1 /* src/prism2/driver/prism2sta.c
3 * Implements the station functionality for prism2
5 * Copyright (C) 1999 AbsoluteValue Systems, Inc. All Rights Reserved.
6 * --------------------------------------------------------------------
10 * The contents of this file are subject to the Mozilla Public
11 * License Version 1.1 (the "License"); you may not use this file
12 * except in compliance with the License. You may obtain a copy of
13 * the License at http://www.mozilla.org/MPL/
15 * Software distributed under the License is distributed on an "AS
16 * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
17 * implied. See the License for the specific language governing
18 * rights and limitations under the License.
20 * Alternatively, the contents of this file may be used under the
21 * terms of the GNU Public License version 2 (the "GPL"), in which
22 * case the provisions of the GPL are applicable instead of the
23 * above. If you wish to allow the use of your version of this file
24 * only under the terms of the GPL and not to allow others to use
25 * your version of this file under the MPL, indicate your decision
26 * by deleting the provisions above and replace them with the notice
27 * and other provisions required by the GPL. If you do not delete
28 * the provisions above, a recipient may use your version of this
29 * file under either the MPL or the GPL.
31 * --------------------------------------------------------------------
33 * Inquiries regarding the linux-wlan Open Source project can be
36 * AbsoluteValue Systems Inc.
38 * http://www.linux-wlan.com
40 * --------------------------------------------------------------------
42 * Portions of the development of this software were funded by
43 * Intersil Corporation as part of PRISM(R) chipset product development.
45 * --------------------------------------------------------------------
47 * This file implements the module and linux pcmcia routines for the
50 * --------------------------------------------------------------------
53 #include <linux/version.h>
54 #include <linux/module.h>
55 #include <linux/moduleparam.h>
56 #include <linux/kernel.h>
57 #include <linux/sched.h>
58 #include <linux/types.h>
59 #include <linux/init.h>
60 #include <linux/slab.h>
61 #include <linux/wireless.h>
62 #include <linux/netdevice.h>
63 #include <linux/workqueue.h>
64 #include <linux/byteorder/generic.h>
65 #include <linux/ctype.h>
68 #include <linux/delay.h>
69 #include <asm/byteorder.h>
70 #include <linux/if_arp.h>
71 #include <linux/if_ether.h>
72 #include <linux/bitops.h>
74 #include "p80211types.h"
75 #include "p80211hdr.h"
76 #include "p80211mgmt.h"
77 #include "p80211conv.h"
78 #include "p80211msg.h"
79 #include "p80211netdev.h"
80 #include "p80211req.h"
81 #include "p80211metadef.h"
82 #include "p80211metastruct.h"
84 #include "prism2mgmt.h"
86 /* Create a string of printable chars from something that might not be */
87 /* It's recommended that the str be 4*len + 1 bytes long */
88 #define wlan_mkprintstr(buf, buflen, str, strlen) \
92 memset(str, 0, (strlen)); \
93 for (i = 0; i < (buflen); i++) { \
94 if (isprint((buf)[i])) { \
95 (str)[j] = (buf)[i]; \
100 (str)[j+2] = hex_asc_hi((buf)[i]); \
101 (str)[j+3] = hex_asc_lo((buf)[i]); \
107 static char *dev_info
= "prism2_usb";
108 static wlandevice_t
*create_wlan(void);
110 int prism2_reset_holdtime
= 30; /* Reset hold time in ms */
111 int prism2_reset_settletime
= 100; /* Reset settle time in ms */
113 static int prism2_doreset
; /* Do a reset at init? */
115 module_param(prism2_doreset
, int, 0644);
116 MODULE_PARM_DESC(prism2_doreset
, "Issue a reset on initialization");
118 module_param(prism2_reset_holdtime
, int, 0644);
119 MODULE_PARM_DESC(prism2_reset_holdtime
, "reset hold time in ms");
120 module_param(prism2_reset_settletime
, int, 0644);
121 MODULE_PARM_DESC(prism2_reset_settletime
, "reset settle time in ms");
123 MODULE_LICENSE("Dual MPL/GPL");
125 void prism2_connect_result(wlandevice_t
*wlandev
, u8 failed
);
126 void prism2_disconnected(wlandevice_t
*wlandev
);
127 void prism2_roamed(wlandevice_t
*wlandev
);
129 static int prism2sta_open(wlandevice_t
*wlandev
);
130 static int prism2sta_close(wlandevice_t
*wlandev
);
131 static void prism2sta_reset(wlandevice_t
*wlandev
);
132 static int prism2sta_txframe(wlandevice_t
*wlandev
, struct sk_buff
*skb
,
133 union p80211_hdr
*p80211_hdr
,
134 struct p80211_metawep
*p80211_wep
);
135 static int prism2sta_mlmerequest(wlandevice_t
*wlandev
, struct p80211msg
*msg
);
136 static int prism2sta_getcardinfo(wlandevice_t
*wlandev
);
137 static int prism2sta_globalsetup(wlandevice_t
*wlandev
);
138 static int prism2sta_setmulticast(wlandevice_t
*wlandev
, netdevice_t
*dev
);
140 static void prism2sta_inf_handover(wlandevice_t
*wlandev
,
141 hfa384x_InfFrame_t
*inf
);
142 static void prism2sta_inf_tallies(wlandevice_t
*wlandev
,
143 hfa384x_InfFrame_t
*inf
);
144 static void prism2sta_inf_hostscanresults(wlandevice_t
*wlandev
,
145 hfa384x_InfFrame_t
*inf
);
146 static void prism2sta_inf_scanresults(wlandevice_t
*wlandev
,
147 hfa384x_InfFrame_t
*inf
);
148 static void prism2sta_inf_chinforesults(wlandevice_t
*wlandev
,
149 hfa384x_InfFrame_t
*inf
);
150 static void prism2sta_inf_linkstatus(wlandevice_t
*wlandev
,
151 hfa384x_InfFrame_t
*inf
);
152 static void prism2sta_inf_assocstatus(wlandevice_t
*wlandev
,
153 hfa384x_InfFrame_t
*inf
);
154 static void prism2sta_inf_authreq(wlandevice_t
*wlandev
,
155 hfa384x_InfFrame_t
*inf
);
156 static void prism2sta_inf_authreq_defer(wlandevice_t
*wlandev
,
157 hfa384x_InfFrame_t
*inf
);
158 static void prism2sta_inf_psusercnt(wlandevice_t
*wlandev
,
159 hfa384x_InfFrame_t
*inf
);
161 /*----------------------------------------------------------------
164 * WLAN device open method. Called from p80211netdev when kernel
165 * device open (start) method is called in response to the
166 * SIOCSIIFFLAGS ioctl changing the flags bit IFF_UP
170 * wlandev wlan device structure
174 * >0 f/w reported error
175 * <0 driver reported error
181 ----------------------------------------------------------------*/
182 static int prism2sta_open(wlandevice_t
*wlandev
)
184 /* We don't currently have to do anything else.
185 * The setup of the MAC should be subsequently completed via
187 * Higher layers know we're ready from dev->start==1 and
188 * dev->tbusy==0. Our rx path knows to pass up received/
189 * frames because of dev->flags&IFF_UP is true.
195 /*----------------------------------------------------------------
198 * WLAN device close method. Called from p80211netdev when kernel
199 * device close method is called in response to the
200 * SIOCSIIFFLAGS ioctl changing the flags bit IFF_UP
204 * wlandev wlan device structure
208 * >0 f/w reported error
209 * <0 driver reported error
215 ----------------------------------------------------------------*/
216 static int prism2sta_close(wlandevice_t
*wlandev
)
218 /* We don't currently have to do anything else.
219 * Higher layers know we're not ready from dev->start==0 and
220 * dev->tbusy==1. Our rx path knows to not pass up received
221 * frames because of dev->flags&IFF_UP is false.
227 /*----------------------------------------------------------------
230 * Not currently implented.
233 * wlandev wlan device structure
243 ----------------------------------------------------------------*/
244 static void prism2sta_reset(wlandevice_t
*wlandev
)
249 /*----------------------------------------------------------------
252 * Takes a frame from p80211 and queues it for transmission.
255 * wlandev wlan device structure
256 * pb packet buffer struct. Contains an 802.11
258 * p80211_hdr points to the 802.11 header for the packet.
