port100.c 20 KB

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  1. /*
  2. * Sony NFC Port-100 Series driver
  3. * Copyright (c) 2013, Intel Corporation.
  4. *
  5. * Partly based/Inspired by Stephen Tiedemann's nfcpy
  6. *
  7. * This program is free software; you can redistribute it and/or modify it
  8. * under the terms and conditions of the GNU General Public License,
  9. * version 2, as published by the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope it will be useful, but WITHOUT
  12. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  13. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  14. * more details.
  15. *
  16. */
  17. #include <linux/module.h>
  18. #include <linux/usb.h>
  19. #include <net/nfc/digital.h>
  20. #define VERSION "0.1"
  21. #define SONY_VENDOR_ID 0x054c
  22. #define RCS380_PRODUCT_ID 0x06c1
  23. #define PORT100_PROTOCOLS (NFC_PROTO_JEWEL_MASK | \
  24. NFC_PROTO_MIFARE_MASK | \
  25. NFC_PROTO_FELICA_MASK | \
  26. NFC_PROTO_NFC_DEP_MASK)
  27. #define PORT100_CAPABILITIES (NFC_DIGITAL_DRV_CAPS_IN_CRC | \
  28. NFC_DIGITAL_DRV_CAPS_TG_CRC)
  29. /* Standard port100 frame definitions */
  30. #define PORT100_FRAME_HEADER_LEN (sizeof(struct port100_frame) \
  31. + 2) /* data[0] CC, data[1] SCC */
  32. #define PORT100_FRAME_TAIL_LEN 2 /* data[len] DCS, data[len + 1] postamble*/
  33. #define PORT100_COMM_RF_HEAD_MAX_LEN (sizeof(struct port100_tg_comm_rf_cmd))
  34. /*
  35. * Max extended frame payload len, excluding CC and SCC
  36. * which are already in PORT100_FRAME_HEADER_LEN.
  37. */
  38. #define PORT100_FRAME_MAX_PAYLOAD_LEN 1001
  39. #define PORT100_FRAME_ACK_SIZE 6 /* Preamble (1), SoPC (2), ACK Code (2),
  40. Postamble (1) */
  41. static u8 ack_frame[PORT100_FRAME_ACK_SIZE] = {
  42. 0x00, 0x00, 0xff, 0x00, 0xff, 0x00
  43. };
  44. #define PORT100_FRAME_CHECKSUM(f) (f->data[le16_to_cpu(f->datalen)])
  45. #define PORT100_FRAME_POSTAMBLE(f) (f->data[le16_to_cpu(f->datalen) + 1])
  46. /* start of frame */
  47. #define PORT100_FRAME_SOF 0x00FF
  48. #define PORT100_FRAME_EXT 0xFFFF
  49. #define PORT100_FRAME_ACK 0x00FF
  50. /* Port-100 command: in or out */
  51. #define PORT100_FRAME_DIRECTION(f) (f->data[0]) /* CC */
  52. #define PORT100_FRAME_DIR_OUT 0xD6
  53. #define PORT100_FRAME_DIR_IN 0xD7
  54. /* Port-100 sub-command */
  55. #define PORT100_FRAME_CMD(f) (f->data[1]) /* SCC */
  56. #define PORT100_CMD_GET_FIRMWARE_VERSION 0x20
  57. #define PORT100_CMD_GET_COMMAND_TYPE 0x28
  58. #define PORT100_CMD_SET_COMMAND_TYPE 0x2A
  59. #define PORT100_CMD_RESPONSE(cmd) (cmd + 1)
  60. #define PORT100_CMD_TYPE_IS_SUPPORTED(mask, cmd_type) \
  61. ((mask) & (0x01 << (cmd_type)))
  62. #define PORT100_CMD_TYPE_0 0
  63. #define PORT100_CMD_TYPE_1 1
  64. struct port100;
  65. typedef void (*port100_send_async_complete_t)(struct port100 *dev, void *arg,
  66. struct sk_buff *resp);
  67. struct port100 {
  68. struct nfc_digital_dev *nfc_digital_dev;
  69. int skb_headroom;
  70. int skb_tailroom;
  71. struct usb_device *udev;
  72. struct usb_interface *interface;
  73. struct urb *out_urb;
  74. struct urb *in_urb;
  75. struct work_struct cmd_complete_work;
  76. u8 cmd_type;
  77. /* The digital stack serializes commands to be sent. There is no need
  78. * for any queuing/locking mechanism at driver level.
