cmd.c 42 KB

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  1. /*
  2. * This file contains the handling of command.
  3. * It prepares command and sends it to firmware when it is ready.
  4. */
  5. #include <linux/kfifo.h>
  6. #include <linux/sched.h>
  7. #include <linux/slab.h>
  8. #include <linux/if_arp.h>
  9. #include "decl.h"
  10. #include "cfg.h"
  11. #include "cmd.h"
  12. #define CAL_NF(nf) ((s32)(-(s32)(nf)))
  13. #define CAL_RSSI(snr, nf) ((s32)((s32)(snr) + CAL_NF(nf)))
  14. /**
  15. * lbs_cmd_copyback - Simple callback that copies response back into command
  16. *
  17. * @priv: A pointer to &struct lbs_private structure
  18. * @extra: A pointer to the original command structure for which
  19. * 'resp' is a response
  20. * @resp: A pointer to the command response
  21. *
  22. * returns: 0 on success, error on failure
  23. */
  24. int lbs_cmd_copyback(struct lbs_private *priv, unsigned long extra,
  25. struct cmd_header *resp)
  26. {
  27. struct cmd_header *buf = (void *)extra;
  28. uint16_t copy_len;
  29. copy_len = min(le16_to_cpu(buf->size), le16_to_cpu(resp->size));
  30. memcpy(buf, resp, copy_len);
  31. return 0;
  32. }
  33. EXPORT_SYMBOL_GPL(lbs_cmd_copyback);
  34. /**
  35. * lbs_cmd_async_callback - Simple callback that ignores the result.
  36. * Use this if you just want to send a command to the hardware, but don't
  37. * care for the result.
  38. *
  39. * @priv: ignored
  40. * @extra: ignored
  41. * @resp: ignored
  42. *
  43. * returns: 0 for success
  44. */
  45. static int lbs_cmd_async_callback(struct lbs_private *priv, unsigned long extra,
  46. struct cmd_header *resp)
  47. {
  48. return 0;
  49. }
  50. /**
  51. * is_command_allowed_in_ps - tests if a command is allowed in Power Save mode
  52. *
  53. * @cmd: the command ID
  54. *
  55. * returns: 1 if allowed, 0 if not allowed
  56. */
  57. static u8 is_command_allowed_in_ps(u16 cmd)
  58. {
  59. switch (cmd) {
  60. case CMD_802_11_RSSI:
  61. return 1;
  62. case CMD_802_11_HOST_SLEEP_CFG:
  63. return 1;
  64. default:
  65. break;
  66. }
  67. return 0;
  68. }
  69. /**
  70. * lbs_update_hw_spec - Updates the hardware details like MAC address
  71. * and regulatory region
  72. *
  73. * @priv: A pointer to &struct lbs_private structure
  74. *
  75. * returns: 0 on success, error on failure
  76. */
  77. int lbs_update_hw_spec(struct lbs_private *priv)
  78. {
  79. struct cmd_ds_get_hw_spec cmd;
  80. int ret = -1;
  81. u32 i;
  82. lbs_deb_enter(LBS_DEB_CMD);
  83. memset(&cmd, 0, sizeof(cmd));
  84. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  85. memcpy(cmd.permanentaddr, priv->current_addr, ETH_ALEN);
  86. ret = lbs_cmd_with_response(priv, CMD_GET_HW_SPEC, &cmd);
  87. if (ret)
  88. goto out;
  89. priv->fwcapinfo = le32_to_cpu(cmd.fwcapinfo);
  90. /* The firmware release is in an interesting format: the patch
  91. * level is in the most significant nibble ... so fix that: */
  92. priv->fwrelease = le32_to_cpu(cmd.fwrelease);
  93. priv->fwrelease = (priv->fwrelease << 8) |
  94. (priv->fwrelease >> 24 & 0xff);
  95. /* Some firmware capabilities:
  96. * CF card firmware 5.0.16p0: cap 0x00000303
  97. * USB dongle firmware 5.110.17p2: cap 0x00000303
  98. */
  99. netdev_info(priv->dev, "%pM, fw %u.%u.%up%u, cap 0x%08x\n",
  100. cmd.permanentaddr,
  101. priv->fwrelease >> 24 & 0xff,
  102. priv->fwrelease >> 16 & 0xff,
  103. priv->fwrelease >> 8 & 0xff,
  104. priv->fwrelease & 0xff,
  105. priv->fwcapinfo);
  106. lbs_deb_cmd("GET_HW_SPEC: hardware interface 0x%x, hardware spec 0x%04x\n",
  107. cmd.hwifversion, cmd.version);
  108. /* Clamp region code to 8-bit since FW spec indicates that it should
  109. * only ever be 8-bit, even though the field size is 16-bit. Some firmware
  110. * returns non-zero high 8 bits here.
  111. *
  112. * Firmware version 4.0.102 used in CF8381 has region code shifted. We
  113. * need to check for this problem and handle it properly.
  114. */
  115. if (MRVL_FW_MAJOR_REV(priv->fwrelease) == MRVL_FW_V4)
  116. priv->regioncode = (le16_to_cpu(cmd.regioncode) >> 8) & 0xFF;
  117. else
  118. priv->regioncode = le16_to_cpu(cmd.regioncode) & 0xFF;
  119. for (i = 0; i < MRVDRV_MAX_REGION_CODE; i++) {
  120. /* use the region code to search for the index */
  121. if (priv->regioncode == lbs_region_code_to_index[i])
  122. break;
  123. }
  124. /* if it's unidentified region code, use the default (USA) */
  125. if (i >= MRVDRV_MAX_REGION_CODE) {
  126. priv->regioncode = 0x10;
  127. netdev_info(priv->dev,
  128. "unidentified region code; using the default (USA)\n");
  129. }
  130. if (priv->current_addr[0] == 0xff)
  131. memmove(priv->current_addr, cmd.permanentaddr, ETH_ALEN);
  132. if (!priv->copied_hwaddr) {
  133. memcpy(priv->dev->dev_addr, priv->current_addr, ETH_ALEN);
  134. if (priv->mesh_dev)
  135. memcpy(priv->mesh_dev->dev_addr,
  136. priv->current_addr, ETH_ALEN);
  137. priv->copied_hwaddr = 1;
  138. }
  139. out:
  140. lbs_deb_leave(LBS_DEB_CMD);
  141. return ret;
  142. }
  143. static int lbs_ret_host_sleep_cfg(struct lbs_private *priv, unsigned long dummy,
  144. struct cmd_header *resp)
  145. {
  146. lbs_deb_enter(LBS_DEB_CMD);
  147. if (priv->is_host_sleep_activated) {
  148. priv->is_host_sleep_configured = 0;
  149. if (priv->psstate == PS_STATE_FULL_POWER) {
  150. priv->is_host_sleep_activated = 0;
  151. wake_up_interruptible(&priv->host_sleep_q);
  152. }
  153. } else {
  154. priv->is_host_sleep_configured = 1;
  155. }
  156. lbs_deb_leave(LBS_DEB_CMD);
  157. return 0;
  158. }
  159. int lbs_host_sleep_cfg(struct lbs_private *priv, uint32_t criteria,
  160. struct wol_config *p_wol_config)
  161. {
  162. struct cmd_ds_host_sleep cmd_config;
  163. int ret;
  164. /*
  165. * Certain firmware versions do not support EHS_REMOVE_WAKEUP command
  166. * and the card will return a failure. Since we need to be
  167. * able to reset the mask, in those cases we set a 0 mask instead.
