btmrvl_main.c 15 KB

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  1. /**
  2. * Marvell Bluetooth driver
  3. *
  4. * Copyright (C) 2009, Marvell International Ltd.
  5. *
  6. * This software file (the "File") is distributed by Marvell International
  7. * Ltd. under the terms of the GNU General Public License Version 2, June 1991
  8. * (the "License"). You may use, redistribute and/or modify this File in
  9. * accordance with the terms and conditions of the License, a copy of which
  10. * is available by writing to the Free Software Foundation, Inc.,
  11. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or on the
  12. * worldwide web at http://www.gnu.org/licenses/old-licenses/gpl-2.0.txt.
  13. *
  14. *
  15. * THE FILE IS DISTRIBUTED AS-IS, WITHOUT WARRANTY OF ANY KIND, AND THE
  16. * IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE
  17. * ARE EXPRESSLY DISCLAIMED. The License provides additional details about
  18. * this warranty disclaimer.
  19. **/
  20. #include <linux/module.h>
  21. #include <net/bluetooth/bluetooth.h>
  22. #include <net/bluetooth/hci_core.h>
  23. #include "btmrvl_drv.h"
  24. #define VERSION "1.0"
  25. /*
  26. * This function is called by interface specific interrupt handler.
  27. * It updates Power Save & Host Sleep states, and wakes up the main
  28. * thread.
  29. */
  30. void btmrvl_interrupt(struct btmrvl_private *priv)
  31. {
  32. priv->adapter->ps_state = PS_AWAKE;
  33. priv->adapter->wakeup_tries = 0;
  34. priv->adapter->int_count++;
  35. wake_up_interruptible(&priv->main_thread.wait_q);
  36. }
  37. EXPORT_SYMBOL_GPL(btmrvl_interrupt);
  38. void btmrvl_check_evtpkt(struct btmrvl_private *priv, struct sk_buff *skb)
  39. {
  40. struct hci_event_hdr *hdr = (void *) skb->data;
  41. struct hci_ev_cmd_complete *ec;
  42. u16 opcode, ocf;
  43. if (hdr->evt == HCI_EV_CMD_COMPLETE) {
  44. ec = (void *) (skb->data + HCI_EVENT_HDR_SIZE);
  45. opcode = __le16_to_cpu(ec->opcode);
  46. ocf = hci_opcode_ocf(opcode);
  47. if (ocf == BT_CMD_MODULE_CFG_REQ &&
  48. priv->btmrvl_dev.sendcmdflag) {
  49. priv->btmrvl_dev.sendcmdflag = false;
  50. priv->adapter->cmd_complete = true;
  51. wake_up_interruptible(&priv->adapter->cmd_wait_q);
  52. }
  53. }
  54. }
  55. EXPORT_SYMBOL_GPL(btmrvl_check_evtpkt);
  56. int btmrvl_process_event(struct btmrvl_private *priv, struct sk_buff *skb)
  57. {
  58. struct btmrvl_adapter *adapter = priv->adapter;
  59. struct btmrvl_event *event;
  60. int ret = 0;
  61. event = (struct btmrvl_event *) skb->data;
  62. if (event->ec != 0xff) {
  63. BT_DBG("Not Marvell Event=%x", event->ec);
  64. ret = -EINVAL;
  65. goto exit;
  66. }
  67. switch (event->data[0]) {
  68. case BT_CMD_AUTO_SLEEP_MODE:
  69. if (!event->data[2]) {
  70. if (event->data[1] == BT_PS_ENABLE)
  71. adapter->psmode = 1;
  72. else
  73. adapter->psmode = 0;
  74. BT_DBG("PS Mode:%s",
  75. (adapter->psmode) ? "Enable" : "Disable");
  76. } else {
  77. BT_DBG("PS Mode command failed");
  78. }
  79. break;
  80. case BT_CMD_HOST_SLEEP_CONFIG:
  81. if (!event->data[3])
  82. BT_DBG("gpio=%x, gap=%x", event->data[1],
  83. event->data[2]);
  84. else
  85. BT_DBG("HSCFG command failed");
  86. break;
  87. case BT_CMD_HOST_SLEEP_ENABLE:
  88. if (!event->data[1]) {
  89. adapter->hs_state = HS_ACTIVATED;
  90. if (adapter->psmode)
  91. adapter->ps_state = PS_SLEEP;
  92. wake_up_interruptible(&adapter->cmd_wait_q);
  93. BT_DBG("HS ACTIVATED!");
  94. } else {
  95. BT_DBG("HS Enable failed");
  96. }
  97. break;
  98. case BT_CMD_MODULE_CFG_REQ:
  99. if (priv->btmrvl_dev.sendcmdflag &&
  100. event->data[1] == MODULE_BRINGUP_REQ) {
  101. BT_DBG("EVENT:%s",
  102. ((event->data[2] == MODULE_BROUGHT_UP) ||
  103. (event->data[2] == MODULE_ALREADY_UP)) ?
