ntf.c 16 KB

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  1. /*
  2. * The NFC Controller Interface is the communication protocol between an
  3. * NFC Controller (NFCC) and a Device Host (DH).
  4. *
  5. * Copyright (C) 2011 Texas Instruments, Inc.
  6. *
  7. * Written by Ilan Elias <ilane@ti.com>
  8. *
  9. * Acknowledgements:
  10. * This file is based on hci_event.c, which was written
  11. * by Maxim Krasnyansky.
  12. *
  13. * This program is free software; you can redistribute it and/or modify
  14. * it under the terms of the GNU General Public License version 2
  15. * as published by the Free Software Foundation
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; if not, write to the Free Software
  24. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  25. *
  26. */
  27. #define pr_fmt(fmt) KBUILD_MODNAME ": %s: " fmt, __func__
  28. #include <linux/types.h>
  29. #include <linux/interrupt.h>
  30. #include <linux/bitops.h>
  31. #include <linux/skbuff.h>
  32. #include "../nfc.h"
  33. #include <net/nfc/nci.h>
  34. #include <net/nfc/nci_core.h>
  35. #include <linux/nfc.h>
  36. /* Handle NCI Notification packets */
  37. static void nci_core_conn_credits_ntf_packet(struct nci_dev *ndev,
  38. struct sk_buff *skb)
  39. {
  40. struct nci_core_conn_credit_ntf *ntf = (void *) skb->data;
  41. int i;
  42. pr_debug("num_entries %d\n", ntf->num_entries);
  43. if (ntf->num_entries > NCI_MAX_NUM_CONN)
  44. ntf->num_entries = NCI_MAX_NUM_CONN;
  45. /* update the credits */
  46. for (i = 0; i < ntf->num_entries; i++) {
  47. ntf->conn_entries[i].conn_id =
  48. nci_conn_id(&ntf->conn_entries[i].conn_id);
  49. pr_debug("entry[%d]: conn_id %d, credits %d\n",
  50. i, ntf->conn_entries[i].conn_id,
  51. ntf->conn_entries[i].credits);
  52. if (ntf->conn_entries[i].conn_id == NCI_STATIC_RF_CONN_ID) {
  53. /* found static rf connection */
  54. atomic_add(ntf->conn_entries[i].credits,
  55. &ndev->credits_cnt);
  56. }
  57. }
  58. /* trigger the next tx */
  59. if (!skb_queue_empty(&ndev->tx_q))
  60. queue_work(ndev->tx_wq, &ndev->tx_work);
  61. }
  62. static void nci_core_generic_error_ntf_packet(struct nci_dev *ndev,
  63. struct sk_buff *skb)
  64. {
  65. __u8 status = skb->data[0];
  66. pr_debug("status 0x%x\n", status);
  67. if (atomic_read(&ndev->state) == NCI_W4_HOST_SELECT) {
  68. /* Activation failed, so complete the request
  69. (the state remains the same) */
  70. nci_req_complete(ndev, status);
  71. }
  72. }
  73. static void nci_core_conn_intf_error_ntf_packet(struct nci_dev *ndev,
  74. struct sk_buff *skb)
  75. {
  76. struct nci_core_intf_error_ntf *ntf = (void *) skb->data;
  77. ntf->conn_id = nci_conn_id(&ntf->conn_id);
  78. pr_debug("status 0x%x, conn_id %d\n", ntf->status, ntf->conn_id);
  79. /* complete the data exchange transaction, if exists */
  80. if (test_bit(NCI_DATA_EXCHANGE, &ndev->flags))
  81. nci_data_exchange_complete(ndev, NULL, -EIO);