  79. */
  80. struct port100_cmd *cmd;
  81. };
  82. struct port100_cmd {
  83. u8 code;
  84. int status;
  85. struct sk_buff *req;
  86. struct sk_buff *resp;
  87. int resp_len;
  88. port100_send_async_complete_t complete_cb;
  89. void *complete_cb_context;
  90. };
  91. struct port100_frame {
  92. u8 preamble;
  93. __be16 start_frame;
  94. __be16 extended_frame;
  95. __le16 datalen;
  96. u8 datalen_checksum;
  97. u8 data[];
  98. } __packed;
  99. struct port100_ack_frame {
  100. u8 preamble;
  101. __be16 start_frame;
  102. __be16 ack_frame;
  103. u8 postambule;
  104. } __packed;
  105. struct port100_cb_arg {
  106. nfc_digital_cmd_complete_t complete_cb;
  107. void *complete_arg;
  108. u8 mdaa;
  109. };
  110. struct port100_tg_comm_rf_cmd {
  111. __le16 guard_time;
  112. __le16 send_timeout;
  113. u8 mdaa;
  114. u8 nfca_param[6];
  115. u8 nfcf_param[18];
  116. u8 mf_halted;
  117. u8 arae_flag;
  118. __le16 recv_timeout;
  119. u8 data[];
  120. } __packed;
  121. /* The rule: value + checksum = 0 */
  122. static inline u8 port100_checksum(u16 value)
  123. {
  124. return ~(((u8 *)&value)[0] + ((u8 *)&value)[1]) + 1;
  125. }
  126. /* The rule: sum(data elements) + checksum = 0 */
  127. static u8 port100_data_checksum(u8 *data, int datalen)
  128. {
  129. u8 sum = 0;
  130. int i;
  131. for (i = 0; i < datalen; i++)
  132. sum += data[i];
  133. return port100_checksum(sum);
  134. }
  135. static void port100_tx_frame_init(void *_frame, u8 cmd_code)
  136. {
  137. struct port100_frame *frame = _frame;
  138. frame->preamble = 0;
  139. frame->start_frame = cpu_to_be16(PORT100_FRAME_SOF);
  140. frame->extended_frame = cpu_to_be16(PORT100_FRAME_EXT);
  141. PORT100_FRAME_DIRECTION(frame) = PORT100_FRAME_DIR_OUT;
  142. PORT100_FRAME_CMD(frame) = cmd_code;
  143. frame->datalen = cpu_to_le16(2);
  144. }
  145. static void port100_tx_frame_finish(void *_frame)
  146. {
  147. struct port100_frame *frame = _frame;
  148. frame->datalen_checksum = port100_checksum(le16_to_cpu(frame->datalen));
  149. PORT100_FRAME_CHECKSUM(frame) =
  150. port100_data_checksum(frame->data, le16_to_cpu(frame->datalen));
  151. PORT100_FRAME_POSTAMBLE(frame) = 0;
  152. }
  153. static void port100_tx_update_payload_len(void *_frame, int len)
  154. {
  155. struct port100_frame *frame = _frame;
  156. frame->datalen = cpu_to_le16(le16_to_cpu(frame->datalen) + len);
  157. }
  158. static bool port100_rx_frame_is_valid(void *_frame)
  159. {
  160. u8 checksum;
  161. struct port100_frame *frame = _frame;
  162. if (frame->start_frame != cpu_to_be16(PORT100_FRAME_SOF) ||
  163. frame->extended_frame != cpu_to_be16(PORT100_FRAME_EXT))
  164. return false;
  165. checksum = port100_checksum(le16_to_cpu(frame->datalen));
  166. if (checksum != frame->datalen_checksum)
  167. return false;
  168. checksum = port100_data_checksum(frame->data,
  169. le16_to_cpu(frame->datalen));
  170. if (checksum != PORT100_FRAME_CHECKSUM(frame))
  171. return false;
  172. return true;
  173. }
  174. static bool port100_rx_frame_is_ack(struct port100_ack_frame *frame)
  175. {
  176. return (frame->start_frame == cpu_to_be16(PORT100_FRAME_SOF) &&
  177. frame->ack_frame == cpu_to_be16(PORT100_FRAME_ACK));
  178. }
  179. static inline int port100_rx_frame_size(void *frame)
  180. {
  181. struct port100_frame *f = frame;
  182. return sizeof(struct port100_frame) + le16_to_cpu(f->datalen) +
  183. PORT100_FRAME_TAIL_LEN;
