bt-hci.c 67 KB

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  1. /*
  2. * QEMU Bluetooth HCI logic.
  3. *
  4. * Copyright (C) 2007 OpenMoko, Inc.
  5. * Copyright (C) 2008 Andrzej Zaborowski <balrog@zabor.org>
  6. *
  7. * This program is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU General Public License as
  9. * published by the Free Software Foundation; either version 2 of
  10. * the License, or (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, see <http://www.gnu.org/licenses/>.
  19. */
  20. #include "qemu-common.h"
  21. #include "qemu/timer.h"
  22. #include "usb.h"
  23. #include "bt/bt.h"
  24. #include "bt.h"
  25. struct bt_hci_s {
  26. uint8_t *(*evt_packet)(void *opaque);
  27. void (*evt_submit)(void *opaque, int len);
  28. void *opaque;
  29. uint8_t evt_buf[256];
  30. uint8_t acl_buf[4096];
  31. int acl_len;
  32. uint16_t asb_handle;
  33. uint16_t psb_handle;
  34. int last_cmd; /* Note: Always little-endian */
  35. struct bt_device_s *conn_req_host;
  36. struct {
  37. int inquire;
  38. int periodic;
  39. int responses_left;
  40. int responses;
  41. QEMUTimer *inquiry_done;
  42. QEMUTimer *inquiry_next;
  43. int inquiry_length;
  44. int inquiry_period;
  45. int inquiry_mode;
  46. #define HCI_HANDLE_OFFSET 0x20
  47. #define HCI_HANDLES_MAX 0x10
  48. struct bt_hci_master_link_s {
  49. struct bt_link_s *link;
  50. void (*lmp_acl_data)(struct bt_link_s *link,
  51. const uint8_t *data, int start, int len);
  52. QEMUTimer *acl_mode_timer;
  53. } handle[HCI_HANDLES_MAX];
  54. uint32_t role_bmp;
  55. int last_handle;
  56. int connecting;
  57. bdaddr_t awaiting_bdaddr[HCI_HANDLES_MAX];
  58. } lm;
  59. uint8_t event_mask[8];
  60. uint16_t voice_setting; /* Notw: Always little-endian */
  61. uint16_t conn_accept_tout;
  62. QEMUTimer *conn_accept_timer;
  63. struct HCIInfo info;
  64. struct bt_device_s device;
  65. };
  66. #define DEFAULT_RSSI_DBM 20
  67. #define hci_from_info(ptr) container_of((ptr), struct bt_hci_s, info)
  68. #define hci_from_device(ptr) container_of((ptr), struct bt_hci_s, device)
  69. struct bt_hci_link_s {
  70. struct bt_link_s btlink;
  71. uint16_t handle; /* Local */
  72. };
  73. /* LMP layer emulation */
  74. #if 0
  75. static void bt_submit_lmp(struct bt_device_s *bt, int length, uint8_t *data)
  76. {
  77. int resp, resplen, error, op, tr;
  78. uint8_t respdata[17];
  79. if (length < 1)
  80. return;
  81. tr = *data & 1;
  82. op = *(data ++) >> 1;
  83. resp = LMP_ACCEPTED;
  84. resplen = 2;
  85. respdata[1] = op;
  86. error = 0;
  87. length --;
  88. if (op >= 0x7c) { /* Extended opcode */
  89. op |= *(data ++) << 8;
  90. resp = LMP_ACCEPTED_EXT;
  91. resplen = 4;
  92. respdata[0] = op >> 8;
  93. respdata[1] = op & 0xff;
  94. length --;
  95. }
  96. switch (op) {
  97. case LMP_ACCEPTED:
  98. /* data[0] Op code
  99. */
  100. if (length < 1) {
  101. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  102. goto not_accepted;
  103. }
  104. resp = 0;
  105. break;
  106. case LMP_ACCEPTED_EXT:
  107. /* data[0] Escape op code
  108. * data[1] Extended op code
  109. */
  110. if (length < 2) {
  111. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  112. goto not_accepted;
  113. }
  114. resp = 0;
  115. break;
  116. case LMP_NOT_ACCEPTED:
  117. /* data[0] Op code
  118. * data[1] Error code
  119. */
  120. if (length < 2) {
  121. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  122. goto not_accepted;
  123. }
  124. resp = 0;
  125. break;
  126. case LMP_NOT_ACCEPTED_EXT:
  127. /* data[0] Op code
  128. * data[1] Extended op code
  129. * data[2] Error code
  130. */
  131. if (length < 3) {
  132. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  133. goto not_accepted;
  134. }
  135. resp = 0;
  136. break;
  137. case LMP_HOST_CONNECTION_REQ:
  138. break;
  139. case LMP_SETUP_COMPLETE:
  140. resp = LMP_SETUP_COMPLETE;
  141. resplen = 1;
  142. bt->setup = 1;
  143. break;
  144. case LMP_DETACH:
  145. /* data[0] Error code
  146. */
  147. if (length < 1) {
  148. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  149. goto not_accepted;
  150. }
  151. bt->setup = 0;
  152. resp = 0;
  153. break;
  154. case LMP_SUPERVISION_TIMEOUT:
  155. /* data[0,1] Supervision timeout
  156. */
  157. if (length < 2) {
  158. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  159. goto not_accepted;
  160. }
  161. resp = 0;
  162. break;
  163. case LMP_QUALITY_OF_SERVICE:
  164. resp = 0;
  165. /* Fall through */
  166. case LMP_QOS_REQ:
  167. /* data[0,1] Poll interval
  168. * data[2] N(BC)
  169. */
  170. if (length < 3) {
  171. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  172. goto not_accepted;
  173. }
  174. break;
  175. case LMP_MAX_SLOT:
  176. resp = 0;
  177. /* Fall through */
  178. case LMP_MAX_SLOT_REQ:
  179. /* data[0] Max slots
  180. */
  181. if (length < 1) {
  182. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  183. goto not_accepted;
  184. }
  185. break;
  186. case LMP_AU_RAND:
  187. case LMP_IN_RAND:
  188. case LMP_COMB_KEY:
  189. /* data[0-15] Random number
  190. */
  191. if (length < 16) {
  192. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  193. goto not_accepted;
  194. }
  195. if (op == LMP_AU_RAND) {
  196. if (bt->key_present) {
  197. resp = LMP_SRES;
  198. resplen = 5;
  199. /* XXX: [Part H] Section 6.1 on page 801 */
  200. } else {
  201. error = HCI_PIN_OR_KEY_MISSING;
  202. goto not_accepted;
  203. }
  204. } else if (op == LMP_IN_RAND) {
  205. error = HCI_PAIRING_NOT_ALLOWED;
  206. goto not_accepted;
  207. } else {
  208. /* XXX: [Part H] Section 3.2 on page 779 */
  209. resp = LMP_UNIT_KEY;
  210. resplen = 17;
  211. memcpy(respdata + 1, bt->key, 16);
  212. error = HCI_UNIT_LINK_KEY_USED;
  213. goto not_accepted;
  214. }
  215. break;
  216. case LMP_UNIT_KEY:
  217. /* data[0-15] Key
  218. */
  219. if (length < 16) {
  220. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  221. goto not_accepted;
  222. }
  223. memcpy(bt->key, data, 16);