  168. */
  169. if (criteria == EHS_REMOVE_WAKEUP && !priv->ehs_remove_supported)
  170. criteria = 0;
  171. cmd_config.hdr.size = cpu_to_le16(sizeof(cmd_config));
  172. cmd_config.criteria = cpu_to_le32(criteria);
  173. cmd_config.gpio = priv->wol_gpio;
  174. cmd_config.gap = priv->wol_gap;
  175. if (p_wol_config != NULL)
  176. memcpy((uint8_t *)&cmd_config.wol_conf, (uint8_t *)p_wol_config,
  177. sizeof(struct wol_config));
  178. else
  179. cmd_config.wol_conf.action = CMD_ACT_ACTION_NONE;
  180. ret = __lbs_cmd(priv, CMD_802_11_HOST_SLEEP_CFG, &cmd_config.hdr,
  181. le16_to_cpu(cmd_config.hdr.size),
  182. lbs_ret_host_sleep_cfg, 0);
  183. if (!ret) {
  184. if (p_wol_config)
  185. memcpy((uint8_t *) p_wol_config,
  186. (uint8_t *)&cmd_config.wol_conf,
  187. sizeof(struct wol_config));
  188. } else {
  189. netdev_info(priv->dev, "HOST_SLEEP_CFG failed %d\n", ret);
  190. }
  191. return ret;
  192. }
  193. EXPORT_SYMBOL_GPL(lbs_host_sleep_cfg);
  194. /**
  195. * lbs_set_ps_mode - Sets the Power Save mode
  196. *
  197. * @priv: A pointer to &struct lbs_private structure
  198. * @cmd_action: The Power Save operation (PS_MODE_ACTION_ENTER_PS or
  199. * PS_MODE_ACTION_EXIT_PS)
  200. * @block: Whether to block on a response or not
  201. *
  202. * returns: 0 on success, error on failure
  203. */
  204. int lbs_set_ps_mode(struct lbs_private *priv, u16 cmd_action, bool block)
  205. {
  206. struct cmd_ds_802_11_ps_mode cmd;
  207. int ret = 0;
  208. lbs_deb_enter(LBS_DEB_CMD);
  209. memset(&cmd, 0, sizeof(cmd));
  210. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  211. cmd.action = cpu_to_le16(cmd_action);
  212. if (cmd_action == PS_MODE_ACTION_ENTER_PS) {
  213. lbs_deb_cmd("PS_MODE: action ENTER_PS\n");
  214. cmd.multipledtim = cpu_to_le16(1); /* Default DTIM multiple */
  215. } else if (cmd_action == PS_MODE_ACTION_EXIT_PS) {
  216. lbs_deb_cmd("PS_MODE: action EXIT_PS\n");
  217. } else {
  218. /* We don't handle CONFIRM_SLEEP here because it needs to
  219. * be fastpathed to the firmware.
  220. */
  221. lbs_deb_cmd("PS_MODE: unknown action 0x%X\n", cmd_action);
  222. ret = -EOPNOTSUPP;
  223. goto out;
  224. }
  225. if (block)
  226. ret = lbs_cmd_with_response(priv, CMD_802_11_PS_MODE, &cmd);
  227. else
  228. lbs_cmd_async(priv, CMD_802_11_PS_MODE, &cmd.hdr, sizeof (cmd));
  229. out:
  230. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  231. return ret;
  232. }
  233. int lbs_cmd_802_11_sleep_params(struct lbs_private *priv, uint16_t cmd_action,
  234. struct sleep_params *sp)
  235. {
  236. struct cmd_ds_802_11_sleep_params cmd;
  237. int ret;
  238. lbs_deb_enter(LBS_DEB_CMD);
  239. if (cmd_action == CMD_ACT_GET) {
  240. memset(&cmd, 0, sizeof(cmd));
  241. } else {
  242. cmd.error = cpu_to_le16(sp->sp_error);
  243. cmd.offset = cpu_to_le16(sp->sp_offset);
  244. cmd.stabletime = cpu_to_le16(sp->sp_stabletime);
  245. cmd.calcontrol = sp->sp_calcontrol;
  246. cmd.externalsleepclk = sp->sp_extsleepclk;
  247. cmd.reserved = cpu_to_le16(sp->sp_reserved);
  248. }
  249. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  250. cmd.action = cpu_to_le16(cmd_action);
  251. ret = lbs_cmd_with_response(priv, CMD_802_11_SLEEP_PARAMS, &cmd);
  252. if (!ret) {
  253. lbs_deb_cmd("error 0x%x, offset 0x%x, stabletime 0x%x, "
  254. "calcontrol 0x%x extsleepclk 0x%x\n",
  255. le16_to_cpu(cmd.error), le16_to_cpu(cmd.offset),
  256. le16_to_cpu(cmd.stabletime), cmd.calcontrol,
  257. cmd.externalsleepclk);
  258. sp->sp_error = le16_to_cpu(cmd.error);
  259. sp->sp_offset = le16_to_cpu(cmd.offset);
  260. sp->sp_stabletime = le16_to_cpu(cmd.stabletime);
  261. sp->sp_calcontrol = cmd.calcontrol;
  262. sp->sp_extsleepclk = cmd.externalsleepclk;
  263. sp->sp_reserved = le16_to_cpu(cmd.reserved);
  264. }
  265. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  266. return 0;
  267. }
  268. static int lbs_wait_for_ds_awake(struct lbs_private *priv)
  269. {
  270. int ret = 0;
  271. lbs_deb_enter(LBS_DEB_CMD);
  272. if (priv->is_deep_sleep) {
  273. if (!wait_event_interruptible_timeout(priv->ds_awake_q,
  274. !priv->is_deep_sleep, (10 * HZ))) {
  275. netdev_err(priv->dev, "ds_awake_q: timer expired\n");
  276. ret = -1;
  277. }
  278. }
  279. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  280. return ret;
  281. }
  282. int lbs_set_deep_sleep(struct lbs_private *priv, int deep_sleep)
  283. {
  284. int ret = 0;
  285. lbs_deb_enter(LBS_DEB_CMD);
  286. if (deep_sleep) {
  287. if (priv->is_deep_sleep != 1) {
  288. lbs_deb_cmd("deep sleep: sleep\n");
  289. BUG_ON(!priv->enter_deep_sleep);
  290. ret = priv->enter_deep_sleep(priv);
  291. if (!ret) {
  292. netif_stop_queue(priv->dev);
  293. netif_carrier_off(priv->dev);
  294. }
  295. } else {
  296. netdev_err(priv->dev, "deep sleep: already enabled\n");
  297. }
  298. } else {
  299. if (priv->is_deep_sleep) {
  300. lbs_deb_cmd("deep sleep: wakeup\n");
  301. BUG_ON(!priv->exit_deep_sleep);
  302. ret = priv->exit_deep_sleep(priv);
  303. if (!ret) {
  304. ret = lbs_wait_for_ds_awake(priv);
  305. if (ret)
  306. netdev_err(priv->dev,
  307. "deep sleep: wakeup failed\n");
  308. }
  309. }
  310. }
  311. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  312. return ret;
  313. }
  314. static int lbs_ret_host_sleep_activate(struct lbs_private *priv,
  315. unsigned long dummy,
  316. struct cmd_header *cmd)
  317. {
  318. lbs_deb_enter(LBS_DEB_FW);
  319. priv->is_host_sleep_activated = 1;
  320. wake_up_interruptible(&priv->host_sleep_q);
  321. lbs_deb_leave(LBS_DEB_FW);
  322. return 0;
  323. }
  324. int lbs_set_host_sleep(struct lbs_private *priv, int host_sleep)
  325. {
  326. struct cmd_header cmd;
  327. int ret = 0;
  328. uint32_t criteria = EHS_REMOVE_WAKEUP;
  329. lbs_deb_enter(LBS_DEB_CMD);
  330. if (host_sleep) {
  331. if (priv->is_host_sleep_activated != 1) {
  332. memset(&cmd, 0, sizeof(cmd));
  333. ret = lbs_host_sleep_cfg(priv, priv->wol_criteria,
  334. (struct wol_config *)NULL);
  335. if (ret) {
  336. netdev_info(priv->dev,
  337. "Host sleep configuration failed: %d\n",
  338. ret);
  339. return ret;
  340. }
  341. if (priv->psstate == PS_STATE_FULL_POWER) {
  342. ret = __lbs_cmd(priv,
  343. CMD_802_11_HOST_SLEEP_ACTIVATE,
  344. &cmd,
  345. sizeof(cmd),
  346. lbs_ret_host_sleep_activate, 0);
