bits 21:0 - interval
1072 */
1073 #define IWLAGN_EXT_BEACON_TIME_POS 22
1074
1075 /**
1076 * struct iwl_notification_wait - notification wait entry
1077 * @list: list head for global list
1078 * @fn: function called with the notification
1079 * @cmd: command ID
1080 *
1081 * This structure is not used directly, to wait for a
1082 * notification declare it on the stack, and call
1083 * iwlagn_init_notification_wait() with appropriate
1084 * parameters. Then do whatever will cause the ucode
1085 * to notify the driver, and to wait for that then
1086 * call iwlagn_wait_notification().
1087 *
1088 * Each notification is one-shot. If at some point we
1089 * need to support multi-shot notifications (which
1090 * can't be allocated on the stack) we need to modify
1091 * the code for them.
1092 */
1093 struct iwl_notification_wait {
1094 struct list_head list;
1095
1096 void (*fn)(struct iwl_priv *priv, struct iwl_rx_packet *pkt,
1097 void *data);
1098 void *fn_data;
1099
1100 u8 cmd;
1101 bool triggered, aborted;
1102 };
1103
1104 enum iwl_rxon_context_id {
1105 IWL_RXON_CTX_BSS,
1106 IWL_RXON_CTX_PAN,
1107
1108 NUM_IWL_RXON_CTX
1109 };
1110
1111 struct iwl_rxon_context {
1112 struct ieee80211_vif *vif;
1113
1114 const u8 *ac_to_fifo;
1115 const u8 *ac_to_queue;
1116 u8 mcast_queue;
1117
1118 /*
1119 * We could use the vif to indicate active, but we
1120 * also need it to be active during disabling when
1121 * we already removed the vif for type setting.
1122 */
1123 bool always_active, is_active;
1124
1125 bool ht_need_multiple_chains;
1126
1127 enum iwl_rxon_context_id ctxid;
1128
1129 u32 interface_modes, exclusive_interface_modes;
1130 u8 unused_devtype, ap_devtype, ibss_devtype, station_devtype;
1131
1132 /*
1133 * We declare this const so it can only be
1134 * changed via explicit cast within the
1135 * routines that actually update the physical
1136 * hardware.
1137 */
1138 const struct iwl_rxon_cmd active;
1139 struct iwl_rxon_cmd staging;
1140
1141 struct iwl_rxon_time_cmd timing;
1142
1143 struct iwl_qos_info qos_data;
1144
1145 u8 bcast_sta_id, ap_sta_id;
1146
1147 u8 rxon_cmd, rxon_assoc_cmd, rxon_timing_cmd;
1148 u8 qos_cmd;
1149 u8 wep_key_cmd;
1150
1151 struct iwl_wep_key wep_keys[WEP_KEYS_MAX];
1152 u8 key_mapping_keys;
1153
1154 __le32 station_flags;
1155
1156 struct {
1157 bool non_gf_sta_present;
1158 u8 protection;
1159 bool enabled, is_40mhz;
1160 u8 extension_chan_offset;
1161 } ht;
1162
1163 bool last_tx_rejected;
1164 };
1165
1166 enum iwl_scan_type {
1167 IWL_SCAN_NORMAL,
1168 IWL_SCAN_RADIO_RESET,
1169 IWL_SCAN_OFFCH_TX,
1170 };
1171
1172 #ifdef CONFIG_IWLWIFI_DEVICE_SVTOOL
1173 struct iwl_testmode_trace {
1174 u8 *cpu_addr;
1175 u8 *trace_addr;
1176 dma_addr_t dma_addr;
1177 bool trace_enabled;
1178 };
1179 #endif
1180 struct iwl_priv {
1181
1182 /* ieee device used by generic ieee processing code */
1183 struct ieee80211_hw *hw;
1184 struct ieee80211_channel *ieee_channels;
1185 struct ieee80211_rate *ieee_rates;
1186 struct iwl_cfg *cfg;
1187
1188 enum ieee80211_band band;
1189
1190 void (*pre_rx_handler)(struct iwl_priv *priv,
1191 struct iwl_rx_mem_buffer *rxb);
1192 void (*rx_handlers[REPLY_MAX])(struct iwl_priv *priv,
1193 struct iwl_rx_mem_buffer *rxb);
1194
1195 struct ieee80211_supported_band bands[IEEE80211_NUM_BANDS];
1196
1197 /* spectrum measurement report caching */
1198 struct iwl_spectrum_notification measure_report;
1199 u8 measurement_status;
1200
1201 /* ucode beacon time */
1202 u32 ucode_beacon_time;
1203 int missed_beacon_threshold;
1204
1205 /* track IBSS manager (last beacon) status */
1206 u32 ibss_manager;
1207
1208 /* jiffies when last recovery from statistics was performed */
1209 unsigned long rx_statistics_jiffies;
1210
1211 /* force reset */
1212 struct iwl_force_reset force_reset[IWL_MAX_FORCE_RESET];
1213
1214 /* firmware reload counter and timestamp */
1215 unsigned long reload_jiffies;
1216 int reload_count;
1217
1218 /* we allocate array of iwl_channel_info for NIC's valid channels.
