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1 #ifndef HOSTAP_WLAN_H
2 #define HOSTAP_WLAN_H
3
4 #include <linux/interrupt.h>
5 #include <linux/wireless.h>
6 #include <linux/netdevice.h>
7 #include <linux/etherdevice.h>
8 #include <linux/mutex.h>
9 #include <linux/refcount.h>
10 #include <net/iw_handler.h>
11 #include <net/ieee80211_radiotap.h>
12 #include <net/lib80211.h>
13
14 #include "hostap_config.h"
15 #include "hostap_common.h"
16
17 #define MAX_PARM_DEVICES 8
18 #define PARM_MIN_MAX "1-" __MODULE_STRING(MAX_PARM_DEVICES)
19 #define DEF_INTS -1, -1, -1, -1, -1, -1, -1
20 #define GET_INT_PARM(var,idx) var[var[idx] < 0 ? 0 : idx]
21
22
23 /* Specific skb->protocol value that indicates that the packet already contains
24 * txdesc header.
25 * FIX: This might need own value that would be allocated especially for Prism2
26 * txdesc; ETH_P_CONTROL is commented as "Card specific control frames".
27 * However, these skb's should have only minimal path in the kernel side since
28 * prism2_send_mgmt() sends these with dev_queue_xmit() to prism2_tx(). */
29 #define ETH_P_HOSTAP ETH_P_CONTROL
30
31 /* ARPHRD_IEEE80211_PRISM uses a bloated version of Prism2 RX frame header
32 * (from linux-wlan-ng) */
33 struct linux_wlan_ng_val {
34 u32 did;
35 u16 status, len;
36 u32 data;
37 } __packed;
38
39 struct linux_wlan_ng_prism_hdr {
40 u32 msgcode, msglen;
41 char devname[16];
42 struct linux_wlan_ng_val hosttime, mactime, channel, rssi, sq, signal,
43 noise, rate, istx, frmlen;
44 } __packed;
45
46 struct linux_wlan_ng_cap_hdr {
47 __be32 version;
48 __be32 length;
49 __be64 mactime;
50 __be64 hosttime;
51 __be32 phytype;
52 __be32 channel;
53 __be32 datarate;
54 __be32 antenna;
55 __be32 priority;
56 __be32 ssi_type;
57 __be32 ssi_signal;
58 __be32 ssi_noise;
59 __be32 preamble;
60 __be32 encoding;
61 } __packed;
62
63 struct hostap_radiotap_rx {
64 struct ieee80211_radiotap_header hdr;
65 __le64 tsft;
66 u8 rate;
67 u8 padding;
68 __le16 chan_freq;
69 __le16 chan_flags;
70 s8 dbm_antsignal;
71 s8 dbm_antnoise;
72 } __packed;
73
74 #define LWNG_CAP_DID_BASE (4 | (1 << 6)) /* section 4, group 1 */
75 #define LWNG_CAPHDR_VERSION 0x80211001
76
77 struct hfa384x_rx_frame {
78 /* HFA384X RX frame descriptor */
79 __le16 status; /* HFA384X_RX_STATUS_ flags */
80 __le32 time; /* timestamp, 1 microsecond resolution */
81 u8 silence; /* 27 .. 154; seems to be 0 */
82 u8 signal; /* 27 .. 154 */
83 u8 rate; /* 10, 20, 55, or 110 */
84 u8 rxflow;
85 __le32 reserved;
86
87 /* 802.11 */
88 __le16 frame_control;
89 __le16 duration_id;
90 u8 addr1[ETH_ALEN];
91 u8 addr2[ETH_ALEN];
92 u8 addr3[ETH_ALEN];
93 __le16 seq_ctrl;
94 u8 addr4[ETH_ALEN];
95 __le16 data_len;
96
97 /* 802.3 */
98 u8 dst_addr[ETH_ALEN];
99 u8 src_addr[ETH_ALEN];
100 __be16 len;
101
102 /* followed by frame data; max 2304 bytes */
103 } __packed;
104
105
106 struct hfa384x_tx_frame {
107 /* HFA384X TX frame descriptor */
108 __le16 status; /* HFA384X_TX_STATUS_ flags */
109 __le16 reserved1;
110 __le16 reserved2;
111 __le32 sw_support;
112 u8 retry_count; /* not yet implemented */
113 u8 tx_rate; /* Host AP only; 0 = firmware, or 10, 20, 55, 110 */
114 __le16 tx_control; /* HFA384X_TX_CTRL_ flags */
115
116 /* 802.11 */
117 __le16 frame_control; /* parts not used */
118 __le16 duration_id;
119 u8 addr1[ETH_ALEN];
120 u8 addr2[ETH_ALEN]; /* filled by firmware */
121 u8 addr3[ETH_ALEN];
122 __le16 seq_ctrl; /* filled by firmware */
123 u8 addr4[ETH_ALEN];
124 __le16 data_len;
125
126 /* 802.3 */
127 u8 dst_addr[ETH_ALEN];
128 u8 src_addr[ETH_ALEN];
129 __be16 len;
130
131 /* followed by frame data; max 2304 bytes */
132 } __packed;
133
134
135 struct hfa384x_rid_hdr
136 {
137 __le16 len;
138 __le16 rid;
139 } __packed;
140
141
142 /* Macro for converting signal levels (range 27 .. 154) to wireless ext
143 * dBm value with some accuracy */
144 #define HFA384X_LEVEL_TO_dBm(v) 0x100 + (v) * 100 / 255 - 100
145
146 #define HFA384X_LEVEL_TO_dBm_sign(v) (v) * 100 / 255 - 100
147
148 struct hfa384x_scan_request {
149 __le16 channel_list;