  224. bt->key_present = 1;
  225. break;
  226. case LMP_SRES:
  227. /* data[0-3] Authentication response
  228. */
  229. if (length < 4) {
  230. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  231. goto not_accepted;
  232. }
  233. break;
  234. case LMP_CLKOFFSET_REQ:
  235. resp = LMP_CLKOFFSET_RES;
  236. resplen = 3;
  237. respdata[1] = 0x33;
  238. respdata[2] = 0x33;
  239. break;
  240. case LMP_CLKOFFSET_RES:
  241. /* data[0,1] Clock offset
  242. * (Slave to master only)
  243. */
  244. if (length < 2) {
  245. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  246. goto not_accepted;
  247. }
  248. break;
  249. case LMP_VERSION_REQ:
  250. case LMP_VERSION_RES:
  251. /* data[0] VersNr
  252. * data[1,2] CompId
  253. * data[3,4] SubVersNr
  254. */
  255. if (length < 5) {
  256. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  257. goto not_accepted;
  258. }
  259. if (op == LMP_VERSION_REQ) {
  260. resp = LMP_VERSION_RES;
  261. resplen = 6;
  262. respdata[1] = 0x20;
  263. respdata[2] = 0xff;
  264. respdata[3] = 0xff;
  265. respdata[4] = 0xff;
  266. respdata[5] = 0xff;
  267. } else
  268. resp = 0;
  269. break;
  270. case LMP_FEATURES_REQ:
  271. case LMP_FEATURES_RES:
  272. /* data[0-7] Features
  273. */
  274. if (length < 8) {
  275. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  276. goto not_accepted;
  277. }
  278. if (op == LMP_FEATURES_REQ) {
  279. resp = LMP_FEATURES_RES;
  280. resplen = 9;
  281. respdata[1] = (bt->lmp_caps >> 0) & 0xff;
  282. respdata[2] = (bt->lmp_caps >> 8) & 0xff;
  283. respdata[3] = (bt->lmp_caps >> 16) & 0xff;
  284. respdata[4] = (bt->lmp_caps >> 24) & 0xff;
  285. respdata[5] = (bt->lmp_caps >> 32) & 0xff;
  286. respdata[6] = (bt->lmp_caps >> 40) & 0xff;
  287. respdata[7] = (bt->lmp_caps >> 48) & 0xff;
  288. respdata[8] = (bt->lmp_caps >> 56) & 0xff;
  289. } else
  290. resp = 0;
  291. break;
  292. case LMP_NAME_REQ:
  293. /* data[0] Name offset
  294. */
  295. if (length < 1) {
  296. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  297. goto not_accepted;
  298. }
  299. resp = LMP_NAME_RES;
  300. resplen = 17;
  301. respdata[1] = data[0];
  302. respdata[2] = strlen(bt->lmp_name);
  303. memset(respdata + 3, 0x00, 14);
  304. if (respdata[2] > respdata[1])
  305. memcpy(respdata + 3, bt->lmp_name + respdata[1],
  306. respdata[2] - respdata[1]);
  307. break;
  308. case LMP_NAME_RES:
  309. /* data[0] Name offset
  310. * data[1] Name length
  311. * data[2-15] Name fragment
  312. */
  313. if (length < 16) {
  314. error = HCI_UNSUPPORTED_LMP_PARAMETER_VALUE;
  315. goto not_accepted;
  316. }
  317. resp = 0;
  318. break;
  319. default:
  320. error = HCI_UNKNOWN_LMP_PDU;
  321. /* Fall through */
  322. not_accepted:
  323. if (op >> 8) {
  324. resp = LMP_NOT_ACCEPTED_EXT;
  325. resplen = 5;
  326. respdata[0] = op >> 8;
  327. respdata[1] = op & 0xff;
  328. respdata[2] = error;
  329. } else {
  330. resp = LMP_NOT_ACCEPTED;
  331. resplen = 3;
  332. respdata[0] = op & 0xff;
  333. respdata[1] = error;
  334. }
  335. }
  336. if (resp == 0)
  337. return;
  338. if (resp >> 8) {
  339. respdata[0] = resp >> 8;
  340. respdata[1] = resp & 0xff;
  341. } else
  342. respdata[0] = resp & 0xff;
  343. respdata[0] <<= 1;
  344. respdata[0] |= tr;
  345. }
  346. static void bt_submit_raw_acl(struct bt_piconet_s *net, int length, uint8_t *data)
  347. {
  348. struct bt_device_s *slave;
  349. if (length < 1)
  350. return;
  351. slave = 0;
  352. #if 0
  353. slave = net->slave;
  354. #endif
  355. switch (data[0] & 3) {
  356. case LLID_ACLC:
  357. bt_submit_lmp(slave, length - 1, data + 1);
  358. break;
  359. case LLID_ACLU_START:
  360. #if 0
  361. bt_sumbit_l2cap(slave, length - 1, data + 1, (data[0] >> 2) & 1);
  362. breka;
  363. #endif
  364. default:
  365. case LLID_ACLU_CONT:
  366. break;
  367. }
  368. }
  369. #endif
  370. /* HCI layer emulation */
  371. /* Note: we could ignore endiannes because unswapped handles will still
  372. * be valid as connection identifiers for the guest - they don't have to
  373. * be continuously allocated. We do it though, to preserve similar
  374. * behaviour between hosts. Some things, like the BD_ADDR cannot be
  375. * preserved though (for example if a real hci is used). */
  376. #ifdef HOST_WORDS_BIGENDIAN
  377. # define HNDL(raw) bswap16(raw)
  378. #else
  379. # define HNDL(raw) (raw)
  380. #endif
  381. static const uint8_t bt_event_reserved_mask[8] = {
  382. 0xff, 0x9f, 0xfb, 0xff, 0x07, 0x18, 0x00, 0x00,
  383. };
  384. static inline uint8_t *bt_hci_event_start(struct bt_hci_s *hci,
  385. int evt, int len)
  386. {
  387. uint8_t *packet, mask;
  388. int mask_byte;
  389. if (len > 255) {
  390. fprintf(stderr, "%s: HCI event params too long (%ib)\n",
  391. __FUNCTION__, len);
  392. exit(-1);
  393. }
  394. mask_byte = (evt - 1) >> 3;
  395. mask = 1 << ((evt - 1) & 3);
  396. if (mask & bt_event_reserved_mask[mask_byte] & ~hci->event_mask[mask_byte])
  397. return NULL;
  398. packet = hci->evt_packet(hci->opaque);
  399. packet[0] = evt;
  400. packet[1] = len;
  401. return &packet[2];
  402. }
  403. static inline void bt_hci_event(struct bt_hci_s *hci, int evt,
  404. void *params, int len)
  405. {
  406. uint8_t *packet = bt_hci_event_start(hci, evt, len);
  407. if (!packet)
  408. return;
  409. if (len)
  410. memcpy(packet, params, len);
  411. hci->evt_submit(hci->opaque, len + 2);
  412. }
  413. static inline void bt_hci_event_status(struct bt_hci_s *hci, int status)
  414. {
  415. evt_cmd_status params = {
  416. .status = status,
  417. .ncmd = 1,
  418. .opcode = hci->last_cmd,
  419. };
  420. bt_hci_event(hci, EVT_CMD_STATUS, &params, EVT_CMD_STATUS_SIZE);
  421. }
  422. static inline void bt_hci_event_complete(struct bt_hci_s *hci,
  423. void *ret, int len)
  424. {
  425. uint8_t *packet = bt_hci_event_start(hci, EVT_CMD_COMPLETE,
  426. len + EVT_CMD_COMPLETE_SIZE);
  427. evt_cmd_complete *params = (evt_cmd_complete *) packet;
  428. if (!packet)
  429. return;
  430. params->ncmd = 1;
