mac.c 11 KB

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  1. /*
  2. * Atheros AR9170 driver
  3. *
  4. * MAC programming
  5. *
  6. * Copyright 2008, Johannes Berg <johannes@sipsolutions.net>
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; see the file COPYING. If not, see
  20. * http://www.gnu.org/licenses/.
  21. *
  22. * This file incorporates work covered by the following copyright and
  23. * permission notice:
  24. * Copyright (c) 2007-2008 Atheros Communications, Inc.
  25. *
  26. * Permission to use, copy, modify, and/or distribute this software for any
  27. * purpose with or without fee is hereby granted, provided that the above
  28. * copyright notice and this permission notice appear in all copies.
  29. *
  30. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  31. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  32. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  33. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  34. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
  35. * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
  36. * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  37. */
  38. #include "ar9170.h"
  39. #include "cmd.h"
  40. int ar9170_set_qos(struct ar9170 *ar)
  41. {
  42. ar9170_regwrite_begin(ar);
  43. ar9170_regwrite(AR9170_MAC_REG_AC0_CW, ar->edcf[0].cw_min |
  44. (ar->edcf[0].cw_max << 16));
  45. ar9170_regwrite(AR9170_MAC_REG_AC1_CW, ar->edcf[1].cw_min |
  46. (ar->edcf[1].cw_max << 16));
  47. ar9170_regwrite(AR9170_MAC_REG_AC2_CW, ar->edcf[2].cw_min |
  48. (ar->edcf[2].cw_max << 16));
  49. ar9170_regwrite(AR9170_MAC_REG_AC3_CW, ar->edcf[3].cw_min |
  50. (ar->edcf[3].cw_max << 16));
  51. ar9170_regwrite(AR9170_MAC_REG_AC4_CW, ar->edcf[4].cw_min |
  52. (ar->edcf[4].cw_max << 16));
  53. ar9170_regwrite(AR9170_MAC_REG_AC1_AC0_AIFS,
  54. ((ar->edcf[0].aifs * 9 + 10)) |
  55. ((ar->edcf[1].aifs * 9 + 10) << 12) |
  56. ((ar->edcf[2].aifs * 9 + 10) << 24));
  57. ar9170_regwrite(AR9170_MAC_REG_AC3_AC2_AIFS,
  58. ((ar->edcf[2].aifs * 9 + 10) >> 8) |
  59. ((ar->edcf[3].aifs * 9 + 10) << 4) |
  60. ((ar->edcf[4].aifs * 9 + 10) << 16));
  61. ar9170_regwrite(AR9170_MAC_REG_AC1_AC0_TXOP,
  62. ar->edcf[0].txop | ar->edcf[1].txop << 16);
  63. ar9170_regwrite(AR9170_MAC_REG_AC3_AC2_TXOP,
  64. ar->edcf[1].txop | ar->edcf[3].txop << 16);
  65. ar9170_regwrite_finish();
  66. return ar9170_regwrite_result();
  67. }
  68. int ar9170_init_mac(struct ar9170 *ar)
  69. {
  70. ar9170_regwrite_begin(ar);
  71. ar9170_regwrite(AR9170_MAC_REG_ACK_EXTENSION, 0x40);
  72. ar9170_regwrite(AR9170_MAC_REG_RETRY_MAX, 0);
  73. /* enable MMIC */
  74. ar9170_regwrite(AR9170_MAC_REG_SNIFFER,
  75. AR9170_MAC_REG_SNIFFER_DEFAULTS);
  76. ar9170_regwrite(AR9170_MAC_REG_RX_THRESHOLD, 0xc1f80);
  77. ar9170_regwrite(AR9170_MAC_REG_RX_PE_DELAY, 0x70);
  78. ar9170_regwrite(AR9170_MAC_REG_EIFS_AND_SIFS, 0xa144000);
  79. ar9170_regwrite(AR9170_MAC_REG_SLOT_TIME, 9 << 10);
  80. /* CF-END mode */
  81. ar9170_regwrite(0x1c3b2c, 0x19000000);
  82. /* NAV protects ACK only (in TXOP) */
  83. ar9170_regwrite(0x1c3b38, 0x201);
  84. /* Set Beacon PHY CTRL's TPC to 0x7, TA1=1 */
  85. /* OTUS set AM to 0x1 */
  86. ar9170_regwrite(AR9170_MAC_REG_BCN_HT1, 0x8000170);