  104. "Bring-up succeed" : "Bring-up failed");
  105. if (event->length > 3 && event->data[3])
  106. priv->btmrvl_dev.dev_type = HCI_AMP;
  107. else
  108. priv->btmrvl_dev.dev_type = HCI_BREDR;
  109. BT_DBG("dev_type: %d", priv->btmrvl_dev.dev_type);
  110. } else if (priv->btmrvl_dev.sendcmdflag &&
  111. event->data[1] == MODULE_SHUTDOWN_REQ) {
  112. BT_DBG("EVENT:%s", (event->data[2]) ?
  113. "Shutdown failed" : "Shutdown succeed");
  114. } else {
  115. BT_DBG("BT_CMD_MODULE_CFG_REQ resp for APP");
  116. ret = -EINVAL;
  117. }
  118. break;
  119. case BT_EVENT_POWER_STATE:
  120. if (event->data[1] == BT_PS_SLEEP)
  121. adapter->ps_state = PS_SLEEP;
  122. BT_DBG("EVENT:%s",
  123. (adapter->ps_state) ? "PS_SLEEP" : "PS_AWAKE");
  124. break;
  125. default:
  126. BT_DBG("Unknown Event=%d", event->data[0]);
  127. ret = -EINVAL;
  128. break;
  129. }
  130. exit:
  131. if (!ret)
  132. kfree_skb(skb);
  133. return ret;
  134. }
  135. EXPORT_SYMBOL_GPL(btmrvl_process_event);
  136. int btmrvl_send_module_cfg_cmd(struct btmrvl_private *priv, int subcmd)
  137. {
  138. struct sk_buff *skb;
  139. struct btmrvl_cmd *cmd;
  140. int ret = 0;
  141. skb = bt_skb_alloc(sizeof(*cmd), GFP_ATOMIC);
  142. if (skb == NULL) {
  143. BT_ERR("No free skb");
  144. return -ENOMEM;
  145. }
  146. cmd = (struct btmrvl_cmd *) skb_put(skb, sizeof(*cmd));
  147. cmd->ocf_ogf = cpu_to_le16(hci_opcode_pack(OGF, BT_CMD_MODULE_CFG_REQ));
  148. cmd->length = 1;
  149. cmd->data[0] = subcmd;
  150. bt_cb(skb)->pkt_type = MRVL_VENDOR_PKT;
  151. skb->dev = (void *) priv->btmrvl_dev.hcidev;
  152. skb_queue_head(&priv->adapter->tx_queue, skb);
  153. priv->btmrvl_dev.sendcmdflag = true;
  154. priv->adapter->cmd_complete = false;
  155. BT_DBG("Queue module cfg Command");
  156. wake_up_interruptible(&priv->main_thread.wait_q);
  157. if (!wait_event_interruptible_timeout(priv->adapter->cmd_wait_q,
  158. priv->adapter->cmd_complete,
  159. msecs_to_jiffies(WAIT_UNTIL_CMD_RESP))) {
  160. ret = -ETIMEDOUT;
  161. BT_ERR("module_cfg_cmd(%x): timeout: %d",
  162. subcmd, priv->btmrvl_dev.sendcmdflag);
  163. }
  164. BT_DBG("module cfg Command done");
  165. return ret;
  166. }
  167. EXPORT_SYMBOL_GPL(btmrvl_send_module_cfg_cmd);
  168. int btmrvl_enable_ps(struct btmrvl_private *priv)
  169. {
  170. struct sk_buff *skb;
  171. struct btmrvl_cmd *cmd;
  172. skb = bt_skb_alloc(sizeof(*cmd), GFP_ATOMIC);
  173. if (skb == NULL) {
  174. BT_ERR("No free skb");
  175. return -ENOMEM;
  176. }
  177. cmd = (struct btmrvl_cmd *) skb_put(skb, sizeof(*cmd));
  178. cmd->ocf_ogf = cpu_to_le16(hci_opcode_pack(OGF,
  179. BT_CMD_AUTO_SLEEP_MODE));
  180. cmd->length = 1;
  181. if (priv->btmrvl_dev.psmode)
  182. cmd->data[0] = BT_PS_ENABLE;