150 __le16 txrate; /* HFA384X_RATES_* */
151 } __packed;
152
153 struct hfa384x_hostscan_request {
154 __le16 channel_list;
155 __le16 txrate;
156 __le16 target_ssid_len;
157 u8 target_ssid[32];
158 } __packed;
159
160 struct hfa384x_join_request {
161 u8 bssid[ETH_ALEN];
162 __le16 channel;
163 } __packed;
164
165 struct hfa384x_info_frame {
166 __le16 len;
167 __le16 type;
168 } __packed;
169
170 struct hfa384x_comm_tallies {
171 __le16 tx_unicast_frames;
172 __le16 tx_multicast_frames;
173 __le16 tx_fragments;
174 __le16 tx_unicast_octets;
175 __le16 tx_multicast_octets;
176 __le16 tx_deferred_transmissions;
177 __le16 tx_single_retry_frames;
178 __le16 tx_multiple_retry_frames;
179 __le16 tx_retry_limit_exceeded;
180 __le16 tx_discards;
181 __le16 rx_unicast_frames;
182 __le16 rx_multicast_frames;
183 __le16 rx_fragments;
184 __le16 rx_unicast_octets;
185 __le16 rx_multicast_octets;
186 __le16 rx_fcs_errors;
187 __le16 rx_discards_no_buffer;
188 __le16 tx_discards_wrong_sa;
189 __le16 rx_discards_wep_undecryptable;
190 __le16 rx_message_in_msg_fragments;
191 __le16 rx_message_in_bad_msg_fragments;
192 } __packed;
193
194 struct hfa384x_comm_tallies32 {
195 __le32 tx_unicast_frames;
196 __le32 tx_multicast_frames;
197 __le32 tx_fragments;
198 __le32 tx_unicast_octets;
199 __le32 tx_multicast_octets;
200 __le32 tx_deferred_transmissions;
201 __le32 tx_single_retry_frames;
202 __le32 tx_multiple_retry_frames;
203 __le32 tx_retry_limit_exceeded;
204 __le32 tx_discards;
205 __le32 rx_unicast_frames;
206 __le32 rx_multicast_frames;
207 __le32 rx_fragments;
208 __le32 rx_unicast_octets;
209 __le32 rx_multicast_octets;
210 __le32 rx_fcs_errors;
211 __le32 rx_discards_no_buffer;
212 __le32 tx_discards_wrong_sa;
213 __le32 rx_discards_wep_undecryptable;
214 __le32 rx_message_in_msg_fragments;
215 __le32 rx_message_in_bad_msg_fragments;
216 } __packed;
217
218 struct hfa384x_scan_result_hdr {
219 __le16 reserved;
220 __le16 scan_reason;
221 #define HFA384X_SCAN_IN_PROGRESS 0 /* no results available yet */
222 #define HFA384X_SCAN_HOST_INITIATED 1
223 #define HFA384X_SCAN_FIRMWARE_INITIATED 2
224 #define HFA384X_SCAN_INQUIRY_FROM_HOST 3
225 } __packed;
226
227 #define HFA384X_SCAN_MAX_RESULTS 32
228
229 struct hfa384x_scan_result {
230 __le16 chid;
231 __le16 anl;
232 __le16 sl;
233 u8 bssid[ETH_ALEN];
234 __le16 beacon_interval;
235 __le16 capability;
236 __le16 ssid_len;
237 u8 ssid[32];
238 u8 sup_rates[10];
239 __le16 rate;
240 } __packed;
241
242 struct hfa384x_hostscan_result {
243 __le16 chid;
244 __le16 anl;
245 __le16 sl;
246 u8 bssid[ETH_ALEN];
247 __le16 beacon_interval;
248 __le16 capability;
249 __le16 ssid_len;
250 u8 ssid[32];
251 u8 sup_rates[10];
252 __le16 rate;
253 __le16 atim;
254 } __packed;
255
256 struct comm_tallies_sums {
257 unsigned int tx_unicast_frames;
258 unsigned int tx_multicast_frames;
259 unsigned int tx_fragments;
260 unsigned int tx_unicast_octets;
261 unsigned int tx_multicast_octets;
262 unsigned int tx_deferred_transmissions;
263 unsigned int tx_single_retry_frames;
264 unsigned int tx_multiple_retry_frames;
265 unsigned int tx_retry_limit_exceeded;
266 unsigned int tx_discards;
267 unsigned int rx_unicast_frames;
268 unsigned int rx_multicast_frames;
269 unsigned int rx_fragments;
270 unsigned int rx_unicast_octets;
271 unsigned int rx_multicast_octets;
272 unsigned int rx_fcs_errors;
273 unsigned int rx_discards_no_buffer;
274 unsigned int tx_discards_wrong_sa;
275 unsigned int rx_discards_wep_undecryptable;
276 unsigned int rx_message_in_msg_fragments;
277 unsigned int rx_message_in_bad_msg_fragments;
278 };
279
280
281 struct hfa384x_regs {
282 u16 cmd;
283 u16 evstat;
284 u16 offset0;
285 u16 offset1;
286 u16 swsupport0;
287 };
288
289
290 #if defined(PRISM2_PCCARD) || defined(PRISM2_PLX)
291 /* I/O ports for HFA384X Controller access */
292 #define HFA384X_CMD_OFF 0x00
293 #define HFA384X_PARAM0_OFF 0x02
294 #define HFA384X_PARAM1_OFF 0x04
295 #define HFA384X_PARAM2_OFF 0x06
296 #define HFA384X_STATUS_OFF 0x08