  87. ar9170_regwrite(AR9170_MAC_REG_BACKOFF_PROTECT, 0x105);
  88. /* AGG test code*/
  89. /* Aggregation MAX number and timeout */
  90. ar9170_regwrite(0x1c3b9c, 0x10000a);
  91. ar9170_regwrite(AR9170_MAC_REG_FRAMETYPE_FILTER,
  92. AR9170_MAC_REG_FTF_DEFAULTS);
  93. /* Enable deaggregator, response in sniffer mode */
  94. ar9170_regwrite(0x1c3c40, 0x1 | 1<<30);
  95. /* rate sets */
  96. ar9170_regwrite(AR9170_MAC_REG_BASIC_RATE, 0x150f);
  97. ar9170_regwrite(AR9170_MAC_REG_MANDATORY_RATE, 0x150f);
  98. ar9170_regwrite(AR9170_MAC_REG_RTS_CTS_RATE, 0x10b01bb);
  99. /* MIMO response control */
  100. ar9170_regwrite(0x1c3694, 0x4003C1E);/* bit 26~28 otus-AM */
  101. /* switch MAC to OTUS interface */
  102. ar9170_regwrite(0x1c3600, 0x3);
  103. ar9170_regwrite(AR9170_MAC_REG_AMPDU_RX_THRESH, 0xffff);
  104. /* set PHY register read timeout (??) */
  105. ar9170_regwrite(AR9170_MAC_REG_MISC_680, 0xf00008);
  106. /* Disable Rx TimeOut, workaround for BB. */
  107. ar9170_regwrite(AR9170_MAC_REG_RX_TIMEOUT, 0x0);
  108. /* Set CPU clock frequency to 88/80MHz */
  109. ar9170_regwrite(AR9170_PWR_REG_CLOCK_SEL,
  110. AR9170_PWR_CLK_AHB_80_88MHZ |
  111. AR9170_PWR_CLK_DAC_160_INV_DLY);
  112. /* Set WLAN DMA interrupt mode: generate int per packet */
  113. ar9170_regwrite(AR9170_MAC_REG_TXRX_MPI, 0x110011);
  114. ar9170_regwrite(AR9170_MAC_REG_FCS_SELECT,
  115. AR9170_MAC_FCS_FIFO_PROT);
  116. /* Disables the CF_END frame, undocumented register */
  117. ar9170_regwrite(AR9170_MAC_REG_TXOP_NOT_ENOUGH_IND,
  118. 0x141E0F48);
  119. ar9170_regwrite_finish();
  120. return ar9170_regwrite_result();
  121. }
  122. static int ar9170_set_mac_reg(struct ar9170 *ar, const u32 reg, const u8 *mac)
  123. {
  124. static const u8 zero[ETH_ALEN] = { 0 };
  125. if (!mac)
  126. mac = zero;
  127. ar9170_regwrite_begin(ar);
  128. ar9170_regwrite(reg,
  129. (mac[3] << 24) | (mac[2] << 16) |
  130. (mac[1] << 8) | mac[0]);
  131. ar9170_regwrite(reg + 4, (mac[5] << 8) | mac[4]);
  132. ar9170_regwrite_finish();
  133. return ar9170_regwrite_result();
  134. }
  135. int ar9170_update_multicast(struct ar9170 *ar)
  136. {
  137. int err;
  138. ar9170_regwrite_begin(ar);
  139. ar9170_regwrite(AR9170_MAC_REG_GROUP_HASH_TBL_H,
  140. ar->want_mc_hash >> 32);
  141. ar9170_regwrite(AR9170_MAC_REG_GROUP_HASH_TBL_L,
  142. ar->want_mc_hash);
  143. ar9170_regwrite_finish();
  144. err = ar9170_regwrite_result();
  145. if (err)
  146. return err;
  147. ar->cur_mc_hash = ar->want_mc_hash;
  148. return 0;
  149. }
  150. int ar9170_update_frame_filter(struct ar9170 *ar)
  151. {
  152. int err;
  153. err = ar9170_write_reg(ar, AR9170_MAC_REG_FRAMETYPE_FILTER,
  154. ar->want_filter);
  155. if (err)
  156. return err;
  157. ar->cur_filter = ar->want_filter;
  158. return 0;
  159. }
  160. static int ar9170_set_promiscouous(struct ar9170 *ar)
  161. {
  162. u32 encr_mode, sniffer;
  163. int err;
  164. err = ar9170_read_reg(ar, AR9170_MAC_REG_SNIFFER, &sniffer);
  165. if (err)
  166. return err;
  167. err = ar9170_read_reg(ar, AR9170_MAC_REG_ENCRYPTION, &encr_mode);
  168. if (err)
  169. return err;
  170. if (ar->sniffer_enabled) {
  171. sniffer |= AR9170_MAC_REG_SNIFFER_ENABLE_PROMISC;
  172. /*
  173. * Rx decryption works in place.