  347. if (ret)
  348. netdev_info(priv->dev,
  349. "HOST_SLEEP_ACTIVATE failed: %d\n",
  350. ret);
  351. }
  352. if (!wait_event_interruptible_timeout(
  353. priv->host_sleep_q,
  354. priv->is_host_sleep_activated,
  355. (10 * HZ))) {
  356. netdev_err(priv->dev,
  357. "host_sleep_q: timer expired\n");
  358. ret = -1;
  359. }
  360. } else {
  361. netdev_err(priv->dev, "host sleep: already enabled\n");
  362. }
  363. } else {
  364. if (priv->is_host_sleep_activated)
  365. ret = lbs_host_sleep_cfg(priv, criteria,
  366. (struct wol_config *)NULL);
  367. }
  368. return ret;
  369. }
  370. /**
  371. * lbs_set_snmp_mib - Set an SNMP MIB value
  372. *
  373. * @priv: A pointer to &struct lbs_private structure
  374. * @oid: The OID to set in the firmware
  375. * @val: Value to set the OID to
  376. *
  377. * returns: 0 on success, error on failure
  378. */
  379. int lbs_set_snmp_mib(struct lbs_private *priv, u32 oid, u16 val)
  380. {
  381. struct cmd_ds_802_11_snmp_mib cmd;
  382. int ret;
  383. lbs_deb_enter(LBS_DEB_CMD);
  384. memset(&cmd, 0, sizeof (cmd));
  385. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  386. cmd.action = cpu_to_le16(CMD_ACT_SET);
  387. cmd.oid = cpu_to_le16((u16) oid);
  388. switch (oid) {
  389. case SNMP_MIB_OID_BSS_TYPE:
  390. cmd.bufsize = cpu_to_le16(sizeof(u8));
  391. cmd.value[0] = val;
  392. break;
  393. case SNMP_MIB_OID_11D_ENABLE:
  394. case SNMP_MIB_OID_FRAG_THRESHOLD:
  395. case SNMP_MIB_OID_RTS_THRESHOLD:
  396. case SNMP_MIB_OID_SHORT_RETRY_LIMIT:
  397. case SNMP_MIB_OID_LONG_RETRY_LIMIT:
  398. cmd.bufsize = cpu_to_le16(sizeof(u16));
  399. *((__le16 *)(&cmd.value)) = cpu_to_le16(val);
  400. break;
  401. default:
  402. lbs_deb_cmd("SNMP_CMD: (set) unhandled OID 0x%x\n", oid);
  403. ret = -EINVAL;
  404. goto out;
  405. }
  406. lbs_deb_cmd("SNMP_CMD: (set) oid 0x%x, oid size 0x%x, value 0x%x\n",
  407. le16_to_cpu(cmd.oid), le16_to_cpu(cmd.bufsize), val);
  408. ret = lbs_cmd_with_response(priv, CMD_802_11_SNMP_MIB, &cmd);
  409. out:
  410. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  411. return ret;
  412. }
  413. /**
  414. * lbs_get_snmp_mib - Get an SNMP MIB value
  415. *
  416. * @priv: A pointer to &struct lbs_private structure
  417. * @oid: The OID to retrieve from the firmware
  418. * @out_val: Location for the returned value
  419. *
  420. * returns: 0 on success, error on failure
  421. */
  422. int lbs_get_snmp_mib(struct lbs_private *priv, u32 oid, u16 *out_val)
  423. {
  424. struct cmd_ds_802_11_snmp_mib cmd;
  425. int ret;
  426. lbs_deb_enter(LBS_DEB_CMD);
  427. memset(&cmd, 0, sizeof (cmd));
  428. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  429. cmd.action = cpu_to_le16(CMD_ACT_GET);
  430. cmd.oid = cpu_to_le16(oid);
  431. ret = lbs_cmd_with_response(priv, CMD_802_11_SNMP_MIB, &cmd);
  432. if (ret)
  433. goto out;
  434. switch (le16_to_cpu(cmd.bufsize)) {
  435. case sizeof(u8):
  436. *out_val = cmd.value[0];
  437. break;
  438. case sizeof(u16):
  439. *out_val = le16_to_cpu(*((__le16 *)(&cmd.value)));
  440. break;
  441. default:
  442. lbs_deb_cmd("SNMP_CMD: (get) unhandled OID 0x%x size %d\n",
  443. oid, le16_to_cpu(cmd.bufsize));
  444. break;
  445. }
  446. out:
  447. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  448. return ret;
  449. }
  450. /**
  451. * lbs_get_tx_power - Get the min, max, and current TX power
  452. *
  453. * @priv: A pointer to &struct lbs_private structure
  454. * @curlevel: Current power level in dBm
  455. * @minlevel: Minimum supported power level in dBm (optional)
  456. * @maxlevel: Maximum supported power level in dBm (optional)
  457. *
  458. * returns: 0 on success, error on failure
  459. */
  460. int lbs_get_tx_power(struct lbs_private *priv, s16 *curlevel, s16 *minlevel,
  461. s16 *maxlevel)
  462. {
  463. struct cmd_ds_802_11_rf_tx_power cmd;
  464. int ret;
  465. lbs_deb_enter(LBS_DEB_CMD);
  466. memset(&cmd, 0, sizeof(cmd));
  467. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  468. cmd.action = cpu_to_le16(CMD_ACT_GET);
  469. ret = lbs_cmd_with_response(priv, CMD_802_11_RF_TX_POWER, &cmd);
  470. if (ret == 0) {
  471. *curlevel = le16_to_cpu(cmd.curlevel);
  472. if (minlevel)
  473. *minlevel = cmd.minlevel;
  474. if (maxlevel)
  475. *maxlevel = cmd.maxlevel;
  476. }
  477. lbs_deb_leave(LBS_DEB_CMD);
  478. return ret;
  479. }
  480. /**
  481. * lbs_set_tx_power - Set the TX power
  482. *
  483. * @priv: A pointer to &struct lbs_private structure
  484. * @dbm: The desired power level in dBm
  485. *
  486. * returns: 0 on success, error on failure
  487. */
  488. int lbs_set_tx_power(struct lbs_private *priv, s16 dbm)
  489. {
  490. struct cmd_ds_802_11_rf_tx_power cmd;
  491. int ret;
  492. lbs_deb_enter(LBS_DEB_CMD);
  493. memset(&cmd, 0, sizeof(cmd));
  494. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  495. cmd.action = cpu_to_le16(CMD_ACT_SET);
  496. cmd.curlevel = cpu_to_le16(dbm);
  497. lbs_deb_cmd("SET_RF_TX_POWER: %d dBm\n", dbm);
  498. ret = lbs_cmd_with_response(priv, CMD_802_11_RF_TX_POWER, &cmd);
  499. lbs_deb_leave(LBS_DEB_CMD);
  500. return ret;
  501. }
  502. /**
  503. * lbs_set_monitor_mode - Enable or disable monitor mode
  504. * (only implemented on OLPC usb8388 FW)
  505. *
  506. * @priv: A pointer to &struct lbs_private structure
  507. * @enable: 1 to enable monitor mode, 0 to disable
  508. *
  509. * returns: 0 on success, error on failure
  510. */
  511. int lbs_set_monitor_mode(struct lbs_private *priv, int enable)
  512. {
  513. struct cmd_ds_802_11_monitor_mode cmd;
  514. int ret;
  515. memset(&cmd, 0, sizeof(cmd));
  516. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  517. cmd.action = cpu_to_le16(CMD_ACT_SET);
  518. if (enable)
  519. cmd.mode = cpu_to_le16(0x1);
  520. lbs_deb_cmd("SET_MONITOR_MODE: %d\n", enable);
  521. ret = lbs_cmd_with_response(priv, CMD_802_11_MONITOR_MODE, &cmd);
  522. if (ret == 0) {
  523. priv->dev->type = enable ? ARPHRD_IEEE80211_RADIOTAP :
  524. ARPHRD_ETHER;
  525. }
  526. lbs_deb_leave(LBS_DEB_CMD);
  527. return ret;
  528. }
  529. /**
  530. * lbs_get_channel - Get the radio channel
  531. *
  532. * @priv: A pointer to &struct lbs_private structure
  533. *
  534. * returns: The channel on success, error on failure