297 #define HFA384X_RESP0_OFF 0x0A
298 #define HFA384X_RESP1_OFF 0x0C
299 #define HFA384X_RESP2_OFF 0x0E
300 #define HFA384X_INFOFID_OFF 0x10
301 #define HFA384X_CONTROL_OFF 0x14
302 #define HFA384X_SELECT0_OFF 0x18
303 #define HFA384X_SELECT1_OFF 0x1A
304 #define HFA384X_OFFSET0_OFF 0x1C
305 #define HFA384X_OFFSET1_OFF 0x1E
306 #define HFA384X_RXFID_OFF 0x20
307 #define HFA384X_ALLOCFID_OFF 0x22
308 #define HFA384X_TXCOMPLFID_OFF 0x24
309 #define HFA384X_SWSUPPORT0_OFF 0x28
310 #define HFA384X_SWSUPPORT1_OFF 0x2A
311 #define HFA384X_SWSUPPORT2_OFF 0x2C
312 #define HFA384X_EVSTAT_OFF 0x30
313 #define HFA384X_INTEN_OFF 0x32
314 #define HFA384X_EVACK_OFF 0x34
315 #define HFA384X_DATA0_OFF 0x36
316 #define HFA384X_DATA1_OFF 0x38
317 #define HFA384X_AUXPAGE_OFF 0x3A
318 #define HFA384X_AUXOFFSET_OFF 0x3C
319 #define HFA384X_AUXDATA_OFF 0x3E
320 #endif /* PRISM2_PCCARD || PRISM2_PLX */
321
322 #ifdef PRISM2_PCI
323 /* Memory addresses for ISL3874 controller access */
324 #define HFA384X_CMD_OFF 0x00
325 #define HFA384X_PARAM0_OFF 0x04
326 #define HFA384X_PARAM1_OFF 0x08
327 #define HFA384X_PARAM2_OFF 0x0C
328 #define HFA384X_STATUS_OFF 0x10
329 #define HFA384X_RESP0_OFF 0x14
330 #define HFA384X_RESP1_OFF 0x18
331 #define HFA384X_RESP2_OFF 0x1C
332 #define HFA384X_INFOFID_OFF 0x20
333 #define HFA384X_CONTROL_OFF 0x28
334 #define HFA384X_SELECT0_OFF 0x30
335 #define HFA384X_SELECT1_OFF 0x34
336 #define HFA384X_OFFSET0_OFF 0x38
337 #define HFA384X_OFFSET1_OFF 0x3C
338 #define HFA384X_RXFID_OFF 0x40
339 #define HFA384X_ALLOCFID_OFF 0x44
340 #define HFA384X_TXCOMPLFID_OFF 0x48
341 #define HFA384X_PCICOR_OFF 0x4C
342 #define HFA384X_SWSUPPORT0_OFF 0x50
343 #define HFA384X_SWSUPPORT1_OFF 0x54
344 #define HFA384X_SWSUPPORT2_OFF 0x58
345 #define HFA384X_PCIHCR_OFF 0x5C
346 #define HFA384X_EVSTAT_OFF 0x60
347 #define HFA384X_INTEN_OFF 0x64
348 #define HFA384X_EVACK_OFF 0x68
349 #define HFA384X_DATA0_OFF 0x6C
350 #define HFA384X_DATA1_OFF 0x70
351 #define HFA384X_AUXPAGE_OFF 0x74
352 #define HFA384X_AUXOFFSET_OFF 0x78
353 #define HFA384X_AUXDATA_OFF 0x7C
354 #define HFA384X_PCI_M0_ADDRH_OFF 0x80
355 #define HFA384X_PCI_M0_ADDRL_OFF 0x84
356 #define HFA384X_PCI_M0_LEN_OFF 0x88
357 #define HFA384X_PCI_M0_CTL_OFF 0x8C
358 #define HFA384X_PCI_STATUS_OFF 0x98
359 #define HFA384X_PCI_M1_ADDRH_OFF 0xA0
360 #define HFA384X_PCI_M1_ADDRL_OFF 0xA4
361 #define HFA384X_PCI_M1_LEN_OFF 0xA8
362 #define HFA384X_PCI_M1_CTL_OFF 0xAC
363
364 /* PCI bus master control bits (these are undocumented; based on guessing and
365 * experimenting..) */
366 #define HFA384X_PCI_CTL_FROM_BAP (BIT(5) | BIT(1) | BIT(0))
367 #define HFA384X_PCI_CTL_TO_BAP (BIT(5) | BIT(0))
368
369 #endif /* PRISM2_PCI */
370
371
372 /* Command codes for CMD reg. */
373 #define HFA384X_CMDCODE_INIT 0x00
374 #define HFA384X_CMDCODE_ENABLE 0x01
375 #define HFA384X_CMDCODE_DISABLE 0x02
376 #define HFA384X_CMDCODE_ALLOC 0x0A
377 #define HFA384X_CMDCODE_TRANSMIT 0x0B
378 #define HFA384X_CMDCODE_INQUIRE 0x11
379 #define HFA384X_CMDCODE_ACCESS 0x21
380 #define HFA384X_CMDCODE_ACCESS_WRITE (0x21 | BIT(8))
381 #define HFA384X_CMDCODE_DOWNLOAD 0x22
382 #define HFA384X_CMDCODE_READMIF 0x30
383 #define HFA384X_CMDCODE_WRITEMIF 0x31
384 #define HFA384X_CMDCODE_TEST 0x38
385
386 #define HFA384X_CMDCODE_MASK 0x3F
387
388 /* Test mode operations */
389 #define HFA384X_TEST_CHANGE_CHANNEL 0x08
390 #define HFA384X_TEST_MONITOR 0x0B
391 #define HFA384X_TEST_STOP 0x0F
392 #define HFA384X_TEST_CFG_BITS 0x15
393 #define HFA384X_TEST_CFG_BIT_ALC BIT(3)
394
395 #define HFA384X_CMD_BUSY BIT(15)
396
397 #define HFA384X_CMD_TX_RECLAIM BIT(8)
398
399 #define HFA384X_OFFSET_ERR BIT(14)
400 #define HFA384X_OFFSET_BUSY BIT(15)
401
402
403 /* ProgMode for download command */
404 #define HFA384X_PROGMODE_DISABLE 0
405 #define HFA384X_PROGMODE_ENABLE_VOLATILE 1
406 #define HFA384X_PROGMODE_ENABLE_NON_VOLATILE 2
407 #define HFA384X_PROGMODE_PROGRAM_NON_VOLATILE 3
408
409 #define HFA384X_AUX_MAGIC0 0xfe01
410 #define HFA384X_AUX_MAGIC1 0xdc23
411 #define HFA384X_AUX_MAGIC2 0xba45
412