260 * 0 Success and more buffs available
261 * 1 Success but no more buffs
262 * 2 Allocation failure
263 * 4 Buffer full or queue busy
269 ----------------------------------------------------------------*/
270 static int prism2sta_txframe(wlandevice_t
*wlandev
, struct sk_buff
*skb
,
271 union p80211_hdr
*p80211_hdr
,
272 struct p80211_metawep
*p80211_wep
)
274 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
277 /* If necessary, set the 802.11 WEP bit */
278 if ((wlandev
->hostwep
& (HOSTWEP_PRIVACYINVOKED
| HOSTWEP_ENCRYPT
)) ==
279 HOSTWEP_PRIVACYINVOKED
) {
280 p80211_hdr
->a3
.fc
|= cpu_to_le16(WLAN_SET_FC_ISWEP(1));
283 result
= hfa384x_drvr_txframe(hw
, skb
, p80211_hdr
, p80211_wep
);
288 /*----------------------------------------------------------------
289 * prism2sta_mlmerequest
291 * wlan command message handler. All we do here is pass the message
292 * over to the prism2sta_mgmt_handler.
295 * wlandev wlan device structure
296 * msg wlan command message
299 * <0 successful acceptance of message, but we're
300 * waiting for an async process to finish before
301 * we're done with the msg. When the asynch
302 * process is done, we'll call the p80211
303 * function p80211req_confirm() .
304 * >0 An error occurred while we were handling
311 ----------------------------------------------------------------*/
312 static int prism2sta_mlmerequest(wlandevice_t
*wlandev
, struct p80211msg
*msg
)
314 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
318 switch (msg
->msgcode
) {
319 case DIDmsg_dot11req_mibget
:
320 pr_debug("Received mibget request\n");
321 result
= prism2mgmt_mibset_mibget(wlandev
, msg
);
323 case DIDmsg_dot11req_mibset
:
324 pr_debug("Received mibset request\n");
325 result
= prism2mgmt_mibset_mibget(wlandev
, msg
);
327 case DIDmsg_dot11req_scan
:
328 pr_debug("Received scan request\n");
329 result
= prism2mgmt_scan(wlandev
, msg
);
331 case DIDmsg_dot11req_scan_results
:
332 pr_debug("Received scan_results request\n");
333 result
= prism2mgmt_scan_results(wlandev
, msg
);
335 case DIDmsg_dot11req_start
:
336 pr_debug("Received mlme start request\n");
337 result
= prism2mgmt_start(wlandev
, msg
);
340 * Prism2 specific messages
342 case DIDmsg_p2req_readpda
:
343 pr_debug("Received mlme readpda request\n");
344 result
= prism2mgmt_readpda(wlandev
, msg
);
346 case DIDmsg_p2req_ramdl_state
:
347 pr_debug("Received mlme ramdl_state request\n");
348 result
= prism2mgmt_ramdl_state(wlandev
, msg
);
350 case DIDmsg_p2req_ramdl_write
:
351 pr_debug("Received mlme ramdl_write request\n");
352 result
= prism2mgmt_ramdl_write(wlandev
, msg
);
354 case DIDmsg_p2req_flashdl_state
:
355 pr_debug("Received mlme flashdl_state request\n");
356 result
= prism2mgmt_flashdl_state(wlandev
, msg
);
358 case DIDmsg_p2req_flashdl_write
:
359 pr_debug("Received mlme flashdl_write request\n");
360 result
= prism2mgmt_flashdl_write(wlandev
, msg
);
363 * Linux specific messages
365 case DIDmsg_lnxreq_hostwep
:
366 break; /* ignore me. */
367 case DIDmsg_lnxreq_ifstate
:
369 struct p80211msg_lnxreq_ifstate
*ifstatemsg
;
370 pr_debug("Received mlme ifstate request\n");
371 ifstatemsg
= (struct p80211msg_lnxreq_ifstate
*) msg
;
373 prism2sta_ifstate(wlandev
,
374 ifstatemsg
->ifstate
.data
);
375 ifstatemsg
->resultcode
.status
=
376 P80211ENUM_msgitem_status_data_ok
;
377 ifstatemsg
->resultcode
.data
= result
;
381 case DIDmsg_lnxreq_wlansniff
:
382 pr_debug("Received mlme wlansniff request\n");
383 result
= prism2mgmt_wlansniff(wlandev
, msg
);
385 case DIDmsg_lnxreq_autojoin
:
386 pr_debug("Received mlme autojoin request\n");
387 result
= prism2mgmt_autojoin(wlandev
, msg
);
389 case DIDmsg_lnxreq_commsquality
:{
390 struct p80211msg_lnxreq_commsquality
*qualmsg
;
392 pr_debug("Received commsquality request\n");
394 qualmsg
= (struct p80211msg_lnxreq_commsquality
*) msg
;
396 qualmsg
->link
.status
=
397 P80211ENUM_msgitem_status_data_ok
;
398 qualmsg
->level
.status
=
399 P80211ENUM_msgitem_status_data_ok
;
400 qualmsg
->noise
.status
=
401 P80211ENUM_msgitem_status_data_ok
;
403 qualmsg
->link
.data
= le16_to_cpu(hw
->qual
.CQ_currBSS
);
404 qualmsg
->level
.data
= le16_to_cpu(hw
->qual
.ASL_currBSS
);
405 qualmsg
->noise
.data
= le16_to_cpu(hw
->qual
.ANL_currFC
);
406 qualmsg
->txrate
.data
= hw
->txrate
;
411 printk(KERN_WARNING
"Unknown mgmt request message 0x%08x",
419 /*----------------------------------------------------------------
422 * Interface state. This is the primary WLAN interface enable/disable
423 * handler. Following the driver/load/deviceprobe sequence, this
424 * function must be called with a state of "enable" before any other
425 * commands will be accepted.
428 * wlandev wlan device structure
429 * msgp ptr to msg buffer
432 * A p80211 message resultcode value.
437 * process thread (usually)
439 ----------------------------------------------------------------*/
440 u32
prism2sta_ifstate(wlandevice_t
*wlandev
, u32 ifstate
)
442 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
445 result
= P80211ENUM_resultcode_implementation_failure
;
447 pr_debug("Current MSD state(%d), requesting(%d)\n",
448 wlandev
->msdstate
, ifstate
);
450 case P80211ENUM_ifstate_fwload
:
451 switch (wlandev
->msdstate
) {
452 case WLAN_MSD_HWPRESENT
:
453 wlandev
->msdstate
= WLAN_MSD_FWLOAD_PENDING
;
455 * Initialize the device+driver sufficiently
456 * for firmware loading.
458 result
= hfa384x_drvr_start(hw
);
461 "hfa384x_drvr_start() failed,"
462 "result=%d\n", (int)result
);
464 P80211ENUM_resultcode_implementation_failure
;
465 wlandev
->msdstate
= WLAN_MSD_HWPRESENT
;
468 wlandev
->msdstate
= WLAN_MSD_FWLOAD
;
469 result
= P80211ENUM_resultcode_success
;
471 case WLAN_MSD_FWLOAD
:
472 hfa384x_cmd_initialize(hw
);
473 result
= P80211ENUM_resultcode_success
;
475 case WLAN_MSD_RUNNING
:
477 "Cannot enter fwload state from enable state,"
478 "you must disable first.\n");
479 result
= P80211ENUM_resultcode_invalid_parameters
;
481 case WLAN_MSD_HWFAIL
:
483 /* probe() had a problem or the msdstate contains
484 * an unrecognized value, there's nothing we can do.
486 result
= P80211ENUM_resultcode_implementation_failure
;
490 case P80211ENUM_ifstate_enable
:
491 switch (wlandev
->msdstate
) {
492 case WLAN_MSD_HWPRESENT
:
493 case WLAN_MSD_FWLOAD
:
494 wlandev
->msdstate
= WLAN_MSD_RUNNING_PENDING
;
495 /* Initialize the device+driver for full
496 * operation. Note that this might me an FWLOAD to
497 * to RUNNING transition so we must not do a chip
498 * or board level reset. Note that on failure,
499 * the MSD state is set to HWPRESENT because we
500 * can't make any assumptions about the state
501 * of the hardware or a previous firmware load.
503 result
= hfa384x_drvr_start(hw
);
506 "hfa384x_drvr_start() failed,"
507 "result=%d\n", (int)result
);
509 P80211ENUM_resultcode_implementation_failure
;
510 wlandev
->msdstate
= WLAN_MSD_HWPRESENT
;
514 result
= prism2sta_getcardinfo(wlandev
);
517 "prism2sta_getcardinfo() failed,"
518 "result=%d\n", (int)result
);
520 P80211ENUM_resultcode_implementation_failure
;
521 hfa384x_drvr_stop(hw
);
522 wlandev
->msdstate
= WLAN_MSD_HWPRESENT
;
525 result
= prism2sta_globalsetup(wlandev
);
528 "prism2sta_globalsetup() failed,"
529 "result=%d\n", (int)result
);
531 P80211ENUM_resultcode_implementation_failure
;
532 hfa384x_drvr_stop(hw
);
533 wlandev
->msdstate
= WLAN_MSD_HWPRESENT
;
536 wlandev
->msdstate
= WLAN_MSD_RUNNING
;
538 hw
->join_retries
= 60;
539 result
= P80211ENUM_resultcode_success
;
541 case WLAN_MSD_RUNNING
:
542 /* Do nothing, we're already in this state. */
543 result
= P80211ENUM_resultcode_success
;
545 case WLAN_MSD_HWFAIL
:
547 /* probe() had a problem or the msdstate contains
548 * an unrecognized value, there's nothing we can do.