  535. */
  536. static int lbs_get_channel(struct lbs_private *priv)
  537. {
  538. struct cmd_ds_802_11_rf_channel cmd;
  539. int ret = 0;
  540. lbs_deb_enter(LBS_DEB_CMD);
  541. memset(&cmd, 0, sizeof(cmd));
  542. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  543. cmd.action = cpu_to_le16(CMD_OPT_802_11_RF_CHANNEL_GET);
  544. ret = lbs_cmd_with_response(priv, CMD_802_11_RF_CHANNEL, &cmd);
  545. if (ret)
  546. goto out;
  547. ret = le16_to_cpu(cmd.channel);
  548. lbs_deb_cmd("current radio channel is %d\n", ret);
  549. out:
  550. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  551. return ret;
  552. }
  553. int lbs_update_channel(struct lbs_private *priv)
  554. {
  555. int ret;
  556. /* the channel in f/w could be out of sync; get the current channel */
  557. lbs_deb_enter(LBS_DEB_ASSOC);
  558. ret = lbs_get_channel(priv);
  559. if (ret > 0) {
  560. priv->channel = ret;
  561. ret = 0;
  562. }
  563. lbs_deb_leave_args(LBS_DEB_ASSOC, "ret %d", ret);
  564. return ret;
  565. }
  566. /**
  567. * lbs_set_channel - Set the radio channel
  568. *
  569. * @priv: A pointer to &struct lbs_private structure
  570. * @channel: The desired channel, or 0 to clear a locked channel
  571. *
  572. * returns: 0 on success, error on failure
  573. */
  574. int lbs_set_channel(struct lbs_private *priv, u8 channel)
  575. {
  576. struct cmd_ds_802_11_rf_channel cmd;
  577. #ifdef DEBUG
  578. u8 old_channel = priv->channel;
  579. #endif
  580. int ret = 0;
  581. lbs_deb_enter(LBS_DEB_CMD);
  582. memset(&cmd, 0, sizeof(cmd));
  583. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  584. cmd.action = cpu_to_le16(CMD_OPT_802_11_RF_CHANNEL_SET);
  585. cmd.channel = cpu_to_le16(channel);
  586. ret = lbs_cmd_with_response(priv, CMD_802_11_RF_CHANNEL, &cmd);
  587. if (ret)
  588. goto out;
  589. priv->channel = (uint8_t) le16_to_cpu(cmd.channel);
  590. lbs_deb_cmd("channel switch from %d to %d\n", old_channel,
  591. priv->channel);
  592. out:
  593. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  594. return ret;
  595. }
  596. /**
  597. * lbs_get_rssi - Get current RSSI and noise floor
  598. *
  599. * @priv: A pointer to &struct lbs_private structure
  600. * @rssi: On successful return, signal level in mBm
  601. * @nf: On successful return, Noise floor
  602. *
  603. * returns: The channel on success, error on failure
  604. */
  605. int lbs_get_rssi(struct lbs_private *priv, s8 *rssi, s8 *nf)
  606. {
  607. struct cmd_ds_802_11_rssi cmd;
  608. int ret = 0;
  609. lbs_deb_enter(LBS_DEB_CMD);
  610. BUG_ON(rssi == NULL);
  611. BUG_ON(nf == NULL);
  612. memset(&cmd, 0, sizeof(cmd));
  613. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  614. /* Average SNR over last 8 beacons */
  615. cmd.n_or_snr = cpu_to_le16(8);
  616. ret = lbs_cmd_with_response(priv, CMD_802_11_RSSI, &cmd);
  617. if (ret == 0) {
  618. *nf = CAL_NF(le16_to_cpu(cmd.nf));
  619. *rssi = CAL_RSSI(le16_to_cpu(cmd.n_or_snr), le16_to_cpu(cmd.nf));
  620. }
  621. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  622. return ret;
  623. }
  624. /**
  625. * lbs_set_11d_domain_info - Send regulatory and 802.11d domain information
  626. * to the firmware
  627. *
  628. * @priv: pointer to &struct lbs_private
  629. * @request: cfg80211 regulatory request structure
  630. * @bands: the device's supported bands and channels
  631. *
  632. * returns: 0 on success, error code on failure
  633. */
  634. int lbs_set_11d_domain_info(struct lbs_private *priv,
  635. struct regulatory_request *request,
  636. struct ieee80211_supported_band **bands)
  637. {
  638. struct cmd_ds_802_11d_domain_info cmd;
  639. struct mrvl_ie_domain_param_set *domain = &cmd.domain;
  640. struct ieee80211_country_ie_triplet *t;
  641. enum ieee80211_band band;
  642. struct ieee80211_channel *ch;
  643. u8 num_triplet = 0;
  644. u8 num_parsed_chan = 0;
  645. u8 first_channel = 0, next_chan = 0, max_pwr = 0;
  646. u8 i, flag = 0;
  647. size_t triplet_size;
  648. int ret;
  649. lbs_deb_enter(LBS_DEB_11D);
  650. memset(&cmd, 0, sizeof(cmd));
  651. cmd.action = cpu_to_le16(CMD_ACT_SET);
  652. lbs_deb_11d("Setting country code '%c%c'\n",
  653. request->alpha2[0], request->alpha2[1]);
  654. domain->header.type = cpu_to_le16(TLV_TYPE_DOMAIN);
  655. /* Set country code */
  656. domain->country_code[0] = request->alpha2[0];
  657. domain->country_code[1] = request->alpha2[1];
  658. domain->country_code[2] = ' ';
  659. /* Now set up the channel triplets; firmware is somewhat picky here
  660. * and doesn't validate channel numbers and spans; hence it would
  661. * interpret a triplet of (36, 4, 20) as channels 36, 37, 38, 39. Since
  662. * the last 3 aren't valid channels, the driver is responsible for
  663. * splitting that up into 4 triplet pairs of (36, 1, 20) + (40, 1, 20)
  664. * etc.
  665. */
  666. for (band = 0;
  667. (band < IEEE80211_NUM_BANDS) && (num_triplet < MAX_11D_TRIPLETS);
  668. band++) {
  669. if (!bands[band])
  670. continue;
  671. for (i = 0;
  672. (i < bands[band]->n_channels) && (num_triplet < MAX_11D_TRIPLETS);
  673. i++) {
  674. ch = &bands[band]->channels[i];
  675. if (ch->flags & IEEE80211_CHAN_DISABLED)
  676. continue;
  677. if (!flag) {
  678. flag = 1;
  679. next_chan = first_channel = (u32) ch->hw_value;
  680. max_pwr = ch->max_power;
  681. num_parsed_chan = 1;
  682. continue;
  683. }
  684. if ((ch->hw_value == next_chan + 1) &&
  685. (ch->max_power == max_pwr)) {
  686. /* Consolidate adjacent channels */
  687. next_chan++;
  688. num_parsed_chan++;
  689. } else {
  690. /* Add this triplet */
  691. lbs_deb_11d("11D triplet (%d, %d, %d)\n",
  692. first_channel, num_parsed_chan,
  693. max_pwr);
  694. t = &domain->triplet[num_triplet];
  695. t->chans.first_channel = first_channel;
  696. t->chans.num_channels = num_parsed_chan;
  697. t->chans.max_power = max_pwr;
  698. num_triplet++;
  699. flag = 0;
  700. }
  701. }
  702. if (flag) {
  703. /* Add last triplet */
  704. lbs_deb_11d("11D triplet (%d, %d, %d)\n", first_channel,
  705. num_parsed_chan, max_pwr);
  706. t = &domain->triplet[num_triplet];
  707. t->chans.first_channel = first_channel;
  708. t->chans.num_channels = num_parsed_chan;
  709. t->chans.max_power = max_pwr;
  710. num_triplet++;
  711. }
  712. }