  184. }
  185. static bool port100_rx_frame_is_cmd_response(struct port100 *dev, void *frame)
  186. {
  187. struct port100_frame *f = frame;
  188. return (PORT100_FRAME_CMD(f) == PORT100_CMD_RESPONSE(dev->cmd->code));
  189. }
  190. static void port100_recv_response(struct urb *urb)
  191. {
  192. struct port100 *dev = urb->context;
  193. struct port100_cmd *cmd = dev->cmd;
  194. u8 *in_frame;
  195. cmd->status = urb->status;
  196. switch (urb->status) {
  197. case 0:
  198. break; /* success */
  199. case -ECONNRESET:
  200. case -ENOENT:
  201. nfc_err(&dev->interface->dev,
  202. "The urb has been canceled (status %d)", urb->status);
  203. goto sched_wq;
  204. case -ESHUTDOWN:
  205. default:
  206. nfc_err(&dev->interface->dev, "Urb failure (status %d)",
  207. urb->status);
  208. goto sched_wq;
  209. }
  210. in_frame = dev->in_urb->transfer_buffer;
  211. if (!port100_rx_frame_is_valid(in_frame)) {
  212. nfc_err(&dev->interface->dev, "Received an invalid frame");
  213. cmd->status = -EIO;
  214. goto sched_wq;
  215. }
  216. print_hex_dump_debug("PORT100 RX: ", DUMP_PREFIX_NONE, 16, 1, in_frame,
  217. port100_rx_frame_size(in_frame), false);
  218. if (!port100_rx_frame_is_cmd_response(dev, in_frame)) {
  219. nfc_err(&dev->interface->dev,
  220. "It's not the response to the last command");
  221. cmd->status = -EIO;
  222. goto sched_wq;
  223. }
  224. sched_wq:
  225. schedule_work(&dev->cmd_complete_work);
  226. }
  227. static int port100_submit_urb_for_response(struct port100 *dev, gfp_t flags)
  228. {
  229. dev->in_urb->complete = port100_recv_response;
  230. return usb_submit_urb(dev->in_urb, flags);
  231. }
  232. static void port100_recv_ack(struct urb *urb)
  233. {
  234. struct port100 *dev = urb->context;
  235. struct port100_cmd *cmd = dev->cmd;
  236. struct port100_ack_frame *in_frame;
  237. int rc;
  238. cmd->status = urb->status;
  239. switch (urb->status) {
  240. case 0:
  241. break; /* success */
  242. case -ECONNRESET:
  243. case -ENOENT:
  244. nfc_err(&dev->interface->dev,
  245. "The urb has been stopped (status %d)", urb->status);
  246. goto sched_wq;
  247. case -ESHUTDOWN:
  248. default:
  249. nfc_err(&dev->interface->dev, "Urb failure (status %d)",
  250. urb->status);
  251. goto sched_wq;
  252. }
  253. in_frame = dev->in_urb->transfer_buffer;
  254. if (!port100_rx_frame_is_ack(in_frame)) {
  255. nfc_err(&dev->interface->dev, "Received an invalid ack");
  256. cmd->status = -EIO;
  257. goto sched_wq;
  258. }
  259. rc = port100_submit_urb_for_response(dev, GFP_ATOMIC);
  260. if (rc) {
  261. nfc_err(&dev->interface->dev,
  262. "usb_submit_urb failed with result %d", rc);
  263. cmd->status = rc;
  264. goto sched_wq;
  265. }
  266. return;
  267. sched_wq:
  268. schedule_work(&dev->cmd_complete_work);
  269. }
  270. static int port100_submit_urb_for_ack(struct port100 *dev, gfp_t flags)
  271. {
  272. dev->in_urb->complete = port100_recv_ack;
  273. return usb_submit_urb(dev->in_urb, flags);
  274. }
  275. static int port100_send_ack(struct port100 *dev)
  276. {
  277. int rc;
  278. dev->out_urb->transfer_buffer = ack_frame;
  279. dev->out_urb->transfer_buffer_length = sizeof(ack_frame);
  280. rc = usb_submit_urb(dev->out_urb, GFP_KERNEL);
  281. return rc;
  282. }
  283. static int port100_send_frame_async(struct port100 *dev, struct sk_buff *out,
  284. struct sk_buff *in, int in_len)
  285. {
  286. int rc;