550 result
= P80211ENUM_resultcode_implementation_failure
;
554 case P80211ENUM_ifstate_disable
:
555 switch (wlandev
->msdstate
) {
556 case WLAN_MSD_HWPRESENT
:
557 /* Do nothing, we're already in this state. */
558 result
= P80211ENUM_resultcode_success
;
560 case WLAN_MSD_FWLOAD
:
561 case WLAN_MSD_RUNNING
:
562 wlandev
->msdstate
= WLAN_MSD_HWPRESENT_PENDING
;
564 * TODO: Shut down the MAC completely. Here a chip
565 * or board level reset is probably called for.
566 * After a "disable" _all_ results are lost, even
567 * those from a fwload.
569 if (!wlandev
->hwremoved
)
570 netif_carrier_off(wlandev
->netdev
);
572 hfa384x_drvr_stop(hw
);
574 wlandev
->macmode
= WLAN_MACMODE_NONE
;
575 wlandev
->msdstate
= WLAN_MSD_HWPRESENT
;
576 result
= P80211ENUM_resultcode_success
;
578 case WLAN_MSD_HWFAIL
:
580 /* probe() had a problem or the msdstate contains
581 * an unrecognized value, there's nothing we can do.
583 result
= P80211ENUM_resultcode_implementation_failure
;
588 result
= P80211ENUM_resultcode_invalid_parameters
;
595 /*----------------------------------------------------------------
596 * prism2sta_getcardinfo
598 * Collect the NICID, firmware version and any other identifiers
599 * we'd like to have in host-side data structures.
602 * wlandev wlan device structure
606 * >0 f/w reported error
607 * <0 driver reported error
613 ----------------------------------------------------------------*/
614 static int prism2sta_getcardinfo(wlandevice_t
*wlandev
)
617 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
619 u8 snum
[HFA384x_RID_NICSERIALNUMBER_LEN
];
620 char pstr
[(HFA384x_RID_NICSERIALNUMBER_LEN
* 4) + 1];
622 /* Collect version and compatibility info */
623 /* Some are critical, some are not */
625 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_NICIDENTITY
,
627 sizeof(hfa384x_compident_t
));
629 printk(KERN_ERR
"Failed to retrieve NICIDENTITY\n");
633 /* get all the nic id fields in host byte order */
634 hw
->ident_nic
.id
= le16_to_cpu(hw
->ident_nic
.id
);
635 hw
->ident_nic
.variant
= le16_to_cpu(hw
->ident_nic
.variant
);
636 hw
->ident_nic
.major
= le16_to_cpu(hw
->ident_nic
.major
);
637 hw
->ident_nic
.minor
= le16_to_cpu(hw
->ident_nic
.minor
);
639 printk(KERN_INFO
"ident: nic h/w: id=0x%02x %d.%d.%d\n",
640 hw
->ident_nic
.id
, hw
->ident_nic
.major
,
641 hw
->ident_nic
.minor
, hw
->ident_nic
.variant
);
643 /* Primary f/w identity */
644 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_PRIIDENTITY
,
646 sizeof(hfa384x_compident_t
));
648 printk(KERN_ERR
"Failed to retrieve PRIIDENTITY\n");
652 /* get all the private fw id fields in host byte order */
653 hw
->ident_pri_fw
.id
= le16_to_cpu(hw
->ident_pri_fw
.id
);
654 hw
->ident_pri_fw
.variant
= le16_to_cpu(hw
->ident_pri_fw
.variant
);
655 hw
->ident_pri_fw
.major
= le16_to_cpu(hw
->ident_pri_fw
.major
);
656 hw
->ident_pri_fw
.minor
= le16_to_cpu(hw
->ident_pri_fw
.minor
);
658 printk(KERN_INFO
"ident: pri f/w: id=0x%02x %d.%d.%d\n",
659 hw
->ident_pri_fw
.id
, hw
->ident_pri_fw
.major
,
660 hw
->ident_pri_fw
.minor
, hw
->ident_pri_fw
.variant
);
662 /* Station (Secondary?) f/w identity */
663 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_STAIDENTITY
,
665 sizeof(hfa384x_compident_t
));
667 printk(KERN_ERR
"Failed to retrieve STAIDENTITY\n");
671 if (hw
->ident_nic
.id
< 0x8000) {
673 "FATAL: Card is not an Intersil Prism2/2.5/3\n");
678 /* get all the station fw id fields in host byte order */
679 hw
->ident_sta_fw
.id
= le16_to_cpu(hw
->ident_sta_fw
.id
);
680 hw
->ident_sta_fw
.variant
= le16_to_cpu(hw
->ident_sta_fw
.variant
);
681 hw
->ident_sta_fw
.major
= le16_to_cpu(hw
->ident_sta_fw
.major
);
682 hw
->ident_sta_fw
.minor
= le16_to_cpu(hw
->ident_sta_fw
.minor
);
684 /* strip out the 'special' variant bits */
685 hw
->mm_mods
= hw
->ident_sta_fw
.variant
& (BIT(14) | BIT(15));
686 hw
->ident_sta_fw
.variant
&= ~((u16
) (BIT(14) | BIT(15)));
688 if (hw
->ident_sta_fw
.id
== 0x1f) {
690 "ident: sta f/w: id=0x%02x %d.%d.%d\n",
691 hw
->ident_sta_fw
.id
, hw
->ident_sta_fw
.major
,
692 hw
->ident_sta_fw
.minor
, hw
->ident_sta_fw
.variant
);
695 "ident: ap f/w: id=0x%02x %d.%d.%d\n",
696 hw
->ident_sta_fw
.id
, hw
->ident_sta_fw
.major
,
697 hw
->ident_sta_fw
.minor
, hw
->ident_sta_fw
.variant
);
698 printk(KERN_ERR
"Unsupported Tertiary AP firmeare loaded!\n");
702 /* Compatibility range, Modem supplier */
703 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_MFISUPRANGE
,
705 sizeof(hfa384x_caplevel_t
));
707 printk(KERN_ERR
"Failed to retrieve MFISUPRANGE\n");
711 /* get all the Compatibility range, modem interface supplier
712 fields in byte order */
713 hw
->cap_sup_mfi
.role
= le16_to_cpu(hw
->cap_sup_mfi
.role
);
714 hw
->cap_sup_mfi
.id
= le16_to_cpu(hw
->cap_sup_mfi
.id
);
715 hw
->cap_sup_mfi
.variant
= le16_to_cpu(hw
->cap_sup_mfi
.variant
);
716 hw
->cap_sup_mfi
.bottom
= le16_to_cpu(hw
->cap_sup_mfi
.bottom
);
717 hw
->cap_sup_mfi
.top
= le16_to_cpu(hw
->cap_sup_mfi
.top
);
720 "MFI:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
721 hw
->cap_sup_mfi
.role
, hw
->cap_sup_mfi
.id
,
722 hw
->cap_sup_mfi
.variant
, hw
->cap_sup_mfi
.bottom
,
723 hw
->cap_sup_mfi
.top
);
725 /* Compatibility range, Controller supplier */
726 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_CFISUPRANGE
,
728 sizeof(hfa384x_caplevel_t
));
730 printk(KERN_ERR
"Failed to retrieve CFISUPRANGE\n");
734 /* get all the Compatibility range, controller interface supplier
735 fields in byte order */
736 hw
->cap_sup_cfi
.role
= le16_to_cpu(hw
->cap_sup_cfi
.role
);
737 hw
->cap_sup_cfi
.id
= le16_to_cpu(hw
->cap_sup_cfi
.id
);
738 hw
->cap_sup_cfi
.variant
= le16_to_cpu(hw
->cap_sup_cfi
.variant
);
739 hw
->cap_sup_cfi
.bottom
= le16_to_cpu(hw
->cap_sup_cfi
.bottom
);
740 hw
->cap_sup_cfi
.top
= le16_to_cpu(hw
->cap_sup_cfi
.top
);
743 "CFI:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
744 hw
->cap_sup_cfi
.role
, hw
->cap_sup_cfi
.id
,
745 hw
->cap_sup_cfi
.variant
, hw
->cap_sup_cfi
.bottom
,
746 hw
->cap_sup_cfi
.top
);
748 /* Compatibility range, Primary f/w supplier */
749 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_PRISUPRANGE
,