  713. lbs_deb_11d("# triplets %d\n", num_triplet);
  714. /* Set command header sizes */
  715. triplet_size = num_triplet * sizeof(struct ieee80211_country_ie_triplet);
  716. domain->header.len = cpu_to_le16(sizeof(domain->country_code) +
  717. triplet_size);
  718. lbs_deb_hex(LBS_DEB_11D, "802.11D domain param set",
  719. (u8 *) &cmd.domain.country_code,
  720. le16_to_cpu(domain->header.len));
  721. cmd.hdr.size = cpu_to_le16(sizeof(cmd.hdr) +
  722. sizeof(cmd.action) +
  723. sizeof(cmd.domain.header) +
  724. sizeof(cmd.domain.country_code) +
  725. triplet_size);
  726. ret = lbs_cmd_with_response(priv, CMD_802_11D_DOMAIN_INFO, &cmd);
  727. lbs_deb_leave_args(LBS_DEB_11D, "ret %d", ret);
  728. return ret;
  729. }
  730. /**
  731. * lbs_get_reg - Read a MAC, Baseband, or RF register
  732. *
  733. * @priv: pointer to &struct lbs_private
  734. * @reg: register command, one of CMD_MAC_REG_ACCESS,
  735. * CMD_BBP_REG_ACCESS, or CMD_RF_REG_ACCESS
  736. * @offset: byte offset of the register to get
  737. * @value: on success, the value of the register at 'offset'
  738. *
  739. * returns: 0 on success, error code on failure
  740. */
  741. int lbs_get_reg(struct lbs_private *priv, u16 reg, u16 offset, u32 *value)
  742. {
  743. struct cmd_ds_reg_access cmd;
  744. int ret = 0;
  745. lbs_deb_enter(LBS_DEB_CMD);
  746. BUG_ON(value == NULL);
  747. memset(&cmd, 0, sizeof(cmd));
  748. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  749. cmd.action = cpu_to_le16(CMD_ACT_GET);
  750. if (reg != CMD_MAC_REG_ACCESS &&
  751. reg != CMD_BBP_REG_ACCESS &&
  752. reg != CMD_RF_REG_ACCESS) {
  753. ret = -EINVAL;
  754. goto out;
  755. }
  756. ret = lbs_cmd_with_response(priv, reg, &cmd);
  757. if (ret) {
  758. if (reg == CMD_BBP_REG_ACCESS || reg == CMD_RF_REG_ACCESS)
  759. *value = cmd.value.bbp_rf;
  760. else if (reg == CMD_MAC_REG_ACCESS)
  761. *value = le32_to_cpu(cmd.value.mac);
  762. }
  763. out:
  764. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  765. return ret;
  766. }
  767. /**
  768. * lbs_set_reg - Write a MAC, Baseband, or RF register
  769. *
  770. * @priv: pointer to &struct lbs_private
  771. * @reg: register command, one of CMD_MAC_REG_ACCESS,
  772. * CMD_BBP_REG_ACCESS, or CMD_RF_REG_ACCESS
  773. * @offset: byte offset of the register to set
  774. * @value: the value to write to the register at 'offset'
  775. *
  776. * returns: 0 on success, error code on failure
  777. */
  778. int lbs_set_reg(struct lbs_private *priv, u16 reg, u16 offset, u32 value)
  779. {
  780. struct cmd_ds_reg_access cmd;
  781. int ret = 0;
  782. lbs_deb_enter(LBS_DEB_CMD);
  783. memset(&cmd, 0, sizeof(cmd));
  784. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  785. cmd.action = cpu_to_le16(CMD_ACT_SET);
  786. if (reg == CMD_BBP_REG_ACCESS || reg == CMD_RF_REG_ACCESS)
  787. cmd.value.bbp_rf = (u8) (value & 0xFF);
  788. else if (reg == CMD_MAC_REG_ACCESS)
  789. cmd.value.mac = cpu_to_le32(value);
  790. else {
  791. ret = -EINVAL;
  792. goto out;
  793. }
  794. ret = lbs_cmd_with_response(priv, reg, &cmd);
  795. out:
  796. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  797. return ret;
  798. }
  799. static void lbs_queue_cmd(struct lbs_private *priv,
  800. struct cmd_ctrl_node *cmdnode)
  801. {
  802. unsigned long flags;
  803. int addtail = 1;
  804. lbs_deb_enter(LBS_DEB_HOST);
  805. if (!cmdnode) {
  806. lbs_deb_host("QUEUE_CMD: cmdnode is NULL\n");
  807. goto done;
  808. }
  809. if (!cmdnode->cmdbuf->size) {
  810. lbs_deb_host("DNLD_CMD: cmd size is zero\n");
  811. goto done;
  812. }
  813. cmdnode->result = 0;
  814. /* Exit_PS command needs to be queued in the header always. */
  815. if (le16_to_cpu(cmdnode->cmdbuf->command) == CMD_802_11_PS_MODE) {
  816. struct cmd_ds_802_11_ps_mode *psm = (void *) &cmdnode->cmdbuf;
  817. if (psm->action == cpu_to_le16(PS_MODE_ACTION_EXIT_PS)) {
  818. if (priv->psstate != PS_STATE_FULL_POWER)
  819. addtail = 0;
  820. }
  821. }
  822. if (le16_to_cpu(cmdnode->cmdbuf->command) == CMD_802_11_WAKEUP_CONFIRM)
  823. addtail = 0;
  824. spin_lock_irqsave(&priv->driver_lock, flags);
  825. if (addtail)
  826. list_add_tail(&cmdnode->list, &priv->cmdpendingq);
  827. else
  828. list_add(&cmdnode->list, &priv->cmdpendingq);
  829. spin_unlock_irqrestore(&priv->driver_lock, flags);
  830. lbs_deb_host("QUEUE_CMD: inserted command 0x%04x into cmdpendingq\n",
  831. le16_to_cpu(cmdnode->cmdbuf->command));
  832. done:
  833. lbs_deb_leave(LBS_DEB_HOST);
  834. }
  835. static void lbs_submit_command(struct lbs_private *priv,
  836. struct cmd_ctrl_node *cmdnode)
  837. {
  838. unsigned long flags;
  839. struct cmd_header *cmd;
  840. uint16_t cmdsize;
  841. uint16_t command;
  842. int timeo = 3 * HZ;
  843. int ret;
  844. lbs_deb_enter(LBS_DEB_HOST);
  845. cmd = cmdnode->cmdbuf;
  846. spin_lock_irqsave(&priv->driver_lock, flags);
  847. priv->seqnum++;
  848. cmd->seqnum = cpu_to_le16(priv->seqnum);
  849. priv->cur_cmd = cmdnode;
  850. spin_unlock_irqrestore(&priv->driver_lock, flags);
  851. cmdsize = le16_to_cpu(cmd->size);
  852. command = le16_to_cpu(cmd->command);
  853. /* These commands take longer */
  854. if (command == CMD_802_11_SCAN || command == CMD_802_11_ASSOCIATE)
  855. timeo = 5 * HZ;
  856. lbs_deb_cmd("DNLD_CMD: command 0x%04x, seq %d, size %d\n",
  857. command, le16_to_cpu(cmd->seqnum), cmdsize);
  858. lbs_deb_hex(LBS_DEB_CMD, "DNLD_CMD", (void *) cmdnode->cmdbuf, cmdsize);
  859. ret = priv->hw_host_to_card(priv, MVMS_CMD, (u8 *) cmd, cmdsize);
  860. if (ret) {
  861. netdev_info(priv->dev, "DNLD_CMD: hw_host_to_card failed: %d\n",
  862. ret);
  863. /* Let the timer kick in and retry, and potentially reset
  864. the whole thing if the condition persists */
  865. timeo = HZ/4;
  866. }
  867. if (command == CMD_802_11_DEEP_SLEEP) {
  868. if (priv->is_auto_deep_sleep_enabled) {
  869. priv->wakeup_dev_required = 1;
  870. priv->dnld_sent = 0;
  871. }
  872. priv->is_deep_sleep = 1;
  873. lbs_complete_command(priv, cmdnode, 0);
  874. } else {
  875. /* Setup the timer after transmit command */
  876. mod_timer(&priv->command_timer, jiffies + timeo);
  877. }
  878. lbs_deb_leave(LBS_DEB_HOST);
  879. }
  880. /*
  881. * This function inserts command node to cmdfreeq
  882. * after cleans it. Requires priv->driver_lock held.