1219 * Access via channel # using indirect index array */
1220 struct iwl_channel_info *channel_info; /* channel info array */
1221 u8 channel_count; /* # of channels */
1222
1223 /* thermal calibration */
1224 s32 temperature; /* degrees Kelvin */
1225 s32 last_temperature;
1226
1227 /* init calibration results */
1228 struct iwl_calib_result calib_results[IWL_CALIB_MAX];
1229
1230 /* Scan related variables */
1231 unsigned long scan_start;
1232 unsigned long scan_start_tsf;
1233 void *scan_cmd;
1234 enum ieee80211_band scan_band;
1235 struct cfg80211_scan_request *scan_request;
1236 struct ieee80211_vif *scan_vif;
1237 enum iwl_scan_type scan_type;
1238 u8 scan_tx_ant[IEEE80211_NUM_BANDS];
1239 u8 mgmt_tx_ant;
1240
1241 /* spinlock */
1242 spinlock_t lock; /* protect general shared data */
1243 spinlock_t hcmd_lock; /* protect hcmd */
1244 spinlock_t reg_lock; /* protect hw register access */
1245 struct mutex mutex;
1246
1247 /* basic pci-network driver stuff */
1248 struct pci_dev *pci_dev;
1249
1250 /* pci hardware address support */
1251 void __iomem *hw_base;
1252
1253 /* microcode/device supports multiple contexts */
1254 u8 valid_contexts;
1255
1256 /* command queue number */
1257 u8 cmd_queue;
1258
1259 /* max number of station keys */
1260 u8 sta_key_max_num;
1261
1262 bool new_scan_threshold_behaviour;
1263
1264 /* EEPROM MAC addresses */
1265 struct mac_address addresses[2];
1266
1267 /* uCode images, save to reload in case of failure */
1268 int fw_index; /* firmware we're trying to load */
1269 u32 ucode_ver; /* version of ucode, copy of
1270 iwl_ucode.ver */
1271 struct fw_img ucode_rt;
1272 struct fw_img ucode_init;
1273
1274 enum iwlagn_ucode_subtype ucode_type;
1275 u8 ucode_write_complete; /* the image write is complete */
1276 char firmware_name[25];
1277
1278 struct iwl_rxon_context contexts[NUM_IWL_RXON_CTX];
1279
1280 __le16 switch_channel;
1281
1282 struct {
1283 u32 error_event_table;
1284 u32 log_event_table;
1285 } device_pointers;
1286
1287 u16 active_rate;
1288
1289 u8 start_calib;
1290 struct iwl_sensitivity_data sensitivity_data;
1291 struct iwl_chain_noise_data chain_noise_data;
1292 bool enhance_sensitivity_table;
1293 __le16 sensitivity_tbl[HD_TABLE_SIZE];
1294 __le16 enhance_sensitivity_tbl[ENHANCE_HD_TABLE_ENTRIES];
1295
1296 struct iwl_ht_config current_ht_config;
1297
1298 /* Rate scaling data */
1299 u8 retry_rate;
1300
1301 wait_queue_head_t wait_command_queue;
1302
1303 int activity_timer_active;
1304
1305 /* Rx and Tx DMA processing queues */
1306 struct iwl_rx_queue rxq;
1307 struct iwl_tx_queue *txq;
1308 unsigned long txq_ctx_active_msk;
1309 struct iwl_dma_ptr kw; /* keep warm address */
1310 struct iwl_dma_ptr scd_bc_tbls;
1311
1312 u32 scd_base_addr; /* scheduler sram base address */
1313
1314 unsigned long status;
1315
1316 /* counts mgmt, ctl, and data packets */
1317 struct traffic_stats tx_stats;
1318 struct traffic_stats rx_stats;
1319
1320 /* counts interrupts */
1321 struct isr_statistics isr_stats;
1322
1323 struct iwl_power_mgr power_data;
1324 struct iwl_tt_mgmt thermal_throttle;
1325
