2 * This file implement the Wireless Extensions APIs.
4 * Authors : Jean Tourrilhes - HPL - <jt@hpl.hp.com>
5 * Copyright (c) 1997-2007 Jean Tourrilhes, All Rights Reserved.
7 * (As all part of the Linux kernel, this file is GPL)
10 /************************** DOCUMENTATION **************************/
14 * See <linux/wireless.h> for details of the APIs and the rest.
19 * v1 - 5.12.01 - Jean II
20 * o Created this file.
22 * v2 - 13.12.01 - Jean II
23 * o Move /proc/net/wireless stuff from net/core/dev.c to here
24 * o Make Wireless Extension IOCTLs go through here
25 * o Added iw_handler handling ;-)
26 * o Added standard ioctl description
27 * o Initial dumb commit strategy based on orinoco.c
29 * v3 - 19.12.01 - Jean II
30 * o Make sure we don't go out of standard_ioctl[] in ioctl_standard_call
31 * o Add event dispatcher function
32 * o Add event description
33 * o Propagate events as rtnetlink IFLA_WIRELESS option
34 * o Generate event on selected SET requests
36 * v4 - 18.04.02 - Jean II
37 * o Fix stupid off by one in iw_ioctl_description : IW_ESSID_MAX_SIZE + 1
39 * v5 - 21.06.02 - Jean II
40 * o Add IW_PRIV_TYPE_ADDR in priv_type_size (+cleanup)
41 * o Reshuffle IW_HEADER_TYPE_XXX to map IW_PRIV_TYPE_XXX changes
42 * o Add IWEVCUSTOM for driver specific event/scanning token
43 * o Turn on WE_STRICT_WRITE by default + kernel warning
44 * o Fix WE_STRICT_WRITE in ioctl_export_private() (32 => iw_num)
45 * o Fix off-by-one in test (extra_size <= IFNAMSIZ)
47 * v6 - 9.01.03 - Jean II
48 * o Add common spy support : iw_handler_set_spy(), wireless_spy_update()
49 * o Add enhanced spy support : iw_handler_set_thrspy() and event.
50 * o Add WIRELESS_EXT version display in /proc/net/wireless
52 * v6 - 18.06.04 - Jean II
53 * o Change get_spydata() method for added safety
54 * o Remove spy #ifdef, they are always on -> cleaner code
55 * o Allow any size GET request if user specifies length > max
56 * and if request has IW_DESCR_FLAG_NOMAX flag or is SIOCGIWPRIV
57 * o Start migrating get_wireless_stats to struct iw_handler_def
58 * o Add wmb() in iw_handler_set_spy() for non-coherent archs/cpus
59 * Based on patch from Pavel Roskin <proski@gnu.org> :
60 * o Fix kernel data leak to user space in private handler handling
62 * v7 - 18.3.05 - Jean II
63 * o Remove (struct iw_point *)->pointer from events and streams
64 * o Remove spy_offset from struct iw_handler_def
65 * o Start deprecating dev->get_wireless_stats, output a warning
66 * o If IW_QUAL_DBM is set, show dBm values in /proc/net/wireless
67 * o Don't loose INVALID/DBM flags when clearing UPDATED flags (iwstats)
69 * v8 - 17.02.06 - Jean II
70 * o RtNetlink requests support (SET/GET)
72 * v8b - 03.08.06 - Herbert Xu
73 * o Fix Wireless Event locking issues.
75 * v9 - 14.3.06 - Jean II
76 * o Change length in ESSID and NICK to strlen() instead of strlen()+1
77 * o Make standard_ioctl_num and standard_event_num unsigned
78 * o Remove (struct net_device *)->get_wireless_stats()
80 * v10 - 16.3.07 - Jean II
81 * o Prevent leaking of kernel space in stream on 64 bits.
84 /***************************** INCLUDES *****************************/
86 #include <linux/module.h>
87 #include <linux/types.h> /* off_t */
88 #include <linux/netdevice.h> /* struct ifreq, dev_get_by_name() */
89 #include <linux/proc_fs.h>
90 #include <linux/rtnetlink.h> /* rtnetlink stuff */
91 #include <linux/seq_file.h>
92 #include <linux/init.h> /* for __init */
93 #include <linux/if_arp.h> /* ARPHRD_ETHER */
94 #include <linux/etherdevice.h> /* compare_ether_addr */
95 #include <linux/interrupt.h>
96 #include <net/net_namespace.h>
98 #include <linux/wireless.h> /* Pretty obvious */
99 #include <net/iw_handler.h> /* New driver API */
100 #include <net/netlink.h>
101 #include <net/wext.h>
103 #include <asm/uaccess.h> /* copy_to_user() */
105 /************************* GLOBAL VARIABLES *************************/
107 * You should not use global variables, because of re-entrancy.
108 * On our case, it's only const, so it's OK...