  287. dev->out_urb->transfer_buffer = out->data;
  288. dev->out_urb->transfer_buffer_length = out->len;
  289. dev->in_urb->transfer_buffer = in->data;
  290. dev->in_urb->transfer_buffer_length = in_len;
  291. print_hex_dump_debug("PORT100 TX: ", DUMP_PREFIX_NONE, 16, 1,
  292. out->data, out->len, false);
  293. rc = usb_submit_urb(dev->out_urb, GFP_KERNEL);
  294. if (rc)
  295. return rc;
  296. rc = port100_submit_urb_for_ack(dev, GFP_KERNEL);
  297. if (rc)
  298. goto error;
  299. return 0;
  300. error:
  301. usb_unlink_urb(dev->out_urb);
  302. return rc;
  303. }
  304. static void port100_build_cmd_frame(struct port100 *dev, u8 cmd_code,
  305. struct sk_buff *skb)
  306. {
  307. /* payload is already there, just update datalen */
  308. int payload_len = skb->len;
  309. skb_push(skb, PORT100_FRAME_HEADER_LEN);
  310. skb_put(skb, PORT100_FRAME_TAIL_LEN);
  311. port100_tx_frame_init(skb->data, cmd_code);
  312. port100_tx_update_payload_len(skb->data, payload_len);
  313. port100_tx_frame_finish(skb->data);
  314. }
  315. static void port100_send_async_complete(struct port100 *dev)
  316. {
  317. struct port100_cmd *cmd = dev->cmd;
  318. int status = cmd->status;
  319. struct sk_buff *req = cmd->req;
  320. struct sk_buff *resp = cmd->resp;
  321. dev_kfree_skb(req);
  322. dev->cmd = NULL;
  323. if (status < 0) {
  324. cmd->complete_cb(dev, cmd->complete_cb_context,
  325. ERR_PTR(status));
  326. dev_kfree_skb(resp);
  327. goto done;
  328. }
  329. skb_put(resp, port100_rx_frame_size(resp->data));
  330. skb_pull(resp, PORT100_FRAME_HEADER_LEN);
  331. skb_trim(resp, resp->len - PORT100_FRAME_TAIL_LEN);
  332. cmd->complete_cb(dev, cmd->complete_cb_context, resp);
  333. done:
  334. kfree(cmd);
  335. }
  336. static int port100_send_cmd_async(struct port100 *dev, u8 cmd_code,
  337. struct sk_buff *req,
  338. port100_send_async_complete_t complete_cb,
  339. void *complete_cb_context)
  340. {
  341. struct port100_cmd *cmd;
  342. struct sk_buff *resp;
  343. int rc;
  344. int resp_len = PORT100_FRAME_HEADER_LEN +
  345. PORT100_FRAME_MAX_PAYLOAD_LEN +
  346. PORT100_FRAME_TAIL_LEN;
  347. resp = alloc_skb(resp_len, GFP_KERNEL);
  348. if (!resp)
  349. return -ENOMEM;
  350. cmd = kzalloc(sizeof(*cmd), GFP_KERNEL);
  351. if (!cmd) {
  352. dev_kfree_skb(resp);
  353. return -ENOMEM;
  354. }
  355. cmd->code = cmd_code;
  356. cmd->req = req;
  357. cmd->resp = resp;
  358. cmd->resp_len = resp_len;
  359. cmd->complete_cb = complete_cb;
  360. cmd->complete_cb_context = complete_cb_context;
  361. port100_build_cmd_frame(dev, cmd_code, req);
  362. dev->cmd = cmd;
  363. rc = port100_send_frame_async(dev, req, resp, resp_len);
  364. if (rc) {
  365. kfree(cmd);
  366. dev_kfree_skb(resp);
  367. dev->cmd = NULL;
  368. }
  369. return rc;
  370. }
  371. struct port100_sync_cmd_response {
  372. struct sk_buff *resp;
  373. struct completion done;
  374. };
  375. static void port100_wq_cmd_complete(struct work_struct *work)
  376. {
  377. struct port100 *dev = container_of(work, struct port100,
  378. cmd_complete_work);
  379. port100_send_async_complete(dev);
  380. }
  381. static void port100_send_sync_complete(struct port100 *dev, void *_arg,
  382. struct sk_buff *resp)
  383. {
  384. struct port100_sync_cmd_response *arg = _arg;
  385. arg->resp = resp;
  386. complete(&arg->done);
  387. }
  388. static struct sk_buff *port100_send_cmd_sync(struct port100 *dev, u8 cmd_code,
  389. struct sk_buff *req)