1326 /* station table variables */
1327
1328 /* Note: if lock and sta_lock are needed, lock must be acquired first */
1329 spinlock_t sta_lock;
1330 int num_stations;
1331 struct iwl_station_entry stations[IWLAGN_STATION_COUNT];
1332 unsigned long ucode_key_table;
1333
1334 /* queue refcounts */
1335 #define IWL_MAX_HW_QUEUES 32
1336 unsigned long queue_stopped[BITS_TO_LONGS(IWL_MAX_HW_QUEUES)];
1337 /* for each AC */
1338 atomic_t queue_stop_count[4];
1339
1340 /* Indication if ieee80211_ops->open has been called */
1341 u8 is_open;
1342
1343 u8 mac80211_registered;
1344
1345 /* eeprom -- this is in the card's little endian byte order */
1346 u8 *eeprom;
1347 int nvm_device_type;
1348 struct iwl_eeprom_calib_info *calib_info;
1349
1350 enum nl80211_iftype iw_mode;
1351
1352 /* Last Rx'd beacon timestamp */
1353 u64 timestamp;
1354
1355 struct {
1356 __le32 flag;
1357 struct statistics_general_common common;
1358 struct statistics_rx_non_phy rx_non_phy;
1359 struct statistics_rx_phy rx_ofdm;
1360 struct statistics_rx_ht_phy rx_ofdm_ht;
1361 struct statistics_rx_phy rx_cck;
1362 struct statistics_tx tx;
1363 #ifdef CONFIG_IWLWIFI_DEBUGFS
1364 struct statistics_bt_activity bt_activity;
1365 __le32 num_bt_kills, accum_num_bt_kills;
1366 #endif
1367 } statistics;
1368 #ifdef CONFIG_IWLWIFI_DEBUGFS
1369 struct {
1370 struct statistics_general_common common;
1371 struct statistics_rx_non_phy rx_non_phy;
1372 struct statistics_rx_phy rx_ofdm;
1373 struct statistics_rx_ht_phy rx_ofdm_ht;
1374 struct statistics_rx_phy rx_cck;
1375 struct statistics_tx tx;
1376 struct statistics_bt_activity bt_activity;
1377 } accum_stats, delta_stats, max_delta_stats;
1378 #endif
1379
1380 struct {
1381 /* INT ICT Table */
1382 __le32 *ict_tbl;
1383 void *ict_tbl_vir;
1384 dma_addr_t ict_tbl_dma;
1385 dma_addr_t aligned_ict_tbl_dma;
1386 int ict_index;
1387 u32 inta;
1388 bool use_ict;
1389 /*
1390 * reporting the number of tids has AGG on. 0 means
1391 * no AGGREGATION
1392 */
1393 u8 agg_tids_count;
1394
1395 struct iwl_rx_phy_res last_phy_res;
1396 bool last_phy_res_valid;
1397
1398 struct completion firmware_loading_complete;
1399
1400 u32 init_evtlog_ptr, init_evtlog_size, init_errlog_ptr;
1401 u32 inst_evtlog_ptr, inst_evtlog_size, inst_errlog_ptr;
1402
1403 /*
1404 * chain noise reset and gain commands are the
1405 * two extra calibration commands follows the standard
1406 * phy calibration commands
1407 */
1408 u8 phy_calib_chain_noise_reset_cmd;
1409 u8 phy_calib_chain_noise_gain_cmd;
1410
1411 /* counts reply_tx error */
1412 struct reply_tx_error_statistics reply_tx_stats;
1413 struct reply_agg_tx_error_statistics reply_agg_tx_stats;
1414 /* notification wait support */
1415 struct list_head notif_waits;
1416 spinlock_t notif_wait_lock;
1417 wait_queue_head_t notif_waitq;
1418
1419 /* remain-on-channel offload support */
1420 struct ieee80211_channel *hw_roc_channel;
1421 struct delayed_work hw_roc_work;
1422 enum nl80211_channel_type hw_roc_chantype;
1423 int hw_roc_duration;
1424 bool hw_roc_setup;
1425
1426 struct sk_buff *offchan_tx_skb;
1427 int offchan_tx_timeout;