413 #define HFA384X_AUX_PORT_DISABLED 0
414 #define HFA384X_AUX_PORT_DISABLE BIT(14)
415 #define HFA384X_AUX_PORT_ENABLE BIT(15)
416 #define HFA384X_AUX_PORT_ENABLED (BIT(14) | BIT(15))
417 #define HFA384X_AUX_PORT_MASK (BIT(14) | BIT(15))
418
419 #define PRISM2_PDA_SIZE 1024
420
421
422 /* Events; EvStat, Interrupt mask (IntEn), and acknowledge bits (EvAck) */
423 #define HFA384X_EV_TICK BIT(15)
424 #define HFA384X_EV_WTERR BIT(14)
425 #define HFA384X_EV_INFDROP BIT(13)
426 #ifdef PRISM2_PCI
427 #define HFA384X_EV_PCI_M1 BIT(9)
428 #define HFA384X_EV_PCI_M0 BIT(8)
429 #endif /* PRISM2_PCI */
430 #define HFA384X_EV_INFO BIT(7)
431 #define HFA384X_EV_DTIM BIT(5)
432 #define HFA384X_EV_CMD BIT(4)
433 #define HFA384X_EV_ALLOC BIT(3)
434 #define HFA384X_EV_TXEXC BIT(2)
435 #define HFA384X_EV_TX BIT(1)
436 #define HFA384X_EV_RX BIT(0)
437
438
439 /* HFA384X Information frames */
440 #define HFA384X_INFO_HANDOVERADDR 0xF000 /* AP f/w ? */
441 #define HFA384X_INFO_HANDOVERDEAUTHADDR 0xF001 /* AP f/w 1.3.7 */
442 #define HFA384X_INFO_COMMTALLIES 0xF100
443 #define HFA384X_INFO_SCANRESULTS 0xF101
444 #define HFA384X_INFO_CHANNELINFORESULTS 0xF102 /* AP f/w only */
445 #define HFA384X_INFO_HOSTSCANRESULTS 0xF103
446 #define HFA384X_INFO_LINKSTATUS 0xF200
447 #define HFA384X_INFO_ASSOCSTATUS 0xF201 /* ? */
448 #define HFA384X_INFO_AUTHREQ 0xF202 /* ? */
449 #define HFA384X_INFO_PSUSERCNT 0xF203 /* ? */
450 #define HFA384X_INFO_KEYIDCHANGED 0xF204 /* ? */
451
452 enum { HFA384X_LINKSTATUS_CONNECTED = 1,
453 HFA384X_LINKSTATUS_DISCONNECTED = 2,
454 HFA384X_LINKSTATUS_AP_CHANGE = 3,
455 HFA384X_LINKSTATUS_AP_OUT_OF_RANGE = 4,
456 HFA384X_LINKSTATUS_AP_IN_RANGE = 5,
457 HFA384X_LINKSTATUS_ASSOC_FAILED = 6 };
458
459 enum { HFA384X_PORTTYPE_BSS = 1, HFA384X_PORTTYPE_WDS = 2,
460 HFA384X_PORTTYPE_PSEUDO_IBSS = 3, HFA384X_PORTTYPE_IBSS = 0,
461 HFA384X_PORTTYPE_HOSTAP = 6 };
462
463 #define HFA384X_RATES_1MBPS BIT(0)
464 #define HFA384X_RATES_2MBPS BIT(1)
465 #define HFA384X_RATES_5MBPS BIT(2)
466 #define HFA384X_RATES_11MBPS BIT(3)
467
468 #define HFA384X_ROAMING_FIRMWARE 1
469 #define HFA384X_ROAMING_HOST 2
470 #define HFA384X_ROAMING_DISABLED 3
471
472 #define HFA384X_WEPFLAGS_PRIVACYINVOKED BIT(0)
473 #define HFA384X_WEPFLAGS_EXCLUDEUNENCRYPTED BIT(1)
474 #define HFA384X_WEPFLAGS_HOSTENCRYPT BIT(4)
475 #define HFA384X_WEPFLAGS_HOSTDECRYPT BIT(7)
476
477 #define HFA384X_RX_STATUS_MSGTYPE (BIT(15) | BIT(14) | BIT(13))
478 #define HFA384X_RX_STATUS_PCF BIT(12)
479 #define HFA384X_RX_STATUS_MACPORT (BIT(10) | BIT(9) | BIT(8))
480 #define HFA384X_RX_STATUS_UNDECR BIT(1)
481 #define HFA384X_RX_STATUS_FCSERR BIT(0)
482
483 #define HFA384X_RX_STATUS_GET_MSGTYPE(s) \
484 (((s) & HFA384X_RX_STATUS_MSGTYPE) >> 13)
485 #define HFA384X_RX_STATUS_GET_MACPORT(s) \
486 (((s) & HFA384X_RX_STATUS_MACPORT) >> 8)
487
488 enum { HFA384X_RX_MSGTYPE_NORMAL = 0, HFA384X_RX_MSGTYPE_RFC1042 = 1,
489 HFA384X_RX_MSGTYPE_BRIDGETUNNEL = 2, HFA384X_RX_MSGTYPE_MGMT = 4 };
490
491
492 #define HFA384X_TX_CTRL_ALT_RTRY BIT(5)
493 #define HFA384X_TX_CTRL_802_11 BIT(3)
494 #define HFA384X_TX_CTRL_802_3 0
495 #define HFA384X_TX_CTRL_TX_EX BIT(2)
496 #define HFA384X_TX_CTRL_TX_OK BIT(1)
497
498 #define HFA384X_TX_STATUS_RETRYERR BIT(0)
499 #define HFA384X_TX_STATUS_AGEDERR BIT(1)
500 #define HFA384X_TX_STATUS_DISCON BIT(2)
501 #define HFA384X_TX_STATUS_FORMERR BIT(3)
502
503 /* HFA3861/3863 (BBP) Control Registers */
504 #define HFA386X_CR_TX_CONFIGURE 0x12 /* CR9 */
505 #define HFA386X_CR_RX_CONFIGURE 0x14 /* CR10 */
506 #define HFA386X_CR_A_D_TEST_MODES2 0x1A /* CR13 */
507 #define HFA386X_CR_MANUAL_TX_POWER 0x3E /* CR31 */
508 #define HFA386X_CR_MEASURED_TX_POWER 0x74 /* CR58 */
509
510
511 #ifdef __KERNEL__
512
513 #define PRISM2_TXFID_COUNT 8
514 #define PRISM2_DATA_MAXLEN 2304
515 #define PRISM2_TXFID_LEN (PRISM2_DATA_MAXLEN + sizeof(struct hfa384x_tx_frame))
516 #define PRISM2_TXFID_EMPTY 0xffff
517 #define PRISM2_TXFID_RESERVED 0xfffe
518 #define PRISM2_DUMMY_FID 0xffff
519 #define MAX_SSID_LEN 32