  883. */
  884. static void __lbs_cleanup_and_insert_cmd(struct lbs_private *priv,
  885. struct cmd_ctrl_node *cmdnode)
  886. {
  887. lbs_deb_enter(LBS_DEB_HOST);
  888. if (!cmdnode)
  889. goto out;
  890. cmdnode->callback = NULL;
  891. cmdnode->callback_arg = 0;
  892. memset(cmdnode->cmdbuf, 0, LBS_CMD_BUFFER_SIZE);
  893. list_add_tail(&cmdnode->list, &priv->cmdfreeq);
  894. out:
  895. lbs_deb_leave(LBS_DEB_HOST);
  896. }
  897. static void lbs_cleanup_and_insert_cmd(struct lbs_private *priv,
  898. struct cmd_ctrl_node *ptempcmd)
  899. {
  900. unsigned long flags;
  901. spin_lock_irqsave(&priv->driver_lock, flags);
  902. __lbs_cleanup_and_insert_cmd(priv, ptempcmd);
  903. spin_unlock_irqrestore(&priv->driver_lock, flags);
  904. }
  905. void lbs_complete_command(struct lbs_private *priv, struct cmd_ctrl_node *cmd,
  906. int result)
  907. {
  908. cmd->result = result;
  909. cmd->cmdwaitqwoken = 1;
  910. wake_up_interruptible(&cmd->cmdwait_q);
  911. if (!cmd->callback || cmd->callback == lbs_cmd_async_callback)
  912. __lbs_cleanup_and_insert_cmd(priv, cmd);
  913. priv->cur_cmd = NULL;
  914. }
  915. int lbs_set_radio(struct lbs_private *priv, u8 preamble, u8 radio_on)
  916. {
  917. struct cmd_ds_802_11_radio_control cmd;
  918. int ret = -EINVAL;
  919. lbs_deb_enter(LBS_DEB_CMD);
  920. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  921. cmd.action = cpu_to_le16(CMD_ACT_SET);
  922. /* Only v8 and below support setting the preamble */
  923. if (priv->fwrelease < 0x09000000) {
  924. switch (preamble) {
  925. case RADIO_PREAMBLE_SHORT:
  926. case RADIO_PREAMBLE_AUTO:
  927. case RADIO_PREAMBLE_LONG:
  928. cmd.control = cpu_to_le16(preamble);
  929. break;
  930. default:
  931. goto out;
  932. }
  933. }
  934. if (radio_on)
  935. cmd.control |= cpu_to_le16(0x1);
  936. else {
  937. cmd.control &= cpu_to_le16(~0x1);
  938. priv->txpower_cur = 0;
  939. }
  940. lbs_deb_cmd("RADIO_CONTROL: radio %s, preamble %d\n",
  941. radio_on ? "ON" : "OFF", preamble);
  942. priv->radio_on = radio_on;
  943. ret = lbs_cmd_with_response(priv, CMD_802_11_RADIO_CONTROL, &cmd);
  944. out:
  945. lbs_deb_leave_args(LBS_DEB_CMD, "ret %d", ret);
  946. return ret;
  947. }
  948. void lbs_set_mac_control(struct lbs_private *priv)
  949. {
  950. struct cmd_ds_mac_control cmd;
  951. lbs_deb_enter(LBS_DEB_CMD);
  952. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  953. cmd.action = cpu_to_le16(priv->mac_control);
  954. cmd.reserved = 0;
  955. lbs_cmd_async(priv, CMD_MAC_CONTROL, &cmd.hdr, sizeof(cmd));
  956. lbs_deb_leave(LBS_DEB_CMD);
  957. }
  958. /**
  959. * lbs_allocate_cmd_buffer - allocates the command buffer and links
  960. * it to command free queue
  961. *
  962. * @priv: A pointer to &struct lbs_private structure
  963. *
  964. * returns: 0 for success or -1 on error
  965. */
  966. int lbs_allocate_cmd_buffer(struct lbs_private *priv)
  967. {
  968. int ret = 0;
  969. u32 bufsize;
  970. u32 i;
  971. struct cmd_ctrl_node *cmdarray;
  972. lbs_deb_enter(LBS_DEB_HOST);
  973. /* Allocate and initialize the command array */
  974. bufsize = sizeof(struct cmd_ctrl_node) * LBS_NUM_CMD_BUFFERS;
  975. if (!(cmdarray = kzalloc(bufsize, GFP_KERNEL))) {
  976. lbs_deb_host("ALLOC_CMD_BUF: tempcmd_array is NULL\n");
  977. ret = -1;
  978. goto done;
  979. }
  980. priv->cmd_array = cmdarray;
  981. /* Allocate and initialize each command buffer in the command array */
  982. for (i = 0; i < LBS_NUM_CMD_BUFFERS; i++) {
  983. cmdarray[i].cmdbuf = kzalloc(LBS_CMD_BUFFER_SIZE, GFP_KERNEL);
  984. if (!cmdarray[i].cmdbuf) {
  985. lbs_deb_host("ALLOC_CMD_BUF: ptempvirtualaddr is NULL\n");
  986. ret = -1;
  987. goto done;
  988. }
  989. }
  990. for (i = 0; i < LBS_NUM_CMD_BUFFERS; i++) {
  991. init_waitqueue_head(&cmdarray[i].cmdwait_q);
  992. lbs_cleanup_and_insert_cmd(priv, &cmdarray[i]);
  993. }
  994. ret = 0;
  995. done:
  996. lbs_deb_leave_args(LBS_DEB_HOST, "ret %d", ret);
  997. return ret;
  998. }
  999. /**
  1000. * lbs_free_cmd_buffer - free the command buffer
  1001. *
  1002. * @priv: A pointer to &struct lbs_private structure
  1003. *
  1004. * returns: 0 for success
  1005. */
  1006. int lbs_free_cmd_buffer(struct lbs_private *priv)
  1007. {
  1008. struct cmd_ctrl_node *cmdarray;
  1009. unsigned int i;
  1010. lbs_deb_enter(LBS_DEB_HOST);
  1011. /* need to check if cmd array is allocated or not */
  1012. if (priv->cmd_array == NULL) {
  1013. lbs_deb_host("FREE_CMD_BUF: cmd_array is NULL\n");
  1014. goto done;
  1015. }
  1016. cmdarray = priv->cmd_array;
  1017. /* Release shared memory buffers */
  1018. for (i = 0; i < LBS_NUM_CMD_BUFFERS; i++) {
  1019. if (cmdarray[i].cmdbuf) {
  1020. kfree(cmdarray[i].cmdbuf);
  1021. cmdarray[i].cmdbuf = NULL;
  1022. }
  1023. }
  1024. /* Release cmd_ctrl_node */
  1025. if (priv->cmd_array) {
  1026. kfree(priv->cmd_array);
  1027. priv->cmd_array = NULL;
  1028. }
  1029. done:
  1030. lbs_deb_leave(LBS_DEB_HOST);
  1031. return 0;
  1032. }
  1033. /**
  1034. * lbs_get_free_cmd_node - gets a free command node if available in
  1035. * command free queue
  1036. *
  1037. * @priv: A pointer to &struct lbs_private structure
  1038. *
  1039. * returns: A pointer to &cmd_ctrl_node structure on success
  1040. * or %NULL on error
  1041. */
  1042. static struct cmd_ctrl_node *lbs_get_free_cmd_node(struct lbs_private *priv)
  1043. {
  1044. struct cmd_ctrl_node *tempnode;
  1045. unsigned long flags;
  1046. lbs_deb_enter(LBS_DEB_HOST);
  1047. if (!priv)
  1048. return NULL;
  1049. spin_lock_irqsave(&priv->driver_lock, flags);
  1050. if (!list_empty(&priv->cmdfreeq)) {
  1051. tempnode = list_first_entry(&priv->cmdfreeq,
  1052. struct cmd_ctrl_node, list);
  1053. list_del(&tempnode->list);
  1054. } else {
  1055. lbs_deb_host("GET_CMD_NODE: cmd_ctrl_node is not available\n");
  1056. tempnode = NULL;
  1057. }
  1058. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1059. lbs_deb_leave(LBS_DEB_HOST);
  1060. return tempnode;
  1061. }
  1062. /**
  1063. * lbs_execute_next_command - execute next command in command
  1064. * pending queue. Will put firmware back to PS mode if applicable.
