bcm43xx_wx.c 27 KB

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  1. /*
  2. Broadcom BCM43xx wireless driver
  3. Copyright (c) 2005 Martin Langer <martin-langer@gmx.de>,
  4. Stefano Brivio <st3@riseup.net>
  5. Michael Buesch <mbuesch@freenet.de>
  6. Danny van Dyk <kugelfang@gentoo.org>
  7. Andreas Jaggi <andreas.jaggi@waterwave.ch>
  8. Some parts of the code in this file are derived from the ipw2200
  9. driver Copyright(c) 2003 - 2004 Intel Corporation.
  10. This program is free software; you can redistribute it and/or modify
  11. it under the terms of the GNU General Public License as published by
  12. the Free Software Foundation; either version 2 of the License, or
  13. (at your option) any later version.
  14. This program is distributed in the hope that it will be useful,
  15. but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. GNU General Public License for more details.
  18. You should have received a copy of the GNU General Public License
  19. along with this program; see the file COPYING. If not, write to
  20. the Free Software Foundation, Inc., 51 Franklin Steet, Fifth Floor,
  21. Boston, MA 02110-1301, USA.
  22. */
  23. #include <linux/wireless.h>
  24. #include <net/iw_handler.h>
  25. #include <net/ieee80211softmac.h>
  26. #include <net/ieee80211softmac_wx.h>
  27. #include <linux/capability.h>
  28. #include <linux/sched.h> /* for capable() */
  29. #include <linux/delay.h>
  30. #include "bcm43xx.h"
  31. #include "bcm43xx_wx.h"
  32. #include "bcm43xx_main.h"
  33. #include "bcm43xx_radio.h"
  34. /* The WIRELESS_EXT version, which is implemented by this driver. */
  35. #define BCM43xx_WX_VERSION 18
  36. /* Define to enable a printk on each wx handler function invocation */
  37. //#define BCM43xx_WX_DEBUG
  38. #ifdef BCM43xx_WX_DEBUG
  39. # define printk_wx printk
  40. #else
  41. # define printk_wx(x...) do { /* nothing */ } while (0)
  42. #endif
  43. #define wx_enter() printk_wx(KERN_INFO PFX "WX handler called: %s\n", __FUNCTION__);
  44. #define MAX_WX_STRING 80
  45. static int bcm43xx_wx_get_name(struct net_device *net_dev,
  46. struct iw_request_info *info,
  47. union iwreq_data *data,
  48. char *extra)
  49. {
  50. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  51. unsigned long flags;
  52. int i, nr_80211;
  53. struct bcm43xx_phyinfo *phy;
  54. char suffix[7] = { 0 };
  55. int have_a = 0, have_b = 0, have_g = 0;
  56. wx_enter();
  57. spin_lock_irqsave(&bcm->lock, flags);
  58. nr_80211 = bcm43xx_num_80211_cores(bcm);
  59. for (i = 0; i < nr_80211; i++) {
  60. phy = bcm->phy + i;
  61. switch (phy->type) {
  62. case BCM43xx_PHYTYPE_A:
  63. have_a = 1;
  64. break;
  65. case BCM43xx_PHYTYPE_G:
  66. have_g = 1;
  67. case BCM43xx_PHYTYPE_B:
  68. have_b = 1;
  69. break;
  70. default:
  71. assert(0);
  72. }
  73. }
  74. spin_unlock_irqrestore(&bcm->lock, flags);
  75. i = 0;
  76. if (have_a) {
  77. suffix[i++] = 'a';
  78. suffix[i++] = '/';
  79. }
  80. if (have_b) {
  81. suffix[i++] = 'b';
  82. suffix[i++] = '/';
  83. }
  84. if (have_g) {
  85. suffix[i++] = 'g';
  86. suffix[i++] = '/';
  87. }
  88. if (i != 0)
  89. suffix[i - 1] = '\0';
  90. snprintf(data->name, IFNAMSIZ, "IEEE 802.11%s", suffix);
  91. return 0;
  92. }
  93. static int bcm43xx_wx_set_channelfreq(struct net_device *net_dev,
  94. struct iw_request_info *info,
  95. union iwreq_data *data,
  96. char *extra)
  97. {
  98. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  99. struct ieee80211softmac_device *softmac = bcm->softmac;
  100. unsigned long flags;
  101. u8 channel;
  102. int freq;
  103. int err = 0;
  104. wx_enter();
  105. if ((data->freq.m >= 0) && (data->freq.m <= 1000)) {
  106. channel = data->freq.m;
  107. freq = bcm43xx_channel_to_freq(bcm, channel);
  108. } else {
  109. channel = bcm43xx_freq_to_channel(bcm, data->freq.m);
  110. freq = data->freq.m;
  111. }
  112. if (!bcm43xx_is_valid_channel(bcm, channel))
  113. return -EINVAL;
  114. spin_lock_irqsave(&bcm->lock, flags);
  115. if (bcm->initialized) {
  116. //ieee80211softmac_disassoc(softmac, $REASON);
  117. bcm43xx_mac_suspend(bcm);
  118. err = bcm43xx_radio_selectchannel(bcm, channel, 0);
  119. bcm43xx_mac_enable(bcm);
  120. } else
  121. bcm->current_core->radio->initial_channel = channel;