111 * Meta-data about all the standard Wireless Extension request we
114 static const struct iw_ioctl_description standard_ioctl[] = {
115 [SIOCSIWCOMMIT - SIOCIWFIRST] = {
116 .header_type = IW_HEADER_TYPE_NULL,
118 [SIOCGIWNAME - SIOCIWFIRST] = {
119 .header_type = IW_HEADER_TYPE_CHAR,
120 .flags = IW_DESCR_FLAG_DUMP,
122 [SIOCSIWNWID - SIOCIWFIRST] = {
123 .header_type = IW_HEADER_TYPE_PARAM,
124 .flags = IW_DESCR_FLAG_EVENT,
126 [SIOCGIWNWID - SIOCIWFIRST] = {
127 .header_type = IW_HEADER_TYPE_PARAM,
128 .flags = IW_DESCR_FLAG_DUMP,
130 [SIOCSIWFREQ - SIOCIWFIRST] = {
131 .header_type = IW_HEADER_TYPE_FREQ,
132 .flags = IW_DESCR_FLAG_EVENT,
134 [SIOCGIWFREQ - SIOCIWFIRST] = {
135 .header_type = IW_HEADER_TYPE_FREQ,
136 .flags = IW_DESCR_FLAG_DUMP,
138 [SIOCSIWMODE - SIOCIWFIRST] = {
139 .header_type = IW_HEADER_TYPE_UINT,
140 .flags = IW_DESCR_FLAG_EVENT,
142 [SIOCGIWMODE - SIOCIWFIRST] = {
143 .header_type = IW_HEADER_TYPE_UINT,
144 .flags = IW_DESCR_FLAG_DUMP,
146 [SIOCSIWSENS - SIOCIWFIRST] = {
147 .header_type = IW_HEADER_TYPE_PARAM,
149 [SIOCGIWSENS - SIOCIWFIRST] = {
150 .header_type = IW_HEADER_TYPE_PARAM,
152 [SIOCSIWRANGE - SIOCIWFIRST] = {
153 .header_type = IW_HEADER_TYPE_NULL,
155 [SIOCGIWRANGE - SIOCIWFIRST] = {
156 .header_type = IW_HEADER_TYPE_POINT,
158 .max_tokens = sizeof(struct iw_range),
159 .flags = IW_DESCR_FLAG_DUMP,
161 [SIOCSIWPRIV - SIOCIWFIRST] = {
162 .header_type = IW_HEADER_TYPE_NULL,
164 [SIOCGIWPRIV - SIOCIWFIRST] = { /* (handled directly by us) */
165 .header_type = IW_HEADER_TYPE_POINT,
166 .token_size = sizeof(struct iw_priv_args),
168 .flags = IW_DESCR_FLAG_NOMAX,
170 [SIOCSIWSTATS - SIOCIWFIRST] = {
171 .header_type = IW_HEADER_TYPE_NULL,
173 [SIOCGIWSTATS - SIOCIWFIRST] = { /* (handled directly by us) */
174 .header_type = IW_HEADER_TYPE_POINT,
176 .max_tokens = sizeof(struct iw_statistics),
177 .flags = IW_DESCR_FLAG_DUMP,
179 [SIOCSIWSPY - SIOCIWFIRST] = {
180 .header_type = IW_HEADER_TYPE_POINT,
181 .token_size = sizeof(struct sockaddr),
182 .max_tokens = IW_MAX_SPY,
184 [SIOCGIWSPY - SIOCIWFIRST] = {
185 .header_type = IW_HEADER_TYPE_POINT,
186 .token_size = sizeof(struct sockaddr) +
187 sizeof(struct iw_quality),
188 .max_tokens = IW_MAX_SPY,
190 [SIOCSIWTHRSPY - SIOCIWFIRST] = {
191 .header_type = IW_HEADER_TYPE_POINT,
192 .token_size = sizeof(struct iw_thrspy),
196 [SIOCGIWTHRSPY - SIOCIWFIRST] = {
197 .header_type = IW_HEADER_TYPE_POINT,
198 .token_size = sizeof(struct iw_thrspy),
202 [SIOCSIWAP - SIOCIWFIRST] = {
203 .header_type = IW_HEADER_TYPE_ADDR,
205 [SIOCGIWAP - SIOCIWFIRST] = {
206 .header_type = IW_HEADER_TYPE_ADDR,
207 .flags = IW_DESCR_FLAG_DUMP,
209 [SIOCSIWMLME - SIOCIWFIRST] = {
210 .header_type = IW_HEADER_TYPE_POINT,
212 .min_tokens = sizeof(struct iw_mlme),
213 .max_tokens = sizeof(struct iw_mlme),
215 [SIOCGIWAPLIST - SIOCIWFIRST] = {
216 .header_type = IW_HEADER_TYPE_POINT,
217 .token_size = sizeof(struct sockaddr) +
218 sizeof(struct iw_quality),
219 .max_tokens = IW_MAX_AP,
220 .flags = IW_DESCR_FLAG_NOMAX,
222 [SIOCSIWSCAN - SIOCIWFIRST] = {
223 .header_type = IW_HEADER_TYPE_POINT,
226 .max_tokens = sizeof(struct iw_scan_req),
228 [SIOCGIWSCAN - SIOCIWFIRST] = {
229 .header_type = IW_HEADER_TYPE_POINT,
231 .max_tokens = IW_SCAN_MAX_DATA,
232 .flags = IW_DESCR_FLAG_NOMAX,
234 [SIOCSIWESSID - SIOCIWFIRST] = {
235 .header_type = IW_HEADER_TYPE_POINT,
237 .max_tokens = IW_ESSID_MAX_SIZE,
238 .flags = IW_DESCR_FLAG_EVENT,
240 [SIOCGIWESSID - SIOCIWFIRST] = {
241 .header_type = IW_HEADER_TYPE_POINT,
243 .max_tokens = IW_ESSID_MAX_SIZE,
244 .flags = IW_DESCR_FLAG_DUMP,
246 [SIOCSIWNICKN - SIOCIWFIRST] = {
247 .header_type = IW_HEADER_TYPE_POINT,
249 .max_tokens = IW_ESSID_MAX_SIZE,
251 [SIOCGIWNICKN - SIOCIWFIRST] = {
252 .header_type = IW_HEADER_TYPE_POINT,
254 .max_tokens = IW_ESSID_MAX_SIZE,
256 [SIOCSIWRATE - SIOCIWFIRST] = {
257 .header_type = IW_HEADER_TYPE_PARAM,
259 [SIOCGIWRATE - SIOCIWFIRST] = {
260 .header_type = IW_HEADER_TYPE_PARAM,
262 [SIOCSIWRTS - SIOCIWFIRST] = {
263 .header_type = IW_HEADER_TYPE_PARAM,
265 [SIOCGIWRTS - SIOCIWFIRST] = {
266 .header_type = IW_HEADER_TYPE_PARAM,
268 [SIOCSIWFRAG - SIOCIWFIRST] = {
269 .header_type = IW_HEADER_TYPE_PARAM,
271 [SIOCGIWFRAG - SIOCIWFIRST] = {
272 .header_type = IW_HEADER_TYPE_PARAM,
274 [SIOCSIWTXPOW - SIOCIWFIRST] = {
275 .header_type = IW_HEADER_TYPE_PARAM,
277 [SIOCGIWTXPOW - SIOCIWFIRST] = {
278 .header_type = IW_HEADER_TYPE_PARAM,
280 [SIOCSIWRETRY - SIOCIWFIRST] = {
281 .header_type = IW_HEADER_TYPE_PARAM,