  82. }
  83. static __u8 *nci_extract_rf_params_nfca_passive_poll(struct nci_dev *ndev,
  84. struct rf_tech_specific_params_nfca_poll *nfca_poll,
  85. __u8 *data)
  86. {
  87. nfca_poll->sens_res = __le16_to_cpu(*((__u16 *)data));
  88. data += 2;
  89. nfca_poll->nfcid1_len = min_t(__u8, *data++, NFC_NFCID1_MAXSIZE);
  90. pr_debug("sens_res 0x%x, nfcid1_len %d\n",
  91. nfca_poll->sens_res, nfca_poll->nfcid1_len);
  92. memcpy(nfca_poll->nfcid1, data, nfca_poll->nfcid1_len);
  93. data += nfca_poll->nfcid1_len;
  94. nfca_poll->sel_res_len = *data++;
  95. if (nfca_poll->sel_res_len != 0)
  96. nfca_poll->sel_res = *data++;
  97. pr_debug("sel_res_len %d, sel_res 0x%x\n",
  98. nfca_poll->sel_res_len,
  99. nfca_poll->sel_res);
  100. return data;
  101. }
  102. static __u8 *nci_extract_rf_params_nfcb_passive_poll(struct nci_dev *ndev,
  103. struct rf_tech_specific_params_nfcb_poll *nfcb_poll,
  104. __u8 *data)
  105. {
  106. nfcb_poll->sensb_res_len = min_t(__u8, *data++, NFC_SENSB_RES_MAXSIZE);
  107. pr_debug("sensb_res_len %d\n", nfcb_poll->sensb_res_len);
  108. memcpy(nfcb_poll->sensb_res, data, nfcb_poll->sensb_res_len);
  109. data += nfcb_poll->sensb_res_len;
  110. return data;
  111. }
  112. static __u8 *nci_extract_rf_params_nfcf_passive_poll(struct nci_dev *ndev,
  113. struct rf_tech_specific_params_nfcf_poll *nfcf_poll,
  114. __u8 *data)
  115. {
  116. nfcf_poll->bit_rate = *data++;
  117. nfcf_poll->sensf_res_len = min_t(__u8, *data++, NFC_SENSF_RES_MAXSIZE);
  118. pr_debug("bit_rate %d, sensf_res_len %d\n",
  119. nfcf_poll->bit_rate, nfcf_poll->sensf_res_len);
  120. memcpy(nfcf_poll->sensf_res, data, nfcf_poll->sensf_res_len);
  121. data += nfcf_poll->sensf_res_len;
  122. return data;
  123. }
  124. static int nci_add_new_protocol(struct nci_dev *ndev,
  125. struct nfc_target *target,
  126. __u8 rf_protocol,
  127. __u8 rf_tech_and_mode,
  128. void *params)
  129. {
  130. struct rf_tech_specific_params_nfca_poll *nfca_poll;
  131. struct rf_tech_specific_params_nfcb_poll *nfcb_poll;
  132. struct rf_tech_specific_params_nfcf_poll *nfcf_poll;
  133. __u32 protocol;
  134. if (rf_protocol == NCI_RF_PROTOCOL_T2T)
  135. protocol = NFC_PROTO_MIFARE_MASK;
  136. else if (rf_protocol == NCI_RF_PROTOCOL_ISO_DEP)
  137. if (rf_tech_and_mode == NCI_NFC_A_PASSIVE_POLL_MODE)
  138. protocol = NFC_PROTO_ISO14443_MASK;
  139. else
  140. protocol = NFC_PROTO_ISO14443_B_MASK;
  141. else if (rf_protocol == NCI_RF_PROTOCOL_T3T)
  142. protocol = NFC_PROTO_FELICA_MASK;
  143. else
  144. protocol = 0;
  145. if (!(protocol & ndev->poll_prots)) {
  146. pr_err("the target found does not have the desired protocol\n");
  147. return -EPROTO;
  148. }
  149. if (rf_tech_and_mode == NCI_NFC_A_PASSIVE_POLL_MODE) {
  150. nfca_poll = (struct rf_tech_specific_params_nfca_poll *)params;
  151. target->sens_res = nfca_poll->sens_res;
  152. target->sel_res = nfca_poll->sel_res;