  183. else
  184. cmd->data[0] = BT_PS_DISABLE;
  185. bt_cb(skb)->pkt_type = MRVL_VENDOR_PKT;
  186. skb->dev = (void *) priv->btmrvl_dev.hcidev;
  187. skb_queue_head(&priv->adapter->tx_queue, skb);
  188. BT_DBG("Queue PSMODE Command:%d", cmd->data[0]);
  189. return 0;
  190. }
  191. EXPORT_SYMBOL_GPL(btmrvl_enable_ps);
  192. static int btmrvl_enable_hs(struct btmrvl_private *priv)
  193. {
  194. struct sk_buff *skb;
  195. struct btmrvl_cmd *cmd;
  196. int ret = 0;
  197. skb = bt_skb_alloc(sizeof(*cmd), GFP_ATOMIC);
  198. if (skb == NULL) {
  199. BT_ERR("No free skb");
  200. return -ENOMEM;
  201. }
  202. cmd = (struct btmrvl_cmd *) skb_put(skb, sizeof(*cmd));
  203. cmd->ocf_ogf = cpu_to_le16(hci_opcode_pack(OGF, BT_CMD_HOST_SLEEP_ENABLE));
  204. cmd->length = 0;
  205. bt_cb(skb)->pkt_type = MRVL_VENDOR_PKT;
  206. skb->dev = (void *) priv->btmrvl_dev.hcidev;
  207. skb_queue_head(&priv->adapter->tx_queue, skb);
  208. BT_DBG("Queue hs enable Command");
  209. wake_up_interruptible(&priv->main_thread.wait_q);
  210. if (!wait_event_interruptible_timeout(priv->adapter->cmd_wait_q,
  211. priv->adapter->hs_state,
  212. msecs_to_jiffies(WAIT_UNTIL_HS_STATE_CHANGED))) {
  213. ret = -ETIMEDOUT;
  214. BT_ERR("timeout: %d, %d,%d", priv->adapter->hs_state,
  215. priv->adapter->ps_state,
  216. priv->adapter->wakeup_tries);
  217. }
  218. return ret;
  219. }
  220. int btmrvl_prepare_command(struct btmrvl_private *priv)
  221. {
  222. struct sk_buff *skb = NULL;
  223. struct btmrvl_cmd *cmd;
  224. int ret = 0;
  225. if (priv->btmrvl_dev.hscfgcmd) {
  226. priv->btmrvl_dev.hscfgcmd = 0;
  227. skb = bt_skb_alloc(sizeof(*cmd), GFP_ATOMIC);
  228. if (skb == NULL) {
  229. BT_ERR("No free skb");
  230. return -ENOMEM;
  231. }
  232. cmd = (struct btmrvl_cmd *) skb_put(skb, sizeof(*cmd));
  233. cmd->ocf_ogf = cpu_to_le16(hci_opcode_pack(OGF, BT_CMD_HOST_SLEEP_CONFIG));
  234. cmd->length = 2;
  235. cmd->data[0] = (priv->btmrvl_dev.gpio_gap & 0xff00) >> 8;
  236. cmd->data[1] = (u8) (priv->btmrvl_dev.gpio_gap & 0x00ff);
  237. bt_cb(skb)->pkt_type = MRVL_VENDOR_PKT;
  238. skb->dev = (void *) priv->btmrvl_dev.hcidev;
  239. skb_queue_head(&priv->adapter->tx_queue, skb);
  240. BT_DBG("Queue HSCFG Command, gpio=0x%x, gap=0x%x",
  241. cmd->data[0], cmd->data[1]);
  242. }
  243. if (priv->btmrvl_dev.pscmd) {
  244. priv->btmrvl_dev.pscmd = 0;
  245. btmrvl_enable_ps(priv);
  246. }
  247. if (priv->btmrvl_dev.hscmd) {
  248. priv->btmrvl_dev.hscmd = 0;
  249. if (priv->btmrvl_dev.hsmode) {
  250. ret = btmrvl_enable_hs(priv);
  251. } else {
  252. ret = priv->hw_wakeup_firmware(priv);
  253. priv->adapter->hs_state = HS_DEACTIVATED;
  254. }
  255. }
  256. return ret;
  257. }