1428 struct ieee80211_channel *offchan_tx_chan;
1429 } _agn;
1430
1431 /* bt coex */
1432 u8 bt_enable_flag;
1433 u8 bt_status;
1434 u8 bt_traffic_load, last_bt_traffic_load;
1435 bool bt_ch_announce;
1436 bool bt_full_concurrent;
1437 bool bt_ant_couple_ok;
1438 __le32 kill_ack_mask;
1439 __le32 kill_cts_mask;
1440 __le16 bt_valid;
1441 u16 bt_on_thresh;
1442 u16 bt_duration;
1443 u16 dynamic_frag_thresh;
1444 u8 bt_ci_compliance;
1445 struct work_struct bt_traffic_change_work;
1446
1447 struct iwl_hw_params hw_params;
1448
1449 u32 inta_mask;
1450
1451 struct workqueue_struct *workqueue;
1452
1453 struct work_struct restart;
1454 struct work_struct scan_completed;
1455 struct work_struct rx_replenish;
1456 struct work_struct abort_scan;
1457
1458 struct work_struct beacon_update;
1459 struct iwl_rxon_context *beacon_ctx;
1460 struct sk_buff *beacon_skb;
1461 void *beacon_cmd;
1462
1463 struct work_struct tt_work;
1464 struct work_struct ct_enter;
1465 struct work_struct ct_exit;
1466 struct work_struct start_internal_scan;
1467 struct work_struct tx_flush;
1468 struct work_struct bt_full_concurrency;
1469 struct work_struct bt_runtime_config;
1470
1471 struct tasklet_struct irq_tasklet;
1472
1473 struct delayed_work scan_check;
1474
1475 /* TX Power */
1476 s8 tx_power_user_lmt;
1477 s8 tx_power_device_lmt;
1478 s8 tx_power_lmt_in_half_dbm; /* max tx power in half-dBm format */
1479 s8 tx_power_next;
1480
1481
1482 #ifdef CONFIG_IWLWIFI_DEBUG
1483 /* debugging info */
1484 u32 debug_level; /* per device debugging will override global
1485 iwl_debug_level if set */
1486 #endif /* CONFIG_IWLWIFI_DEBUG */
1487 #ifdef CONFIG_IWLWIFI_DEBUGFS
1488 /* debugfs */
1489 u16 tx_traffic_idx;
1490 u16 rx_traffic_idx;
1491 u8 *tx_traffic;
1492 u8 *rx_traffic;
1493 struct dentry *debugfs_dir;
1494 u32 dbgfs_sram_offset, dbgfs_sram_len;
1495 bool disable_ht40;
1496 #endif /* CONFIG_IWLWIFI_DEBUGFS */
1497
1498 struct work_struct txpower_work;
1499 u32 disable_sens_cal;
1500 u32 disable_chain_noise_cal;
1501 struct work_struct run_time_calib_work;
1502 struct timer_list statistics_periodic;
1503 struct timer_list ucode_trace;
1504 struct timer_list watchdog;
1505
1506 struct iwl_event_log event_log;
1507
1508 struct led_classdev led;
1509 unsigned long blink_on, blink_off;
1510 bool led_registered;
1511 #ifdef CONFIG_IWLWIFI_DEVICE_SVTOOL
1512 struct iwl_testmode_trace testmode_trace;
1513 #endif
1514 u32 dbg_fixed_rate;
1515
1516 }; /*iwl_priv */
1517
1518 static inline void iwl_txq_ctx_activate(struct iwl_priv *priv, int txq_id)
1519 {
1520 set_bit(txq_id, &priv->txq_ctx_active_msk);
1521 }
1522
1523 static inline void iwl_txq_ctx_deactivate(struct iwl_priv *priv, int txq_id)
1524 {
1525 clear_bit(txq_id, &priv->txq_ctx_active_msk);
1526 }
1527
1528 #ifdef CONFIG_IWLWIFI_DEBUG
1529 /*
1530 * iwl_get_debug_level: Return active debug level for device
1531 *
1532 * Using sysfs it is possible to set per device debug level. This debug
1533 * level will be used if set, otherwise the global debug level which can be
1534 * set via module parameter is used.