751 sizeof(hfa384x_caplevel_t
));
753 printk(KERN_ERR
"Failed to retrieve PRISUPRANGE\n");
757 /* get all the Compatibility range, primary firmware supplier
758 fields in byte order */
759 hw
->cap_sup_pri
.role
= le16_to_cpu(hw
->cap_sup_pri
.role
);
760 hw
->cap_sup_pri
.id
= le16_to_cpu(hw
->cap_sup_pri
.id
);
761 hw
->cap_sup_pri
.variant
= le16_to_cpu(hw
->cap_sup_pri
.variant
);
762 hw
->cap_sup_pri
.bottom
= le16_to_cpu(hw
->cap_sup_pri
.bottom
);
763 hw
->cap_sup_pri
.top
= le16_to_cpu(hw
->cap_sup_pri
.top
);
766 "PRI:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
767 hw
->cap_sup_pri
.role
, hw
->cap_sup_pri
.id
,
768 hw
->cap_sup_pri
.variant
, hw
->cap_sup_pri
.bottom
,
769 hw
->cap_sup_pri
.top
);
771 /* Compatibility range, Station f/w supplier */
772 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_STASUPRANGE
,
774 sizeof(hfa384x_caplevel_t
));
776 printk(KERN_ERR
"Failed to retrieve STASUPRANGE\n");
780 /* get all the Compatibility range, station firmware supplier
781 fields in byte order */
782 hw
->cap_sup_sta
.role
= le16_to_cpu(hw
->cap_sup_sta
.role
);
783 hw
->cap_sup_sta
.id
= le16_to_cpu(hw
->cap_sup_sta
.id
);
784 hw
->cap_sup_sta
.variant
= le16_to_cpu(hw
->cap_sup_sta
.variant
);
785 hw
->cap_sup_sta
.bottom
= le16_to_cpu(hw
->cap_sup_sta
.bottom
);
786 hw
->cap_sup_sta
.top
= le16_to_cpu(hw
->cap_sup_sta
.top
);
788 if (hw
->cap_sup_sta
.id
== 0x04) {
790 "STA:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
791 hw
->cap_sup_sta
.role
, hw
->cap_sup_sta
.id
,
792 hw
->cap_sup_sta
.variant
, hw
->cap_sup_sta
.bottom
,
793 hw
->cap_sup_sta
.top
);
796 "AP:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
797 hw
->cap_sup_sta
.role
, hw
->cap_sup_sta
.id
,
798 hw
->cap_sup_sta
.variant
, hw
->cap_sup_sta
.bottom
,
799 hw
->cap_sup_sta
.top
);
802 /* Compatibility range, primary f/w actor, CFI supplier */
803 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_PRI_CFIACTRANGES
,
804 &hw
->cap_act_pri_cfi
,
805 sizeof(hfa384x_caplevel_t
));
807 printk(KERN_ERR
"Failed to retrieve PRI_CFIACTRANGES\n");
811 /* get all the Compatibility range, primary f/w actor, CFI supplier
812 fields in byte order */
813 hw
->cap_act_pri_cfi
.role
= le16_to_cpu(hw
->cap_act_pri_cfi
.role
);
814 hw
->cap_act_pri_cfi
.id
= le16_to_cpu(hw
->cap_act_pri_cfi
.id
);
815 hw
->cap_act_pri_cfi
.variant
= le16_to_cpu(hw
->cap_act_pri_cfi
.variant
);
816 hw
->cap_act_pri_cfi
.bottom
= le16_to_cpu(hw
->cap_act_pri_cfi
.bottom
);
817 hw
->cap_act_pri_cfi
.top
= le16_to_cpu(hw
->cap_act_pri_cfi
.top
);
820 "PRI-CFI:ACT:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
821 hw
->cap_act_pri_cfi
.role
, hw
->cap_act_pri_cfi
.id
,
822 hw
->cap_act_pri_cfi
.variant
, hw
->cap_act_pri_cfi
.bottom
,
823 hw
->cap_act_pri_cfi
.top
);
825 /* Compatibility range, sta f/w actor, CFI supplier */
826 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_STA_CFIACTRANGES
,
827 &hw
->cap_act_sta_cfi
,
828 sizeof(hfa384x_caplevel_t
));
830 printk(KERN_ERR
"Failed to retrieve STA_CFIACTRANGES\n");
834 /* get all the Compatibility range, station f/w actor, CFI supplier
835 fields in byte order */
836 hw
->cap_act_sta_cfi
.role
= le16_to_cpu(hw
->cap_act_sta_cfi
.role
);
837 hw
->cap_act_sta_cfi
.id
= le16_to_cpu(hw
->cap_act_sta_cfi
.id
);
838 hw
->cap_act_sta_cfi
.variant
= le16_to_cpu(hw
->cap_act_sta_cfi
.variant
);
839 hw
->cap_act_sta_cfi
.bottom
= le16_to_cpu(hw
->cap_act_sta_cfi
.bottom
);
840 hw
->cap_act_sta_cfi
.top
= le16_to_cpu(hw
->cap_act_sta_cfi
.top
);
843 "STA-CFI:ACT:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
844 hw
->cap_act_sta_cfi
.role
, hw
->cap_act_sta_cfi
.id
,
845 hw
->cap_act_sta_cfi
.variant
, hw
->cap_act_sta_cfi
.bottom
,
846 hw
->cap_act_sta_cfi
.top
);
848 /* Compatibility range, sta f/w actor, MFI supplier */
849 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_STA_MFIACTRANGES
,
850 &hw
->cap_act_sta_mfi
,
851 sizeof(hfa384x_caplevel_t
));
853 printk(KERN_ERR
"Failed to retrieve STA_MFIACTRANGES\n");
857 /* get all the Compatibility range, station f/w actor, MFI supplier
858 fields in byte order */
859 hw
->cap_act_sta_mfi
.role
= le16_to_cpu(hw
->cap_act_sta_mfi
.role
);
860 hw
->cap_act_sta_mfi
.id
= le16_to_cpu(hw
->cap_act_sta_mfi
.id
);
861 hw
->cap_act_sta_mfi
.variant
= le16_to_cpu(hw
->cap_act_sta_mfi
.variant
);
862 hw
->cap_act_sta_mfi
.bottom
= le16_to_cpu(hw
->cap_act_sta_mfi
.bottom
);
863 hw
->cap_act_sta_mfi
.top
= le16_to_cpu(hw
->cap_act_sta_mfi
.top
);
866 "STA-MFI:ACT:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
867 hw
->cap_act_sta_mfi
.role
, hw
->cap_act_sta_mfi
.id
,
868 hw
->cap_act_sta_mfi
.variant
, hw
->cap_act_sta_mfi
.bottom
,
869 hw
->cap_act_sta_mfi
.top
);
872 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_NICSERIALNUMBER
,
873 snum
, HFA384x_RID_NICSERIALNUMBER_LEN
);
875 wlan_mkprintstr(snum
, HFA384x_RID_NICSERIALNUMBER_LEN
,
877 printk(KERN_INFO
"Prism2 card SN: %s\n", pstr
);
879 printk(KERN_ERR
"Failed to retrieve Prism2 Card SN\n");
883 /* Collect the MAC address */
884 result
= hfa384x_drvr_getconfig(hw
, HFA384x_RID_CNFOWNMACADDR
,
885 wlandev
->netdev
->dev_addr
, ETH_ALEN
);
887 printk(KERN_ERR
"Failed to retrieve mac address\n");
891 /* short preamble is always implemented */
892 wlandev
->nsdcaps
|= P80211_NSDCAP_SHORT_PREAMBLE
;
894 /* find out if hardware wep is implemented */
895 hfa384x_drvr_getconfig16(hw
, HFA384x_RID_PRIVACYOPTIMP
, &temp
);
897 wlandev
->nsdcaps
|= P80211_NSDCAP_HARDWAREWEP
;
899 /* get the dBm Scaling constant */
900 hfa384x_drvr_getconfig16(hw
, HFA384x_RID_CNFDBMADJUST
, &temp
);
901 hw
->dbmadjust
= temp
;
903 /* Only enable scan by default on newer firmware */
904 if (HFA384x_FIRMWARE_VERSION(hw
->ident_sta_fw
.major
,
905 hw
->ident_sta_fw
.minor
,
906 hw
->ident_sta_fw
.variant
) <
907 HFA384x_FIRMWARE_VERSION(1, 5, 5)) {
908 wlandev
->nsdcaps
|= P80211_NSDCAP_NOSCAN
;
911 /* TODO: Set any internally managed config items */
915 printk(KERN_ERR
"Failed, result=%d\n", result
);
920 /*----------------------------------------------------------------
921 * prism2sta_globalsetup
923 * Set any global RIDs that we want to set at device activation.