  122. spin_unlock_irqrestore(&bcm->lock, flags);
  123. if (!err)
  124. printk_wx(KERN_INFO PFX "Selected channel: %d\n", channel);
  125. return err;
  126. }
  127. static int bcm43xx_wx_get_channelfreq(struct net_device *net_dev,
  128. struct iw_request_info *info,
  129. union iwreq_data *data,
  130. char *extra)
  131. {
  132. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  133. unsigned long flags;
  134. int err = -ENODEV;
  135. u16 channel;
  136. wx_enter();
  137. spin_lock_irqsave(&bcm->lock, flags);
  138. channel = bcm->current_core->radio->channel;
  139. if (channel == 0xFF) {
  140. assert(!bcm->initialized);
  141. channel = bcm->current_core->radio->initial_channel;
  142. if (channel == 0xFF)
  143. goto out_unlock;
  144. }
  145. assert(channel > 0 && channel <= 1000);
  146. data->freq.e = 1;
  147. data->freq.m = bcm43xx_channel_to_freq(bcm, channel) * 100000;
  148. data->freq.flags = 1;
  149. err = 0;
  150. out_unlock:
  151. spin_unlock_irqrestore(&bcm->lock, flags);
  152. return err;
  153. }
  154. static int bcm43xx_wx_set_mode(struct net_device *net_dev,
  155. struct iw_request_info *info,
  156. union iwreq_data *data,
  157. char *extra)
  158. {
  159. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  160. unsigned long flags;
  161. int mode;
  162. wx_enter();
  163. mode = data->mode;
  164. if (mode == IW_MODE_AUTO)
  165. mode = BCM43xx_INITIAL_IWMODE;
  166. spin_lock_irqsave(&bcm->lock, flags);
  167. if (bcm->ieee->iw_mode != mode)
  168. bcm43xx_set_iwmode(bcm, mode);
  169. spin_unlock_irqrestore(&bcm->lock, flags);
  170. return 0;
  171. }
  172. static int bcm43xx_wx_get_mode(struct net_device *net_dev,
  173. struct iw_request_info *info,
  174. union iwreq_data *data,
  175. char *extra)
  176. {
  177. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  178. unsigned long flags;
  179. wx_enter();
  180. spin_lock_irqsave(&bcm->lock, flags);
  181. data->mode = bcm->ieee->iw_mode;
  182. spin_unlock_irqrestore(&bcm->lock, flags);
  183. return 0;
  184. }
  185. static int bcm43xx_wx_set_sensitivity(struct net_device *net_dev,
  186. struct iw_request_info *info,
  187. union iwreq_data *data,
  188. char *extra)
  189. {
  190. wx_enter();
  191. /*TODO*/
  192. return 0;
  193. }
  194. static int bcm43xx_wx_get_sensitivity(struct net_device *net_dev,
  195. struct iw_request_info *info,
  196. union iwreq_data *data,
  197. char *extra)
  198. {
  199. wx_enter();
  200. /*TODO*/
  201. return 0;
  202. }
  203. static int bcm43xx_wx_get_rangeparams(struct net_device *net_dev,
  204. struct iw_request_info *info,
  205. union iwreq_data *data,
  206. char *extra)
  207. {
  208. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  209. struct iw_range *range = (struct iw_range *)extra;
  210. const struct ieee80211_geo *geo;
  211. unsigned long flags;
  212. int i, j;
  213. wx_enter();
  214. data->data.length = sizeof(*range);
  215. memset(range, 0, sizeof(*range));
  216. //TODO: What about 802.11b?
  217. /* 54Mb/s == ~27Mb/s payload throughput (802.11g) */
  218. range->throughput = 27 * 1000 * 1000;
  219. range->max_qual.qual = 100;
  220. /* TODO: Real max RSSI */
  221. range->max_qual.level = 0;
  222. range->max_qual.noise = 0;
  223. range->max_qual.updated = 7;
  224. range->avg_qual.qual = 70;
  225. range->avg_qual.level = 0;
  226. range->avg_qual.noise = 0;
  227. range->avg_qual.updated = 7;
  228. range->min_rts = BCM43xx_MIN_RTS_THRESHOLD;
  229. range->max_rts = BCM43xx_MAX_RTS_THRESHOLD;
  230. range->min_frag = MIN_FRAG_THRESHOLD;
  231. range->max_frag = MAX_FRAG_THRESHOLD;
  232. range->encoding_size[0] = 5;
  233. range->encoding_size[1] = 13;
  234. range->num_encoding_sizes = 2;
  235. range->max_encoding_tokens = WEP_KEYS;
  236. range->we_version_compiled = WIRELESS_EXT;
  237. range->we_version_source = BCM43xx_WX_VERSION;
  238. range->enc_capa = IW_ENC_CAPA_WPA |
  239. IW_ENC_CAPA_WPA2 |
  240. IW_ENC_CAPA_CIPHER_TKIP |
  241. IW_ENC_CAPA_CIPHER_CCMP;
  242. spin_lock_irqsave(&bcm->lock, flags);
  243. range->num_bitrates = 0;
  244. i = 0;
  245. if (bcm->current_core->phy->type == BCM43xx_PHYTYPE_A ||
  246. bcm->current_core->phy->type == BCM43xx_PHYTYPE_G) {
  247. range->num_bitrates = 8;
  248. range->bitrate[i++] = IEEE80211_OFDM_RATE_6MB;