  1065. *
  1066. * @priv: A pointer to &struct lbs_private structure
  1067. *
  1068. * returns: 0 on success or -1 on error
  1069. */
  1070. int lbs_execute_next_command(struct lbs_private *priv)
  1071. {
  1072. struct cmd_ctrl_node *cmdnode = NULL;
  1073. struct cmd_header *cmd;
  1074. unsigned long flags;
  1075. int ret = 0;
  1076. /* Debug group is LBS_DEB_THREAD and not LBS_DEB_HOST, because the
  1077. * only caller to us is lbs_thread() and we get even when a
  1078. * data packet is received */
  1079. lbs_deb_enter(LBS_DEB_THREAD);
  1080. spin_lock_irqsave(&priv->driver_lock, flags);
  1081. if (priv->cur_cmd) {
  1082. netdev_alert(priv->dev,
  1083. "EXEC_NEXT_CMD: already processing command!\n");
  1084. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1085. ret = -1;
  1086. goto done;
  1087. }
  1088. if (!list_empty(&priv->cmdpendingq)) {
  1089. cmdnode = list_first_entry(&priv->cmdpendingq,
  1090. struct cmd_ctrl_node, list);
  1091. }
  1092. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1093. if (cmdnode) {
  1094. cmd = cmdnode->cmdbuf;
  1095. if (is_command_allowed_in_ps(le16_to_cpu(cmd->command))) {
  1096. if ((priv->psstate == PS_STATE_SLEEP) ||
  1097. (priv->psstate == PS_STATE_PRE_SLEEP)) {
  1098. lbs_deb_host(
  1099. "EXEC_NEXT_CMD: cannot send cmd 0x%04x in psstate %d\n",
  1100. le16_to_cpu(cmd->command),
  1101. priv->psstate);
  1102. ret = -1;
  1103. goto done;
  1104. }
  1105. lbs_deb_host("EXEC_NEXT_CMD: OK to send command "
  1106. "0x%04x in psstate %d\n",
  1107. le16_to_cpu(cmd->command), priv->psstate);
  1108. } else if (priv->psstate != PS_STATE_FULL_POWER) {
  1109. /*
  1110. * 1. Non-PS command:
  1111. * Queue it. set needtowakeup to TRUE if current state
  1112. * is SLEEP, otherwise call send EXIT_PS.
  1113. * 2. PS command but not EXIT_PS:
  1114. * Ignore it.
  1115. * 3. PS command EXIT_PS:
  1116. * Set needtowakeup to TRUE if current state is SLEEP,
  1117. * otherwise send this command down to firmware
  1118. * immediately.
  1119. */
  1120. if (cmd->command != cpu_to_le16(CMD_802_11_PS_MODE)) {
  1121. /* Prepare to send Exit PS,
  1122. * this non PS command will be sent later */
  1123. if ((priv->psstate == PS_STATE_SLEEP)
  1124. || (priv->psstate == PS_STATE_PRE_SLEEP)
  1125. ) {
  1126. /* w/ new scheme, it will not reach here.
  1127. since it is blocked in main_thread. */
  1128. priv->needtowakeup = 1;
  1129. } else {
  1130. lbs_set_ps_mode(priv,
  1131. PS_MODE_ACTION_EXIT_PS,
  1132. false);
  1133. }
  1134. ret = 0;
  1135. goto done;
  1136. } else {
  1137. /*
  1138. * PS command. Ignore it if it is not Exit_PS.
  1139. * otherwise send it down immediately.
  1140. */
  1141. struct cmd_ds_802_11_ps_mode *psm = (void *)&cmd[1];
  1142. lbs_deb_host(
  1143. "EXEC_NEXT_CMD: PS cmd, action 0x%02x\n",
  1144. psm->action);
  1145. if (psm->action !=
  1146. cpu_to_le16(PS_MODE_ACTION_EXIT_PS)) {
  1147. lbs_deb_host(
  1148. "EXEC_NEXT_CMD: ignore ENTER_PS cmd\n");
  1149. spin_lock_irqsave(&priv->driver_lock, flags);
  1150. list_del(&cmdnode->list);
  1151. lbs_complete_command(priv, cmdnode, 0);
  1152. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1153. ret = 0;
  1154. goto done;
  1155. }
  1156. if ((priv->psstate == PS_STATE_SLEEP) ||
  1157. (priv->psstate == PS_STATE_PRE_SLEEP)) {
  1158. lbs_deb_host(
  1159. "EXEC_NEXT_CMD: ignore EXIT_PS cmd in sleep\n");
  1160. spin_lock_irqsave(&priv->driver_lock, flags);
  1161. list_del(&cmdnode->list);
  1162. lbs_complete_command(priv, cmdnode, 0);
  1163. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1164. priv->needtowakeup = 1;
  1165. ret = 0;
  1166. goto done;
  1167. }
  1168. lbs_deb_host(
  1169. "EXEC_NEXT_CMD: sending EXIT_PS\n");
  1170. }
  1171. }
  1172. spin_lock_irqsave(&priv->driver_lock, flags);
  1173. list_del(&cmdnode->list);
  1174. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1175. lbs_deb_host("EXEC_NEXT_CMD: sending command 0x%04x\n",
  1176. le16_to_cpu(cmd->command));
  1177. lbs_submit_command(priv, cmdnode);
  1178. } else {
  1179. /*
  1180. * check if in power save mode, if yes, put the device back
  1181. * to PS mode
  1182. */
  1183. #ifdef TODO
  1184. /*
  1185. * This was the old code for libertas+wext. Someone that
  1186. * understands this beast should re-code it in a sane way.
  1187. *
  1188. * I actually don't understand why this is related to WPA
  1189. * and to connection status, shouldn't powering should be
  1190. * independ of such things?
  1191. */
  1192. if ((priv->psmode != LBS802_11POWERMODECAM) &&
  1193. (priv->psstate == PS_STATE_FULL_POWER) &&
  1194. ((priv->connect_status == LBS_CONNECTED) ||
  1195. lbs_mesh_connected(priv))) {
  1196. if (priv->secinfo.WPAenabled ||
  1197. priv->secinfo.WPA2enabled) {
  1198. /* check for valid WPA group keys */
  1199. if (priv->wpa_mcast_key.len ||
  1200. priv->wpa_unicast_key.len) {
  1201. lbs_deb_host(
  1202. "EXEC_NEXT_CMD: WPA enabled and GTK_SET"
  1203. " go back to PS_SLEEP");
  1204. lbs_set_ps_mode(priv,
  1205. PS_MODE_ACTION_ENTER_PS,
  1206. false);
  1207. }
  1208. } else {
  1209. lbs_deb_host(
  1210. "EXEC_NEXT_CMD: cmdpendingq empty, "
  1211. "go back to PS_SLEEP");
  1212. lbs_set_ps_mode(priv, PS_MODE_ACTION_ENTER_PS,
  1213. false);
  1214. }
  1215. }
  1216. #endif
  1217. }
  1218. ret = 0;
  1219. done:
  1220. lbs_deb_leave(LBS_DEB_THREAD);
  1221. return ret;
  1222. }
  1223. static void lbs_send_confirmsleep(struct lbs_private *priv)
  1224. {
  1225. unsigned long flags;
  1226. int ret;
  1227. lbs_deb_enter(LBS_DEB_HOST);
  1228. lbs_deb_hex(LBS_DEB_HOST, "sleep confirm", (u8 *) &confirm_sleep,
  1229. sizeof(confirm_sleep));
  1230. ret = priv->hw_host_to_card(priv, MVMS_CMD, (u8 *) &confirm_sleep,
  1231. sizeof(confirm_sleep));
  1232. if (ret) {
  1233. netdev_alert(priv->dev, "confirm_sleep failed\n");
  1234. goto out;
  1235. }
  1236. spin_lock_irqsave(&priv->driver_lock, flags);
  1237. /* We don't get a response on the sleep-confirmation */
  1238. priv->dnld_sent = DNLD_RES_RECEIVED;
  1239. if (priv->is_host_sleep_configured) {
  1240. priv->is_host_sleep_activated = 1;
  1241. wake_up_interruptible(&priv->host_sleep_q);
  1242. }
  1243. /* If nothing to do, go back to sleep (?) */
  1244. if (!kfifo_len(&priv->event_fifo) && !priv->resp_len[priv->resp_idx])
  1245. priv->psstate = PS_STATE_SLEEP;
  1246. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1247. out:
  1248. lbs_deb_leave(LBS_DEB_HOST);
  1249. }
  1250. /**
  1251. * lbs_ps_confirm_sleep - checks condition and prepares to
  1252. * send sleep confirm command to firmware if ok
  1253. *
  1254. * @priv: A pointer to &struct lbs_private structure
  1255. *
  1256. * returns: n/a
  1257. */
  1258. void lbs_ps_confirm_sleep(struct lbs_private *priv)
  1259. {
  1260. unsigned long flags =0;
  1261. int allowed = 1;
  1262. lbs_deb_enter(LBS_DEB_HOST);
  1263. spin_lock_irqsave(&priv->driver_lock, flags);
  1264. if (priv->dnld_sent) {
  1265. allowed = 0;
  1266. lbs_deb_host("dnld_sent was set\n");
  1267. }
  1268. /* In-progress command? */
  1269. if (priv->cur_cmd) {
  1270. allowed = 0;
  1271. lbs_deb_host("cur_cmd was set\n");
  1272. }
  1273. /* Pending events or command responses? */
  1274. if (kfifo_len(&priv->event_fifo) || priv->resp_len[priv->resp_idx]) {
  1275. allowed = 0;
  1276. lbs_deb_host("pending events or command responses\n");
  1277. }
  1278. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1279. if (allowed) {
  1280. lbs_deb_host("sending lbs_ps_confirm_sleep\n");
  1281. lbs_send_confirmsleep(priv);
  1282. } else {
  1283. lbs_deb_host("sleep confirm has been delayed\n");
  1284. }
  1285. lbs_deb_leave(LBS_DEB_HOST);
  1286. }
  1287. /**
  1288. * lbs_set_tpc_cfg - Configures the transmission power control functionality
  1289. *
  1290. * @priv: A pointer to &struct lbs_private structure
  1291. * @enable: Transmission power control enable
  1292. * @p0: Power level when link quality is good (dBm).