926 * wlandev wlan device structure
930 * >0 f/w reported error
931 * <0 driver reported error
937 ----------------------------------------------------------------*/
938 static int prism2sta_globalsetup(wlandevice_t
*wlandev
)
940 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
942 /* Set the maximum frame size */
943 return hfa384x_drvr_setconfig16(hw
, HFA384x_RID_CNFMAXDATALEN
,
947 static int prism2sta_setmulticast(wlandevice_t
*wlandev
, netdevice_t
*dev
)
950 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
954 /* If we're not ready, what's the point? */
955 if (hw
->state
!= HFA384x_STATE_RUNNING
)
958 if ((dev
->flags
& (IFF_PROMISC
| IFF_ALLMULTI
)) != 0)
959 promisc
= P80211ENUM_truth_true
;
961 promisc
= P80211ENUM_truth_false
;
964 hfa384x_drvr_setconfig16_async(hw
, HFA384x_RID_PROMISCMODE
,
970 /*----------------------------------------------------------------
971 * prism2sta_inf_handover
973 * Handles the receipt of a Handover info frame. Should only be present
977 * wlandev wlan device structure
978 * inf ptr to info frame (contents in hfa384x order)
987 ----------------------------------------------------------------*/
988 static void prism2sta_inf_handover(wlandevice_t
*wlandev
,
989 hfa384x_InfFrame_t
*inf
)
991 pr_debug("received infoframe:HANDOVER (unhandled)\n");
995 /*----------------------------------------------------------------
996 * prism2sta_inf_tallies
998 * Handles the receipt of a CommTallies info frame.
1001 * wlandev wlan device structure
1002 * inf ptr to info frame (contents in hfa384x order)
1011 ----------------------------------------------------------------*/
1012 static void prism2sta_inf_tallies(wlandevice_t
*wlandev
,
1013 hfa384x_InfFrame_t
*inf
)
1015 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1023 ** Determine if these are 16-bit or 32-bit tallies, based on the
1024 ** record length of the info record.
1027 cnt
= sizeof(hfa384x_CommTallies32_t
) / sizeof(u32
);
1028 if (inf
->framelen
> 22) {
1029 dst
= (u32
*) &hw
->tallies
;
1030 src32
= (u32
*) &inf
->info
.commtallies32
;
1031 for (i
= 0; i
< cnt
; i
++, dst
++, src32
++)
1032 *dst
+= le32_to_cpu(*src32
);
1034 dst
= (u32
*) &hw
->tallies
;
1035 src16
= (u16
*) &inf
->info
.commtallies16
;
1036 for (i
= 0; i
< cnt
; i
++, dst
++, src16
++)
1037 *dst
+= le16_to_cpu(*src16
);
1043 /*----------------------------------------------------------------
1044 * prism2sta_inf_scanresults
1046 * Handles the receipt of a Scan Results info frame.
1049 * wlandev wlan device structure
1050 * inf ptr to info frame (contents in hfa384x order)
1059 ----------------------------------------------------------------*/
1060 static void prism2sta_inf_scanresults(wlandevice_t
*wlandev
,
1061 hfa384x_InfFrame_t
*inf
)
1064 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1066 hfa384x_ScanResult_t
*sr
= &(inf
->info
.scanresult
);
1068 hfa384x_JoinRequest_data_t joinreq
;
1071 /* Get the number of results, first in bytes, then in results */
1072 nbss
= (inf
->framelen
* sizeof(u16
)) -
1073 sizeof(inf
->infotype
) - sizeof(inf
->info
.scanresult
.scanreason
);
1074 nbss
/= sizeof(hfa384x_ScanResultSub_t
);
1077 pr_debug("rx scanresults, reason=%d, nbss=%d:\n",
1078 inf
->info
.scanresult
.scanreason
, nbss
);
1079 for (i
= 0; i
< nbss
; i
++) {
1080 pr_debug("chid=%d anl=%d sl=%d bcnint=%d\n",
1083 sr
->result
[i
].sl
, sr
->result
[i
].bcnint
);
1084 pr_debug(" capinfo=0x%04x proberesp_rate=%d\n",
1085 sr
->result
[i
].capinfo
, sr
->result
[i
].proberesp_rate
);
1087 /* issue a join request */
1088 joinreq
.channel
= sr
->result
[0].chid
;
1089 memcpy(joinreq
.bssid
, sr
->result
[0].bssid
, WLAN_BSSID_LEN
);
1090 result
= hfa384x_drvr_setconfig(hw
,
1091 HFA384x_RID_JOINREQUEST
,
1092 &joinreq
, HFA384x_RID_JOINREQUEST_LEN
);
1094 printk(KERN_ERR
"setconfig(joinreq) failed, result=%d\n",
1101 /*----------------------------------------------------------------
1102 * prism2sta_inf_hostscanresults
1104 * Handles the receipt of a Scan Results info frame.
1107 * wlandev wlan device structure
1108 * inf ptr to info frame (contents in hfa384x order)
1117 ----------------------------------------------------------------*/
1118 static void prism2sta_inf_hostscanresults(wlandevice_t
*wlandev
,
1119 hfa384x_InfFrame_t
*inf
)
1121 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1124 nbss
= (inf
->framelen
- 3) / 32;
1125 pr_debug("Received %d hostscan results\n", nbss
);
1130 kfree(hw
->scanresults
);
1132 hw
->scanresults
= kmalloc(sizeof(hfa384x_InfFrame_t
), GFP_ATOMIC
);
1133 memcpy(hw
->scanresults
, inf
, sizeof(hfa384x_InfFrame_t
));
1138 /* Notify/wake the sleeping caller. */
1139 hw
->scanflag
= nbss
;
1140 wake_up_interruptible(&hw
->cmdq
);
1143 /*----------------------------------------------------------------
1144 * prism2sta_inf_chinforesults
1146 * Handles the receipt of a Channel Info Results info frame.
1149 * wlandev wlan device structure
1150 * inf ptr to info frame (contents in hfa384x order)
1159 ----------------------------------------------------------------*/
1160 static void prism2sta_inf_chinforesults(wlandevice_t
*wlandev
,
1161 hfa384x_InfFrame_t
*inf
)
1163 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1166 hw
->channel_info
.results
.scanchannels
=
1167 le16_to_cpu(inf
->info
.chinforesult
.scanchannels
);
1169 for (i
= 0, n
= 0; i
< HFA384x_CHINFORESULT_MAX
; i
++) {
1170 if (hw
->channel_info
.results
.scanchannels
& (1 << i
)) {
1172 le16_to_cpu(inf
->info
.chinforesult
.result
[n
].chid
) -
1174 hfa384x_ChInfoResultSub_t
*chinforesult
=
1175 &hw
->channel_info
.results
.result
[channel
];
1176 chinforesult
->chid
= channel
;
1178 le16_to_cpu(inf
->info
.chinforesult
.result
[n
].anl
);
1180 le16_to_cpu(inf
->info
.chinforesult
.result
[n
].pnl
);
1181 chinforesult
->active
=
1182 le16_to_cpu(inf
->info
.chinforesult
.result
[n
].
1185 ("chinfo: channel %d, %s level (avg/peak)=%d/%d dB, pcf %d\n",
1188 active
& HFA384x_CHINFORESULT_BSSACTIVE
? "signal"
1189 : "noise", chinforesult
->anl
, chinforesult
->pnl
,
1191 active
& HFA384x_CHINFORESULT_PCFACTIVE
? 1 : 0);
1195 atomic_set(&hw
->channel_info
.done
, 2);
1197 hw
->channel_info
.count
= n
;
1201 void prism2sta_processing_defer(struct work_struct
*data
)
1203 hfa384x_t
*hw
= container_of(data
, struct hfa384x
, link_bh
);
1204 wlandevice_t
*wlandev
= hw
->wlandev
;
1205 hfa384x_bytestr32_t ssid
;
1208 /* First let's process the auth frames */
1210 struct sk_buff
*skb
;
1211 hfa384x_InfFrame_t
*inf
;
1213 while ((skb
= skb_dequeue(&hw
->authq
))) {
1214 inf
= (hfa384x_InfFrame_t
*) skb
->data
;
1215 prism2sta_inf_authreq_defer(wlandev
, inf
);
1220 /* Now let's handle the linkstatus stuff */
1221 if (hw
->link_status
== hw
->link_status_new
)
1224 hw
->link_status
= hw
->link_status_new
;
1226 switch (hw
->link_status
) {
1227 case HFA384x_LINK_NOTCONNECTED
:
1228 /* I'm currently assuming that this is the initial link
1229 * state. It should only be possible immediately
1230 * following an Enable command.