283 [SIOCGIWRETRY - SIOCIWFIRST] = {
284 .header_type = IW_HEADER_TYPE_PARAM,
286 [SIOCSIWENCODE - SIOCIWFIRST] = {
287 .header_type = IW_HEADER_TYPE_POINT,
289 .max_tokens = IW_ENCODING_TOKEN_MAX,
290 .flags = IW_DESCR_FLAG_EVENT | IW_DESCR_FLAG_RESTRICT,
292 [SIOCGIWENCODE - SIOCIWFIRST] = {
293 .header_type = IW_HEADER_TYPE_POINT,
295 .max_tokens = IW_ENCODING_TOKEN_MAX,
296 .flags = IW_DESCR_FLAG_DUMP | IW_DESCR_FLAG_RESTRICT,
298 [SIOCSIWPOWER - SIOCIWFIRST] = {
299 .header_type = IW_HEADER_TYPE_PARAM,
301 [SIOCGIWPOWER - SIOCIWFIRST] = {
302 .header_type = IW_HEADER_TYPE_PARAM,
304 [SIOCSIWGENIE - SIOCIWFIRST] = {
305 .header_type = IW_HEADER_TYPE_POINT,
307 .max_tokens = IW_GENERIC_IE_MAX,
309 [SIOCGIWGENIE - SIOCIWFIRST] = {
310 .header_type = IW_HEADER_TYPE_POINT,
312 .max_tokens = IW_GENERIC_IE_MAX,
314 [SIOCSIWAUTH - SIOCIWFIRST] = {
315 .header_type = IW_HEADER_TYPE_PARAM,
317 [SIOCGIWAUTH - SIOCIWFIRST] = {
318 .header_type = IW_HEADER_TYPE_PARAM,
320 [SIOCSIWENCODEEXT - SIOCIWFIRST] = {
321 .header_type = IW_HEADER_TYPE_POINT,
323 .min_tokens = sizeof(struct iw_encode_ext),
324 .max_tokens = sizeof(struct iw_encode_ext) +
325 IW_ENCODING_TOKEN_MAX,
327 [SIOCGIWENCODEEXT - SIOCIWFIRST] = {
328 .header_type = IW_HEADER_TYPE_POINT,
330 .min_tokens = sizeof(struct iw_encode_ext),
331 .max_tokens = sizeof(struct iw_encode_ext) +
332 IW_ENCODING_TOKEN_MAX,
334 [SIOCSIWPMKSA - SIOCIWFIRST] = {
335 .header_type = IW_HEADER_TYPE_POINT,
337 .min_tokens = sizeof(struct iw_pmksa),
338 .max_tokens = sizeof(struct iw_pmksa),
341 static const unsigned standard_ioctl_num = ARRAY_SIZE(standard_ioctl);
344 * Meta-data about all the additional standard Wireless Extension events
347 static const struct iw_ioctl_description standard_event[] = {
348 [IWEVTXDROP - IWEVFIRST] = {
349 .header_type = IW_HEADER_TYPE_ADDR,
351 [IWEVQUAL - IWEVFIRST] = {
352 .header_type = IW_HEADER_TYPE_QUAL,
354 [IWEVCUSTOM - IWEVFIRST] = {
355 .header_type = IW_HEADER_TYPE_POINT,
357 .max_tokens = IW_CUSTOM_MAX,
359 [IWEVREGISTERED - IWEVFIRST] = {
360 .header_type = IW_HEADER_TYPE_ADDR,
362 [IWEVEXPIRED - IWEVFIRST] = {
363 .header_type = IW_HEADER_TYPE_ADDR,
365 [IWEVGENIE - IWEVFIRST] = {
366 .header_type = IW_HEADER_TYPE_POINT,
368 .max_tokens = IW_GENERIC_IE_MAX,
370 [IWEVMICHAELMICFAILURE - IWEVFIRST] = {
371 .header_type = IW_HEADER_TYPE_POINT,
373 .max_tokens = sizeof(struct iw_michaelmicfailure),
375 [IWEVASSOCREQIE - IWEVFIRST] = {
376 .header_type = IW_HEADER_TYPE_POINT,
378 .max_tokens = IW_GENERIC_IE_MAX,
380 [IWEVASSOCRESPIE - IWEVFIRST] = {
381 .header_type = IW_HEADER_TYPE_POINT,
383 .max_tokens = IW_GENERIC_IE_MAX,
385 [IWEVPMKIDCAND - IWEVFIRST] = {
386 .header_type = IW_HEADER_TYPE_POINT,
388 .max_tokens = sizeof(struct iw_pmkid_cand),
391 static const unsigned standard_event_num = ARRAY_SIZE(standard_event);
393 /* Size (in bytes) of the various private data types */
394 static const char iw_priv_type_size[] = {
395 0, /* IW_PRIV_TYPE_NONE */
396 1, /* IW_PRIV_TYPE_BYTE */
397 1, /* IW_PRIV_TYPE_CHAR */
399 sizeof(__u32), /* IW_PRIV_TYPE_INT */
400 sizeof(struct iw_freq), /* IW_PRIV_TYPE_FLOAT */
401 sizeof(struct sockaddr), /* IW_PRIV_TYPE_ADDR */
405 /* Size (in bytes) of various events */
406 static const int event_type_size[] = {
407 IW_EV_LCP_LEN, /* IW_HEADER_TYPE_NULL */
409 IW_EV_CHAR_LEN, /* IW_HEADER_TYPE_CHAR */
411 IW_EV_UINT_LEN, /* IW_HEADER_TYPE_UINT */
412 IW_EV_FREQ_LEN, /* IW_HEADER_TYPE_FREQ */
413 IW_EV_ADDR_LEN, /* IW_HEADER_TYPE_ADDR */
415 IW_EV_POINT_LEN, /* Without variable payload */
416 IW_EV_PARAM_LEN, /* IW_HEADER_TYPE_PARAM */
417 IW_EV_QUAL_LEN, /* IW_HEADER_TYPE_QUAL */
420 /* Size (in bytes) of various events, as packed */
421 static const int event_type_pk_size[] = {
422 IW_EV_LCP_PK_LEN, /* IW_HEADER_TYPE_NULL */
424 IW_EV_CHAR_PK_LEN, /* IW_HEADER_TYPE_CHAR */
426 IW_EV_UINT_PK_LEN, /* IW_HEADER_TYPE_UINT */
427 IW_EV_FREQ_PK_LEN, /* IW_HEADER_TYPE_FREQ */
428 IW_EV_ADDR_PK_LEN, /* IW_HEADER_TYPE_ADDR */
430 IW_EV_POINT_PK_LEN, /* Without variable payload */
431 IW_EV_PARAM_PK_LEN, /* IW_HEADER_TYPE_PARAM */
432 IW_EV_QUAL_PK_LEN, /* IW_HEADER_TYPE_QUAL */
435 /************************ COMMON SUBROUTINES ************************/
437 * Stuff that may be used in various place or doesn't fit in one
438 * of the section below.
441 /* ---------------------------------------------------------------- */
443 * Return the driver handler associated with a specific Wireless Extension.