  153. target->nfcid1_len = nfca_poll->nfcid1_len;
  154. if (target->nfcid1_len > 0) {
  155. memcpy(target->nfcid1, nfca_poll->nfcid1,
  156. target->nfcid1_len);
  157. }
  158. } else if (rf_tech_and_mode == NCI_NFC_B_PASSIVE_POLL_MODE) {
  159. nfcb_poll = (struct rf_tech_specific_params_nfcb_poll *)params;
  160. target->sensb_res_len = nfcb_poll->sensb_res_len;
  161. if (target->sensb_res_len > 0) {
  162. memcpy(target->sensb_res, nfcb_poll->sensb_res,
  163. target->sensb_res_len);
  164. }
  165. } else if (rf_tech_and_mode == NCI_NFC_F_PASSIVE_POLL_MODE) {
  166. nfcf_poll = (struct rf_tech_specific_params_nfcf_poll *)params;
  167. target->sensf_res_len = nfcf_poll->sensf_res_len;
  168. if (target->sensf_res_len > 0) {
  169. memcpy(target->sensf_res, nfcf_poll->sensf_res,
  170. target->sensf_res_len);
  171. }
  172. } else {
  173. pr_err("unsupported rf_tech_and_mode 0x%x\n", rf_tech_and_mode);
  174. return -EPROTO;
  175. }
  176. target->supported_protocols |= protocol;
  177. pr_debug("protocol 0x%x\n", protocol);
  178. return 0;
  179. }
  180. static void nci_add_new_target(struct nci_dev *ndev,
  181. struct nci_rf_discover_ntf *ntf)
  182. {
  183. struct nfc_target *target;
  184. int i, rc;
  185. for (i = 0; i < ndev->n_targets; i++) {
  186. target = &ndev->targets[i];
  187. if (target->logical_idx == ntf->rf_discovery_id) {
  188. /* This target already exists, add the new protocol */
  189. nci_add_new_protocol(ndev, target, ntf->rf_protocol,
  190. ntf->rf_tech_and_mode,
  191. &ntf->rf_tech_specific_params);
  192. return;
  193. }
  194. }
  195. /* This is a new target, check if we've enough room */
  196. if (ndev->n_targets == NCI_MAX_DISCOVERED_TARGETS) {
  197. pr_debug("not enough room, ignoring new target...\n");
  198. return;
  199. }
  200. target = &ndev->targets[ndev->n_targets];
  201. rc = nci_add_new_protocol(ndev, target, ntf->rf_protocol,
  202. ntf->rf_tech_and_mode,
  203. &ntf->rf_tech_specific_params);
  204. if (!rc) {
  205. target->logical_idx = ntf->rf_discovery_id;
  206. ndev->n_targets++;
  207. pr_debug("logical idx %d, n_targets %d\n", target->logical_idx,
  208. ndev->n_targets);
  209. }
  210. }
  211. void nci_clear_target_list(struct nci_dev *ndev)
  212. {
  213. memset(ndev->targets, 0,
  214. (sizeof(struct nfc_target)*NCI_MAX_DISCOVERED_TARGETS));
  215. ndev->n_targets = 0;
  216. }
  217. static void nci_rf_discover_ntf_packet(struct nci_dev *ndev,
  218. struct sk_buff *skb)
  219. {
  220. struct nci_rf_discover_ntf ntf;
  221. __u8 *data = skb->data;
  222. bool add_target = true;
  223. ntf.rf_discovery_id = *data++;
  224. ntf.rf_protocol = *data++;
  225. ntf.rf_tech_and_mode = *data++;
  226. ntf.rf_tech_specific_params_len = *data++;
  227. pr_debug("rf_discovery_id %d\n", ntf.rf_discovery_id);
  228. pr_debug("rf_protocol 0x%x\n", ntf.rf_protocol);
  229. pr_debug("rf_tech_and_mode 0x%x\n", ntf.rf_tech_and_mode);