  249. range->bitrate[i++] = IEEE80211_OFDM_RATE_9MB;
  250. range->bitrate[i++] = IEEE80211_OFDM_RATE_12MB;
  251. range->bitrate[i++] = IEEE80211_OFDM_RATE_18MB;
  252. range->bitrate[i++] = IEEE80211_OFDM_RATE_24MB;
  253. range->bitrate[i++] = IEEE80211_OFDM_RATE_36MB;
  254. range->bitrate[i++] = IEEE80211_OFDM_RATE_48MB;
  255. range->bitrate[i++] = IEEE80211_OFDM_RATE_54MB;
  256. }
  257. if (bcm->current_core->phy->type == BCM43xx_PHYTYPE_B ||
  258. bcm->current_core->phy->type == BCM43xx_PHYTYPE_G) {
  259. range->num_bitrates += 4;
  260. range->bitrate[i++] = IEEE80211_CCK_RATE_1MB;
  261. range->bitrate[i++] = IEEE80211_CCK_RATE_2MB;
  262. range->bitrate[i++] = IEEE80211_CCK_RATE_5MB;
  263. range->bitrate[i++] = IEEE80211_CCK_RATE_11MB;
  264. }
  265. geo = ieee80211_get_geo(bcm->ieee);
  266. range->num_channels = geo->a_channels + geo->bg_channels;
  267. j = 0;
  268. for (i = 0; i < geo->a_channels; i++) {
  269. if (j == IW_MAX_FREQUENCIES)
  270. break;
  271. range->freq[j].i = j + 1;
  272. range->freq[j].m = geo->a[i].freq;//FIXME?
  273. range->freq[j].e = 1;
  274. j++;
  275. }
  276. for (i = 0; i < geo->bg_channels; i++) {
  277. if (j == IW_MAX_FREQUENCIES)
  278. break;
  279. range->freq[j].i = j + 1;
  280. range->freq[j].m = geo->bg[i].freq;//FIXME?
  281. range->freq[j].e = 1;
  282. j++;
  283. }
  284. range->num_frequency = j;
  285. spin_unlock_irqrestore(&bcm->lock, flags);
  286. return 0;
  287. }
  288. static int bcm43xx_wx_set_nick(struct net_device *net_dev,
  289. struct iw_request_info *info,
  290. union iwreq_data *data,
  291. char *extra)
  292. {
  293. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  294. unsigned long flags;
  295. size_t len;
  296. wx_enter();
  297. spin_lock_irqsave(&bcm->lock, flags);
  298. len = min((size_t)data->data.length, (size_t)IW_ESSID_MAX_SIZE);
  299. memcpy(bcm->nick, extra, len);
  300. bcm->nick[len] = '\0';
  301. spin_unlock_irqrestore(&bcm->lock, flags);
  302. return 0;
  303. }
  304. static int bcm43xx_wx_get_nick(struct net_device *net_dev,
  305. struct iw_request_info *info,
  306. union iwreq_data *data,
  307. char *extra)
  308. {
  309. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  310. unsigned long flags;
  311. size_t len;
  312. wx_enter();
  313. spin_lock_irqsave(&bcm->lock, flags);
  314. len = strlen(bcm->nick) + 1;
  315. memcpy(extra, bcm->nick, len);
  316. data->data.length = (__u16)len;
  317. data->data.flags = 1;
  318. spin_unlock_irqrestore(&bcm->lock, flags);
  319. return 0;
  320. }
  321. static int bcm43xx_wx_set_rts(struct net_device *net_dev,
  322. struct iw_request_info *info,
  323. union iwreq_data *data,
  324. char *extra)
  325. {
  326. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  327. unsigned long flags;
  328. int err = -EINVAL;
  329. wx_enter();
  330. spin_lock_irqsave(&bcm->lock, flags);
  331. if (data->rts.disabled) {
  332. bcm->rts_threshold = BCM43xx_MAX_RTS_THRESHOLD;
  333. err = 0;
  334. } else {
  335. if (data->rts.value >= BCM43xx_MIN_RTS_THRESHOLD &&
  336. data->rts.value <= BCM43xx_MAX_RTS_THRESHOLD) {
  337. bcm->rts_threshold = data->rts.value;
  338. err = 0;
  339. }
  340. }
  341. spin_unlock_irqrestore(&bcm->lock, flags);
  342. return err;
  343. }
  344. static int bcm43xx_wx_get_rts(struct net_device *net_dev,
  345. struct iw_request_info *info,
  346. union iwreq_data *data,
  347. char *extra)
  348. {
  349. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  350. unsigned long flags;
  351. wx_enter();
  352. spin_lock_irqsave(&bcm->lock, flags);
  353. data->rts.value = bcm->rts_threshold;
  354. data->rts.fixed = 0;
  355. data->rts.disabled = (bcm->rts_threshold == BCM43xx_MAX_RTS_THRESHOLD);
  356. spin_unlock_irqrestore(&bcm->lock, flags);
  357. return 0;
  358. }
  359. static int bcm43xx_wx_set_frag(struct net_device *net_dev,
  360. struct iw_request_info *info,
  361. union iwreq_data *data,
  362. char *extra)
  363. {
  364. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  365. unsigned long flags;
  366. int err = -EINVAL;
  367. wx_enter();
  368. spin_lock_irqsave(&bcm->lock, flags);
  369. if (data->frag.disabled) {
  370. bcm->ieee->fts = MAX_FRAG_THRESHOLD;
  371. err = 0;
  372. } else {
  373. if (data->frag.value >= MIN_FRAG_THRESHOLD &&