  174. *
  175. * If we don't disable it, the hardware will render all
  176. * encrypted frames which are encrypted with an unknown
  177. * key useless.
  178. */
  179. encr_mode |= AR9170_MAC_REG_ENCRYPTION_RX_SOFTWARE;
  180. ar->sniffer_enabled = true;
  181. } else {
  182. sniffer &= ~AR9170_MAC_REG_SNIFFER_ENABLE_PROMISC;
  183. if (ar->rx_software_decryption)
  184. encr_mode |= AR9170_MAC_REG_ENCRYPTION_RX_SOFTWARE;
  185. else
  186. encr_mode &= ~AR9170_MAC_REG_ENCRYPTION_RX_SOFTWARE;
  187. }
  188. ar9170_regwrite_begin(ar);
  189. ar9170_regwrite(AR9170_MAC_REG_ENCRYPTION, encr_mode);
  190. ar9170_regwrite(AR9170_MAC_REG_SNIFFER, sniffer);
  191. ar9170_regwrite_finish();
  192. return ar9170_regwrite_result();
  193. }
  194. int ar9170_set_operating_mode(struct ar9170 *ar)
  195. {
  196. u32 pm_mode = AR9170_MAC_REG_POWERMGT_DEFAULTS;
  197. u8 *mac_addr, *bssid;
  198. int err;
  199. if (ar->vif) {
  200. mac_addr = ar->mac_addr;
  201. bssid = ar->bssid;
  202. switch (ar->vif->type) {
  203. case NL80211_IFTYPE_MESH_POINT:
  204. case NL80211_IFTYPE_ADHOC:
  205. pm_mode |= AR9170_MAC_REG_POWERMGT_IBSS;
  206. break;
  207. /* case NL80211_IFTYPE_AP:
  208. pm_mode |= AR9170_MAC_REG_POWERMGT_AP;
  209. break;*/
  210. case NL80211_IFTYPE_WDS:
  211. pm_mode |= AR9170_MAC_REG_POWERMGT_AP_WDS;
  212. break;
  213. case NL80211_IFTYPE_MONITOR:
  214. ar->sniffer_enabled = true;
  215. ar->rx_software_decryption = true;
  216. break;
  217. default:
  218. pm_mode |= AR9170_MAC_REG_POWERMGT_STA;
  219. break;
  220. }
  221. } else {
  222. mac_addr = NULL;
  223. bssid = NULL;
  224. }
  225. err = ar9170_set_mac_reg(ar, AR9170_MAC_REG_MAC_ADDR_L, mac_addr);
  226. if (err)
  227. return err;
  228. err = ar9170_set_mac_reg(ar, AR9170_MAC_REG_BSSID_L, bssid);
  229. if (err)
  230. return err;
  231. err = ar9170_set_promiscouous(ar);
  232. if (err)
  233. return err;
  234. ar9170_regwrite_begin(ar);
  235. ar9170_regwrite(AR9170_MAC_REG_POWERMANAGEMENT, pm_mode);
  236. ar9170_regwrite_finish();
  237. return ar9170_regwrite_result();
  238. }
  239. int ar9170_set_hwretry_limit(struct ar9170 *ar, unsigned int max_retry)
  240. {
  241. u32 tmp = min_t(u32, 0x33333, max_retry * 0x11111);
  242. return ar9170_write_reg(ar, AR9170_MAC_REG_RETRY_MAX, tmp);
  243. }
  244. int ar9170_set_beacon_timers(struct ar9170 *ar)
  245. {
  246. u32 v = 0;
  247. u32 pretbtt = 0;
  248. v |= ar->hw->conf.beacon_int;
  249. if (ar->vif) {
  250. switch (ar->vif->type) {
  251. case NL80211_IFTYPE_MESH_POINT:
  252. case NL80211_IFTYPE_ADHOC:
  253. v |= BIT(25);
  254. break;
  255. case NL80211_IFTYPE_AP:
  256. v |= BIT(24);
  257. pretbtt = (ar->hw->conf.beacon_int - 6) << 16;
  258. break;
  259. default:
  260. break;
  261. }
  262. v |= ar->vif->bss_conf.dtim_period << 16;
  263. }
  264. ar9170_regwrite_begin(ar);
  265. ar9170_regwrite(AR9170_MAC_REG_PRETBTT, pretbtt);
  266. ar9170_regwrite(AR9170_MAC_REG_BCN_PERIOD, v);
  267. ar9170_regwrite_finish();
  268. return ar9170_regwrite_result();
  269. }
  270. int ar9170_update_beacon(struct ar9170 *ar)
  271. {
  272. struct sk_buff *skb;
  273. __le32 *data, *old = NULL;
  274. u32 word;
  275. int i;
  276. skb = ieee80211_beacon_get(ar->hw, ar->vif);
  277. if (!skb)
  278. return -ENOMEM;
  279. data = (__le32 *)skb->data;
  280. if (ar->beacon)
  281. old = (__le32 *)ar->beacon->data;
  282. ar9170_regwrite_begin(ar);
  283. for (i = 0; i < DIV_ROUND_UP(skb->len, 4); i++) {
  284. /*
  285. * XXX: This accesses beyond skb data for up
  286. * to the last 3 bytes!!