  230. pr_debug("rf_tech_specific_params_len %d\n",
  231. ntf.rf_tech_specific_params_len);
  232. if (ntf.rf_tech_specific_params_len > 0) {
  233. switch (ntf.rf_tech_and_mode) {
  234. case NCI_NFC_A_PASSIVE_POLL_MODE:
  235. data = nci_extract_rf_params_nfca_passive_poll(ndev,
  236. &(ntf.rf_tech_specific_params.nfca_poll), data);
  237. break;
  238. case NCI_NFC_B_PASSIVE_POLL_MODE:
  239. data = nci_extract_rf_params_nfcb_passive_poll(ndev,
  240. &(ntf.rf_tech_specific_params.nfcb_poll), data);
  241. break;
  242. case NCI_NFC_F_PASSIVE_POLL_MODE:
  243. data = nci_extract_rf_params_nfcf_passive_poll(ndev,
  244. &(ntf.rf_tech_specific_params.nfcf_poll), data);
  245. break;
  246. default:
  247. pr_err("unsupported rf_tech_and_mode 0x%x\n",
  248. ntf.rf_tech_and_mode);
  249. data += ntf.rf_tech_specific_params_len;
  250. add_target = false;
  251. }
  252. }
  253. ntf.ntf_type = *data++;
  254. pr_debug("ntf_type %d\n", ntf.ntf_type);
  255. if (add_target == true)
  256. nci_add_new_target(ndev, &ntf);
  257. if (ntf.ntf_type == NCI_DISCOVER_NTF_TYPE_MORE) {
  258. atomic_set(&ndev->state, NCI_W4_ALL_DISCOVERIES);
  259. } else {
  260. atomic_set(&ndev->state, NCI_W4_HOST_SELECT);
  261. nfc_targets_found(ndev->nfc_dev, ndev->targets,
  262. ndev->n_targets);
  263. }
  264. }
  265. static int nci_extract_activation_params_iso_dep(struct nci_dev *ndev,
  266. struct nci_rf_intf_activated_ntf *ntf, __u8 *data)
  267. {
  268. struct activation_params_nfca_poll_iso_dep *nfca_poll;
  269. struct activation_params_nfcb_poll_iso_dep *nfcb_poll;
  270. switch (ntf->activation_rf_tech_and_mode) {
  271. case NCI_NFC_A_PASSIVE_POLL_MODE:
  272. nfca_poll = &ntf->activation_params.nfca_poll_iso_dep;
  273. nfca_poll->rats_res_len = min_t(__u8, *data++, 20);
  274. pr_debug("rats_res_len %d\n", nfca_poll->rats_res_len);
  275. if (nfca_poll->rats_res_len > 0) {
  276. memcpy(nfca_poll->rats_res,
  277. data, nfca_poll->rats_res_len);
  278. }
  279. break;
  280. case NCI_NFC_B_PASSIVE_POLL_MODE:
  281. nfcb_poll = &ntf->activation_params.nfcb_poll_iso_dep;
  282. nfcb_poll->attrib_res_len = min_t(__u8, *data++, 50);
  283. pr_debug("attrib_res_len %d\n", nfcb_poll->attrib_res_len);
  284. if (nfcb_poll->attrib_res_len > 0) {
  285. memcpy(nfcb_poll->attrib_res,
  286. data, nfcb_poll->attrib_res_len);
  287. }
  288. break;
  289. default:
  290. pr_err("unsupported activation_rf_tech_and_mode 0x%x\n",
  291. ntf->activation_rf_tech_and_mode);
  292. return NCI_STATUS_RF_PROTOCOL_ERROR;
  293. }
  294. return NCI_STATUS_OK;
  295. }
  296. static void nci_target_auto_activated(struct nci_dev *ndev,
  297. struct nci_rf_intf_activated_ntf *ntf)
  298. {
  299. struct nfc_target *target;
  300. int rc;
  301. target = &ndev->targets[ndev->n_targets];
  302. rc = nci_add_new_protocol(ndev, target, ntf->rf_protocol,
  303. ntf->activation_rf_tech_and_mode,
  304. &ntf->rf_tech_specific_params);