445 static iw_handler get_handler(struct net_device *dev, unsigned int cmd)
447 /* Don't "optimise" the following variable, it will crash */
448 unsigned int index; /* *MUST* be unsigned */
450 /* Check if we have some wireless handlers defined */
451 if (dev->wireless_handlers == NULL)
454 /* Try as a standard command */
455 index = cmd - SIOCIWFIRST;
456 if (index < dev->wireless_handlers->num_standard)
457 return dev->wireless_handlers->standard[index];
459 /* Try as a private command */
460 index = cmd - SIOCIWFIRSTPRIV;
461 if (index < dev->wireless_handlers->num_private)
462 return dev->wireless_handlers->private[index];
468 /* ---------------------------------------------------------------- */
470 * Get statistics out of the driver
472 static struct iw_statistics *get_wireless_stats(struct net_device *dev)
475 if ((dev->wireless_handlers != NULL) &&
476 (dev->wireless_handlers->get_wireless_stats != NULL))
477 return dev->wireless_handlers->get_wireless_stats(dev);
483 /* ---------------------------------------------------------------- */
485 * Call the commit handler in the driver
486 * (if exist and if conditions are right)
488 * Note : our current commit strategy is currently pretty dumb,
489 * but we will be able to improve on that...
490 * The goal is to try to agreagate as many changes as possible
491 * before doing the commit. Drivers that will define a commit handler
492 * are usually those that need a reset after changing parameters, so
493 * we want to minimise the number of reset.
494 * A cool idea is to use a timer : at each "set" command, we re-set the
495 * timer, when the timer eventually fires, we call the driver.
496 * Hopefully, more on that later.
498 * Also, I'm waiting to see how many people will complain about the
499 * netif_running(dev) test. I'm open on that one...
500 * Hopefully, the driver will remember to do a commit in "open()" ;-)
502 static int call_commit_handler(struct net_device *dev)
504 if ((netif_running(dev)) &&
505 (dev->wireless_handlers->standard[0] != NULL))
506 /* Call the commit handler on the driver */
507 return dev->wireless_handlers->standard[0](dev, NULL,
510 return 0; /* Command completed successfully */
513 /* ---------------------------------------------------------------- */
515 * Calculate size of private arguments
517 static inline int get_priv_size(__u16 args)
519 int num = args & IW_PRIV_SIZE_MASK;
520 int type = (args & IW_PRIV_TYPE_MASK) >> 12;
522 return num * iw_priv_type_size[type];
525 /* ---------------------------------------------------------------- */
527 * Re-calculate the size of private arguments
529 static inline int adjust_priv_size(__u16 args,
530 union iwreq_data * wrqu)
532 int num = wrqu->data.length;
533 int max = args & IW_PRIV_SIZE_MASK;
534 int type = (args & IW_PRIV_TYPE_MASK) >> 12;
536 /* Make sure the driver doesn't goof up */
540 return num * iw_priv_type_size[type];
543 /* ---------------------------------------------------------------- */
545 * Standard Wireless Handler : get wireless stats
546 * Allow programatic access to /proc/net/wireless even if /proc
547 * doesn't exist... Also more efficient...
549 static int iw_handler_get_iwstats(struct net_device * dev,
550 struct iw_request_info * info,
551 union iwreq_data * wrqu,
554 /* Get stats from the driver */
555 struct iw_statistics *stats;
557 stats = get_wireless_stats(dev);
559 /* Copy statistics to extra */
560 memcpy(extra, stats, sizeof(struct iw_statistics));
561 wrqu->data.length = sizeof(struct iw_statistics);
563 /* Check if we need to clear the updated flag */
564 if (wrqu->data.flags != 0)
565 stats->qual.updated &= ~IW_QUAL_ALL_UPDATED;
571 /* ---------------------------------------------------------------- */
573 * Standard Wireless Handler : get iwpriv definitions
574 * Export the driver private handler definition
575 * They will be picked up by tools like iwpriv...
577 static int iw_handler_get_private(struct net_device * dev,
578 struct iw_request_info * info,
579 union iwreq_data * wrqu,
582 /* Check if the driver has something to export */
583 if ((dev->wireless_handlers->num_private_args == 0) ||
584 (dev->wireless_handlers->private_args == NULL))
587 /* Check if there is enough buffer up there */
588 if (wrqu->data.length < dev->wireless_handlers->num_private_args) {
589 /* User space can't know in advance how large the buffer
590 * needs to be. Give it a hint, so that we can support
591 * any size buffer we want somewhat efficiently... */
592 wrqu->data.length = dev->wireless_handlers->num_private_args;
596 /* Set the number of available ioctls. */
597 wrqu->data.length = dev->wireless_handlers->num_private_args;
599 /* Copy structure to the user buffer. */
600 memcpy(extra, dev->wireless_handlers->private_args,
601 sizeof(struct iw_priv_args) * wrqu->data.length);
607 /******************** /proc/net/wireless SUPPORT ********************/
609 * The /proc/net/wireless file is a human readable user-space interface
610 * exporting various wireless specific statistics from the wireless devices.
611 * This is the most popular part of the Wireless Extensions ;-)
613 * This interface is a pure clone of /proc/net/dev (in net/core/dev.c).
614 * The content of the file is basically the content of "struct iw_statistics".
617 #ifdef CONFIG_PROC_FS
619 /* ---------------------------------------------------------------- */
621 * Print one entry (line) of /proc/net/wireless
623 static void wireless_seq_printf_stats(struct seq_file *seq,
624 struct net_device *dev)
626 /* Get stats from the driver */
627 struct iw_statistics *stats = get_wireless_stats(dev);
630 seq_printf(seq, "%6s: %04x %3d%c %3d%c %3d%c %6d %6d %6d "
632 dev->name, stats->status, stats->qual.qual,
633 stats->qual.updated & IW_QUAL_QUAL_UPDATED
635 ((__s32) stats->qual.level) -
636 ((stats->qual.updated & IW_QUAL_DBM) ? 0x100 : 0),
637 stats->qual.updated & IW_QUAL_LEVEL_UPDATED
639 ((__s32) stats->qual.noise) -
640 ((stats->qual.updated & IW_QUAL_DBM) ? 0x100 : 0),
641 stats->qual.updated & IW_QUAL_NOISE_UPDATED
643 stats->discard.nwid, stats->discard.code,
644 stats->discard.fragment, stats->discard.retries,
645 stats->discard.misc, stats->miss.beacon);
646 stats->qual.updated &= ~IW_QUAL_ALL_UPDATED;
650 /* ---------------------------------------------------------------- */
652 * Print info for /proc/net/wireless (print all entries)
654 static int wireless_seq_show(struct seq_file *seq, void *v)
656 if (v == SEQ_START_TOKEN)
657 seq_printf(seq, "Inter-| sta-| Quality | Discarded "
658 "packets | Missed | WE\n"
659 " face | tus | link level noise | nwid "
660 "crypt frag retry misc | beacon | %d\n",
663 wireless_seq_printf_stats(seq, v);
667 static const struct seq_operations wireless_seq_ops = {
668 .start = dev_seq_start,
669 .next = dev_seq_next,
670 .stop = dev_seq_stop,
671 .show = wireless_seq_show,
674 static int wireless_seq_open(struct inode *inode, struct file *file)
676 struct seq_file *seq;
678 res = seq_open(file, &wireless_seq_ops);
680 seq = file->private_data;
681 seq->private = get_proc_net(inode);
683 seq_release(inode, file);
690 static int wireless_seq_release(struct inode *inode, struct file *file)
692 struct seq_file *seq = file->private_data;
693 struct net *net = seq->private;
695 return seq_release(inode, file);
698 static const struct file_operations wireless_seq_fops = {
699 .owner = THIS_MODULE,
700 .open = wireless_seq_open,
703 .release = wireless_seq_release,
706 int wext_proc_init(struct net *net)
708 /* Create /proc/net/wireless entry */
709 if (!proc_net_fops_create(net, "wireless", S_IRUGO, &wireless_seq_fops))
715 void wext_proc_exit(struct net *net)
717 proc_net_remove(net, "wireless");
719 #endif /* CONFIG_PROC_FS */
721 /************************** IOCTL SUPPORT **************************/
723 * The original user space API to configure all those Wireless Extensions
725 * In there, we check if we need to call the new driver API (iw_handler)
726 * or just call the driver ioctl handler.