520 #define MAX_NAME_LEN 32 /* this is assumed to be equal to MAX_SSID_LEN */
521
522 #define PRISM2_DUMP_RX_HDR BIT(0)
523 #define PRISM2_DUMP_TX_HDR BIT(1)
524 #define PRISM2_DUMP_TXEXC_HDR BIT(2)
525
526 struct hostap_tx_callback_info {
527 u16 idx;
528 void (*func)(struct sk_buff *, int ok, void *);
529 void *data;
530 struct hostap_tx_callback_info *next;
531 };
532
533
534 /* IEEE 802.11 requires that STA supports concurrent reception of at least
535 * three fragmented frames. This define can be increased to support more
536 * concurrent frames, but it should be noted that each entry can consume about
537 * 2 kB of RAM and increasing cache size will slow down frame reassembly. */
538 #define PRISM2_FRAG_CACHE_LEN 4
539
540 struct prism2_frag_entry {
541 unsigned long first_frag_time;
542 unsigned int seq;
543 unsigned int last_frag;
544 struct sk_buff *skb;
545 u8 src_addr[ETH_ALEN];
546 u8 dst_addr[ETH_ALEN];
547 };
548
549
550 struct hostap_cmd_queue {
551 struct list_head list;
552 wait_queue_head_t compl;
553 volatile enum { CMD_SLEEP, CMD_CALLBACK, CMD_COMPLETED } type;
554 void (*callback)(struct net_device *dev, long context, u16 resp0,
555 u16 res);
556 long context;
557 u16 cmd, param0, param1;
558 u16 resp0, res;
559 volatile int issued, issuing;
560
561 refcount_t usecnt;
562 int del_req;
563 };
564
565 /* options for hw_shutdown */
566 #define HOSTAP_HW_NO_DISABLE BIT(0)
567 #define HOSTAP_HW_ENABLE_CMDCOMPL BIT(1)
568
569 typedef struct local_info local_info_t;
570
571 struct prism2_helper_functions {
572 /* these functions are defined in hardware model specific files
573 * (hostap_{cs,plx,pci}.c */
574 int (*card_present)(local_info_t *local);
575 void (*cor_sreset)(local_info_t *local);
576 void (*genesis_reset)(local_info_t *local, int hcr);
577
578 /* the following functions are from hostap_hw.c, but they may have some
579 * hardware model specific code */
580
581 /* FIX: low-level commands like cmd might disappear at some point to
582 * make it easier to change them if needed (e.g., cmd would be replaced
583 * with write_mif/read_mif/testcmd/inquire); at least get_rid and
584 * set_rid might move to hostap_{cs,plx,pci}.c */
585 int (*cmd)(struct net_device *dev, u16 cmd, u16 param0, u16 *param1,
586 u16 *resp0);
587 void (*read_regs)(struct net_device *dev, struct hfa384x_regs *regs);
588 int (*get_rid)(struct net_device *dev, u16 rid, void *buf, int len,
589 int exact_len);
590 int (*set_rid)(struct net_device *dev, u16 rid, void *buf, int len);
591 int (*hw_enable)(struct net_device *dev, int initial);
592 int (*hw_config)(struct net_device *dev, int initial);
593 void (*hw_reset)(struct net_device *dev);
594 void (*hw_shutdown)(struct net_device *dev, int no_disable);
595 int (*reset_port)(struct net_device *dev);
596 void (*schedule_reset)(local_info_t *local);
597 int (*download)(local_info_t *local,
598 struct prism2_download_param *param);
599 int (*tx)(struct sk_buff *skb, struct net_device *dev);
600 int (*set_tim)(struct net_device *dev, int aid, int set);
601 const struct file_operations *read_aux_fops;
602
603 int need_tx_headroom; /* number of bytes of headroom needed before
604 * IEEE 802.11 header */
605 enum { HOSTAP_HW_PCCARD, HOSTAP_HW_PLX, HOSTAP_HW_PCI } hw_type;
606 };
607
608
609 struct prism2_download_data {
610 u32 dl_cmd;
611 u32 start_addr;
612 u32 num_areas;
613 struct prism2_download_data_area {
614 u32 addr; /* wlan card address */
615 u32 len;
616 u8 *data; /* allocated data */
617 } data[0];
618 };
619
620
621 #define HOSTAP_MAX_BSS_COUNT 64
622 #define MAX_WPA_IE_LEN 64
623
624 struct hostap_bss_info {
625 struct list_head list;
626 unsigned long last_update;
627 unsigned int count;
628 u8 bssid[ETH_ALEN];
629 u16 capab_info;
630 u8 ssid[32];
631 size_t ssid_len;
632 u8 wpa_ie[MAX_WPA_IE_LEN];
633 size_t wpa_ie_len;
634 u8 rsn_ie[MAX_WPA_IE_LEN];
635 size_t rsn_ie_len;
636 int chan;
637 int included;
638 };
639
640
641 /* Per radio private Host AP data - shared by all net devices interfaces used
642 * by each radio (wlan#, wlan#ap, wlan#sta, WDS).