  305. if (rc)
  306. return;
  307. target->logical_idx = ntf->rf_discovery_id;
  308. ndev->n_targets++;
  309. pr_debug("logical idx %d, n_targets %d\n",
  310. target->logical_idx, ndev->n_targets);
  311. nfc_targets_found(ndev->nfc_dev, ndev->targets, ndev->n_targets);
  312. }
  313. static void nci_rf_intf_activated_ntf_packet(struct nci_dev *ndev,
  314. struct sk_buff *skb)
  315. {
  316. struct nci_rf_intf_activated_ntf ntf;
  317. __u8 *data = skb->data;
  318. int err = NCI_STATUS_OK;
  319. ntf.rf_discovery_id = *data++;
  320. ntf.rf_interface = *data++;
  321. ntf.rf_protocol = *data++;
  322. ntf.activation_rf_tech_and_mode = *data++;
  323. ntf.max_data_pkt_payload_size = *data++;
  324. ntf.initial_num_credits = *data++;
  325. ntf.rf_tech_specific_params_len = *data++;
  326. pr_debug("rf_discovery_id %d\n", ntf.rf_discovery_id);
  327. pr_debug("rf_interface 0x%x\n", ntf.rf_interface);
  328. pr_debug("rf_protocol 0x%x\n", ntf.rf_protocol);
  329. pr_debug("activation_rf_tech_and_mode 0x%x\n",
  330. ntf.activation_rf_tech_and_mode);
  331. pr_debug("max_data_pkt_payload_size 0x%x\n",
  332. ntf.max_data_pkt_payload_size);
  333. pr_debug("initial_num_credits 0x%x\n",
  334. ntf.initial_num_credits);
  335. pr_debug("rf_tech_specific_params_len %d\n",
  336. ntf.rf_tech_specific_params_len);
  337. if (ntf.rf_tech_specific_params_len > 0) {
  338. switch (ntf.activation_rf_tech_and_mode) {
  339. case NCI_NFC_A_PASSIVE_POLL_MODE:
  340. data = nci_extract_rf_params_nfca_passive_poll(ndev,
  341. &(ntf.rf_tech_specific_params.nfca_poll), data);
  342. break;
  343. case NCI_NFC_B_PASSIVE_POLL_MODE:
  344. data = nci_extract_rf_params_nfcb_passive_poll(ndev,
  345. &(ntf.rf_tech_specific_params.nfcb_poll), data);
  346. break;
  347. case NCI_NFC_F_PASSIVE_POLL_MODE:
  348. data = nci_extract_rf_params_nfcf_passive_poll(ndev,
  349. &(ntf.rf_tech_specific_params.nfcf_poll), data);
  350. break;
  351. default:
  352. pr_err("unsupported activation_rf_tech_and_mode 0x%x\n",
  353. ntf.activation_rf_tech_and_mode);
  354. err = NCI_STATUS_RF_PROTOCOL_ERROR;
  355. goto exit;
  356. }
  357. }
  358. ntf.data_exch_rf_tech_and_mode = *data++;
  359. ntf.data_exch_tx_bit_rate = *data++;
  360. ntf.data_exch_rx_bit_rate = *data++;
  361. ntf.activation_params_len = *data++;
  362. pr_debug("data_exch_rf_tech_and_mode 0x%x\n",
  363. ntf.data_exch_rf_tech_and_mode);
  364. pr_debug("data_exch_tx_bit_rate 0x%x\n", ntf.data_exch_tx_bit_rate);
  365. pr_debug("data_exch_rx_bit_rate 0x%x\n", ntf.data_exch_rx_bit_rate);
  366. pr_debug("activation_params_len %d\n", ntf.activation_params_len);
  367. if (ntf.activation_params_len > 0) {
  368. switch (ntf.rf_interface) {
  369. case NCI_RF_INTERFACE_ISO_DEP:
  370. err = nci_extract_activation_params_iso_dep(ndev,
  371. &ntf, data);
  372. break;
  373. case NCI_RF_INTERFACE_FRAME:
  374. /* no activation params */
  375. break;