  390. {
  391. int rc;
  392. struct port100_sync_cmd_response arg;
  393. init_completion(&arg.done);
  394. rc = port100_send_cmd_async(dev, cmd_code, req,
  395. port100_send_sync_complete, &arg);
  396. if (rc) {
  397. dev_kfree_skb(req);
  398. return ERR_PTR(rc);
  399. }
  400. wait_for_completion(&arg.done);
  401. return arg.resp;
  402. }
  403. static void port100_send_complete(struct urb *urb)
  404. {
  405. struct port100 *dev = urb->context;
  406. switch (urb->status) {
  407. case 0:
  408. break; /* success */
  409. case -ECONNRESET:
  410. case -ENOENT:
  411. nfc_err(&dev->interface->dev,
  412. "The urb has been stopped (status %d)", urb->status);
  413. break;
  414. case -ESHUTDOWN:
  415. default:
  416. nfc_err(&dev->interface->dev, "Urb failure (status %d)",
  417. urb->status);
  418. }
  419. }
  420. static void port100_abort_cmd(struct nfc_digital_dev *ddev)
  421. {
  422. struct port100 *dev = nfc_digital_get_drvdata(ddev);
  423. /* An ack will cancel the last issued command */
  424. port100_send_ack(dev);
  425. /* cancel the urb request */
  426. usb_kill_urb(dev->in_urb);
  427. }
  428. static struct sk_buff *port100_alloc_skb(struct port100 *dev, unsigned int size)
  429. {
  430. struct sk_buff *skb;
  431. skb = alloc_skb(dev->skb_headroom + dev->skb_tailroom + size,
  432. GFP_KERNEL);
  433. if (skb)
  434. skb_reserve(skb, dev->skb_headroom);
  435. return skb;
  436. }
  437. static int port100_set_command_type(struct port100 *dev, u8 command_type)
  438. {
  439. struct sk_buff *skb;
  440. struct sk_buff *resp;
  441. int rc;
  442. skb = port100_alloc_skb(dev, 1);
  443. if (!skb)
  444. return -ENOMEM;
  445. *skb_put(skb, sizeof(u8)) = command_type;
  446. resp = port100_send_cmd_sync(dev, PORT100_CMD_SET_COMMAND_TYPE, skb);
  447. if (IS_ERR(resp))
  448. return PTR_ERR(resp);
  449. rc = resp->data[0];
  450. dev_kfree_skb(resp);
  451. return rc;
  452. }
  453. static u64 port100_get_command_type_mask(struct port100 *dev)
  454. {
  455. struct sk_buff *skb;
  456. struct sk_buff *resp;
  457. u64 mask;
  458. skb = port100_alloc_skb(dev, 0);
  459. if (!skb)
  460. return -ENOMEM;
  461. resp = port100_send_cmd_sync(dev, PORT100_CMD_GET_COMMAND_TYPE, skb);
  462. if (IS_ERR(resp))
  463. return PTR_ERR(resp);
  464. if (resp->len < 8)
  465. mask = 0;
  466. else
  467. mask = be64_to_cpu(*(__be64 *)resp->data);
  468. dev_kfree_skb(resp);
  469. return mask;
  470. }
  471. static u16 port100_get_firmware_version(struct port100 *dev)
  472. {
  473. struct sk_buff *skb;
  474. struct sk_buff *resp;
  475. u16 fw_ver;
  476. skb = port100_alloc_skb(dev, 0);
  477. if (!skb)
  478. return 0;
  479. resp = port100_send_cmd_sync(dev, PORT100_CMD_GET_FIRMWARE_VERSION,
  480. skb);
  481. if (IS_ERR(resp))
  482. return 0;
  483. fw_ver = le16_to_cpu(*(__le16 *)resp->data);
  484. dev_kfree_skb(resp);
  485. return fw_ver;
  486. }
  487. static int port100_switch_rf(struct nfc_digital_dev *ddev, bool on)
  488. {
  489. return -EOPNOTSUPP;
  490. }
  491. static int port100_in_configure_hw(struct nfc_digital_dev *ddev, int type,
  492. int param)
  493. {
  494. return -EOPNOTSUPP;
  495. }
  496. static int port100_in_send_cmd(struct nfc_digital_dev *ddev,
  497. struct sk_buff *skb, u16 _timeout,
  498. nfc_digital_cmd_complete_t cb, void *arg)
  499. {
  500. return -EOPNOTSUPP;
  501. }
  502. static int port100_tg_configure_hw(struct nfc_digital_dev *ddev, int type,