1232 * Block Transmits, Ignore receives of data frames
1234 netif_carrier_off(wlandev
->netdev
);
1236 printk(KERN_INFO
"linkstatus=NOTCONNECTED (unhandled)\n");
1239 case HFA384x_LINK_CONNECTED
:
1240 /* This one indicates a successful scan/join/auth/assoc.
1241 * When we have the full MLME complement, this event will
1242 * signify successful completion of both mlme_authenticate
1243 * and mlme_associate. State management will get a little
1246 * Indicate authentication and/or association
1247 * Enable Transmits, Receives and pass up data frames
1250 netif_carrier_on(wlandev
->netdev
);
1252 /* If we are joining a specific AP, set our
1253 * state and reset retries
1255 if (hw
->join_ap
== 1)
1257 hw
->join_retries
= 60;
1259 /* Don't call this in monitor mode */
1260 if (wlandev
->netdev
->type
== ARPHRD_ETHER
) {
1263 printk(KERN_INFO
"linkstatus=CONNECTED\n");
1265 /* For non-usb devices, we can use the sync versions */
1266 /* Collect the BSSID, and set state to allow tx */
1268 result
= hfa384x_drvr_getconfig(hw
,
1269 HFA384x_RID_CURRENTBSSID
,
1274 ("getconfig(0x%02x) failed, result = %d\n",
1275 HFA384x_RID_CURRENTBSSID
, result
);
1279 result
= hfa384x_drvr_getconfig(hw
,
1280 HFA384x_RID_CURRENTSSID
,
1281 &ssid
, sizeof(ssid
));
1284 ("getconfig(0x%02x) failed, result = %d\n",
1285 HFA384x_RID_CURRENTSSID
, result
);
1288 prism2mgmt_bytestr2pstr((hfa384x_bytestr_t
*) &ssid
,
1292 /* Collect the port status */
1293 result
= hfa384x_drvr_getconfig16(hw
,
1294 HFA384x_RID_PORTSTATUS
,
1298 ("getconfig(0x%02x) failed, result = %d\n",
1299 HFA384x_RID_PORTSTATUS
, result
);
1303 (portstatus
== HFA384x_PSTATUS_CONN_IBSS
) ?
1304 WLAN_MACMODE_IBSS_STA
: WLAN_MACMODE_ESS_STA
;
1306 /* signal back up to cfg80211 layer */
1307 prism2_connect_result(wlandev
, P80211ENUM_truth_false
);
1309 /* Get the ball rolling on the comms quality stuff */
1310 prism2sta_commsqual_defer(&hw
->commsqual_bh
);
1314 case HFA384x_LINK_DISCONNECTED
:
1315 /* This one indicates that our association is gone. We've
1316 * lost connection with the AP and/or been disassociated.
1317 * This indicates that the MAC has completely cleared it's
1318 * associated state. We * should send a deauth indication
1319 * (implying disassoc) up * to the MLME.
1321 * Indicate Deauthentication
1322 * Block Transmits, Ignore receives of data frames
1324 if (wlandev
->netdev
->type
== ARPHRD_ETHER
)
1326 "linkstatus=DISCONNECTED (unhandled)\n");
1327 wlandev
->macmode
= WLAN_MACMODE_NONE
;
1329 netif_carrier_off(wlandev
->netdev
);
1331 /* signal back up to cfg80211 layer */
1332 prism2_disconnected(wlandev
);
1336 case HFA384x_LINK_AP_CHANGE
:
1337 /* This one indicates that the MAC has decided to and
1338 * successfully completed a change to another AP. We
1339 * should probably implement a reassociation indication
1340 * in response to this one. I'm thinking that the the
1341 * p80211 layer needs to be notified in case of
1342 * buffering/queueing issues. User mode also needs to be
1343 * notified so that any BSS dependent elements can be
1345 * associated state. We * should send a deauth indication
1346 * (implying disassoc) up * to the MLME.
1348 * Indicate Reassociation
1349 * Enable Transmits, Receives and pass up data frames
1351 printk(KERN_INFO
"linkstatus=AP_CHANGE\n");
1353 result
= hfa384x_drvr_getconfig(hw
,
1354 HFA384x_RID_CURRENTBSSID
,
1355 wlandev
->bssid
, WLAN_BSSID_LEN
);
1357 pr_debug("getconfig(0x%02x) failed, result = %d\n",
1358 HFA384x_RID_CURRENTBSSID
, result
);
1362 result
= hfa384x_drvr_getconfig(hw
,
1363 HFA384x_RID_CURRENTSSID
,
1364 &ssid
, sizeof(ssid
));
1366 pr_debug("getconfig(0x%02x) failed, result = %d\n",
1367 HFA384x_RID_CURRENTSSID
, result
);
1370 prism2mgmt_bytestr2pstr((hfa384x_bytestr_t
*) &ssid
,
1371 (p80211pstrd_t
*) &wlandev
->ssid
);
1373 hw
->link_status
= HFA384x_LINK_CONNECTED
;
1374 netif_carrier_on(wlandev
->netdev
);
1376 /* signal back up to cfg80211 layer */
1377 prism2_roamed(wlandev
);
1381 case HFA384x_LINK_AP_OUTOFRANGE
:
1382 /* This one indicates that the MAC has decided that the
1383 * AP is out of range, but hasn't found a better candidate
1384 * so the MAC maintains its "associated" state in case
1385 * we get back in range. We should block transmits and
1386 * receives in this state. Do we need an indication here?
1387 * Probably not since a polling user-mode element would
1388 * get this status from from p2PortStatus(FD40). What about
1391 * Block Transmits, Ignore receives of data frames
1393 printk(KERN_INFO
"linkstatus=AP_OUTOFRANGE (unhandled)\n");
1395 netif_carrier_off(wlandev
->netdev
);
1399 case HFA384x_LINK_AP_INRANGE
:
1400 /* This one indicates that the MAC has decided that the
1401 * AP is back in range. We continue working with our
1402 * existing association.
1404 * Enable Transmits, Receives and pass up data frames
1406 printk(KERN_INFO
"linkstatus=AP_INRANGE\n");
1408 hw
->link_status
= HFA384x_LINK_CONNECTED
;
1409 netif_carrier_on(wlandev
->netdev
);
1413 case HFA384x_LINK_ASSOCFAIL
:
1414 /* This one is actually a peer to CONNECTED. We've
1415 * requested a join for a given SSID and optionally BSSID.
1416 * We can use this one to indicate authentication and
1417 * association failures. The trick is going to be
1418 * 1) identifying the failure, and 2) state management.
1420 * Disable Transmits, Ignore receives of data frames
1422 if (hw
->join_ap
&& --hw
->join_retries
> 0) {
1423 hfa384x_JoinRequest_data_t joinreq
;
1424 joinreq
= hw
->joinreq
;
1425 /* Send the join request */
1426 hfa384x_drvr_setconfig(hw
,
1427 HFA384x_RID_JOINREQUEST
,
1429 HFA384x_RID_JOINREQUEST_LEN
);
1431 "linkstatus=ASSOCFAIL (re-submitting join)\n");
1433 printk(KERN_INFO
"linkstatus=ASSOCFAIL (unhandled)\n");
1436 netif_carrier_off(wlandev
->netdev
);
1438 /* signal back up to cfg80211 layer */
1439 prism2_connect_result(wlandev
, P80211ENUM_truth_true
);
1444 /* This is bad, IO port problems? */
1446 "unknown linkstatus=0x%02x\n", hw
->link_status
);
1451 wlandev
->linkstatus
= (hw
->link_status
== HFA384x_LINK_CONNECTED
);
1457 /*----------------------------------------------------------------
1458 * prism2sta_inf_linkstatus
1460 * Handles the receipt of a Link Status info frame.
1463 * wlandev wlan device structure
1464 * inf ptr to info frame (contents in hfa384x order)
1473 ----------------------------------------------------------------*/
1474 static void prism2sta_inf_linkstatus(wlandevice_t
*wlandev
,
1475 hfa384x_InfFrame_t
*inf
)
1477 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1479 hw
->link_status_new
= le16_to_cpu(inf
->info
.linkstatus
.linkstatus
);
1481 schedule_work(&hw
->link_bh
);
1486 /*----------------------------------------------------------------
1487 * prism2sta_inf_assocstatus
1489 * Handles the receipt of an Association Status info frame. Should
1490 * be present in APs only.