643 * ((struct hostap_interface *) netdev_priv(dev))->local points to this
644 * structure. */
645 struct local_info {
646 struct module *hw_module;
647 int card_idx;
648 int dev_enabled;
649 int master_dev_auto_open; /* was master device opened automatically */
650 int num_dev_open; /* number of open devices */
651 struct net_device *dev; /* master radio device */
652 struct net_device *ddev; /* main data device */
653 struct list_head hostap_interfaces; /* Host AP interface list (contains
654 * struct hostap_interface entries)
655 */
656 rwlock_t iface_lock; /* hostap_interfaces read lock; use write lock
657 * when removing entries from the list.
658 * TX and RX paths can use read lock. */
659 spinlock_t cmdlock, baplock, lock, irq_init_lock;
660 struct mutex rid_bap_mtx;
661 u16 infofid; /* MAC buffer id for info frame */
662 /* txfid, intransmitfid, next_txtid, and next_alloc are protected by
663 * txfidlock */
664 spinlock_t txfidlock;
665 int txfid_len; /* length of allocated TX buffers */
666 u16 txfid[PRISM2_TXFID_COUNT]; /* buffer IDs for TX frames */
667 /* buffer IDs for intransmit frames or PRISM2_TXFID_EMPTY if
668 * corresponding txfid is free for next TX frame */
669 u16 intransmitfid[PRISM2_TXFID_COUNT];
670 int next_txfid; /* index to the next txfid to be checked for
671 * availability */
672 int next_alloc; /* index to the next intransmitfid to be checked for
673 * allocation events */
674
675 /* bitfield for atomic bitops */
676 #define HOSTAP_BITS_TRANSMIT 0
677 #define HOSTAP_BITS_BAP_TASKLET 1
678 #define HOSTAP_BITS_BAP_TASKLET2 2
679 unsigned long bits;
680
681 struct ap_data *ap;
682
683 char essid[MAX_SSID_LEN + 1];
684 char name[MAX_NAME_LEN + 1];
685 int name_set;
686 u16 channel_mask; /* mask of allowed channels */
687 u16 scan_channel_mask; /* mask of channels to be scanned */
688 struct comm_tallies_sums comm_tallies;
689 struct proc_dir_entry *proc;
690 int iw_mode; /* operating mode (IW_MODE_*) */
691 int pseudo_adhoc; /* 0: IW_MODE_ADHOC is real 802.11 compliant IBSS
692 * 1: IW_MODE_ADHOC is "pseudo IBSS" */
693 char bssid[ETH_ALEN];
694 int channel;
695 int beacon_int;
696 int dtim_period;
697 int mtu;
698 int frame_dump; /* dump RX/TX frame headers, PRISM2_DUMP_ flags */
699 int fw_tx_rate_control;
700 u16 tx_rate_control;
701 u16 basic_rates;
702 int hw_resetting;
703 int hw_ready;
704 int hw_reset_tries; /* how many times reset has been tried */
705 int hw_downloading;
706 int shutdown;
707 int pri_only;
708 int no_pri; /* no PRI f/w present */
709 int sram_type; /* 8 = x8 SRAM, 16 = x16 SRAM, -1 = unknown */
710
711 enum {
712 PRISM2_TXPOWER_AUTO = 0, PRISM2_TXPOWER_OFF,
713 PRISM2_TXPOWER_FIXED, PRISM2_TXPOWER_UNKNOWN
714 } txpower_type;
715 int txpower; /* if txpower_type == PRISM2_TXPOWER_FIXED */
716
717 /* command queue for hfa384x_cmd(); protected with cmdlock */
718 struct list_head cmd_queue;
719 /* max_len for cmd_queue; in addition, cmd_callback can use two
720 * additional entries to prevent sleeping commands from stopping
721 * transmits */
722 #define HOSTAP_CMD_QUEUE_MAX_LEN 16
723 int cmd_queue_len; /* number of entries in cmd_queue */
724
725 /* if card timeout is detected in interrupt context, reset_queue is
726 * used to schedule card reseting to be done in user context */
727 struct work_struct reset_queue;
728
729 /* For scheduling a change of the promiscuous mode RID */
730 int is_promisc;
731 struct work_struct set_multicast_list_queue;
732
733 struct work_struct set_tim_queue;
734 struct list_head set_tim_list;
735 spinlock_t set_tim_lock;
736
737 int wds_max_connections;
738 int wds_connections;
739 #define HOSTAP_WDS_BROADCAST_RA BIT(0)
740 #define HOSTAP_WDS_AP_CLIENT BIT(1)
741 #define HOSTAP_WDS_STANDARD_FRAME BIT(2)
742 u32 wds_type;
743 u16 tx_control; /* flags to be used in TX description */
744 int manual_retry_count; /* -1 = use f/w default; otherwise retry count
745 * to be used with all frames */
746
747 struct iw_statistics wstats;
748 unsigned long scan_timestamp; /* Time started to scan */
749 enum {
750 PRISM2_MONITOR_80211 = 0, PRISM2_MONITOR_PRISM = 1,
751 PRISM2_MONITOR_CAPHDR = 2, PRISM2_MONITOR_RADIOTAP = 3
752 } monitor_type;
753 int monitor_allow_fcserr;
754
755 int hostapd; /* whether user space daemon, hostapd, is used for AP
756 * management */
757 int hostapd_sta; /* whether hostapd is used with an extra STA interface
758 */
759 struct net_device *apdev;
760 struct net_device_stats apdevstats;
761
762 char assoc_ap_addr[ETH_ALEN];
763 struct net_device *stadev;
764 struct net_device_stats stadevstats;
765
766 #define WEP_KEYS 4
767 #define WEP_KEY_LEN 13
768 struct lib80211_crypt_info crypt_info;
769
770 int open_wep; /* allow unencrypted frames */
771 int host_encrypt;
772 int host_decrypt;
773 int privacy_invoked; /* force privacy invoked flag even if no keys are
774 * configured */
775 int fw_encrypt_ok; /* whether firmware-based WEP encrypt is working