  374. data->frag.value <= MAX_FRAG_THRESHOLD) {
  375. bcm->ieee->fts = data->frag.value & ~0x1;
  376. err = 0;
  377. }
  378. }
  379. spin_unlock_irqrestore(&bcm->lock, flags);
  380. return err;
  381. }
  382. static int bcm43xx_wx_get_frag(struct net_device *net_dev,
  383. struct iw_request_info *info,
  384. union iwreq_data *data,
  385. char *extra)
  386. {
  387. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  388. unsigned long flags;
  389. wx_enter();
  390. spin_lock_irqsave(&bcm->lock, flags);
  391. data->frag.value = bcm->ieee->fts;
  392. data->frag.fixed = 0;
  393. data->frag.disabled = (bcm->ieee->fts == MAX_FRAG_THRESHOLD);
  394. spin_unlock_irqrestore(&bcm->lock, flags);
  395. return 0;
  396. }
  397. static int bcm43xx_wx_set_xmitpower(struct net_device *net_dev,
  398. struct iw_request_info *info,
  399. union iwreq_data *data,
  400. char *extra)
  401. {
  402. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  403. unsigned long flags;
  404. int err = -ENODEV;
  405. wx_enter();
  406. spin_lock_irqsave(&bcm->lock, flags);
  407. if (!bcm->initialized)
  408. goto out_unlock;
  409. if (data->power.disabled != (!(bcm->current_core->radio->enabled))) {
  410. if (data->power.disabled)
  411. bcm43xx_radio_turn_off(bcm);
  412. else
  413. bcm43xx_radio_turn_on(bcm);
  414. }
  415. //TODO: set txpower.
  416. err = 0;
  417. out_unlock:
  418. spin_unlock_irqrestore(&bcm->lock, flags);
  419. return err;
  420. }
  421. static int bcm43xx_wx_get_xmitpower(struct net_device *net_dev,
  422. struct iw_request_info *info,
  423. union iwreq_data *data,
  424. char *extra)
  425. {
  426. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  427. unsigned long flags;
  428. wx_enter();
  429. spin_lock_irqsave(&bcm->lock, flags);
  430. //TODO data->power.value = ???
  431. data->power.fixed = 1;
  432. data->power.flags = IW_TXPOW_DBM;
  433. data->power.disabled = !(bcm->current_core->radio->enabled);
  434. spin_unlock_irqrestore(&bcm->lock, flags);
  435. return 0;
  436. }
  437. static int bcm43xx_wx_set_retry(struct net_device *net_dev,
  438. struct iw_request_info *info,
  439. union iwreq_data *data,
  440. char *extra)
  441. {
  442. wx_enter();
  443. /*TODO*/
  444. return 0;
  445. }
  446. static int bcm43xx_wx_get_retry(struct net_device *net_dev,
  447. struct iw_request_info *info,
  448. union iwreq_data *data,
  449. char *extra)
  450. {
  451. wx_enter();
  452. /*TODO*/
  453. return 0;
  454. }
  455. static int bcm43xx_wx_set_encoding(struct net_device *net_dev,
  456. struct iw_request_info *info,
  457. union iwreq_data *data,
  458. char *extra)
  459. {
  460. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  461. int err;
  462. wx_enter();
  463. err = ieee80211_wx_set_encode(bcm->ieee, info, data, extra);
  464. return err;
  465. }
  466. static int bcm43xx_wx_set_encodingext(struct net_device *net_dev,
  467. struct iw_request_info *info,
  468. union iwreq_data *data,
  469. char *extra)
  470. {
  471. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  472. int err;
  473. wx_enter();
  474. err = ieee80211_wx_set_encodeext(bcm->ieee, info, data, extra);
  475. return err;
  476. }
  477. static int bcm43xx_wx_get_encoding(struct net_device *net_dev,
  478. struct iw_request_info *info,
  479. union iwreq_data *data,
  480. char *extra)
  481. {
  482. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  483. int err;
  484. wx_enter();
  485. err = ieee80211_wx_get_encode(bcm->ieee, info, data, extra);
  486. return err;
  487. }
  488. static int bcm43xx_wx_get_encodingext(struct net_device *net_dev,
  489. struct iw_request_info *info,
  490. union iwreq_data *data,
  491. char *extra)
  492. {
  493. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  494. int err;
  495. wx_enter();
  496. err = ieee80211_wx_get_encodeext(bcm->ieee, info, data, extra);
  497. return err;
  498. }
  499. static int bcm43xx_wx_set_power(struct net_device *net_dev,
  500. struct iw_request_info *info,
  501. union iwreq_data *data,
  502. char *extra)
  503. {
  504. wx_enter();
  505. /*TODO*/
  506. return 0;
  507. }
  508. static int bcm43xx_wx_get_power(struct net_device *net_dev,
  509. struct iw_request_info *info,
  510. union iwreq_data *data,
  511. char *extra)
  512. {
  513. wx_enter();