  431. params->opcode = hci->last_cmd;
  432. if (len)
  433. memcpy(&packet[EVT_CMD_COMPLETE_SIZE], ret, len);
  434. hci->evt_submit(hci->opaque, len + EVT_CMD_COMPLETE_SIZE + 2);
  435. }
  436. static void bt_hci_inquiry_done(void *opaque)
  437. {
  438. struct bt_hci_s *hci = (struct bt_hci_s *) opaque;
  439. uint8_t status = HCI_SUCCESS;
  440. if (!hci->lm.periodic)
  441. hci->lm.inquire = 0;
  442. /* The specification is inconsistent about this one. Page 565 reads
  443. * "The event parameters of Inquiry Complete event will have a summary
  444. * of the result from the Inquiry process, which reports the number of
  445. * nearby Bluetooth devices that responded [so hci->responses].", but
  446. * Event Parameters (see page 729) has only Status. */
  447. bt_hci_event(hci, EVT_INQUIRY_COMPLETE, &status, 1);
  448. }
  449. static void bt_hci_inquiry_result_standard(struct bt_hci_s *hci,
  450. struct bt_device_s *slave)
  451. {
  452. inquiry_info params = {
  453. .num_responses = 1,
  454. .bdaddr = BAINIT(&slave->bd_addr),
  455. .pscan_rep_mode = 0x00, /* R0 */
  456. .pscan_period_mode = 0x00, /* P0 - deprecated */
  457. .pscan_mode = 0x00, /* Standard scan - deprecated */
  458. .dev_class[0] = slave->class[0],
  459. .dev_class[1] = slave->class[1],
  460. .dev_class[2] = slave->class[2],
  461. /* TODO: return the clkoff *differenece* */
  462. .clock_offset = slave->clkoff, /* Note: no swapping */
  463. };
  464. bt_hci_event(hci, EVT_INQUIRY_RESULT, &params, INQUIRY_INFO_SIZE);
  465. }
  466. static void bt_hci_inquiry_result_with_rssi(struct bt_hci_s *hci,
  467. struct bt_device_s *slave)
  468. {
  469. inquiry_info_with_rssi params = {
  470. .num_responses = 1,
  471. .bdaddr = BAINIT(&slave->bd_addr),
  472. .pscan_rep_mode = 0x00, /* R0 */
  473. .pscan_period_mode = 0x00, /* P0 - deprecated */
  474. .dev_class[0] = slave->class[0],
  475. .dev_class[1] = slave->class[1],
  476. .dev_class[2] = slave->class[2],
  477. /* TODO: return the clkoff *differenece* */
  478. .clock_offset = slave->clkoff, /* Note: no swapping */
  479. .rssi = DEFAULT_RSSI_DBM,
  480. };
  481. bt_hci_event(hci, EVT_INQUIRY_RESULT_WITH_RSSI,
  482. &params, INQUIRY_INFO_WITH_RSSI_SIZE);
  483. }
  484. static void bt_hci_inquiry_result(struct bt_hci_s *hci,
  485. struct bt_device_s *slave)
  486. {
  487. if (!slave->inquiry_scan || !hci->lm.responses_left)
  488. return;
  489. hci->lm.responses_left --;
  490. hci->lm.responses ++;
  491. switch (hci->lm.inquiry_mode) {
  492. case 0x00:
  493. bt_hci_inquiry_result_standard(hci, slave);
  494. return;
  495. case 0x01:
  496. bt_hci_inquiry_result_with_rssi(hci, slave);
  497. return;
  498. default:
  499. fprintf(stderr, "%s: bad inquiry mode %02x\n", __FUNCTION__,
  500. hci->lm.inquiry_mode);
  501. exit(-1);
  502. }
  503. }
  504. static void bt_hci_mod_timer_1280ms(QEMUTimer *timer, int period)
  505. {
  506. qemu_mod_timer(timer, qemu_get_clock_ns(vm_clock) +
  507. muldiv64(period << 7, get_ticks_per_sec(), 100));
  508. }
  509. static void bt_hci_inquiry_start(struct bt_hci_s *hci, int length)
  510. {
  511. struct bt_device_s *slave;
  512. hci->lm.inquiry_length = length;
  513. for (slave = hci->device.net->slave; slave; slave = slave->next)
  514. /* Don't uncover ourselves. */
  515. if (slave != &hci->device)
  516. bt_hci_inquiry_result(hci, slave);
  517. /* TODO: register for a callback on a new device's addition to the
  518. * scatternet so that if it's added before inquiry_length expires,
  519. * an Inquiry Result is generated immediately. Alternatively re-loop
  520. * through the devices on the inquiry_length expiration and report
  521. * devices not seen before. */
  522. if (hci->lm.responses_left)
  523. bt_hci_mod_timer_1280ms(hci->lm.inquiry_done, hci->lm.inquiry_length);
  524. else
  525. bt_hci_inquiry_done(hci);
  526. if (hci->lm.periodic)
  527. bt_hci_mod_timer_1280ms(hci->lm.inquiry_next, hci->lm.inquiry_period);
  528. }
  529. static void bt_hci_inquiry_next(void *opaque)
  530. {
  531. struct bt_hci_s *hci = (struct bt_hci_s *) opaque;
  532. hci->lm.responses_left += hci->lm.responses;
  533. hci->lm.responses = 0;
  534. bt_hci_inquiry_start(hci, hci->lm.inquiry_length);
  535. }
  536. static inline int bt_hci_handle_bad(struct bt_hci_s *hci, uint16_t handle)
  537. {
  538. return !(handle & HCI_HANDLE_OFFSET) ||
  539. handle >= (HCI_HANDLE_OFFSET | HCI_HANDLES_MAX) ||
  540. !hci->lm.handle[handle & ~HCI_HANDLE_OFFSET].link;
  541. }
  542. static inline int bt_hci_role_master(struct bt_hci_s *hci, uint16_t handle)
  543. {
  544. return !!(hci->lm.role_bmp & (1 << (handle & ~HCI_HANDLE_OFFSET)));
  545. }
  546. static inline struct bt_device_s *bt_hci_remote_dev(struct bt_hci_s *hci,
  547. uint16_t handle)
  548. {
  549. struct bt_link_s *link = hci->lm.handle[handle & ~HCI_HANDLE_OFFSET].link;
  550. return bt_hci_role_master(hci, handle) ? link->slave : link->host;
  551. }
  552. static void bt_hci_mode_tick(void *opaque);
  553. static void bt_hci_lmp_link_establish(struct bt_hci_s *hci,
  554. struct bt_link_s *link, int master)
  555. {
  556. hci->lm.handle[hci->lm.last_handle].link = link;
  557. if (master) {
  558. /* We are the master side of an ACL link */
  559. hci->lm.role_bmp |= 1 << hci->lm.last_handle;
  560. hci->lm.handle[hci->lm.last_handle].lmp_acl_data =
  561. link->slave->lmp_acl_data;
  562. } else {
  563. /* We are the slave side of an ACL link */
  564. hci->lm.role_bmp &= ~(1 << hci->lm.last_handle);
  565. hci->lm.handle[hci->lm.last_handle].lmp_acl_data =
  566. link->host->lmp_acl_resp;
  567. }
  568. /* Mode */
  569. if (master) {
  570. link->acl_mode = acl_active;
  571. hci->lm.handle[hci->lm.last_handle].acl_mode_timer =
  572. qemu_new_timer_ns(vm_clock, bt_hci_mode_tick, link);
  573. }
  574. }
  575. static void bt_hci_lmp_link_teardown(struct bt_hci_s *hci, uint16_t handle)
  576. {
  577. handle &= ~HCI_HANDLE_OFFSET;
  578. hci->lm.handle[handle].link = NULL;
  579. if (bt_hci_role_master(hci, handle)) {