1493 * wlandev wlan device structure
1494 * inf ptr to info frame (contents in hfa384x order)
1503 ----------------------------------------------------------------*/
1504 static void prism2sta_inf_assocstatus(wlandevice_t
*wlandev
,
1505 hfa384x_InfFrame_t
*inf
)
1507 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1508 hfa384x_AssocStatus_t rec
;
1511 memcpy(&rec
, &inf
->info
.assocstatus
, sizeof(rec
));
1512 rec
.assocstatus
= le16_to_cpu(rec
.assocstatus
);
1513 rec
.reason
= le16_to_cpu(rec
.reason
);
1516 ** Find the address in the list of authenticated stations.
1517 ** If it wasn't found, then this address has not been previously
1518 ** authenticated and something weird has happened if this is
1519 ** anything other than an "authentication failed" message.
1520 ** If the address was found, then set the "associated" flag for
1521 ** that station, based on whether the station is associating or
1522 ** losing its association. Something weird has also happened
1523 ** if we find the address in the list of authenticated stations
1524 ** but we are getting an "authentication failed" message.
1527 for (i
= 0; i
< hw
->authlist
.cnt
; i
++)
1528 if (memcmp(rec
.sta_addr
, hw
->authlist
.addr
[i
], ETH_ALEN
) == 0)
1531 if (i
>= hw
->authlist
.cnt
) {
1532 if (rec
.assocstatus
!= HFA384x_ASSOCSTATUS_AUTHFAIL
)
1534 "assocstatus info frame received for non-authenticated station.\n");
1536 hw
->authlist
.assoc
[i
] =
1537 (rec
.assocstatus
== HFA384x_ASSOCSTATUS_STAASSOC
||
1538 rec
.assocstatus
== HFA384x_ASSOCSTATUS_REASSOC
);
1540 if (rec
.assocstatus
== HFA384x_ASSOCSTATUS_AUTHFAIL
)
1542 "authfail assocstatus info frame received for authenticated station.\n");
1548 /*----------------------------------------------------------------
1549 * prism2sta_inf_authreq
1551 * Handles the receipt of an Authentication Request info frame. Should
1552 * be present in APs only.
1555 * wlandev wlan device structure
1556 * inf ptr to info frame (contents in hfa384x order)
1566 ----------------------------------------------------------------*/
1567 static void prism2sta_inf_authreq(wlandevice_t
*wlandev
,
1568 hfa384x_InfFrame_t
*inf
)
1570 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1571 struct sk_buff
*skb
;
1573 skb
= dev_alloc_skb(sizeof(*inf
));
1575 skb_put(skb
, sizeof(*inf
));
1576 memcpy(skb
->data
, inf
, sizeof(*inf
));
1577 skb_queue_tail(&hw
->authq
, skb
);
1578 schedule_work(&hw
->link_bh
);
1582 static void prism2sta_inf_authreq_defer(wlandevice_t
*wlandev
,
1583 hfa384x_InfFrame_t
*inf
)
1585 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1586 hfa384x_authenticateStation_data_t rec
;
1588 int i
, added
, result
, cnt
;
1592 ** Build the AuthenticateStation record. Initialize it for denying
1596 memcpy(rec
.address
, inf
->info
.authreq
.sta_addr
, ETH_ALEN
);
1597 rec
.status
= P80211ENUM_status_unspec_failure
;
1600 ** Authenticate based on the access mode.
1603 switch (hw
->accessmode
) {
1604 case WLAN_ACCESS_NONE
:
1607 ** Deny all new authentications. However, if a station
1608 ** is ALREADY authenticated, then accept it.
1611 for (i
= 0; i
< hw
->authlist
.cnt
; i
++)
1612 if (memcmp(rec
.address
, hw
->authlist
.addr
[i
],
1614 rec
.status
= P80211ENUM_status_successful
;
1620 case WLAN_ACCESS_ALL
:
1623 ** Allow all authentications.
1626 rec
.status
= P80211ENUM_status_successful
;
1629 case WLAN_ACCESS_ALLOW
:
1632 ** Only allow the authentication if the MAC address
1633 ** is in the list of allowed addresses.
1635 ** Since this is the interrupt handler, we may be here
1636 ** while the access list is in the middle of being
1637 ** updated. Choose the list which is currently okay.
1638 ** See "prism2mib_priv_accessallow()" for details.
1641 if (hw
->allow
.modify
== 0) {
1642 cnt
= hw
->allow
.cnt
;
1643 addr
= hw
->allow
.addr
[0];
1645 cnt
= hw
->allow
.cnt1
;
1646 addr
= hw
->allow
.addr1
[0];
1649 for (i
= 0; i
< cnt
; i
++, addr
+= ETH_ALEN
)
1650 if (memcmp(rec
.address
, addr
, ETH_ALEN
) == 0) {
1651 rec
.status
= P80211ENUM_status_successful
;
1657 case WLAN_ACCESS_DENY
:
1660 ** Allow the authentication UNLESS the MAC address is
1661 ** in the list of denied addresses.
1663 ** Since this is the interrupt handler, we may be here
1664 ** while the access list is in the middle of being
1665 ** updated. Choose the list which is currently okay.
1666 ** See "prism2mib_priv_accessdeny()" for details.
1669 if (hw
->deny
.modify
== 0) {
1671 addr
= hw
->deny
.addr
[0];
1673 cnt
= hw
->deny
.cnt1
;
1674 addr
= hw
->deny
.addr1
[0];
1677 rec
.status
= P80211ENUM_status_successful
;
1679 for (i
= 0; i
< cnt
; i
++, addr
+= ETH_ALEN
)
1680 if (memcmp(rec
.address
, addr
, ETH_ALEN
) == 0) {
1681 rec
.status
= P80211ENUM_status_unspec_failure
;
1689 ** If the authentication is okay, then add the MAC address to the
1690 ** list of authenticated stations. Don't add the address if it
1691 ** is already in the list. (802.11b does not seem to disallow
1692 ** a station from issuing an authentication request when the
1693 ** station is already authenticated. Does this sort of thing
1694 ** ever happen? We might as well do the check just in case.)
1699 if (rec
.status
== P80211ENUM_status_successful
) {
1700 for (i
= 0; i
< hw
->authlist
.cnt
; i
++)
1701 if (memcmp(rec
.address
, hw
->authlist
.addr
[i
], ETH_ALEN
)
1705 if (i
>= hw
->authlist
.cnt
) {
1706 if (hw
->authlist
.cnt
>= WLAN_AUTH_MAX
) {
1707 rec
.status
= P80211ENUM_status_ap_full
;
1709 memcpy(hw
->authlist
.addr
[hw
->authlist
.cnt
],
1710 rec
.address
, ETH_ALEN
);
1718 ** Send back the results of the authentication. If this doesn't work,
1719 ** then make sure to remove the address from the authenticated list if
1723 rec
.status
= cpu_to_le16(rec
.status
);
1724 rec
.algorithm
= inf
->info
.authreq
.algorithm
;
1726 result
= hfa384x_drvr_setconfig(hw
, HFA384x_RID_AUTHENTICATESTA
,
1732 "setconfig(authenticatestation) failed, result=%d\n",
1738 /*----------------------------------------------------------------
1739 * prism2sta_inf_psusercnt
1741 * Handles the receipt of a PowerSaveUserCount info frame. Should
1742 * be present in APs only.
1745 * wlandev wlan device structure
1746 * inf ptr to info frame (contents in hfa384x order)
1755 ----------------------------------------------------------------*/
1756 static void prism2sta_inf_psusercnt(wlandevice_t
*wlandev
,
1757 hfa384x_InfFrame_t
*inf
)
1759 hfa384x_t
*hw
= (hfa384x_t
*) wlandev
->priv
;
1761 hw
->psusercount
= le16_to_cpu(inf
->info
.psusercnt
.usercnt
);
1766 /*----------------------------------------------------------------
1769 * Handles the Info event.