  514. /*TODO*/
  515. return 0;
  516. }
  517. static int bcm43xx_wx_set_interfmode(struct net_device *net_dev,
  518. struct iw_request_info *info,
  519. union iwreq_data *data,
  520. char *extra)
  521. {
  522. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  523. unsigned long flags;
  524. int mode, err = 0;
  525. wx_enter();
  526. mode = *((int *)extra);
  527. switch (mode) {
  528. case 0:
  529. mode = BCM43xx_RADIO_INTERFMODE_NONE;
  530. break;
  531. case 1:
  532. mode = BCM43xx_RADIO_INTERFMODE_NONWLAN;
  533. break;
  534. case 2:
  535. mode = BCM43xx_RADIO_INTERFMODE_MANUALWLAN;
  536. break;
  537. case 3:
  538. mode = BCM43xx_RADIO_INTERFMODE_AUTOWLAN;
  539. break;
  540. default:
  541. printk(KERN_ERR PFX "set_interfmode allowed parameters are: "
  542. "0 => None, 1 => Non-WLAN, 2 => WLAN, "
  543. "3 => Auto-WLAN\n");
  544. return -EINVAL;
  545. }
  546. spin_lock_irqsave(&bcm->lock, flags);
  547. if (bcm->initialized) {
  548. err = bcm43xx_radio_set_interference_mitigation(bcm, mode);
  549. if (err) {
  550. printk(KERN_ERR PFX "Interference Mitigation not "
  551. "supported by device\n");
  552. }
  553. } else {
  554. if (mode == BCM43xx_RADIO_INTERFMODE_AUTOWLAN) {
  555. printk(KERN_ERR PFX "Interference Mitigation mode Auto-WLAN "
  556. "not supported while the interface is down.\n");
  557. err = -ENODEV;
  558. } else
  559. bcm->current_core->radio->interfmode = mode;
  560. }
  561. spin_unlock_irqrestore(&bcm->lock, flags);
  562. return err;
  563. }
  564. static int bcm43xx_wx_get_interfmode(struct net_device *net_dev,
  565. struct iw_request_info *info,
  566. union iwreq_data *data,
  567. char *extra)
  568. {
  569. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  570. unsigned long flags;
  571. int mode;
  572. wx_enter();
  573. spin_lock_irqsave(&bcm->lock, flags);
  574. mode = bcm->current_core->radio->interfmode;
  575. spin_unlock_irqrestore(&bcm->lock, flags);
  576. switch (mode) {
  577. case BCM43xx_RADIO_INTERFMODE_NONE:
  578. strncpy(extra, "0 (No Interference Mitigation)", MAX_WX_STRING);
  579. break;
  580. case BCM43xx_RADIO_INTERFMODE_NONWLAN:
  581. strncpy(extra, "1 (Non-WLAN Interference Mitigation)", MAX_WX_STRING);
  582. break;
  583. case BCM43xx_RADIO_INTERFMODE_MANUALWLAN:
  584. strncpy(extra, "2 (WLAN Interference Mitigation)", MAX_WX_STRING);
  585. break;
  586. default:
  587. assert(0);
  588. }
  589. data->data.length = strlen(extra) + 1;
  590. return 0;
  591. }
  592. static int bcm43xx_wx_set_shortpreamble(struct net_device *net_dev,
  593. struct iw_request_info *info,
  594. union iwreq_data *data,
  595. char *extra)
  596. {
  597. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  598. unsigned long flags;
  599. int on;
  600. wx_enter();
  601. on = *((int *)extra);
  602. spin_lock_irqsave(&bcm->lock, flags);
  603. bcm->short_preamble = !!on;
  604. spin_unlock_irqrestore(&bcm->lock, flags);
  605. return 0;
  606. }
  607. static int bcm43xx_wx_get_shortpreamble(struct net_device *net_dev,
  608. struct iw_request_info *info,
  609. union iwreq_data *data,
  610. char *extra)
  611. {
  612. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  613. unsigned long flags;
  614. int on;
  615. wx_enter();
  616. spin_lock_irqsave(&bcm->lock, flags);
  617. on = bcm->short_preamble;
  618. spin_unlock_irqrestore(&bcm->lock, flags);
  619. if (on)
  620. strncpy(extra, "1 (Short Preamble enabled)", MAX_WX_STRING);
  621. else
  622. strncpy(extra, "0 (Short Preamble disabled)", MAX_WX_STRING);
  623. data->data.length = strlen(extra) + 1;
  624. return 0;
  625. }
  626. static int bcm43xx_wx_set_swencryption(struct net_device *net_dev,
  627. struct iw_request_info *info,
  628. union iwreq_data *data,
  629. char *extra)
  630. {
  631. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  632. unsigned long flags;
  633. int on;
  634. wx_enter();
  635. on = *((int *)extra);
  636. spin_lock_irqsave(&bcm->lock, flags);
  637. bcm->ieee->host_encrypt = !!on;
  638. bcm->ieee->host_decrypt = !!on;
  639. bcm->ieee->host_build_iv = !on;
  640. spin_unlock_irqrestore(&bcm->lock, flags);
  641. return 0;
  642. }
  643. static int bcm43xx_wx_get_swencryption(struct net_device *net_dev,
  644. struct iw_request_info *info,
  645. union iwreq_data *data,