776 * in Host AP mode (STA f/w 1.4.9 or newer) */
777 int bcrx_sta_key; /* use individual keys to override default keys even
778 * with RX of broad/multicast frames */
779
780 struct prism2_frag_entry frag_cache[PRISM2_FRAG_CACHE_LEN];
781 unsigned int frag_next_idx;
782
783 int ieee_802_1x; /* is IEEE 802.1X used */
784
785 int antsel_tx, antsel_rx;
786 int rts_threshold; /* dot11RTSThreshold */
787 int fragm_threshold; /* dot11FragmentationThreshold */
788 int auth_algs; /* PRISM2_AUTH_ flags */
789
790 int enh_sec; /* cnfEnhSecurity options (broadcast SSID hide/ignore) */
791 int tallies32; /* 32-bit tallies in use */
792
793 struct prism2_helper_functions *func;
794
795 u8 *pda;
796 int fw_ap;
797 #define PRISM2_FW_VER(major, minor, variant) \
798 (((major) << 16) | ((minor) << 8) | variant)
799 u32 sta_fw_ver;
800
801 /* Tasklets for handling hardware IRQ related operations outside hw IRQ
802 * handler */
803 struct tasklet_struct bap_tasklet;
804
805 struct tasklet_struct info_tasklet;
806 struct sk_buff_head info_list; /* info frames as skb's for
807 * info_tasklet */
808
809 struct hostap_tx_callback_info *tx_callback; /* registered TX callbacks
810 */
811
812 struct tasklet_struct rx_tasklet;
813 struct sk_buff_head rx_list;
814
815 struct tasklet_struct sta_tx_exc_tasklet;
816 struct sk_buff_head sta_tx_exc_list;
817
818 int host_roaming;
819 unsigned long last_join_time; /* time of last JoinRequest */
820 struct hfa384x_hostscan_result *last_scan_results;
821 int last_scan_results_count;
822 enum { PRISM2_SCAN, PRISM2_HOSTSCAN } last_scan_type;
823 struct work_struct info_queue;
824 unsigned long pending_info; /* bit field of pending info_queue items */
825 #define PRISM2_INFO_PENDING_LINKSTATUS 0
826 #define PRISM2_INFO_PENDING_SCANRESULTS 1
827 int prev_link_status; /* previous received LinkStatus info */
828 int prev_linkstatus_connected;
829 u8 preferred_ap[ETH_ALEN]; /* use this AP if possible */
830
831 #ifdef PRISM2_CALLBACK
832 void *callback_data; /* Can be used in callbacks; e.g., allocate
833 * on enable event and free on disable event.
834 * Host AP driver code does not touch this. */
835 #endif /* PRISM2_CALLBACK */
836
837 wait_queue_head_t hostscan_wq;
838
839 /* Passive scan in Host AP mode */
840 struct timer_list passive_scan_timer;
841 int passive_scan_interval; /* in seconds, 0 = disabled */
842 int passive_scan_channel;
843 enum { PASSIVE_SCAN_WAIT, PASSIVE_SCAN_LISTEN } passive_scan_state;
844
845 struct timer_list tick_timer;
846 unsigned long last_tick_timer;
847 unsigned int sw_tick_stuck;
848
849 /* commsQuality / dBmCommsQuality data from periodic polling; only
850 * valid for Managed and Ad-hoc modes */
851 unsigned long last_comms_qual_update;
852 int comms_qual; /* in some odd unit.. */
853 int avg_signal; /* in dB (note: negative) */
854 int avg_noise; /* in dB (note: negative) */
855 struct work_struct comms_qual_update;
856
857 /* RSSI to dBm adjustment (for RX descriptor fields) */
858 int rssi_to_dBm; /* subtract from RSSI to get approximate dBm value */
859
860 /* BSS list / protected by local->lock */
861 struct list_head bss_list;
862 int num_bss_info;
863 int wpa; /* WPA support enabled */
864 int tkip_countermeasures;
865 int drop_unencrypted;
866 /* Generic IEEE 802.11 info element to be added to
867 * ProbeResp/Beacon/(Re)AssocReq */
868 u8 *generic_elem;
869 size_t generic_elem_len;
870
871 #ifdef PRISM2_DOWNLOAD_SUPPORT
872 /* Persistent volatile download data */
873 struct prism2_download_data *dl_pri;
874 struct prism2_download_data *dl_sec;
875 #endif /* PRISM2_DOWNLOAD_SUPPORT */
876
877 #ifdef PRISM2_IO_DEBUG
878 #define PRISM2_IO_DEBUG_SIZE 10000
879 u32 io_debug[PRISM2_IO_DEBUG_SIZE];
880 int io_debug_head;
881 int io_debug_enabled;
882 #endif /* PRISM2_IO_DEBUG */
883
884 /* Pointer to hardware model specific (cs,pci,plx) private data. */
885 void *hw_priv;
886 };
887
888
889 /* Per interface private Host AP data
890 * Allocated for each net device that Host AP uses (wlan#, wlan#ap, wlan#sta,
891 * WDS) and netdev_priv(dev) points to this structure. */
892 struct hostap_interface {
893 struct list_head list; /* list entry in Host AP interface list */
894 struct net_device *dev; /* pointer to this device */
895 struct local_info *local; /* pointer to shared private data */
896 struct net_device_stats stats;
897 struct iw_spy_data spy_data; /* iwspy support */
898 struct iw_public_data wireless_data;
899
900 enum {
901 HOSTAP_INTERFACE_MASTER,
902 HOSTAP_INTERFACE_MAIN,
903 HOSTAP_INTERFACE_AP,
904 HOSTAP_INTERFACE_STA,
905 HOSTAP_INTERFACE_WDS,
906 } type;
907
908 union {
909 struct hostap_interface_wds {
910 u8 remote_addr[ETH_ALEN];
911 } wds;
912 } u;
913 };
914
915
916 #define HOSTAP_SKB_TX_DATA_MAGIC 0xf08a36a2
917
918 /*
919 * TX meta data - stored in skb->cb buffer, so this must not be increased over
920 * the 48-byte limit.