  258. static int btmrvl_tx_pkt(struct btmrvl_private *priv, struct sk_buff *skb)
  259. {
  260. int ret = 0;
  261. if (!skb || !skb->data)
  262. return -EINVAL;
  263. if (!skb->len || ((skb->len + BTM_HEADER_LEN) > BTM_UPLD_SIZE)) {
  264. BT_ERR("Tx Error: Bad skb length %d : %d",
  265. skb->len, BTM_UPLD_SIZE);
  266. return -EINVAL;
  267. }
  268. if (skb_headroom(skb) < BTM_HEADER_LEN) {
  269. struct sk_buff *tmp = skb;
  270. skb = skb_realloc_headroom(skb, BTM_HEADER_LEN);
  271. if (!skb) {
  272. BT_ERR("Tx Error: realloc_headroom failed %d",
  273. BTM_HEADER_LEN);
  274. skb = tmp;
  275. return -EINVAL;
  276. }
  277. kfree_skb(tmp);
  278. }
  279. skb_push(skb, BTM_HEADER_LEN);
  280. /* header type: byte[3]
  281. * HCI_COMMAND = 1, ACL_DATA = 2, SCO_DATA = 3, 0xFE = Vendor
  282. * header length: byte[2][1][0]
  283. */
  284. skb->data[0] = (skb->len & 0x0000ff);
  285. skb->data[1] = (skb->len & 0x00ff00) >> 8;
  286. skb->data[2] = (skb->len & 0xff0000) >> 16;
  287. skb->data[3] = bt_cb(skb)->pkt_type;
  288. if (priv->hw_host_to_card)
  289. ret = priv->hw_host_to_card(priv, skb->data, skb->len);
  290. return ret;
  291. }
  292. static void btmrvl_init_adapter(struct btmrvl_private *priv)
  293. {
  294. skb_queue_head_init(&priv->adapter->tx_queue);
  295. priv->adapter->ps_state = PS_AWAKE;
  296. init_waitqueue_head(&priv->adapter->cmd_wait_q);
  297. }
  298. static void btmrvl_free_adapter(struct btmrvl_private *priv)
  299. {
  300. skb_queue_purge(&priv->adapter->tx_queue);
  301. kfree(priv->adapter);
  302. priv->adapter = NULL;
  303. }
  304. static int btmrvl_ioctl(struct hci_dev *hdev,
  305. unsigned int cmd, unsigned long arg)
  306. {
  307. return -ENOIOCTLCMD;
  308. }
  309. static int btmrvl_send_frame(struct sk_buff *skb)
  310. {
  311. struct hci_dev *hdev = (struct hci_dev *) skb->dev;
  312. struct btmrvl_private *priv = NULL;
  313. BT_DBG("type=%d, len=%d", skb->pkt_type, skb->len);
  314. if (!hdev) {
  315. BT_ERR("Frame for unknown HCI device");
  316. return -ENODEV;
  317. }
  318. priv = hci_get_drvdata(hdev);
  319. if (!test_bit(HCI_RUNNING, &hdev->flags)) {
  320. BT_ERR("Failed testing HCI_RUNING, flags=%lx", hdev->flags);
  321. print_hex_dump_bytes("data: ", DUMP_PREFIX_OFFSET,
  322. skb->data, skb->len);
  323. return -EBUSY;
  324. }
  325. switch (bt_cb(skb)->pkt_type) {
  326. case HCI_COMMAND_PKT:
  327. hdev->stat.cmd_tx++;
  328. break;
  329. case HCI_ACLDATA_PKT:
  330. hdev->stat.acl_tx++;
  331. break;
  332. case HCI_SCODATA_PKT:
  333. hdev->stat.sco_tx++;
  334. break;
  335. }
  336. skb_queue_tail(&priv->adapter->tx_queue, skb);
  337. wake_up_interruptible(&priv->main_thread.wait_q);
  338. return 0;
  339. }