729 /* ---------------------------------------------------------------- */
731 * Wrapper to call a standard Wireless Extension handler.
732 * We do various checks and also take care of moving data between
733 * user space and kernel space.
735 static int ioctl_standard_call(struct net_device * dev,
740 struct iwreq * iwr = (struct iwreq *) ifr;
741 const struct iw_ioctl_description * descr;
742 struct iw_request_info info;
745 /* Get the description of the IOCTL */
746 if ((cmd - SIOCIWFIRST) >= standard_ioctl_num)
748 descr = &(standard_ioctl[cmd - SIOCIWFIRST]);
750 /* Prepare the call */
754 /* Check if we have a pointer to user space data or not */
755 if (descr->header_type != IW_HEADER_TYPE_POINT) {
757 /* No extra arguments. Trivial to handle */
758 ret = handler(dev, &info, &(iwr->u), NULL);
760 /* Generate an event to notify listeners of the change */
761 if ((descr->flags & IW_DESCR_FLAG_EVENT) &&
762 ((ret == 0) || (ret == -EIWCOMMIT)))
763 wireless_send_event(dev, cmd, &(iwr->u), NULL);
769 int essid_compat = 0;
771 /* Calculate space needed by arguments. Always allocate
772 * for max space. Easier, and won't last long... */
773 extra_size = descr->max_tokens * descr->token_size;
775 /* Check need for ESSID compatibility for WE < 21 */
781 if (iwr->u.data.length == descr->max_tokens + 1)
783 else if (IW_IS_SET(cmd) && (iwr->u.data.length != 0)) {
784 char essid[IW_ESSID_MAX_SIZE + 1];
786 err = copy_from_user(essid, iwr->u.data.pointer,
792 if (essid[iwr->u.data.length - 1] == '\0')
800 iwr->u.data.length -= essid_compat;
802 /* Check what user space is giving us */
803 if (IW_IS_SET(cmd)) {
804 /* Check NULL pointer */
805 if ((iwr->u.data.pointer == NULL) &&
806 (iwr->u.data.length != 0))
808 /* Check if number of token fits within bounds */
809 if (iwr->u.data.length > descr->max_tokens)
811 if (iwr->u.data.length < descr->min_tokens)
814 /* Check NULL pointer */
815 if (iwr->u.data.pointer == NULL)
817 /* Save user space buffer size for checking */
818 user_length = iwr->u.data.length;
820 /* Don't check if user_length > max to allow forward
821 * compatibility. The test user_length < min is
822 * implied by the test at the end. */
824 /* Support for very large requests */
825 if ((descr->flags & IW_DESCR_FLAG_NOMAX) &&
826 (user_length > descr->max_tokens)) {
827 /* Allow userspace to GET more than max so
828 * we can support any size GET requests.
829 * There is still a limit : -ENOMEM. */
830 extra_size = user_length * descr->token_size;
831 /* Note : user_length is originally a __u16,
832 * and token_size is controlled by us,
833 * so extra_size won't get negative and
834 * won't overflow... */
838 /* Create the kernel buffer */
839 /* kzalloc ensures NULL-termination for essid_compat */
840 extra = kzalloc(extra_size, GFP_KERNEL);
844 /* If it is a SET, get all the extra data in here */
845 if (IW_IS_SET(cmd) && (iwr->u.data.length != 0)) {
846 err = copy_from_user(extra, iwr->u.data.pointer,
855 /* Call the handler */
856 ret = handler(dev, &info, &(iwr->u), extra);
858 iwr->u.data.length += essid_compat;
860 /* If we have something to return to the user */
861 if (!ret && IW_IS_GET(cmd)) {
862 /* Check if there is enough buffer up there */
863 if (user_length < iwr->u.data.length) {
868 err = copy_to_user(iwr->u.data.pointer, extra,
875 /* Generate an event to notify listeners of the change */
876 if ((descr->flags & IW_DESCR_FLAG_EVENT) &&
877 ((ret == 0) || (ret == -EIWCOMMIT))) {
878 if (descr->flags & IW_DESCR_FLAG_RESTRICT)
879 /* If the event is restricted, don't
880 * export the payload */
881 wireless_send_event(dev, cmd, &(iwr->u), NULL);
883 wireless_send_event(dev, cmd, &(iwr->u),
887 /* Cleanup - I told you it wasn't that long ;-) */
891 /* Call commit handler if needed and defined */
892 if (ret == -EIWCOMMIT)
893 ret = call_commit_handler(dev);
895 /* Here, we will generate the appropriate event if needed */
900 /* ---------------------------------------------------------------- */
902 * Wrapper to call a private Wireless Extension handler.
903 * We do various checks and also take care of moving data between
904 * user space and kernel space.
905 * It's not as nice and slimline as the standard wrapper. The cause
906 * is struct iw_priv_args, which was not really designed for the
907 * job we are going here.