  503. int param)
  504. {
  505. return -EOPNOTSUPP;
  506. }
  507. static int port100_tg_send_cmd(struct nfc_digital_dev *ddev,
  508. struct sk_buff *skb, u16 timeout,
  509. nfc_digital_cmd_complete_t cb, void *arg)
  510. {
  511. return -EOPNOTSUPP;
  512. }
  513. static int port100_listen_mdaa(struct nfc_digital_dev *ddev,
  514. struct digital_tg_mdaa_params *params,
  515. u16 timeout,
  516. nfc_digital_cmd_complete_t cb, void *arg)
  517. {
  518. return -EOPNOTSUPP;
  519. }
  520. static int port100_listen(struct nfc_digital_dev *ddev, u16 timeout,
  521. nfc_digital_cmd_complete_t cb, void *arg)
  522. {
  523. return -EOPNOTSUPP;
  524. }
  525. static struct nfc_digital_ops port100_digital_ops = {
  526. .in_configure_hw = port100_in_configure_hw,
  527. .in_send_cmd = port100_in_send_cmd,
  528. .tg_listen_mdaa = port100_listen_mdaa,
  529. .tg_listen = port100_listen,
  530. .tg_configure_hw = port100_tg_configure_hw,
  531. .tg_send_cmd = port100_tg_send_cmd,
  532. .switch_rf = port100_switch_rf,
  533. .abort_cmd = port100_abort_cmd,
  534. };
  535. static const struct usb_device_id port100_table[] = {
  536. { .match_flags = USB_DEVICE_ID_MATCH_DEVICE,
  537. .idVendor = SONY_VENDOR_ID,
  538. .idProduct = RCS380_PRODUCT_ID,
  539. },
  540. { }
  541. };
  542. MODULE_DEVICE_TABLE(usb, port100_table);
  543. static int port100_probe(struct usb_interface *interface,
  544. const struct usb_device_id *id)
  545. {
  546. struct port100 *dev;
  547. int rc;
  548. struct usb_host_interface *iface_desc;
  549. struct usb_endpoint_descriptor *endpoint;
  550. int in_endpoint;
  551. int out_endpoint;
  552. u16 fw_version;
  553. u64 cmd_type_mask;
  554. int i;
  555. dev = devm_kzalloc(&interface->dev, sizeof(struct port100), GFP_KERNEL);
  556. if (!dev)
  557. return -ENOMEM;
  558. dev->udev = usb_get_dev(interface_to_usbdev(interface));
  559. dev->interface = interface;
  560. usb_set_intfdata(interface, dev);
  561. in_endpoint = out_endpoint = 0;
  562. iface_desc = interface->cur_altsetting;
  563. for (i = 0; i < iface_desc->desc.bNumEndpoints; ++i) {
  564. endpoint = &iface_desc->endpoint[i].desc;
  565. if (!in_endpoint && usb_endpoint_is_bulk_in(endpoint))
  566. in_endpoint = endpoint->bEndpointAddress;
  567. if (!out_endpoint && usb_endpoint_is_bulk_out(endpoint))
  568. out_endpoint = endpoint->bEndpointAddress;
  569. }
  570. if (!in_endpoint || !out_endpoint) {
  571. nfc_err(&interface->dev,
  572. "Could not find bulk-in or bulk-out endpoint\n");
  573. rc = -ENODEV;
  574. goto error;
  575. }
  576. dev->in_urb = usb_alloc_urb(0, GFP_KERNEL);
  577. dev->out_urb = usb_alloc_urb(0, GFP_KERNEL);
  578. if (!dev->in_urb || !dev->out_urb) {
  579. nfc_err(&interface->dev, "Could not allocate USB URBs\n");
  580. rc = -ENOMEM;
  581. goto error;
  582. }
  583. usb_fill_bulk_urb(dev->in_urb, dev->udev,
  584. usb_rcvbulkpipe(dev->udev, in_endpoint),
  585. NULL, 0, NULL, dev);
  586. usb_fill_bulk_urb(dev->out_urb, dev->udev,
  587. usb_sndbulkpipe(dev->udev, out_endpoint),
  588. NULL, 0, port100_send_complete, dev);
  589. dev->skb_headroom = PORT100_FRAME_HEADER_LEN +
  590. PORT100_COMM_RF_HEAD_MAX_LEN;
  591. dev->skb_tailroom = PORT100_FRAME_TAIL_LEN;
  592. INIT_WORK(&dev->cmd_complete_work, port100_wq_cmd_complete);
  593. /* The first thing to do with the Port-100 is to set the command type
  594. * to be used. If supported we use command type 1. 0 otherwise.