  340. static int btmrvl_flush(struct hci_dev *hdev)
  341. {
  342. struct btmrvl_private *priv = hci_get_drvdata(hdev);
  343. skb_queue_purge(&priv->adapter->tx_queue);
  344. return 0;
  345. }
  346. static int btmrvl_close(struct hci_dev *hdev)
  347. {
  348. struct btmrvl_private *priv = hci_get_drvdata(hdev);
  349. if (!test_and_clear_bit(HCI_RUNNING, &hdev->flags))
  350. return 0;
  351. skb_queue_purge(&priv->adapter->tx_queue);
  352. return 0;
  353. }
  354. static int btmrvl_open(struct hci_dev *hdev)
  355. {
  356. set_bit(HCI_RUNNING, &hdev->flags);
  357. return 0;
  358. }
  359. /*
  360. * This function handles the event generated by firmware, rx data
  361. * received from firmware, and tx data sent from kernel.
  362. */
  363. static int btmrvl_service_main_thread(void *data)
  364. {
  365. struct btmrvl_thread *thread = data;
  366. struct btmrvl_private *priv = thread->priv;
  367. struct btmrvl_adapter *adapter = priv->adapter;
  368. wait_queue_t wait;
  369. struct sk_buff *skb;
  370. ulong flags;
  371. init_waitqueue_entry(&wait, current);
  372. for (;;) {
  373. add_wait_queue(&thread->wait_q, &wait);
  374. set_current_state(TASK_INTERRUPTIBLE);
  375. if (adapter->wakeup_tries ||
  376. ((!adapter->int_count) &&
  377. (!priv->btmrvl_dev.tx_dnld_rdy ||
  378. skb_queue_empty(&adapter->tx_queue)))) {
  379. BT_DBG("main_thread is sleeping...");
  380. schedule();
  381. }
  382. set_current_state(TASK_RUNNING);
  383. remove_wait_queue(&thread->wait_q, &wait);
  384. BT_DBG("main_thread woke up");
  385. if (kthread_should_stop()) {
  386. BT_DBG("main_thread: break from main thread");
  387. break;
  388. }
  389. spin_lock_irqsave(&priv->driver_lock, flags);
  390. if (adapter->int_count) {
  391. adapter->int_count = 0;
  392. spin_unlock_irqrestore(&priv->driver_lock, flags);
  393. priv->hw_process_int_status(priv);
  394. } else if (adapter->ps_state == PS_SLEEP &&
  395. !skb_queue_empty(&adapter->tx_queue)) {
  396. spin_unlock_irqrestore(&priv->driver_lock, flags);
  397. adapter->wakeup_tries++;
  398. priv->hw_wakeup_firmware(priv);
  399. continue;
  400. } else {
  401. spin_unlock_irqrestore(&priv->driver_lock, flags);
  402. }
  403. if (adapter->ps_state == PS_SLEEP)
  404. continue;
  405. if (!priv->btmrvl_dev.tx_dnld_rdy)
  406. continue;
  407. skb = skb_dequeue(&adapter->tx_queue);
  408. if (skb) {
  409. if (btmrvl_tx_pkt(priv, skb))
  410. priv->btmrvl_dev.hcidev->stat.err_tx++;
  411. else
  412. priv->btmrvl_dev.hcidev->stat.byte_tx += skb->len;
  413. kfree_skb(skb);
  414. }
  415. }
  416. return 0;
  417. }
  418. int btmrvl_register_hdev(struct btmrvl_private *priv)
  419. {
  420. struct hci_dev *hdev = NULL;
  421. int ret;
  422. hdev = hci_alloc_dev();