  580. qemu_del_timer(hci->lm.handle[handle].acl_mode_timer);
  581. qemu_free_timer(hci->lm.handle[handle].acl_mode_timer);
  582. }
  583. }
  584. static int bt_hci_connect(struct bt_hci_s *hci, bdaddr_t *bdaddr)
  585. {
  586. struct bt_device_s *slave;
  587. struct bt_link_s link;
  588. for (slave = hci->device.net->slave; slave; slave = slave->next)
  589. if (slave->page_scan && !bacmp(&slave->bd_addr, bdaddr))
  590. break;
  591. if (!slave || slave == &hci->device)
  592. return -ENODEV;
  593. bacpy(&hci->lm.awaiting_bdaddr[hci->lm.connecting ++], &slave->bd_addr);
  594. link.slave = slave;
  595. link.host = &hci->device;
  596. link.slave->lmp_connection_request(&link); /* Always last */
  597. return 0;
  598. }
  599. static void bt_hci_connection_reject(struct bt_hci_s *hci,
  600. struct bt_device_s *host, uint8_t because)
  601. {
  602. struct bt_link_s link = {
  603. .slave = &hci->device,
  604. .host = host,
  605. /* Rest uninitialised */
  606. };
  607. host->reject_reason = because;
  608. host->lmp_connection_complete(&link);
  609. }
  610. static void bt_hci_connection_reject_event(struct bt_hci_s *hci,
  611. bdaddr_t *bdaddr)
  612. {
  613. evt_conn_complete params;
  614. params.status = HCI_NO_CONNECTION;
  615. params.handle = 0;
  616. bacpy(&params.bdaddr, bdaddr);
  617. params.link_type = ACL_LINK;
  618. params.encr_mode = 0x00; /* Encryption not required */
  619. bt_hci_event(hci, EVT_CONN_COMPLETE, &params, EVT_CONN_COMPLETE_SIZE);
  620. }
  621. static void bt_hci_connection_accept(struct bt_hci_s *hci,
  622. struct bt_device_s *host)
  623. {
  624. struct bt_hci_link_s *link = g_malloc0(sizeof(struct bt_hci_link_s));
  625. evt_conn_complete params;
  626. uint16_t handle;
  627. uint8_t status = HCI_SUCCESS;
  628. int tries = HCI_HANDLES_MAX;
  629. /* Make a connection handle */
  630. do {
  631. while (hci->lm.handle[++ hci->lm.last_handle].link && -- tries)
  632. hci->lm.last_handle &= HCI_HANDLES_MAX - 1;
  633. handle = hci->lm.last_handle | HCI_HANDLE_OFFSET;
  634. } while ((handle == hci->asb_handle || handle == hci->psb_handle) &&
  635. tries);
  636. if (!tries) {
  637. g_free(link);
  638. bt_hci_connection_reject(hci, host, HCI_REJECTED_LIMITED_RESOURCES);
  639. status = HCI_NO_CONNECTION;
  640. goto complete;
  641. }
  642. link->btlink.slave = &hci->device;
  643. link->btlink.host = host;
  644. link->handle = handle;
  645. /* Link established */
  646. bt_hci_lmp_link_establish(hci, &link->btlink, 0);
  647. complete:
  648. params.status = status;
  649. params.handle = HNDL(handle);
  650. bacpy(&params.bdaddr, &host->bd_addr);
  651. params.link_type = ACL_LINK;
  652. params.encr_mode = 0x00; /* Encryption not required */
  653. bt_hci_event(hci, EVT_CONN_COMPLETE, &params, EVT_CONN_COMPLETE_SIZE);
  654. /* Neets to be done at the very end because it can trigger a (nested)
  655. * disconnected, in case the other and had cancelled the request
  656. * locally. */
  657. if (status == HCI_SUCCESS) {
  658. host->reject_reason = 0;
  659. host->lmp_connection_complete(&link->btlink);
  660. }
  661. }
  662. static void bt_hci_lmp_connection_request(struct bt_link_s *link)
  663. {
  664. struct bt_hci_s *hci = hci_from_device(link->slave);
  665. evt_conn_request params;
  666. if (hci->conn_req_host) {
  667. bt_hci_connection_reject(hci, link->host,
  668. HCI_REJECTED_LIMITED_RESOURCES);
  669. return;
  670. }
  671. hci->conn_req_host = link->host;
  672. /* TODO: if masked and auto-accept, then auto-accept,
  673. * if masked and not auto-accept, then auto-reject */
  674. /* TODO: kick the hci->conn_accept_timer, timeout after
  675. * hci->conn_accept_tout * 0.625 msec */
  676. bacpy(&params.bdaddr, &link->host->bd_addr);
  677. memcpy(&params.dev_class, &link->host->class, sizeof(params.dev_class));
  678. params.link_type = ACL_LINK;
  679. bt_hci_event(hci, EVT_CONN_REQUEST, &params, EVT_CONN_REQUEST_SIZE);
  680. }
  681. static void bt_hci_conn_accept_timeout(void *opaque)
  682. {
  683. struct bt_hci_s *hci = (struct bt_hci_s *) opaque;
  684. if (!hci->conn_req_host)
  685. /* Already accepted or rejected. If the other end cancelled the
  686. * connection request then we still have to reject or accept it
  687. * and then we'll get a disconnect. */
  688. return;
  689. /* TODO */
  690. }
  691. /* Remove from the list of devices which we wanted to connect to and
  692. * are awaiting a response from. If the callback sees a response from
  693. * a device which is not on the list it will assume it's a connection
  694. * that's been cancelled by the host in the meantime and immediately
  695. * try to detach the link and send a Connection Complete. */
  696. static int bt_hci_lmp_connection_ready(struct bt_hci_s *hci,
  697. bdaddr_t *bdaddr)
  698. {
  699. int i;
  700. for (i = 0; i < hci->lm.connecting; i ++)
  701. if (!bacmp(&hci->lm.awaiting_bdaddr[i], bdaddr)) {
  702. if (i < -- hci->lm.connecting)
  703. bacpy(&hci->lm.awaiting_bdaddr[i],
  704. &hci->lm.awaiting_bdaddr[hci->lm.connecting]);
  705. return 0;
  706. }
  707. return 1;
  708. }
  709. static void bt_hci_lmp_connection_complete(struct bt_link_s *link)
  710. {
  711. struct bt_hci_s *hci = hci_from_device(link->host);
  712. evt_conn_complete params;
  713. uint16_t handle;
  714. uint8_t status = HCI_SUCCESS;
  715. int tries = HCI_HANDLES_MAX;
  716. if (bt_hci_lmp_connection_ready(hci, &link->slave->bd_addr)) {
  717. if (!hci->device.reject_reason)
  718. link->slave->lmp_disconnect_slave(link);
  719. handle = 0;
  720. status = HCI_NO_CONNECTION;
  721. goto complete;
  722. }
  723. if (hci->device.reject_reason) {
  724. handle = 0;
  725. status = hci->device.reject_reason;
  726. goto complete;
  727. }
  728. /* Make a connection handle */
  729. do {
  730. while (hci->lm.handle[++ hci->lm.last_handle].link && -- tries)
  731. hci->lm.last_handle &= HCI_HANDLES_MAX - 1;
  732. handle = hci->lm.last_handle | HCI_HANDLE_OFFSET;
  733. } while ((handle == hci->asb_handle || handle == hci->psb_handle) &&
  734. tries);
  735. if (!tries) {