1535 */
1536 static inline u32 iwl_get_debug_level(struct iwl_priv *priv)
1537 {
1538 if (priv->debug_level)
1539 return priv->debug_level;
1540 else
1541 return iwl_debug_level;
1542 }
1543 #else
1544 static inline u32 iwl_get_debug_level(struct iwl_priv *priv)
1545 {
1546 return iwl_debug_level;
1547 }
1548 #endif
1549
1550
1551 static inline struct ieee80211_hdr *iwl_tx_queue_get_hdr(struct iwl_priv *priv,
1552 int txq_id, int idx)
1553 {
1554 if (priv->txq[txq_id].txb[idx].skb)
1555 return (struct ieee80211_hdr *)priv->txq[txq_id].
1556 txb[idx].skb->data;
1557 return NULL;
1558 }
1559
1560 static inline struct iwl_rxon_context *
1561 iwl_rxon_ctx_from_vif(struct ieee80211_vif *vif)
1562 {
1563 struct iwl_vif_priv *vif_priv = (void *)vif->drv_priv;
1564
1565 return vif_priv->ctx;
1566 }
1567
1568 #define for_each_context(priv, ctx) \
1569 for (ctx = &priv->contexts[IWL_RXON_CTX_BSS]; \
1570 ctx < &priv->contexts[NUM_IWL_RXON_CTX]; ctx++) \
1571 if (priv->valid_contexts & BIT(ctx->ctxid))
1572
1573 static inline int iwl_is_associated_ctx(struct iwl_rxon_context *ctx)
1574 {
1575 return (ctx->active.filter_flags & RXON_FILTER_ASSOC_MSK) ? 1 : 0;
1576 }
1577
1578 static inline int iwl_is_associated(struct iwl_priv *priv,
1579 enum iwl_rxon_context_id ctxid)
1580 {
1581 return iwl_is_associated_ctx(&priv->contexts[ctxid]);
1582 }
1583
1584 static inline int iwl_is_any_associated(struct iwl_priv *priv)
1585 {
1586 struct iwl_rxon_context *ctx;
1587 for_each_context(priv, ctx)
1588 if (iwl_is_associated_ctx(ctx))
1589 return true;
1590 return false;
1591 }
1592
1593 static inline int is_channel_valid(const struct iwl_channel_info *ch_info)
1594 {
1595 if (ch_info == NULL)
1596 return 0;
1597 return (ch_info->flags & EEPROM_CHANNEL_VALID) ? 1 : 0;
1598 }
1599
1600 static inline int is_channel_radar(const struct iwl_channel_info *ch_info)
1601 {
1602 return (ch_info->flags & EEPROM_CHANNEL_RADAR) ? 1 : 0;
1603 }
1604
1605 static inline u8 is_channel_a_band(const struct iwl_channel_info *ch_info)
1606 {
1607 return ch_info->band == IEEE80211_BAND_5GHZ;
1608 }
1609
1610 static inline u8 is_channel_bg_band(const struct iwl_channel_info *ch_info)
1611 {
1612 return ch_info->band == IEEE80211_BAND_2GHZ;
1613 }
1614
1615 static inline int is_channel_passive(const struct iwl_channel_info *ch)
1616 {
1617 return (!(ch->flags & EEPROM_CHANNEL_ACTIVE)) ? 1 : 0;
1618 }
1619
1620 static inline int is_channel_ibss(const struct iwl_channel_info *ch)
1621 {
1622 return ((ch->flags & EEPROM_CHANNEL_IBSS)) ? 1 : 0;
1623 }
1624
1625 static inline void __iwl_free_pages(struct iwl_priv *priv, struct page *page)
1626 {
1627 __free_pages(page, priv->hw_params.rx_page_order);
1628 }
1629
1630 static inline void iwl_free_pages(struct iwl_priv *priv, unsigned long page)
1631 {
1632 free_pages(page, priv->hw_params.rx_page_order);
1633 }
1634 #endif /* __iwl_dev_h__ */