  376. default:
  377. pr_err("unsupported rf_interface 0x%x\n",
  378. ntf.rf_interface);
  379. err = NCI_STATUS_RF_PROTOCOL_ERROR;
  380. break;
  381. }
  382. }
  383. exit:
  384. if (err == NCI_STATUS_OK) {
  385. ndev->max_data_pkt_payload_size = ntf.max_data_pkt_payload_size;
  386. ndev->initial_num_credits = ntf.initial_num_credits;
  387. /* set the available credits to initial value */
  388. atomic_set(&ndev->credits_cnt, ndev->initial_num_credits);
  389. }
  390. if (atomic_read(&ndev->state) == NCI_DISCOVERY) {
  391. /* A single target was found and activated automatically */
  392. atomic_set(&ndev->state, NCI_POLL_ACTIVE);
  393. if (err == NCI_STATUS_OK)
  394. nci_target_auto_activated(ndev, &ntf);
  395. } else { /* ndev->state == NCI_W4_HOST_SELECT */
  396. /* A selected target was activated, so complete the request */
  397. atomic_set(&ndev->state, NCI_POLL_ACTIVE);
  398. nci_req_complete(ndev, err);
  399. }
  400. }
  401. static void nci_rf_deactivate_ntf_packet(struct nci_dev *ndev,
  402. struct sk_buff *skb)
  403. {
  404. struct nci_rf_deactivate_ntf *ntf = (void *) skb->data;
  405. pr_debug("entry, type 0x%x, reason 0x%x\n", ntf->type, ntf->reason);
  406. /* drop tx data queue */
  407. skb_queue_purge(&ndev->tx_q);
  408. /* drop partial rx data packet */
  409. if (ndev->rx_data_reassembly) {
  410. kfree_skb(ndev->rx_data_reassembly);
  411. ndev->rx_data_reassembly = NULL;
  412. }
  413. /* complete the data exchange transaction, if exists */
  414. if (test_bit(NCI_DATA_EXCHANGE, &ndev->flags))
  415. nci_data_exchange_complete(ndev, NULL, -EIO);
  416. nci_clear_target_list(ndev);
  417. atomic_set(&ndev->state, NCI_IDLE);
  418. nci_req_complete(ndev, NCI_STATUS_OK);
  419. }
  420. void nci_ntf_packet(struct nci_dev *ndev, struct sk_buff *skb)
  421. {
  422. __u16 ntf_opcode = nci_opcode(skb->data);
  423. pr_debug("NCI RX: MT=ntf, PBF=%d, GID=0x%x, OID=0x%x, plen=%d\n",
  424. nci_pbf(skb->data),
  425. nci_opcode_gid(ntf_opcode),
  426. nci_opcode_oid(ntf_opcode),
  427. nci_plen(skb->data));
  428. /* strip the nci control header */
  429. skb_pull(skb, NCI_CTRL_HDR_SIZE);
  430. switch (ntf_opcode) {
  431. case NCI_OP_CORE_CONN_CREDITS_NTF:
  432. nci_core_conn_credits_ntf_packet(ndev, skb);
  433. break;
  434. case NCI_OP_CORE_GENERIC_ERROR_NTF:
  435. nci_core_generic_error_ntf_packet(ndev, skb);
  436. break;
  437. case NCI_OP_CORE_INTF_ERROR_NTF:
  438. nci_core_conn_intf_error_ntf_packet(ndev, skb);
  439. break;
  440. case NCI_OP_RF_DISCOVER_NTF:
  441. nci_rf_discover_ntf_packet(ndev, skb);
  442. break;
  443. case NCI_OP_RF_INTF_ACTIVATED_NTF:
  444. nci_rf_intf_activated_ntf_packet(ndev, skb);
  445. break;
  446. case NCI_OP_RF_DEACTIVATE_NTF:
  447. nci_rf_deactivate_ntf_packet(ndev, skb);
  448. break;
  449. default:
  450. pr_err("unknown ntf opcode 0x%x\n", ntf_opcode);
  451. break;
  452. }
  453. kfree_skb(skb);
  454. }