  736. link->slave->lmp_disconnect_slave(link);
  737. status = HCI_NO_CONNECTION;
  738. goto complete;
  739. }
  740. /* Link established */
  741. link->handle = handle;
  742. bt_hci_lmp_link_establish(hci, link, 1);
  743. complete:
  744. params.status = status;
  745. params.handle = HNDL(handle);
  746. params.link_type = ACL_LINK;
  747. bacpy(&params.bdaddr, &link->slave->bd_addr);
  748. params.encr_mode = 0x00; /* Encryption not required */
  749. bt_hci_event(hci, EVT_CONN_COMPLETE, &params, EVT_CONN_COMPLETE_SIZE);
  750. }
  751. static void bt_hci_disconnect(struct bt_hci_s *hci,
  752. uint16_t handle, int reason)
  753. {
  754. struct bt_link_s *btlink =
  755. hci->lm.handle[handle & ~HCI_HANDLE_OFFSET].link;
  756. struct bt_hci_link_s *link;
  757. evt_disconn_complete params;
  758. if (bt_hci_role_master(hci, handle)) {
  759. btlink->slave->reject_reason = reason;
  760. btlink->slave->lmp_disconnect_slave(btlink);
  761. /* The link pointer is invalid from now on */
  762. goto complete;
  763. }
  764. btlink->host->reject_reason = reason;
  765. btlink->host->lmp_disconnect_master(btlink);
  766. /* We are the slave, we get to clean this burden */
  767. link = (struct bt_hci_link_s *) btlink;
  768. g_free(link);
  769. complete:
  770. bt_hci_lmp_link_teardown(hci, handle);
  771. params.status = HCI_SUCCESS;
  772. params.handle = HNDL(handle);
  773. params.reason = HCI_CONNECTION_TERMINATED;
  774. bt_hci_event(hci, EVT_DISCONN_COMPLETE,
  775. &params, EVT_DISCONN_COMPLETE_SIZE);
  776. }
  777. /* TODO: use only one function */
  778. static void bt_hci_lmp_disconnect_host(struct bt_link_s *link)
  779. {
  780. struct bt_hci_s *hci = hci_from_device(link->host);
  781. uint16_t handle = link->handle;
  782. evt_disconn_complete params;
  783. bt_hci_lmp_link_teardown(hci, handle);
  784. params.status = HCI_SUCCESS;
  785. params.handle = HNDL(handle);
  786. params.reason = hci->device.reject_reason;
  787. bt_hci_event(hci, EVT_DISCONN_COMPLETE,
  788. &params, EVT_DISCONN_COMPLETE_SIZE);
  789. }
  790. static void bt_hci_lmp_disconnect_slave(struct bt_link_s *btlink)
  791. {
  792. struct bt_hci_link_s *link = (struct bt_hci_link_s *) btlink;
  793. struct bt_hci_s *hci = hci_from_device(btlink->slave);
  794. uint16_t handle = link->handle;
  795. evt_disconn_complete params;
  796. g_free(link);
  797. bt_hci_lmp_link_teardown(hci, handle);
  798. params.status = HCI_SUCCESS;
  799. params.handle = HNDL(handle);
  800. params.reason = hci->device.reject_reason;
  801. bt_hci_event(hci, EVT_DISCONN_COMPLETE,
  802. &params, EVT_DISCONN_COMPLETE_SIZE);
  803. }
  804. static int bt_hci_name_req(struct bt_hci_s *hci, bdaddr_t *bdaddr)
  805. {
  806. struct bt_device_s *slave;
  807. evt_remote_name_req_complete params;
  808. for (slave = hci->device.net->slave; slave; slave = slave->next)
  809. if (slave->page_scan && !bacmp(&slave->bd_addr, bdaddr))
  810. break;
  811. if (!slave)
  812. return -ENODEV;
  813. bt_hci_event_status(hci, HCI_SUCCESS);
  814. params.status = HCI_SUCCESS;
  815. bacpy(&params.bdaddr, &slave->bd_addr);
  816. pstrcpy(params.name, sizeof(params.name), slave->lmp_name ?: "");
  817. bt_hci_event(hci, EVT_REMOTE_NAME_REQ_COMPLETE,
  818. &params, EVT_REMOTE_NAME_REQ_COMPLETE_SIZE);
  819. return 0;
  820. }
  821. static int bt_hci_features_req(struct bt_hci_s *hci, uint16_t handle)
  822. {
  823. struct bt_device_s *slave;
  824. evt_read_remote_features_complete params;
  825. if (bt_hci_handle_bad(hci, handle))
  826. return -ENODEV;
  827. slave = bt_hci_remote_dev(hci, handle);
  828. bt_hci_event_status(hci, HCI_SUCCESS);
  829. params.status = HCI_SUCCESS;
  830. params.handle = HNDL(handle);
  831. params.features[0] = (slave->lmp_caps >> 0) & 0xff;
  832. params.features[1] = (slave->lmp_caps >> 8) & 0xff;
  833. params.features[2] = (slave->lmp_caps >> 16) & 0xff;
  834. params.features[3] = (slave->lmp_caps >> 24) & 0xff;
  835. params.features[4] = (slave->lmp_caps >> 32) & 0xff;
  836. params.features[5] = (slave->lmp_caps >> 40) & 0xff;
  837. params.features[6] = (slave->lmp_caps >> 48) & 0xff;
  838. params.features[7] = (slave->lmp_caps >> 56) & 0xff;
  839. bt_hci_event(hci, EVT_READ_REMOTE_FEATURES_COMPLETE,
  840. &params, EVT_READ_REMOTE_FEATURES_COMPLETE_SIZE);
  841. return 0;
  842. }
  843. static int bt_hci_version_req(struct bt_hci_s *hci, uint16_t handle)
  844. {
  845. evt_read_remote_version_complete params;
  846. if (bt_hci_handle_bad(hci, handle))
  847. return -ENODEV;
  848. bt_hci_remote_dev(hci, handle);
  849. bt_hci_event_status(hci, HCI_SUCCESS);
  850. params.status = HCI_SUCCESS;
  851. params.handle = HNDL(handle);
  852. params.lmp_ver = 0x03;
  853. params.manufacturer = cpu_to_le16(0xa000);
  854. params.lmp_subver = cpu_to_le16(0xa607);
  855. bt_hci_event(hci, EVT_READ_REMOTE_VERSION_COMPLETE,
  856. &params, EVT_READ_REMOTE_VERSION_COMPLETE_SIZE);
  857. return 0;
  858. }
  859. static int bt_hci_clkoffset_req(struct bt_hci_s *hci, uint16_t handle)
  860. {
  861. struct bt_device_s *slave;
  862. evt_read_clock_offset_complete params;
  863. if (bt_hci_handle_bad(hci, handle))
  864. return -ENODEV;
  865. slave = bt_hci_remote_dev(hci, handle);
  866. bt_hci_event_status(hci, HCI_SUCCESS);
  867. params.status = HCI_SUCCESS;
  868. params.handle = HNDL(handle);
  869. /* TODO: return the clkoff *differenece* */
  870. params.clock_offset = slave->clkoff; /* Note: no swapping */
  871. bt_hci_event(hci, EVT_READ_CLOCK_OFFSET_COMPLETE,
  872. &params, EVT_READ_CLOCK_OFFSET_COMPLETE_SIZE);
  873. return 0;
  874. }
  875. static void bt_hci_event_mode(struct bt_hci_s *hci, struct bt_link_s *link,
  876. uint16_t handle)
  877. {
  878. evt_mode_change params = {
  879. .status = HCI_SUCCESS,
  880. .handle = HNDL(handle),
  881. .mode = link->acl_mode,
  882. .interval = cpu_to_le16(link->acl_interval),
  883. };
  884. bt_hci_event(hci, EVT_MODE_CHANGE, &params, EVT_MODE_CHANGE_SIZE);
  885. }
  886. static void bt_hci_lmp_mode_change_master(struct bt_hci_s *hci,