909 * IMPORTANT : This function prevent to set and get data on the same
910 * IOCTL and enforce the SET/GET convention. Not doing it would be
912 * If you need to set and get data at the same time, please don't use
913 * a iw_handler but process it in your ioctl handler (i.e. use the
916 static int ioctl_private_call(struct net_device *dev, struct ifreq *ifr,
917 unsigned int cmd, iw_handler handler)
919 struct iwreq * iwr = (struct iwreq *) ifr;
920 const struct iw_priv_args * descr = NULL;
921 struct iw_request_info info;
926 /* Get the description of the IOCTL */
927 for (i = 0; i < dev->wireless_handlers->num_private_args; i++)
928 if (cmd == dev->wireless_handlers->private_args[i].cmd) {
929 descr = &(dev->wireless_handlers->private_args[i]);
933 /* Compute the size of the set/get arguments */
935 if (IW_IS_SET(cmd)) {
936 int offset = 0; /* For sub-ioctls */
937 /* Check for sub-ioctl handler */
938 if (descr->name[0] == '\0')
939 /* Reserve one int for sub-ioctl index */
940 offset = sizeof(__u32);
942 /* Size of set arguments */
943 extra_size = get_priv_size(descr->set_args);
945 /* Does it fits in iwr ? */
946 if ((descr->set_args & IW_PRIV_SIZE_FIXED) &&
947 ((extra_size + offset) <= IFNAMSIZ))
950 /* Size of get arguments */
951 extra_size = get_priv_size(descr->get_args);
953 /* Does it fits in iwr ? */
954 if ((descr->get_args & IW_PRIV_SIZE_FIXED) &&
955 (extra_size <= IFNAMSIZ))
960 /* Prepare the call */
964 /* Check if we have a pointer to user space data or not. */
965 if (extra_size == 0) {
966 /* No extra arguments. Trivial to handle */
967 ret = handler(dev, &info, &(iwr->u), (char *) &(iwr->u));
972 /* Check what user space is giving us */
973 if (IW_IS_SET(cmd)) {
974 /* Check NULL pointer */
975 if ((iwr->u.data.pointer == NULL) &&
976 (iwr->u.data.length != 0))
979 /* Does it fits within bounds ? */
980 if (iwr->u.data.length > (descr->set_args &
983 } else if (iwr->u.data.pointer == NULL)
986 /* Always allocate for max space. Easier, and won't last
988 extra = kmalloc(extra_size, GFP_KERNEL);
992 /* If it is a SET, get all the extra data in here */
993 if (IW_IS_SET(cmd) && (iwr->u.data.length != 0)) {
994 err = copy_from_user(extra, iwr->u.data.pointer,
1002 /* Call the handler */
1003 ret = handler(dev, &info, &(iwr->u), extra);
1005 /* If we have something to return to the user */
1006 if (!ret && IW_IS_GET(cmd)) {
1008 /* Adjust for the actual length if it's variable,
1009 * avoid leaking kernel bits outside. */
1010 if (!(descr->get_args & IW_PRIV_SIZE_FIXED)) {
1011 extra_size = adjust_priv_size(descr->get_args,
1015 err = copy_to_user(iwr->u.data.pointer, extra,
1021 /* Cleanup - I told you it wasn't that long ;-) */
1026 /* Call commit handler if needed and defined */
1027 if (ret == -EIWCOMMIT)
1028 ret = call_commit_handler(dev);
1033 /* ---------------------------------------------------------------- */
1035 * Main IOCTl dispatcher.
1036 * Check the type of IOCTL and call the appropriate wrapper...
1038 static int wireless_process_ioctl(struct net *net, struct ifreq *ifr, unsigned int cmd)
1040 struct net_device *dev;
1043 /* Permissions are already checked in dev_ioctl() before calling us.
1044 * The copy_to/from_user() of ifr is also dealt with in there */
1046 /* Make sure the device exist */
1047 if ((dev = __dev_get_by_name(net, ifr->ifr_name)) == NULL)
1050 /* A bunch of special cases, then the generic case...
1051 * Note that 'cmd' is already filtered in dev_ioctl() with
1052 * (cmd >= SIOCIWFIRST && cmd <= SIOCIWLAST) */
1053 if (cmd == SIOCGIWSTATS)
1054 return ioctl_standard_call(dev, ifr, cmd,
1055 &iw_handler_get_iwstats);
1057 if (cmd == SIOCGIWPRIV && dev->wireless_handlers)
1058 return ioctl_standard_call(dev, ifr, cmd,
1059 &iw_handler_get_private);
1062 if (!netif_device_present(dev))
1065 /* New driver API : try to find the handler */
1066 handler = get_handler(dev, cmd);
1068 /* Standard and private are not the same */
1069 if (cmd < SIOCIWFIRSTPRIV)
1070 return ioctl_standard_call(dev, ifr, cmd, handler);
1072 return ioctl_private_call(dev, ifr, cmd, handler);
1074 /* Old driver API : call driver ioctl handler */
1076 return dev->do_ioctl(dev, ifr, cmd);
1080 /* entry point from dev ioctl */
1081 int wext_handle_ioctl(struct net *net, struct ifreq *ifr, unsigned int cmd,
1086 /* If command is `set a parameter', or
1087 * `get the encoding parameters', check if
1088 * the user has the right to do it */
1089 if ((IW_IS_SET(cmd) || cmd == SIOCGIWENCODE || cmd == SIOCGIWENCODEEXT)
1090 && !capable(CAP_NET_ADMIN))
1093 dev_load(net, ifr->ifr_name);
1095 ret = wireless_process_ioctl(net, ifr, cmd);
1097 if (IW_IS_GET(cmd) && copy_to_user(arg, ifr, sizeof(struct ifreq)))
1102 /************************* EVENT PROCESSING *************************/
1104 * Process events generated by the wireless layer or the driver.
1105 * Most often, the event will be propagated through rtnetlink
1108 /* ---------------------------------------------------------------- */
1113 * Thanks to Herbert Xu <herbert@gondor.apana.org.au> for fixing
1114 * the locking issue in here and implementing this code !
1116 * The issue : wireless_send_event() is often called in interrupt context,
1117 * while the Netlink layer can never be called in interrupt context.
1118 * The fully formed RtNetlink events are queued, and then a tasklet is run
1119 * to feed those to Netlink.
1120 * The skb_queue is interrupt safe, and its lock is not held while calling
1121 * Netlink, so there is no possibility of dealock.
1125 static struct sk_buff_head wireless_nlevent_queue;
1127 static int __init wireless_nlevent_init(void)
1129 skb_queue_head_init(&wireless_nlevent_queue);
1133 subsys_initcall(wireless_nlevent_init);
1135 static void wireless_nlevent_process(unsigned long data)
1137 struct sk_buff *skb;
1139 while ((skb = skb_dequeue(&wireless_nlevent_queue)))
1140 rtnl_notify(skb, 0, RTNLGRP_LINK, NULL, GFP_ATOMIC);
1143 static DECLARE_TASKLET(wireless_nlevent_tasklet, wireless_nlevent_process, 0);
1145 /* ---------------------------------------------------------------- */
1147 * Fill a rtnetlink message with our event data.