  423. if (!hdev) {
  424. BT_ERR("Can not allocate HCI device");
  425. goto err_hdev;
  426. }
  427. priv->btmrvl_dev.hcidev = hdev;
  428. hci_set_drvdata(hdev, priv);
  429. hdev->bus = HCI_SDIO;
  430. hdev->open = btmrvl_open;
  431. hdev->close = btmrvl_close;
  432. hdev->flush = btmrvl_flush;
  433. hdev->send = btmrvl_send_frame;
  434. hdev->ioctl = btmrvl_ioctl;
  435. btmrvl_send_module_cfg_cmd(priv, MODULE_BRINGUP_REQ);
  436. hdev->dev_type = priv->btmrvl_dev.dev_type;
  437. ret = hci_register_dev(hdev);
  438. if (ret < 0) {
  439. BT_ERR("Can not register HCI device");
  440. goto err_hci_register_dev;
  441. }
  442. #ifdef CONFIG_DEBUG_FS
  443. btmrvl_debugfs_init(hdev);
  444. #endif
  445. return 0;
  446. err_hci_register_dev:
  447. hci_free_dev(hdev);
  448. err_hdev:
  449. /* Stop the thread servicing the interrupts */
  450. kthread_stop(priv->main_thread.task);
  451. btmrvl_free_adapter(priv);
  452. kfree(priv);
  453. return -ENOMEM;
  454. }
  455. EXPORT_SYMBOL_GPL(btmrvl_register_hdev);
  456. struct btmrvl_private *btmrvl_add_card(void *card)
  457. {
  458. struct btmrvl_private *priv;
  459. priv = kzalloc(sizeof(*priv), GFP_KERNEL);
  460. if (!priv) {
  461. BT_ERR("Can not allocate priv");
  462. goto err_priv;
  463. }
  464. priv->adapter = kzalloc(sizeof(*priv->adapter), GFP_KERNEL);
  465. if (!priv->adapter) {
  466. BT_ERR("Allocate buffer for btmrvl_adapter failed!");
  467. goto err_adapter;
  468. }
  469. btmrvl_init_adapter(priv);
  470. BT_DBG("Starting kthread...");
  471. priv->main_thread.priv = priv;
  472. spin_lock_init(&priv->driver_lock);
  473. init_waitqueue_head(&priv->main_thread.wait_q);
  474. priv->main_thread.task = kthread_run(btmrvl_service_main_thread,
  475. &priv->main_thread, "btmrvl_main_service");
  476. priv->btmrvl_dev.card = card;
  477. priv->btmrvl_dev.tx_dnld_rdy = true;
  478. return priv;
  479. err_adapter:
  480. kfree(priv);
  481. err_priv:
  482. return NULL;
  483. }
  484. EXPORT_SYMBOL_GPL(btmrvl_add_card);
  485. int btmrvl_remove_card(struct btmrvl_private *priv)
  486. {
  487. struct hci_dev *hdev;
  488. hdev = priv->btmrvl_dev.hcidev;
  489. wake_up_interruptible(&priv->adapter->cmd_wait_q);
  490. kthread_stop(priv->main_thread.task);
  491. #ifdef CONFIG_DEBUG_FS
  492. btmrvl_debugfs_remove(hdev);
  493. #endif
  494. hci_unregister_dev(hdev);
  495. hci_free_dev(hdev);
  496. priv->btmrvl_dev.hcidev = NULL;
  497. btmrvl_free_adapter(priv);
  498. kfree(priv);
  499. return 0;
  500. }
  501. EXPORT_SYMBOL_GPL(btmrvl_remove_card);
  502. MODULE_AUTHOR("Marvell International Ltd.");
  503. MODULE_DESCRIPTION("Marvell Bluetooth driver ver " VERSION);
  504. MODULE_VERSION(VERSION);
  505. MODULE_LICENSE("GPL v2");