  887. struct bt_link_s *link, int mode, uint16_t interval)
  888. {
  889. link->acl_mode = mode;
  890. link->acl_interval = interval;
  891. bt_hci_event_mode(hci, link, link->handle);
  892. link->slave->lmp_mode_change(link);
  893. }
  894. static void bt_hci_lmp_mode_change_slave(struct bt_link_s *btlink)
  895. {
  896. struct bt_hci_link_s *link = (struct bt_hci_link_s *) btlink;
  897. struct bt_hci_s *hci = hci_from_device(btlink->slave);
  898. bt_hci_event_mode(hci, btlink, link->handle);
  899. }
  900. static int bt_hci_mode_change(struct bt_hci_s *hci, uint16_t handle,
  901. int interval, int mode)
  902. {
  903. struct bt_hci_master_link_s *link;
  904. if (bt_hci_handle_bad(hci, handle) || !bt_hci_role_master(hci, handle))
  905. return -ENODEV;
  906. link = &hci->lm.handle[handle & ~HCI_HANDLE_OFFSET];
  907. if (link->link->acl_mode != acl_active) {
  908. bt_hci_event_status(hci, HCI_COMMAND_DISALLOWED);
  909. return 0;
  910. }
  911. bt_hci_event_status(hci, HCI_SUCCESS);
  912. qemu_mod_timer(link->acl_mode_timer, qemu_get_clock_ns(vm_clock) +
  913. muldiv64(interval * 625, get_ticks_per_sec(), 1000000));
  914. bt_hci_lmp_mode_change_master(hci, link->link, mode, interval);
  915. return 0;
  916. }
  917. static int bt_hci_mode_cancel(struct bt_hci_s *hci, uint16_t handle, int mode)
  918. {
  919. struct bt_hci_master_link_s *link;
  920. if (bt_hci_handle_bad(hci, handle) || !bt_hci_role_master(hci, handle))
  921. return -ENODEV;
  922. link = &hci->lm.handle[handle & ~HCI_HANDLE_OFFSET];
  923. if (link->link->acl_mode != mode) {
  924. bt_hci_event_status(hci, HCI_COMMAND_DISALLOWED);
  925. return 0;
  926. }
  927. bt_hci_event_status(hci, HCI_SUCCESS);
  928. qemu_del_timer(link->acl_mode_timer);
  929. bt_hci_lmp_mode_change_master(hci, link->link, acl_active, 0);
  930. return 0;
  931. }
  932. static void bt_hci_mode_tick(void *opaque)
  933. {
  934. struct bt_link_s *link = opaque;
  935. struct bt_hci_s *hci = hci_from_device(link->host);
  936. bt_hci_lmp_mode_change_master(hci, link, acl_active, 0);
  937. }
  938. static void bt_hci_reset(struct bt_hci_s *hci)
  939. {
  940. hci->acl_len = 0;
  941. hci->last_cmd = 0;
  942. hci->lm.connecting = 0;
  943. hci->event_mask[0] = 0xff;
  944. hci->event_mask[1] = 0xff;
  945. hci->event_mask[2] = 0xff;
  946. hci->event_mask[3] = 0xff;
  947. hci->event_mask[4] = 0xff;
  948. hci->event_mask[5] = 0x1f;
  949. hci->event_mask[6] = 0x00;
  950. hci->event_mask[7] = 0x00;
  951. hci->device.inquiry_scan = 0;
  952. hci->device.page_scan = 0;
  953. if (hci->device.lmp_name)
  954. g_free((void *) hci->device.lmp_name);
  955. hci->device.lmp_name = NULL;
  956. hci->device.class[0] = 0x00;
  957. hci->device.class[1] = 0x00;
  958. hci->device.class[2] = 0x00;
  959. hci->voice_setting = 0x0000;
  960. hci->conn_accept_tout = 0x1f40;
  961. hci->lm.inquiry_mode = 0x00;
  962. hci->psb_handle = 0x000;
  963. hci->asb_handle = 0x000;
  964. /* XXX: qemu_del_timer(sl->acl_mode_timer); for all links */
  965. qemu_del_timer(hci->lm.inquiry_done);
  966. qemu_del_timer(hci->lm.inquiry_next);
  967. qemu_del_timer(hci->conn_accept_timer);
  968. }
  969. static void bt_hci_read_local_version_rp(struct bt_hci_s *hci)
  970. {
  971. read_local_version_rp lv = {
  972. .status = HCI_SUCCESS,
  973. .hci_ver = 0x03,
  974. .hci_rev = cpu_to_le16(0xa607),
  975. .lmp_ver = 0x03,
  976. .manufacturer = cpu_to_le16(0xa000),
  977. .lmp_subver = cpu_to_le16(0xa607),
  978. };
  979. bt_hci_event_complete(hci, &lv, READ_LOCAL_VERSION_RP_SIZE);
  980. }
  981. static void bt_hci_read_local_commands_rp(struct bt_hci_s *hci)
  982. {
  983. read_local_commands_rp lc = {
  984. .status = HCI_SUCCESS,
  985. .commands = {
  986. /* Keep updated! */
  987. /* Also, keep in sync with hci->device.lmp_caps in bt_new_hci */
  988. 0xbf, 0x80, 0xf9, 0x03, 0xb2, 0xc0, 0x03, 0xc3,
  989. 0x00, 0x0f, 0x80, 0x00, 0xc0, 0x00, 0xe8, 0x13,
  990. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  991. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  992. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  993. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  994. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  995. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  996. },
  997. };
  998. bt_hci_event_complete(hci, &lc, READ_LOCAL_COMMANDS_RP_SIZE);
  999. }
  1000. static void bt_hci_read_local_features_rp(struct bt_hci_s *hci)
  1001. {
  1002. read_local_features_rp lf = {
  1003. .status = HCI_SUCCESS,
  1004. .features = {
  1005. (hci->device.lmp_caps >> 0) & 0xff,
  1006. (hci->device.lmp_caps >> 8) & 0xff,
  1007. (hci->device.lmp_caps >> 16) & 0xff,
  1008. (hci->device.lmp_caps >> 24) & 0xff,
  1009. (hci->device.lmp_caps >> 32) & 0xff,
  1010. (hci->device.lmp_caps >> 40) & 0xff,
  1011. (hci->device.lmp_caps >> 48) & 0xff,
  1012. (hci->device.lmp_caps >> 56) & 0xff,
  1013. },
  1014. };
  1015. bt_hci_event_complete(hci, &lf, READ_LOCAL_FEATURES_RP_SIZE);
  1016. }
  1017. static void bt_hci_read_local_ext_features_rp(struct bt_hci_s *hci, int page)
  1018. {
  1019. read_local_ext_features_rp lef = {
  1020. .status = HCI_SUCCESS,
  1021. .page_num = page,
  1022. .max_page_num = 0x00,
  1023. .features = {
  1024. /* Keep updated! */
  1025. 0x5f, 0x35, 0x85, 0x7e, 0x9b, 0x19, 0x00, 0x80,
  1026. },
  1027. };
  1028. if (page)
  1029. memset(lef.features, 0, sizeof(lef.features));
  1030. bt_hci_event_complete(hci, &lef, READ_LOCAL_EXT_FEATURES_RP_SIZE);
  1031. }
  1032. static void bt_hci_read_buffer_size_rp(struct bt_hci_s *hci)
  1033. {
  1034. read_buffer_size_rp bs = {
  1035. /* This can be made configurable, for one standard USB dongle HCI
  1036. * the four values are cpu_to_le16(0x0180), 0x40,
  1037. * cpu_to_le16(0x0008), cpu_to_le16(0x0008). */
  1038. .status = HCI_SUCCESS,
  1039. .acl_mtu = cpu_to_le16(0x0200),
  1040. .sco_mtu = 0,
  1041. .acl_max_pkt = cpu_to_le16(0x0001),
  1042. .sco_max_pkt = cpu_to_le16(0x0000),
  1043. };
  1044. bt_hci_event_complete(hci, &bs, READ_BUFFER_SIZE_RP_SIZE);