1772 * wlandev wlan device structure
1773 * inf ptr to a generic info frame
1782 ----------------------------------------------------------------*/
1783 void prism2sta_ev_info(wlandevice_t
*wlandev
, hfa384x_InfFrame_t
*inf
)
1785 inf
->infotype
= le16_to_cpu(inf
->infotype
);
1787 switch (inf
->infotype
) {
1788 case HFA384x_IT_HANDOVERADDR
:
1789 prism2sta_inf_handover(wlandev
, inf
);
1791 case HFA384x_IT_COMMTALLIES
:
1792 prism2sta_inf_tallies(wlandev
, inf
);
1794 case HFA384x_IT_HOSTSCANRESULTS
:
1795 prism2sta_inf_hostscanresults(wlandev
, inf
);
1797 case HFA384x_IT_SCANRESULTS
:
1798 prism2sta_inf_scanresults(wlandev
, inf
);
1800 case HFA384x_IT_CHINFORESULTS
:
1801 prism2sta_inf_chinforesults(wlandev
, inf
);
1803 case HFA384x_IT_LINKSTATUS
:
1804 prism2sta_inf_linkstatus(wlandev
, inf
);
1806 case HFA384x_IT_ASSOCSTATUS
:
1807 prism2sta_inf_assocstatus(wlandev
, inf
);
1809 case HFA384x_IT_AUTHREQ
:
1810 prism2sta_inf_authreq(wlandev
, inf
);
1812 case HFA384x_IT_PSUSERCNT
:
1813 prism2sta_inf_psusercnt(wlandev
, inf
);
1815 case HFA384x_IT_KEYIDCHANGED
:
1816 printk(KERN_WARNING
"Unhandled IT_KEYIDCHANGED\n");
1818 case HFA384x_IT_ASSOCREQ
:
1819 printk(KERN_WARNING
"Unhandled IT_ASSOCREQ\n");
1821 case HFA384x_IT_MICFAILURE
:
1822 printk(KERN_WARNING
"Unhandled IT_MICFAILURE\n");
1826 "Unknown info type=0x%02x\n", inf
->infotype
);
1832 /*----------------------------------------------------------------
1833 * prism2sta_ev_txexc
1835 * Handles the TxExc event. A Transmit Exception event indicates
1836 * that the MAC's TX process was unsuccessful - so the packet did
1837 * not get transmitted.
1840 * wlandev wlan device structure
1841 * status tx frame status word
1850 ----------------------------------------------------------------*/
1851 void prism2sta_ev_txexc(wlandevice_t
*wlandev
, u16 status
)
1853 pr_debug("TxExc status=0x%x.\n", status
);
1858 /*----------------------------------------------------------------
1861 * Handles the Tx event.
1864 * wlandev wlan device structure
1865 * status tx frame status word
1873 ----------------------------------------------------------------*/
1874 void prism2sta_ev_tx(wlandevice_t
*wlandev
, u16 status
)
1876 pr_debug("Tx Complete, status=0x%04x\n", status
);
1877 /* update linux network stats */
1878 wlandev
->linux_stats
.tx_packets
++;
1882 /*----------------------------------------------------------------
1885 * Handles the Rx event.
1888 * wlandev wlan device structure
1897 ----------------------------------------------------------------*/
1898 void prism2sta_ev_rx(wlandevice_t
*wlandev
, struct sk_buff
*skb
)
1900 p80211netdev_rx(wlandev
, skb
);
1904 /*----------------------------------------------------------------
1905 * prism2sta_ev_alloc
1907 * Handles the Alloc event.
1910 * wlandev wlan device structure
1919 ----------------------------------------------------------------*/
1920 void prism2sta_ev_alloc(wlandevice_t
*wlandev
)
1922 netif_wake_queue(wlandev
->netdev
);
1926 /*----------------------------------------------------------------
1929 * Called at module init time. This creates the wlandevice_t structure
1930 * and initializes it with relevant bits.
1936 * the created wlandevice_t structure.
1939 * also allocates the priv/hw structures.
1944 ----------------------------------------------------------------*/
1945 static wlandevice_t
*create_wlan(void)
1947 wlandevice_t
*wlandev
= NULL
;
1948 hfa384x_t
*hw
= NULL
;
1950 /* Alloc our structures */
1951 wlandev
= kmalloc(sizeof(wlandevice_t
), GFP_KERNEL
);
1952 hw
= kmalloc(sizeof(hfa384x_t
), GFP_KERNEL
);
1954 if (!wlandev
|| !hw
) {
1955 printk(KERN_ERR
"%s: Memory allocation failure.\n", dev_info
);
1961 /* Clear all the structs */
1962 memset(wlandev
, 0, sizeof(wlandevice_t
));
1963 memset(hw
, 0, sizeof(hfa384x_t
));
1965 /* Initialize the network device object. */
1966 wlandev
->nsdname
= dev_info
;
1967 wlandev
->msdstate
= WLAN_MSD_HWPRESENT_PENDING
;
1969 wlandev
->open
= prism2sta_open
;
1970 wlandev
->close
= prism2sta_close
;
1971 wlandev
->reset
= prism2sta_reset
;
1972 wlandev
->txframe
= prism2sta_txframe
;
1973 wlandev
->mlmerequest
= prism2sta_mlmerequest
;
1974 wlandev
->set_multicast_list
= prism2sta_setmulticast
;
1975 wlandev
->tx_timeout
= hfa384x_tx_timeout
;
1977 wlandev
->nsdcaps
= P80211_NSDCAP_HWFRAGMENT
| P80211_NSDCAP_AUTOJOIN
;
1979 /* Initialize the device private data stucture. */
1980 hw
->dot11_desired_bss_type
= 1;
1985 void prism2sta_commsqual_defer(struct work_struct
*data
)
1987 hfa384x_t
*hw
= container_of(data
, struct hfa384x
, commsqual_bh
);
1988 wlandevice_t
*wlandev
= hw
->wlandev
;
1989 hfa384x_bytestr32_t ssid
;
1990 struct p80211msg_dot11req_mibget msg
;
1991 p80211item_uint32_t
*mibitem
= (p80211item_uint32_t
*)
1992 &msg
.mibattribute
.data
;
1995 if (hw
->wlandev
->hwremoved
)
1998 /* we don't care if we're in AP mode */
1999 if ((wlandev
->macmode
== WLAN_MACMODE_NONE
) ||
2000 (wlandev
->macmode
== WLAN_MACMODE_ESS_AP
)) {
2004 /* It only makes sense to poll these in non-IBSS */
2005 if (wlandev
->macmode
!= WLAN_MACMODE_IBSS_STA
) {
2006 result
= hfa384x_drvr_getconfig(
2007 hw
, HFA384x_RID_DBMCOMMSQUALITY
,
2008 &hw
->qual
, HFA384x_RID_DBMCOMMSQUALITY_LEN
);
2011 printk(KERN_ERR
"error fetching commsqual\n");
2015 pr_debug("commsqual %d %d %d\n",
2016 le16_to_cpu(hw
->qual
.CQ_currBSS
),
2017 le16_to_cpu(hw
->qual
.ASL_currBSS
),
2018 le16_to_cpu(hw
->qual
.ANL_currFC
));
2021 /* Get the signal rate */
2022 msg
.msgcode
= DIDmsg_dot11req_mibget
;
2023 mibitem
->did
= DIDmib_p2_p2MAC_p2CurrentTxRate
;
2024 result
= p80211req_dorequest(wlandev
, (u8
*) &msg
);
2027 pr_debug("get signal rate failed, result = %d\n",
2032 switch (mibitem
->data
) {
2033 case HFA384x_RATEBIT_1
:
2036 case HFA384x_RATEBIT_2
:
2039 case HFA384x_RATEBIT_5dot5
:
2042 case HFA384x_RATEBIT_11
:
2046 pr_debug("Bad ratebit (%d)\n", mibitem
->data
);
2049 /* Lastly, we need to make sure the BSSID didn't change on us */
2050 result
= hfa384x_drvr_getconfig(hw
,
2051 HFA384x_RID_CURRENTBSSID
,
2052 wlandev
->bssid
, WLAN_BSSID_LEN
);
2054 pr_debug("getconfig(0x%02x) failed, result = %d\n",
2055 HFA384x_RID_CURRENTBSSID
, result
);
2059 result
= hfa384x_drvr_getconfig(hw
,
2060 HFA384x_RID_CURRENTSSID
,
2061 &ssid
, sizeof(ssid
));
2063 pr_debug("getconfig(0x%02x) failed, result = %d\n",
2064 HFA384x_RID_CURRENTSSID
, result
);
2067 prism2mgmt_bytestr2pstr((hfa384x_bytestr_t
*) &ssid
,
2068 (p80211pstrd_t
*) &wlandev
->ssid
);
2070 /* Reschedule timer */
2071 mod_timer(&hw
->commsqual_timer
, jiffies
+ HZ
);
2077 void prism2sta_commsqual_timer(unsigned long data
)
2079 hfa384x_t
*hw
= (hfa384x_t
*) data
;
2081 schedule_work(&hw
->commsqual_bh
);