1148 * Note that we propage only the specified event and don't dump the
1149 * current wireless config. Dumping the wireless config is far too
1150 * expensive (for each parameter, the driver need to query the hardware).
1152 static int rtnetlink_fill_iwinfo(struct sk_buff *skb, struct net_device *dev,
1153 int type, char *event, int event_len)
1155 struct ifinfomsg *r;
1156 struct nlmsghdr *nlh;
1158 nlh = nlmsg_put(skb, 0, 0, type, sizeof(*r), 0);
1162 r = nlmsg_data(nlh);
1163 r->ifi_family = AF_UNSPEC;
1165 r->ifi_type = dev->type;
1166 r->ifi_index = dev->ifindex;
1167 r->ifi_flags = dev_get_flags(dev);
1168 r->ifi_change = 0; /* Wireless changes don't affect those flags */
1170 /* Add the wireless events in the netlink packet */
1171 NLA_PUT(skb, IFLA_WIRELESS, event_len, event);
1173 return nlmsg_end(skb, nlh);
1176 nlmsg_cancel(skb, nlh);
1180 /* ---------------------------------------------------------------- */
1182 * Create and broadcast and send it on the standard rtnetlink socket
1183 * This is a pure clone rtmsg_ifinfo() in net/core/rtnetlink.c
1184 * Andrzej Krzysztofowicz mandated that I used a IFLA_XXX field
1185 * within a RTM_NEWLINK event.
1187 static void rtmsg_iwinfo(struct net_device *dev, char *event, int event_len)
1189 struct sk_buff *skb;
1192 skb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_ATOMIC);
1196 err = rtnetlink_fill_iwinfo(skb, dev, RTM_NEWLINK, event, event_len);
1198 WARN_ON(err == -EMSGSIZE);
1203 NETLINK_CB(skb).dst_group = RTNLGRP_LINK;
1204 skb_queue_tail(&wireless_nlevent_queue, skb);
1205 tasklet_schedule(&wireless_nlevent_tasklet);
1208 /* ---------------------------------------------------------------- */
1210 * Main event dispatcher. Called from other parts and drivers.
1211 * Send the event on the appropriate channels.
1212 * May be called from interrupt context.
1214 void wireless_send_event(struct net_device * dev,
1216 union iwreq_data * wrqu,
1219 const struct iw_ioctl_description * descr = NULL;
1221 struct iw_event *event; /* Mallocated whole event */
1222 int event_len; /* Its size */
1223 int hdr_len; /* Size of the event header */
1224 int wrqu_off = 0; /* Offset in wrqu */
1225 /* Don't "optimise" the following variable, it will crash */
1226 unsigned cmd_index; /* *MUST* be unsigned */
1228 /* Get the description of the Event */
1229 if (cmd <= SIOCIWLAST) {
1230 cmd_index = cmd - SIOCIWFIRST;
1231 if (cmd_index < standard_ioctl_num)
1232 descr = &(standard_ioctl[cmd_index]);
1234 cmd_index = cmd - IWEVFIRST;
1235 if (cmd_index < standard_event_num)
1236 descr = &(standard_event[cmd_index]);
1238 /* Don't accept unknown events */
1239 if (descr == NULL) {
1240 /* Note : we don't return an error to the driver, because
1241 * the driver would not know what to do about it. It can't
1242 * return an error to the user, because the event is not
1243 * initiated by a user request.
1244 * The best the driver could do is to log an error message.
1245 * We will do it ourselves instead...
1247 printk(KERN_ERR "%s (WE) : Invalid/Unknown Wireless Event (0x%04X)\n",
1252 /* Check extra parameters and set extra_len */
1253 if (descr->header_type == IW_HEADER_TYPE_POINT) {
1254 /* Check if number of token fits within bounds */
1255 if (wrqu->data.length > descr->max_tokens) {
1256 printk(KERN_ERR "%s (WE) : Wireless Event too big (%d)\n", dev->name, wrqu->data.length);
1259 if (wrqu->data.length < descr->min_tokens) {
1260 printk(KERN_ERR "%s (WE) : Wireless Event too small (%d)\n", dev->name, wrqu->data.length);
1263 /* Calculate extra_len - extra is NULL for restricted events */
1265 extra_len = wrqu->data.length * descr->token_size;
1266 /* Always at an offset in wrqu */
1267 wrqu_off = IW_EV_POINT_OFF;
1270 /* Total length of the event */
1271 hdr_len = event_type_size[descr->header_type];
1272 event_len = hdr_len + extra_len;
1274 /* Create temporary buffer to hold the event */
1275 event = kmalloc(event_len, GFP_ATOMIC);
1280 event->len = event_len;
1282 memcpy(&event->u, ((char *) wrqu) + wrqu_off, hdr_len - IW_EV_LCP_LEN);
1284 memcpy(((char *) event) + hdr_len, extra, extra_len);
1286 /* Send via the RtNetlink event channel */
1287 rtmsg_iwinfo(dev, (char *) event, event_len);
1292 return; /* Always success, I guess ;-) */
1294 EXPORT_SYMBOL(wireless_send_event);
1296 /********************** ENHANCED IWSPY SUPPORT **********************/
1298 * In the old days, the driver was handling spy support all by itself.
1299 * Now, the driver can delegate this task to Wireless Extensions.
1300 * It needs to use those standard spy iw_handler in struct iw_handler_def,
1301 * push data to us via wireless_spy_update() and include struct iw_spy_data
1302 * in its private part (and export it in net_device->wireless_data->spy_data).
1303 * One of the main advantage of centralising spy support here is that
1304 * it becomes much easier to improve and extend it without having to touch
1305 * the drivers. One example is the addition of the Spy-Threshold events.
1308 /* ---------------------------------------------------------------- */
1310 * Return the pointer to the spy data in the driver.
1311 * Because this is called on the Rx path via wireless_spy_update(),
1312 * we want it to be efficient...
1314 static inline struct iw_spy_data *get_spydata(struct net_device *dev)
1316 /* This is the new way */
1317 if (dev->wireless_data)
1318 return dev->wireless_data->spy_data;
1322 /*------------------------------------------------------------------*/
1324 * Standard Wireless Handler : set Spy List
1326 int iw_handler_set_spy(struct net_device * dev,
1327 struct iw_request_info * info,
1328 union iwreq_data * wrqu,
1331 struct iw_spy_data * spydata = get_spydata(dev);
1332 struct sockaddr * address = (struct sockaddr *) extra;
1334 /* Make sure driver is not buggy or using the old API */
1338 /* Disable spy collection while we copy the addresses.