  1045. }
  1046. /* Deprecated in V2.0 (page 661) */
  1047. static void bt_hci_read_country_code_rp(struct bt_hci_s *hci)
  1048. {
  1049. read_country_code_rp cc ={
  1050. .status = HCI_SUCCESS,
  1051. .country_code = 0x00, /* North America & Europe^1 and Japan */
  1052. };
  1053. bt_hci_event_complete(hci, &cc, READ_COUNTRY_CODE_RP_SIZE);
  1054. /* ^1. Except France, sorry */
  1055. }
  1056. static void bt_hci_read_bd_addr_rp(struct bt_hci_s *hci)
  1057. {
  1058. read_bd_addr_rp ba = {
  1059. .status = HCI_SUCCESS,
  1060. .bdaddr = BAINIT(&hci->device.bd_addr),
  1061. };
  1062. bt_hci_event_complete(hci, &ba, READ_BD_ADDR_RP_SIZE);
  1063. }
  1064. static int bt_hci_link_quality_rp(struct bt_hci_s *hci, uint16_t handle)
  1065. {
  1066. read_link_quality_rp lq = {
  1067. .status = HCI_SUCCESS,
  1068. .handle = HNDL(handle),
  1069. .link_quality = 0xff,
  1070. };
  1071. if (bt_hci_handle_bad(hci, handle))
  1072. lq.status = HCI_NO_CONNECTION;
  1073. bt_hci_event_complete(hci, &lq, READ_LINK_QUALITY_RP_SIZE);
  1074. return 0;
  1075. }
  1076. /* Generate a Command Complete event with only the Status parameter */
  1077. static inline void bt_hci_event_complete_status(struct bt_hci_s *hci,
  1078. uint8_t status)
  1079. {
  1080. bt_hci_event_complete(hci, &status, 1);
  1081. }
  1082. static inline void bt_hci_event_complete_conn_cancel(struct bt_hci_s *hci,
  1083. uint8_t status, bdaddr_t *bd_addr)
  1084. {
  1085. create_conn_cancel_rp params = {
  1086. .status = status,
  1087. .bdaddr = BAINIT(bd_addr),
  1088. };
  1089. bt_hci_event_complete(hci, &params, CREATE_CONN_CANCEL_RP_SIZE);
  1090. }
  1091. static inline void bt_hci_event_auth_complete(struct bt_hci_s *hci,
  1092. uint16_t handle)
  1093. {
  1094. evt_auth_complete params = {
  1095. .status = HCI_SUCCESS,
  1096. .handle = HNDL(handle),
  1097. };
  1098. bt_hci_event(hci, EVT_AUTH_COMPLETE, &params, EVT_AUTH_COMPLETE_SIZE);
  1099. }
  1100. static inline void bt_hci_event_encrypt_change(struct bt_hci_s *hci,
  1101. uint16_t handle, uint8_t mode)
  1102. {
  1103. evt_encrypt_change params = {
  1104. .status = HCI_SUCCESS,
  1105. .handle = HNDL(handle),
  1106. .encrypt = mode,
  1107. };
  1108. bt_hci_event(hci, EVT_ENCRYPT_CHANGE, &params, EVT_ENCRYPT_CHANGE_SIZE);
  1109. }
  1110. static inline void bt_hci_event_complete_name_cancel(struct bt_hci_s *hci,
  1111. bdaddr_t *bd_addr)
  1112. {
  1113. remote_name_req_cancel_rp params = {
  1114. .status = HCI_INVALID_PARAMETERS,
  1115. .bdaddr = BAINIT(bd_addr),
  1116. };
  1117. bt_hci_event_complete(hci, &params, REMOTE_NAME_REQ_CANCEL_RP_SIZE);
  1118. }
  1119. static inline void bt_hci_event_read_remote_ext_features(struct bt_hci_s *hci,
  1120. uint16_t handle)
  1121. {
  1122. evt_read_remote_ext_features_complete params = {
  1123. .status = HCI_UNSUPPORTED_FEATURE,
  1124. .handle = HNDL(handle),
  1125. /* Rest uninitialised */
  1126. };
  1127. bt_hci_event(hci, EVT_READ_REMOTE_EXT_FEATURES_COMPLETE,
  1128. &params, EVT_READ_REMOTE_EXT_FEATURES_COMPLETE_SIZE);
  1129. }
  1130. static inline void bt_hci_event_complete_lmp_handle(struct bt_hci_s *hci,
  1131. uint16_t handle)
  1132. {
  1133. read_lmp_handle_rp params = {
  1134. .status = HCI_NO_CONNECTION,
  1135. .handle = HNDL(handle),
  1136. .reserved = 0,
  1137. /* Rest uninitialised */
  1138. };
  1139. bt_hci_event_complete(hci, &params, READ_LMP_HANDLE_RP_SIZE);
  1140. }
  1141. static inline void bt_hci_event_complete_role_discovery(struct bt_hci_s *hci,
  1142. int status, uint16_t handle, int master)
  1143. {
  1144. role_discovery_rp params = {
  1145. .status = status,
  1146. .handle = HNDL(handle),
  1147. .role = master ? 0x00 : 0x01,
  1148. };
  1149. bt_hci_event_complete(hci, &params, ROLE_DISCOVERY_RP_SIZE);
  1150. }
  1151. static inline void bt_hci_event_complete_flush(struct bt_hci_s *hci,
  1152. int status, uint16_t handle)
  1153. {
  1154. flush_rp params = {
  1155. .status = status,
  1156. .handle = HNDL(handle),
  1157. };
  1158. bt_hci_event_complete(hci, &params, FLUSH_RP_SIZE);
  1159. }
  1160. static inline void bt_hci_event_complete_read_local_name(struct bt_hci_s *hci)
  1161. {
  1162. read_local_name_rp params;
  1163. params.status = HCI_SUCCESS;
  1164. memset(params.name, 0, sizeof(params.name));
  1165. if (hci->device.lmp_name)
  1166. pstrcpy(params.name, sizeof(params.name), hci->device.lmp_name);
  1167. bt_hci_event_complete(hci, &params, READ_LOCAL_NAME_RP_SIZE);
  1168. }
  1169. static inline void bt_hci_event_complete_read_conn_accept_timeout(
  1170. struct bt_hci_s *hci)
  1171. {
  1172. read_conn_accept_timeout_rp params = {
  1173. .status = HCI_SUCCESS,
  1174. .timeout = cpu_to_le16(hci->conn_accept_tout),
  1175. };
  1176. bt_hci_event_complete(hci, &params, READ_CONN_ACCEPT_TIMEOUT_RP_SIZE);
  1177. }
  1178. static inline void bt_hci_event_complete_read_scan_enable(struct bt_hci_s *hci)
  1179. {
  1180. read_scan_enable_rp params = {
  1181. .status = HCI_SUCCESS,
  1182. .enable =
  1183. (hci->device.inquiry_scan ? SCAN_INQUIRY : 0) |
  1184. (hci->device.page_scan ? SCAN_PAGE : 0),
  1185. };
  1186. bt_hci_event_complete(hci, &params, READ_SCAN_ENABLE_RP_SIZE);
  1187. }
  1188. static inline void bt_hci_event_complete_read_local_class(struct bt_hci_s *hci)
  1189. {
  1190. read_class_of_dev_rp params;
  1191. params.status = HCI_SUCCESS;
  1192. memcpy(params.dev_class, hci->device.class, sizeof(params.dev_class));
  1193. bt_hci_event_complete(hci, &params, READ_CLASS_OF_DEV_RP_SIZE);
  1194. }
  1195. static inline void bt_hci_event_complete_voice_setting(struct bt_hci_s *hci)
  1196. {
  1197. read_voice_setting_rp params = {
  1198. .status = HCI_SUCCESS,
  1199. .voice_setting = hci->voice_setting, /* Note: no swapping */
  1200. };
  1201. bt_hci_event_complete(hci, &params, READ_VOICE_SETTING_RP_SIZE);
  1202. }
  1203. static inline void bt_hci_event_complete_read_inquiry_mode(
  1204. struct bt_hci_s *hci)
  1205. {
  1206. read_inquiry_mode_rp params = {
  1207. .status = HCI_SUCCESS,