  646. char *extra)
  647. {
  648. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  649. unsigned long flags;
  650. int on;
  651. wx_enter();
  652. spin_lock_irqsave(&bcm->lock, flags);
  653. on = bcm->ieee->host_encrypt;
  654. spin_unlock_irqrestore(&bcm->lock, flags);
  655. if (on)
  656. strncpy(extra, "1 (SW encryption enabled) ", MAX_WX_STRING);
  657. else
  658. strncpy(extra, "0 (SW encryption disabled) ", MAX_WX_STRING);
  659. data->data.length = strlen(extra + 1);
  660. return 0;
  661. }
  662. /* Enough buffer to hold a hexdump of the sprom data. */
  663. #define SPROM_BUFFERSIZE 512
  664. static int sprom2hex(const u16 *sprom, char *dump)
  665. {
  666. int i, pos = 0;
  667. for (i = 0; i < BCM43xx_SPROM_SIZE; i++) {
  668. pos += snprintf(dump + pos, SPROM_BUFFERSIZE - pos - 1,
  669. "%04X", swab16(sprom[i]) & 0xFFFF);
  670. }
  671. return pos + 1;
  672. }
  673. static int hex2sprom(u16 *sprom, const char *dump, unsigned int len)
  674. {
  675. char tmp[5] = { 0 };
  676. int cnt = 0;
  677. unsigned long parsed;
  678. u8 crc, expected_crc;
  679. if (len < BCM43xx_SPROM_SIZE * sizeof(u16) * 2)
  680. return -EINVAL;
  681. while (cnt < BCM43xx_SPROM_SIZE) {
  682. memcpy(tmp, dump, 4);
  683. dump += 4;
  684. parsed = simple_strtoul(tmp, NULL, 16);
  685. sprom[cnt++] = swab16((u16)parsed);
  686. }
  687. crc = bcm43xx_sprom_crc(sprom);
  688. expected_crc = (sprom[BCM43xx_SPROM_VERSION] & 0xFF00) >> 8;
  689. if (crc != expected_crc) {
  690. printk(KERN_ERR PFX "SPROM input data: Invalid CRC\n");
  691. return -EINVAL;
  692. }
  693. return 0;
  694. }
  695. static int bcm43xx_wx_sprom_read(struct net_device *net_dev,
  696. struct iw_request_info *info,
  697. union iwreq_data *data,
  698. char *extra)
  699. {
  700. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  701. int err = -EPERM, i;
  702. u16 *sprom;
  703. unsigned long flags;
  704. if (!capable(CAP_SYS_RAWIO))
  705. goto out;
  706. err = -ENOMEM;
  707. sprom = kmalloc(BCM43xx_SPROM_SIZE * sizeof(*sprom),
  708. GFP_KERNEL);
  709. if (!sprom)
  710. goto out;
  711. spin_lock_irqsave(&bcm->lock, flags);
  712. err = -ENODEV;
  713. if (!bcm->initialized) {
  714. spin_unlock_irqrestore(&bcm->lock, flags);
  715. goto out_kfree;
  716. }
  717. for (i = 0; i < BCM43xx_SPROM_SIZE; i++)
  718. sprom[i] = bcm43xx_read16(bcm, BCM43xx_SPROM_BASE + (i * 2));
  719. spin_unlock_irqrestore(&bcm->lock, flags);
  720. data->data.length = sprom2hex(sprom, extra);
  721. err = 0;
  722. out_kfree:
  723. kfree(sprom);
  724. out:
  725. return err;
  726. }
  727. static int bcm43xx_wx_sprom_write(struct net_device *net_dev,
  728. struct iw_request_info *info,
  729. union iwreq_data *data,
  730. char *extra)
  731. {
  732. struct bcm43xx_private *bcm = bcm43xx_priv(net_dev);
  733. int err = -EPERM;
  734. u16 *sprom;
  735. unsigned long flags;
  736. char *input;
  737. unsigned int len;
  738. u32 spromctl;
  739. int i;
  740. if (!capable(CAP_SYS_RAWIO))
  741. goto out;
  742. err = -ENOMEM;
  743. sprom = kmalloc(BCM43xx_SPROM_SIZE * sizeof(*sprom),
  744. GFP_KERNEL);
  745. if (!sprom)
  746. goto out;
  747. len = data->data.length;
  748. extra[len - 1] = '\0';
  749. input = strchr(extra, ':');
  750. if (input) {
  751. input++;
  752. len -= input - extra;
  753. } else
  754. input = extra;
  755. err = hex2sprom(sprom, input, len);
  756. if (err)
  757. goto out_kfree;
  758. spin_lock_irqsave(&bcm->lock, flags);
  759. err = -ENODEV;
  760. if (!bcm->initialized) {
  761. spin_unlock_irqrestore(&bcm->lock, flags);
  762. goto out_kfree;
  763. }
  764. printk(KERN_INFO PFX "Writing SPROM. Do NOT turn off the power! Please stand by...\n");
  765. err = bcm43xx_pci_read_config32(bcm, BCM43xx_PCICFG_SPROMCTL, &spromctl);
  766. if (err) {
  767. printk(KERN_ERR PFX "Could not access SPROM control register.\n");
  768. goto out_unlock;
  769. }
  770. spromctl |= 0x10; /* SPROM WRITE enable. */
  771. bcm43xx_pci_write_config32(bcm, BCM43xx_PCICFG_SPROMCTL, spromctl);
  772. if (err) {
  773. printk(KERN_ERR PFX "Could not access SPROM control register.\n");
  774. goto out_unlock;
  775. }
  776. /* We must burn lots of CPU cycles here, but that does not
  777. * really matter as one does not write the SPROM every other minute...