921 * THE PADDING THIS STARTS WITH IS A HORRIBLE HACK THAT SHOULD NOT LIVE
922 * TO SEE THE DAY.
923 */
924 struct hostap_skb_tx_data {
925 unsigned int __padding_for_default_qdiscs;
926 u32 magic; /* HOSTAP_SKB_TX_DATA_MAGIC */
927 u8 rate; /* transmit rate */
928 #define HOSTAP_TX_FLAGS_WDS BIT(0)
929 #define HOSTAP_TX_FLAGS_BUFFERED_FRAME BIT(1)
930 #define HOSTAP_TX_FLAGS_ADD_MOREDATA BIT(2)
931 u8 flags; /* HOSTAP_TX_FLAGS_* */
932 u16 tx_cb_idx;
933 struct hostap_interface *iface;
934 unsigned long jiffies; /* queueing timestamp */
935 unsigned short ethertype;
936 };
937
938
939 #ifndef PRISM2_NO_DEBUG
940
941 #define DEBUG_FID BIT(0)
942 #define DEBUG_PS BIT(1)
943 #define DEBUG_FLOW BIT(2)
944 #define DEBUG_AP BIT(3)
945 #define DEBUG_HW BIT(4)
946 #define DEBUG_EXTRA BIT(5)
947 #define DEBUG_EXTRA2 BIT(6)
948 #define DEBUG_PS2 BIT(7)
949 #define DEBUG_MASK (DEBUG_PS | DEBUG_AP | DEBUG_HW | DEBUG_EXTRA)
950 #define PDEBUG(n, args...) \
951 do { if ((n) & DEBUG_MASK) printk(KERN_DEBUG args); } while (0)
952 #define PDEBUG2(n, args...) \
953 do { if ((n) & DEBUG_MASK) printk(args); } while (0)
954
955 #else /* PRISM2_NO_DEBUG */
956
957 #define PDEBUG(n, args...)
958 #define PDEBUG2(n, args...)
959
960 #endif /* PRISM2_NO_DEBUG */
961
962 enum { BAP0 = 0, BAP1 = 1 };
963
964 #define PRISM2_IO_DEBUG_CMD_INB 0
965 #define PRISM2_IO_DEBUG_CMD_INW 1
966 #define PRISM2_IO_DEBUG_CMD_INSW 2
967 #define PRISM2_IO_DEBUG_CMD_OUTB 3
968 #define PRISM2_IO_DEBUG_CMD_OUTW 4
969 #define PRISM2_IO_DEBUG_CMD_OUTSW 5
970 #define PRISM2_IO_DEBUG_CMD_ERROR 6
971 #define PRISM2_IO_DEBUG_CMD_INTERRUPT 7
972
973 #ifdef PRISM2_IO_DEBUG
974
975 #define PRISM2_IO_DEBUG_ENTRY(cmd, reg, value) \
976 (((cmd) << 24) | ((reg) << 16) | value)
977
978 static inline void prism2_io_debug_add(struct net_device *dev, int cmd,
979 int reg, int value)
980 {
981 struct hostap_interface *iface = netdev_priv(dev);
982 local_info_t *local = iface->local;
983
984 if (!local->io_debug_enabled)
985 return;
986
987 local->io_debug[local->io_debug_head] = jiffies & 0xffffffff;
988 if (++local->io_debug_head >= PRISM2_IO_DEBUG_SIZE)
989 local->io_debug_head = 0;
990 local->io_debug[local->io_debug_head] =
991 PRISM2_IO_DEBUG_ENTRY(cmd, reg, value);
992 if (++local->io_debug_head >= PRISM2_IO_DEBUG_SIZE)
993 local->io_debug_head = 0;
994 }
995
996
997 static inline void prism2_io_debug_error(struct net_device *dev, int err)
998 {
999 struct hostap_interface *iface = netdev_priv(dev);
1000 local_info_t *local = iface->local;
1001 unsigned long flags;
1002
1003 if (!local->io_debug_enabled)
1004 return;
1005
1006 spin_lock_irqsave(&local->lock, flags);
1007 prism2_io_debug_add(dev, PRISM2_IO_DEBUG_CMD_ERROR, 0, err);
1008 if (local->io_debug_enabled == 1) {
1009 local->io_debug_enabled = 0;
1010 printk(KERN_DEBUG "%s: I/O debug stopped\n", dev->name);
1011 }
1012 spin_unlock_irqrestore(&local->lock, flags);
1013 }
1014
1015 #else /* PRISM2_IO_DEBUG */
1016
1017 static inline void prism2_io_debug_add(struct net_device *dev, int cmd,
1018 int reg, int value)
1019 {
1020 }
1021
1022 static inline void prism2_io_debug_error(struct net_device *dev, int err)
1023 {
1024 }
1025
1026 #endif /* PRISM2_IO_DEBUG */
1027
1028
1029 #ifdef PRISM2_CALLBACK
1030 enum {
1031 /* Called when card is enabled */
1032 PRISM2_CALLBACK_ENABLE,
1033
1034 /* Called when card is disabled */
1035 PRISM2_CALLBACK_DISABLE,
1036
1037 /* Called when RX/TX starts/ends */
1038 PRISM2_CALLBACK_RX_START, PRISM2_CALLBACK_RX_END,
1039 PRISM2_CALLBACK_TX_START, PRISM2_CALLBACK_TX_END
1040 };
1041 void prism2_callback(local_info_t *local, int event);
1042 #else /* PRISM2_CALLBACK */
1043 #define prism2_callback(d, e) do { } while (0)
1044 #endif /* PRISM2_CALLBACK */
1045
1046 #endif /* __KERNEL__ */
1047
1048 #endif /* HOSTAP_WLAN_H */