  595. */
  596. cmd_type_mask = port100_get_command_type_mask(dev);
  597. if (!cmd_type_mask) {
  598. nfc_err(&interface->dev,
  599. "Could not get supported command types.\n");
  600. rc = -ENODEV;
  601. goto error;
  602. }
  603. if (PORT100_CMD_TYPE_IS_SUPPORTED(cmd_type_mask, PORT100_CMD_TYPE_1))
  604. dev->cmd_type = PORT100_CMD_TYPE_1;
  605. else
  606. dev->cmd_type = PORT100_CMD_TYPE_0;
  607. rc = port100_set_command_type(dev, dev->cmd_type);
  608. if (rc) {
  609. nfc_err(&interface->dev,
  610. "The device does not support command type %u.\n",
  611. dev->cmd_type);
  612. goto error;
  613. }
  614. fw_version = port100_get_firmware_version(dev);
  615. if (!fw_version)
  616. nfc_err(&interface->dev,
  617. "Could not get device firmware version.\n");
  618. nfc_info(&interface->dev,
  619. "Sony NFC Port-100 Series attached (firmware v%x.%02x)\n",
  620. (fw_version & 0xFF00) >> 8, fw_version & 0xFF);
  621. dev->nfc_digital_dev = nfc_digital_allocate_device(&port100_digital_ops,
  622. PORT100_PROTOCOLS,
  623. PORT100_CAPABILITIES,
  624. dev->skb_headroom,
  625. dev->skb_tailroom);
  626. if (!dev->nfc_digital_dev) {
  627. nfc_err(&interface->dev,
  628. "Could not allocate nfc_digital_dev.\n");
  629. rc = -ENOMEM;
  630. goto error;
  631. }
  632. nfc_digital_set_parent_dev(dev->nfc_digital_dev, &interface->dev);
  633. nfc_digital_set_drvdata(dev->nfc_digital_dev, dev);
  634. rc = nfc_digital_register_device(dev->nfc_digital_dev);
  635. if (rc) {
  636. nfc_err(&interface->dev,
  637. "Could not register digital device.\n");
  638. goto free_nfc_dev;
  639. }
  640. return 0;
  641. free_nfc_dev:
  642. nfc_digital_free_device(dev->nfc_digital_dev);
  643. error:
  644. usb_free_urb(dev->in_urb);
  645. usb_free_urb(dev->out_urb);
  646. usb_put_dev(dev->udev);
  647. return rc;
  648. }
  649. static void port100_disconnect(struct usb_interface *interface)
  650. {
  651. struct port100 *dev;
  652. dev = usb_get_intfdata(interface);
  653. usb_set_intfdata(interface, NULL);
  654. nfc_digital_unregister_device(dev->nfc_digital_dev);
  655. nfc_digital_free_device(dev->nfc_digital_dev);
  656. usb_kill_urb(dev->in_urb);
  657. usb_kill_urb(dev->out_urb);
  658. usb_free_urb(dev->in_urb);
  659. usb_free_urb(dev->out_urb);
  660. kfree(dev->cmd);
  661. nfc_info(&interface->dev, "Sony Port-100 NFC device disconnected");
  662. }
  663. static struct usb_driver port100_driver = {
  664. .name = "port100",
  665. .probe = port100_probe,
  666. .disconnect = port100_disconnect,
  667. .id_table = port100_table,
  668. };
  669. module_usb_driver(port100_driver);
  670. MODULE_DESCRIPTION("NFC Port-100 series usb driver ver " VERSION);
  671. MODULE_VERSION(VERSION);
  672. MODULE_LICENSE("GPL");