  778. */
  779. printk(KERN_INFO PFX "[ 0%%");
  780. mdelay(500);
  781. for (i = 0; i < BCM43xx_SPROM_SIZE; i++) {
  782. if (i == 16)
  783. printk("25%%");
  784. else if (i == 32)
  785. printk("50%%");
  786. else if (i == 48)
  787. printk("75%%");
  788. else if (i % 2)
  789. printk(".");
  790. //TODO bcm43xx_write16(bcm, BCM43xx_SPROM_BASE + (i * 2), sprom[i]);
  791. mdelay(20);
  792. }
  793. spromctl &= ~0x10; /* SPROM WRITE enable. */
  794. bcm43xx_pci_write_config32(bcm, BCM43xx_PCICFG_SPROMCTL, spromctl);
  795. if (err) {
  796. printk(KERN_ERR PFX "Could not access SPROM control register.\n");
  797. goto out_unlock;
  798. }
  799. mdelay(500);
  800. printk("100%% ]\n");
  801. printk(KERN_INFO PFX "SPROM written.\n");
  802. err = 0;
  803. out_unlock:
  804. spin_unlock_irqrestore(&bcm->lock, flags);
  805. out_kfree:
  806. kfree(sprom);
  807. out:
  808. return err;
  809. }
  810. #ifdef WX
  811. # undef WX
  812. #endif
  813. #define WX(ioctl) [(ioctl) - SIOCSIWCOMMIT]
  814. static const iw_handler bcm43xx_wx_handlers[] = {
  815. /* Wireless Identification */
  816. WX(SIOCGIWNAME) = bcm43xx_wx_get_name,
  817. /* Basic operations */
  818. WX(SIOCSIWFREQ) = bcm43xx_wx_set_channelfreq,
  819. WX(SIOCGIWFREQ) = bcm43xx_wx_get_channelfreq,
  820. WX(SIOCSIWMODE) = bcm43xx_wx_set_mode,
  821. WX(SIOCGIWMODE) = bcm43xx_wx_get_mode,
  822. /* Informative stuff */
  823. WX(SIOCGIWRANGE) = bcm43xx_wx_get_rangeparams,
  824. /* Access Point manipulation */
  825. WX(SIOCSIWAP) = ieee80211softmac_wx_set_wap,
  826. WX(SIOCGIWAP) = ieee80211softmac_wx_get_wap,
  827. WX(SIOCSIWSCAN) = ieee80211softmac_wx_trigger_scan,
  828. WX(SIOCGIWSCAN) = ieee80211softmac_wx_get_scan_results,
  829. /* 802.11 specific support */
  830. WX(SIOCSIWESSID) = ieee80211softmac_wx_set_essid,
  831. WX(SIOCGIWESSID) = ieee80211softmac_wx_get_essid,
  832. WX(SIOCSIWNICKN) = bcm43xx_wx_set_nick,
  833. WX(SIOCGIWNICKN) = bcm43xx_wx_get_nick,
  834. /* Other parameters */
  835. WX(SIOCSIWRATE) = ieee80211softmac_wx_set_rate,
  836. WX(SIOCGIWRATE) = ieee80211softmac_wx_get_rate,
  837. WX(SIOCSIWRTS) = bcm43xx_wx_set_rts,
  838. WX(SIOCGIWRTS) = bcm43xx_wx_get_rts,
  839. WX(SIOCSIWFRAG) = bcm43xx_wx_set_frag,
  840. WX(SIOCGIWFRAG) = bcm43xx_wx_get_frag,
  841. WX(SIOCSIWTXPOW) = bcm43xx_wx_set_xmitpower,
  842. WX(SIOCGIWTXPOW) = bcm43xx_wx_get_xmitpower,
  843. //TODO WX(SIOCSIWRETRY) = bcm43xx_wx_set_retry,
  844. //TODO WX(SIOCGIWRETRY) = bcm43xx_wx_get_retry,
  845. /* Encoding */
  846. WX(SIOCSIWENCODE) = bcm43xx_wx_set_encoding,
  847. WX(SIOCGIWENCODE) = bcm43xx_wx_get_encoding,
  848. WX(SIOCSIWENCODEEXT) = bcm43xx_wx_set_encodingext,
  849. WX(SIOCGIWENCODEEXT) = bcm43xx_wx_get_encodingext,
  850. /* Power saving */
  851. //TODO WX(SIOCSIWPOWER) = bcm43xx_wx_set_power,
  852. //TODO WX(SIOCGIWPOWER) = bcm43xx_wx_get_power,
  853. WX(SIOCSIWGENIE) = ieee80211softmac_wx_set_genie,
  854. WX(SIOCGIWGENIE) = ieee80211softmac_wx_get_genie,
  855. WX(SIOCSIWAUTH) = ieee80211_wx_set_auth,
  856. WX(SIOCGIWAUTH) = ieee80211_wx_get_auth,