  287. */
  288. if (old && (data[i] == old[i]))
  289. continue;
  290. word = le32_to_cpu(data[i]);
  291. ar9170_regwrite(AR9170_BEACON_BUFFER_ADDRESS + 4 * i, word);
  292. }
  293. /* XXX: use skb->cb info */
  294. if (ar->hw->conf.channel->band == IEEE80211_BAND_2GHZ)
  295. ar9170_regwrite(AR9170_MAC_REG_BCN_PLCP,
  296. ((skb->len + 4) << (3+16)) + 0x0400);
  297. else
  298. ar9170_regwrite(AR9170_MAC_REG_BCN_PLCP,
  299. ((skb->len + 4) << (3+16)) + 0x0400);
  300. ar9170_regwrite(AR9170_MAC_REG_BCN_LENGTH, skb->len + 4);
  301. ar9170_regwrite(AR9170_MAC_REG_BCN_ADDR, AR9170_BEACON_BUFFER_ADDRESS);
  302. ar9170_regwrite(AR9170_MAC_REG_BCN_CTRL, 1);
  303. ar9170_regwrite_finish();
  304. dev_kfree_skb(ar->beacon);
  305. ar->beacon = skb;
  306. return ar9170_regwrite_result();
  307. }
  308. void ar9170_new_beacon(struct work_struct *work)
  309. {
  310. struct ar9170 *ar = container_of(work, struct ar9170,
  311. beacon_work);
  312. struct sk_buff *skb;
  313. if (unlikely(!IS_STARTED(ar)))
  314. return ;
  315. mutex_lock(&ar->mutex);
  316. if (!ar->vif)
  317. goto out;
  318. ar9170_update_beacon(ar);
  319. rcu_read_lock();
  320. while ((skb = ieee80211_get_buffered_bc(ar->hw, ar->vif)))
  321. ar9170_op_tx(ar->hw, skb);
  322. rcu_read_unlock();
  323. out:
  324. mutex_unlock(&ar->mutex);
  325. }
  326. int ar9170_upload_key(struct ar9170 *ar, u8 id, const u8 *mac, u8 ktype,
  327. u8 keyidx, u8 *keydata, int keylen)
  328. {
  329. __le32 vals[7];
  330. static const u8 bcast[ETH_ALEN] =
  331. { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
  332. u8 dummy;
  333. mac = mac ? : bcast;
  334. vals[0] = cpu_to_le32((keyidx << 16) + id);
  335. vals[1] = cpu_to_le32(mac[1] << 24 | mac[0] << 16 | ktype);
  336. vals[2] = cpu_to_le32(mac[5] << 24 | mac[4] << 16 |
  337. mac[3] << 8 | mac[2]);
  338. memset(&vals[3], 0, 16);
  339. if (keydata)
  340. memcpy(&vals[3], keydata, keylen);
  341. return ar->exec_cmd(ar, AR9170_CMD_EKEY,
  342. sizeof(vals), (u8 *)vals,
  343. 1, &dummy);
  344. }
  345. int ar9170_disable_key(struct ar9170 *ar, u8 id)
  346. {
  347. __le32 val = cpu_to_le32(id);
  348. u8 dummy;
  349. return ar->exec_cmd(ar, AR9170_CMD_EKEY,
  350. sizeof(val), (u8 *)&val,
  351. 1, &dummy);
  352. }