1339 * While we copy addresses, any call to wireless_spy_update()
1340 * will NOP. This is OK, as anyway the addresses are changing. */
1341 spydata->spy_number = 0;
1343 /* We want to operate without locking, because wireless_spy_update()
1344 * most likely will happen in the interrupt handler, and therefore
1345 * have its own locking constraints and needs performance.
1346 * The rtnl_lock() make sure we don't race with the other iw_handlers.
1347 * This make sure wireless_spy_update() "see" that the spy list
1348 * is temporarily disabled. */
1351 /* Are there are addresses to copy? */
1352 if (wrqu->data.length > 0) {
1355 /* Copy addresses */
1356 for (i = 0; i < wrqu->data.length; i++)
1357 memcpy(spydata->spy_address[i], address[i].sa_data,
1360 memset(spydata->spy_stat, 0,
1361 sizeof(struct iw_quality) * IW_MAX_SPY);
1364 /* Make sure above is updated before re-enabling */
1367 /* Enable addresses */
1368 spydata->spy_number = wrqu->data.length;
1372 EXPORT_SYMBOL(iw_handler_set_spy);
1374 /*------------------------------------------------------------------*/
1376 * Standard Wireless Handler : get Spy List
1378 int iw_handler_get_spy(struct net_device * dev,
1379 struct iw_request_info * info,
1380 union iwreq_data * wrqu,
1383 struct iw_spy_data * spydata = get_spydata(dev);
1384 struct sockaddr * address = (struct sockaddr *) extra;
1387 /* Make sure driver is not buggy or using the old API */
1391 wrqu->data.length = spydata->spy_number;
1393 /* Copy addresses. */
1394 for (i = 0; i < spydata->spy_number; i++) {
1395 memcpy(address[i].sa_data, spydata->spy_address[i], ETH_ALEN);
1396 address[i].sa_family = AF_UNIX;
1398 /* Copy stats to the user buffer (just after). */
1399 if (spydata->spy_number > 0)
1400 memcpy(extra + (sizeof(struct sockaddr) *spydata->spy_number),
1402 sizeof(struct iw_quality) * spydata->spy_number);
1403 /* Reset updated flags. */
1404 for (i = 0; i < spydata->spy_number; i++)
1405 spydata->spy_stat[i].updated &= ~IW_QUAL_ALL_UPDATED;
1408 EXPORT_SYMBOL(iw_handler_get_spy);
1410 /*------------------------------------------------------------------*/
1412 * Standard Wireless Handler : set spy threshold
1414 int iw_handler_set_thrspy(struct net_device * dev,
1415 struct iw_request_info *info,
1416 union iwreq_data * wrqu,
1419 struct iw_spy_data * spydata = get_spydata(dev);
1420 struct iw_thrspy * threshold = (struct iw_thrspy *) extra;
1422 /* Make sure driver is not buggy or using the old API */
1427 memcpy(&(spydata->spy_thr_low), &(threshold->low),
1428 2 * sizeof(struct iw_quality));
1431 memset(spydata->spy_thr_under, '\0', sizeof(spydata->spy_thr_under));
1435 EXPORT_SYMBOL(iw_handler_set_thrspy);
1437 /*------------------------------------------------------------------*/
1439 * Standard Wireless Handler : get spy threshold
1441 int iw_handler_get_thrspy(struct net_device * dev,
1442 struct iw_request_info *info,
1443 union iwreq_data * wrqu,
1446 struct iw_spy_data * spydata = get_spydata(dev);
1447 struct iw_thrspy * threshold = (struct iw_thrspy *) extra;
1449 /* Make sure driver is not buggy or using the old API */
1454 memcpy(&(threshold->low), &(spydata->spy_thr_low),
1455 2 * sizeof(struct iw_quality));
1459 EXPORT_SYMBOL(iw_handler_get_thrspy);
1461 /*------------------------------------------------------------------*/
1463 * Prepare and send a Spy Threshold event
1465 static void iw_send_thrspy_event(struct net_device * dev,
1466 struct iw_spy_data * spydata,
1467 unsigned char * address,
1468 struct iw_quality * wstats)
1470 union iwreq_data wrqu;
1471 struct iw_thrspy threshold;
1474 wrqu.data.length = 1;
1475 wrqu.data.flags = 0;
1477 memcpy(threshold.addr.sa_data, address, ETH_ALEN);
1478 threshold.addr.sa_family = ARPHRD_ETHER;
1480 memcpy(&(threshold.qual), wstats, sizeof(struct iw_quality));
1481 /* Copy also thresholds */
1482 memcpy(&(threshold.low), &(spydata->spy_thr_low),
1483 2 * sizeof(struct iw_quality));
1485 /* Send event to user space */
1486 wireless_send_event(dev, SIOCGIWTHRSPY, &wrqu, (char *) &threshold);
1489 /* ---------------------------------------------------------------- */
1491 * Call for the driver to update the spy data.
1492 * For now, the spy data is a simple array. As the size of the array is
1493 * small, this is good enough. If we wanted to support larger number of
1494 * spy addresses, we should use something more efficient...
1496 void wireless_spy_update(struct net_device * dev,
1497 unsigned char * address,
1498 struct iw_quality * wstats)
1500 struct iw_spy_data * spydata = get_spydata(dev);
1504 /* Make sure driver is not buggy or using the old API */
1508 /* Update all records that match */
1509 for (i = 0; i < spydata->spy_number; i++)
1510 if (!compare_ether_addr(address, spydata->spy_address[i])) {
1511 memcpy(&(spydata->spy_stat[i]), wstats,
1512 sizeof(struct iw_quality));
1516 /* Generate an event if we cross the spy threshold.
1517 * To avoid event storms, we have a simple hysteresis : we generate
1518 * event only when we go under the low threshold or above the
1519 * high threshold. */
1521 if (spydata->spy_thr_under[match]) {
1522 if (wstats->level > spydata->spy_thr_high.level) {
1523 spydata->spy_thr_under[match] = 0;
1524 iw_send_thrspy_event(dev, spydata,
1528 if (wstats->level < spydata->spy_thr_low.level) {
1529 spydata->spy_thr_under[match] = 1;
1530 iw_send_thrspy_event(dev, spydata,
1536 EXPORT_SYMBOL(wireless_spy_update);