  1293. * @p1: Power level when link quality is fair (dBm).
  1294. * @p2: Power level when link quality is poor (dBm).
  1295. * @usesnr: Use Signal to Noise Ratio in TPC
  1296. *
  1297. * returns: 0 on success
  1298. */
  1299. int lbs_set_tpc_cfg(struct lbs_private *priv, int enable, int8_t p0, int8_t p1,
  1300. int8_t p2, int usesnr)
  1301. {
  1302. struct cmd_ds_802_11_tpc_cfg cmd;
  1303. int ret;
  1304. memset(&cmd, 0, sizeof(cmd));
  1305. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  1306. cmd.action = cpu_to_le16(CMD_ACT_SET);
  1307. cmd.enable = !!enable;
  1308. cmd.usesnr = !!usesnr;
  1309. cmd.P0 = p0;
  1310. cmd.P1 = p1;
  1311. cmd.P2 = p2;
  1312. ret = lbs_cmd_with_response(priv, CMD_802_11_TPC_CFG, &cmd);
  1313. return ret;
  1314. }
  1315. /**
  1316. * lbs_set_power_adapt_cfg - Configures the power adaptation settings
  1317. *
  1318. * @priv: A pointer to &struct lbs_private structure
  1319. * @enable: Power adaptation enable
  1320. * @p0: Power level for 1, 2, 5.5 and 11 Mbps (dBm).
  1321. * @p1: Power level for 6, 9, 12, 18, 22, 24 and 36 Mbps (dBm).
  1322. * @p2: Power level for 48 and 54 Mbps (dBm).
  1323. *
  1324. * returns: 0 on Success
  1325. */
  1326. int lbs_set_power_adapt_cfg(struct lbs_private *priv, int enable, int8_t p0,
  1327. int8_t p1, int8_t p2)
  1328. {
  1329. struct cmd_ds_802_11_pa_cfg cmd;
  1330. int ret;
  1331. memset(&cmd, 0, sizeof(cmd));
  1332. cmd.hdr.size = cpu_to_le16(sizeof(cmd));
  1333. cmd.action = cpu_to_le16(CMD_ACT_SET);
  1334. cmd.enable = !!enable;
  1335. cmd.P0 = p0;
  1336. cmd.P1 = p1;
  1337. cmd.P2 = p2;
  1338. ret = lbs_cmd_with_response(priv, CMD_802_11_PA_CFG , &cmd);
  1339. return ret;
  1340. }
  1341. struct cmd_ctrl_node *__lbs_cmd_async(struct lbs_private *priv,
  1342. uint16_t command, struct cmd_header *in_cmd, int in_cmd_size,
  1343. int (*callback)(struct lbs_private *, unsigned long, struct cmd_header *),
  1344. unsigned long callback_arg)
  1345. {
  1346. struct cmd_ctrl_node *cmdnode;
  1347. lbs_deb_enter(LBS_DEB_HOST);
  1348. if (priv->surpriseremoved) {
  1349. lbs_deb_host("PREP_CMD: card removed\n");
  1350. cmdnode = ERR_PTR(-ENOENT);
  1351. goto done;
  1352. }
  1353. /* No commands are allowed in Deep Sleep until we toggle the GPIO
  1354. * to wake up the card and it has signaled that it's ready.
  1355. */
  1356. if (!priv->is_auto_deep_sleep_enabled) {
  1357. if (priv->is_deep_sleep) {
  1358. lbs_deb_cmd("command not allowed in deep sleep\n");
  1359. cmdnode = ERR_PTR(-EBUSY);
  1360. goto done;
  1361. }
  1362. }
  1363. cmdnode = lbs_get_free_cmd_node(priv);
  1364. if (cmdnode == NULL) {
  1365. lbs_deb_host("PREP_CMD: cmdnode is NULL\n");
  1366. /* Wake up main thread to execute next command */
  1367. wake_up_interruptible(&priv->waitq);
  1368. cmdnode = ERR_PTR(-ENOBUFS);
  1369. goto done;
  1370. }
  1371. cmdnode->callback = callback;
  1372. cmdnode->callback_arg = callback_arg;
  1373. /* Copy the incoming command to the buffer */
  1374. memcpy(cmdnode->cmdbuf, in_cmd, in_cmd_size);
  1375. /* Set command, clean result, move to buffer */
  1376. cmdnode->cmdbuf->command = cpu_to_le16(command);
  1377. cmdnode->cmdbuf->size = cpu_to_le16(in_cmd_size);
  1378. cmdnode->cmdbuf->result = 0;
  1379. lbs_deb_host("PREP_CMD: command 0x%04x\n", command);
  1380. cmdnode->cmdwaitqwoken = 0;
  1381. lbs_queue_cmd(priv, cmdnode);
  1382. wake_up_interruptible(&priv->waitq);
  1383. done:
  1384. lbs_deb_leave_args(LBS_DEB_HOST, "ret %p", cmdnode);
  1385. return cmdnode;
  1386. }
  1387. void lbs_cmd_async(struct lbs_private *priv, uint16_t command,
  1388. struct cmd_header *in_cmd, int in_cmd_size)
  1389. {
  1390. lbs_deb_enter(LBS_DEB_CMD);
  1391. __lbs_cmd_async(priv, command, in_cmd, in_cmd_size,
  1392. lbs_cmd_async_callback, 0);
  1393. lbs_deb_leave(LBS_DEB_CMD);
  1394. }
  1395. int __lbs_cmd(struct lbs_private *priv, uint16_t command,
  1396. struct cmd_header *in_cmd, int in_cmd_size,
  1397. int (*callback)(struct lbs_private *, unsigned long, struct cmd_header *),
  1398. unsigned long callback_arg)
  1399. {
  1400. struct cmd_ctrl_node *cmdnode;
  1401. unsigned long flags;
  1402. int ret = 0;
  1403. lbs_deb_enter(LBS_DEB_HOST);
  1404. cmdnode = __lbs_cmd_async(priv, command, in_cmd, in_cmd_size,
  1405. callback, callback_arg);
  1406. if (IS_ERR(cmdnode)) {
  1407. ret = PTR_ERR(cmdnode);
  1408. goto done;
  1409. }
  1410. might_sleep();
  1411. wait_event_interruptible(cmdnode->cmdwait_q, cmdnode->cmdwaitqwoken);
  1412. spin_lock_irqsave(&priv->driver_lock, flags);
  1413. ret = cmdnode->result;
  1414. if (ret)
  1415. netdev_info(priv->dev, "PREP_CMD: command 0x%04x failed: %d\n",
  1416. command, ret);
  1417. __lbs_cleanup_and_insert_cmd(priv, cmdnode);
  1418. spin_unlock_irqrestore(&priv->driver_lock, flags);
  1419. done:
  1420. lbs_deb_leave_args(LBS_DEB_HOST, "ret %d", ret);
  1421. return ret;
  1422. }
  1423. EXPORT_SYMBOL_GPL(__lbs_cmd);