  857. };
  858. #undef WX
  859. static const iw_handler bcm43xx_priv_wx_handlers[] = {
  860. /* Set Interference Mitigation Mode. */
  861. bcm43xx_wx_set_interfmode,
  862. /* Get Interference Mitigation Mode. */
  863. bcm43xx_wx_get_interfmode,
  864. /* Enable/Disable Short Preamble mode. */
  865. bcm43xx_wx_set_shortpreamble,
  866. /* Get Short Preamble mode. */
  867. bcm43xx_wx_get_shortpreamble,
  868. /* Enable/Disable Software Encryption mode */
  869. bcm43xx_wx_set_swencryption,
  870. /* Get Software Encryption mode */
  871. bcm43xx_wx_get_swencryption,
  872. /* Write SRPROM data. */
  873. bcm43xx_wx_sprom_write,
  874. /* Read SPROM data. */
  875. bcm43xx_wx_sprom_read,
  876. };
  877. #define PRIV_WX_SET_INTERFMODE (SIOCIWFIRSTPRIV + 0)
  878. #define PRIV_WX_GET_INTERFMODE (SIOCIWFIRSTPRIV + 1)
  879. #define PRIV_WX_SET_SHORTPREAMBLE (SIOCIWFIRSTPRIV + 2)
  880. #define PRIV_WX_GET_SHORTPREAMBLE (SIOCIWFIRSTPRIV + 3)
  881. #define PRIV_WX_SET_SWENCRYPTION (SIOCIWFIRSTPRIV + 4)
  882. #define PRIV_WX_GET_SWENCRYPTION (SIOCIWFIRSTPRIV + 5)
  883. #define PRIV_WX_SPROM_WRITE (SIOCIWFIRSTPRIV + 6)
  884. #define PRIV_WX_SPROM_READ (SIOCIWFIRSTPRIV + 7)
  885. #define PRIV_WX_DUMMY(ioctl) \
  886. { \
  887. .cmd = (ioctl), \
  888. .name = "__unused" \
  889. }
  890. static const struct iw_priv_args bcm43xx_priv_wx_args[] = {
  891. {
  892. .cmd = PRIV_WX_SET_INTERFMODE,
  893. .set_args = IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1,
  894. .name = "set_interfmode",
  895. },
  896. {
  897. .cmd = PRIV_WX_GET_INTERFMODE,
  898. .get_args = IW_PRIV_TYPE_CHAR | IW_PRIV_SIZE_FIXED | MAX_WX_STRING,
  899. .name = "get_interfmode",
  900. },
  901. {
  902. .cmd = PRIV_WX_SET_SHORTPREAMBLE,
  903. .set_args = IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1,
  904. .name = "set_shortpreambl",
  905. },
  906. {
  907. .cmd = PRIV_WX_GET_SHORTPREAMBLE,
  908. .get_args = IW_PRIV_TYPE_CHAR | IW_PRIV_SIZE_FIXED | MAX_WX_STRING,
  909. .name = "get_shortpreambl",
  910. },
  911. {
  912. .cmd = PRIV_WX_SET_SWENCRYPTION,
  913. .set_args = IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1,
  914. .name = "set_swencryption",
  915. },
  916. {
  917. .cmd = PRIV_WX_GET_SWENCRYPTION,
  918. .get_args = IW_PRIV_TYPE_CHAR | IW_PRIV_SIZE_FIXED | MAX_WX_STRING,
  919. .name = "get_swencryption",
  920. },
  921. {
  922. .cmd = PRIV_WX_SPROM_WRITE,
  923. .set_args = IW_PRIV_TYPE_CHAR | SPROM_BUFFERSIZE,
  924. .name = "write_sprom",
  925. },
  926. {
  927. .cmd = PRIV_WX_SPROM_READ,
  928. .get_args = IW_PRIV_TYPE_CHAR | IW_PRIV_SIZE_FIXED | SPROM_BUFFERSIZE,
  929. .name = "read_sprom",
  930. },
  931. };
  932. const struct iw_handler_def bcm43xx_wx_handlers_def = {
  933. .standard = bcm43xx_wx_handlers,
  934. .num_standard = ARRAY_SIZE(bcm43xx_wx_handlers),
  935. .num_private = ARRAY_SIZE(bcm43xx_priv_wx_handlers),
  936. .num_private_args = ARRAY_SIZE(bcm43xx_priv_wx_args),
  937. .private = bcm43xx_priv_wx_handlers,
  938. .private_args = bcm43xx_priv_wx_args,
  939. };
  940. /* vim: set ts=8 sw=8 sts=8: */