  1208. .mode = hci->lm.inquiry_mode,
  1209. };
  1210. bt_hci_event_complete(hci, &params, READ_INQUIRY_MODE_RP_SIZE);
  1211. }
  1212. static inline void bt_hci_event_num_comp_pkts(struct bt_hci_s *hci,
  1213. uint16_t handle, int packets)
  1214. {
  1215. uint16_t buf[EVT_NUM_COMP_PKTS_SIZE(1) / 2 + 1];
  1216. evt_num_comp_pkts *params = (void *) ((uint8_t *) buf + 1);
  1217. params->num_hndl = 1;
  1218. params->connection->handle = HNDL(handle);
  1219. params->connection->num_packets = cpu_to_le16(packets);
  1220. bt_hci_event(hci, EVT_NUM_COMP_PKTS, params, EVT_NUM_COMP_PKTS_SIZE(1));
  1221. }
  1222. static void bt_submit_hci(struct HCIInfo *info,
  1223. const uint8_t *data, int length)
  1224. {
  1225. struct bt_hci_s *hci = hci_from_info(info);
  1226. uint16_t cmd;
  1227. int paramlen, i;
  1228. if (length < HCI_COMMAND_HDR_SIZE)
  1229. goto short_hci;
  1230. memcpy(&hci->last_cmd, data, 2);
  1231. cmd = (data[1] << 8) | data[0];
  1232. paramlen = data[2];
  1233. if (cmd_opcode_ogf(cmd) == 0 || cmd_opcode_ocf(cmd) == 0) /* NOP */
  1234. return;
  1235. data += HCI_COMMAND_HDR_SIZE;
  1236. length -= HCI_COMMAND_HDR_SIZE;
  1237. if (paramlen > length)
  1238. return;
  1239. #define PARAM(cmd, param) (((cmd##_cp *) data)->param)
  1240. #define PARAM16(cmd, param) le16_to_cpup(&PARAM(cmd, param))
  1241. #define PARAMHANDLE(cmd) HNDL(PARAM(cmd, handle))
  1242. #define LENGTH_CHECK(cmd) if (length < sizeof(cmd##_cp)) goto short_hci
  1243. /* Note: the supported commands bitmask in bt_hci_read_local_commands_rp
  1244. * needs to be updated every time a command is implemented here! */
  1245. switch (cmd) {
  1246. case cmd_opcode_pack(OGF_LINK_CTL, OCF_INQUIRY):
  1247. LENGTH_CHECK(inquiry);
  1248. if (PARAM(inquiry, length) < 1) {
  1249. bt_hci_event_complete_status(hci, HCI_INVALID_PARAMETERS);
  1250. break;
  1251. }
  1252. hci->lm.inquire = 1;
  1253. hci->lm.periodic = 0;
  1254. hci->lm.responses_left = PARAM(inquiry, num_rsp) ?: INT_MAX;
  1255. hci->lm.responses = 0;
  1256. bt_hci_event_status(hci, HCI_SUCCESS);
  1257. bt_hci_inquiry_start(hci, PARAM(inquiry, length));
  1258. break;
  1259. case cmd_opcode_pack(OGF_LINK_CTL, OCF_INQUIRY_CANCEL):
  1260. if (!hci->lm.inquire || hci->lm.periodic) {
  1261. fprintf(stderr, "%s: Inquiry Cancel should only be issued after "
  1262. "the Inquiry command has been issued, a Command "
  1263. "Status event has been received for the Inquiry "
  1264. "command, and before the Inquiry Complete event "
  1265. "occurs", __FUNCTION__);
  1266. bt_hci_event_complete_status(hci, HCI_COMMAND_DISALLOWED);
  1267. break;
  1268. }
  1269. hci->lm.inquire = 0;
  1270. qemu_del_timer(hci->lm.inquiry_done);
  1271. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1272. break;
  1273. case cmd_opcode_pack(OGF_LINK_CTL, OCF_PERIODIC_INQUIRY):
  1274. LENGTH_CHECK(periodic_inquiry);
  1275. if (!(PARAM(periodic_inquiry, length) <
  1276. PARAM16(periodic_inquiry, min_period) &&
  1277. PARAM16(periodic_inquiry, min_period) <
  1278. PARAM16(periodic_inquiry, max_period)) ||
  1279. PARAM(periodic_inquiry, length) < 1 ||
  1280. PARAM16(periodic_inquiry, min_period) < 2 ||
  1281. PARAM16(periodic_inquiry, max_period) < 3) {
  1282. bt_hci_event_complete_status(hci, HCI_INVALID_PARAMETERS);
  1283. break;
  1284. }
  1285. hci->lm.inquire = 1;
  1286. hci->lm.periodic = 1;
  1287. hci->lm.responses_left = PARAM(periodic_inquiry, num_rsp);
  1288. hci->lm.responses = 0;
  1289. hci->lm.inquiry_period = PARAM16(periodic_inquiry, max_period);
  1290. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1291. bt_hci_inquiry_start(hci, PARAM(periodic_inquiry, length));
  1292. break;
  1293. case cmd_opcode_pack(OGF_LINK_CTL, OCF_EXIT_PERIODIC_INQUIRY):
  1294. if (!hci->lm.inquire || !hci->lm.periodic) {
  1295. fprintf(stderr, "%s: Inquiry Cancel should only be issued after "
  1296. "the Inquiry command has been issued, a Command "
  1297. "Status event has been received for the Inquiry "
  1298. "command, and before the Inquiry Complete event "
  1299. "occurs", __FUNCTION__);
  1300. bt_hci_event_complete_status(hci, HCI_COMMAND_DISALLOWED);
  1301. break;
  1302. }
  1303. hci->lm.inquire = 0;
  1304. qemu_del_timer(hci->lm.inquiry_done);
  1305. qemu_del_timer(hci->lm.inquiry_next);
  1306. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1307. break;
  1308. case cmd_opcode_pack(OGF_LINK_CTL, OCF_CREATE_CONN):
  1309. LENGTH_CHECK(create_conn);
  1310. if (hci->lm.connecting >= HCI_HANDLES_MAX) {
  1311. bt_hci_event_status(hci, HCI_REJECTED_LIMITED_RESOURCES);
  1312. break;
  1313. }
  1314. bt_hci_event_status(hci, HCI_SUCCESS);
  1315. if (bt_hci_connect(hci, &PARAM(create_conn, bdaddr)))
  1316. bt_hci_connection_reject_event(hci, &PARAM(create_conn, bdaddr));
  1317. break;
  1318. case cmd_opcode_pack(OGF_LINK_CTL, OCF_DISCONNECT):
  1319. LENGTH_CHECK(disconnect);
  1320. if (bt_hci_handle_bad(hci, PARAMHANDLE(disconnect))) {
  1321. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1322. break;
  1323. }
  1324. bt_hci_event_status(hci, HCI_SUCCESS);
  1325. bt_hci_disconnect(hci, PARAMHANDLE(disconnect),
  1326. PARAM(disconnect, reason));
  1327. break;
  1328. case cmd_opcode_pack(OGF_LINK_CTL, OCF_CREATE_CONN_CANCEL):
  1329. LENGTH_CHECK(create_conn_cancel);
  1330. if (bt_hci_lmp_connection_ready(hci,
  1331. &PARAM(create_conn_cancel, bdaddr))) {
  1332. for (i = 0; i < HCI_HANDLES_MAX; i ++)
  1333. if (bt_hci_role_master(hci, i) && hci->lm.handle[i].link &&
  1334. !bacmp(&hci->lm.handle[i].link->slave->bd_addr,
  1335. &PARAM(create_conn_cancel, bdaddr)))
  1336. break;
  1337. bt_hci_event_complete_conn_cancel(hci, i < HCI_HANDLES_MAX ?
  1338. HCI_ACL_CONNECTION_EXISTS : HCI_NO_CONNECTION,
  1339. &PARAM(create_conn_cancel, bdaddr));
  1340. } else
  1341. bt_hci_event_complete_conn_cancel(hci, HCI_SUCCESS,
  1342. &PARAM(create_conn_cancel, bdaddr));
  1343. break;
  1344. case cmd_opcode_pack(OGF_LINK_CTL, OCF_ACCEPT_CONN_REQ):
  1345. LENGTH_CHECK(accept_conn_req);
  1346. if (!hci->conn_req_host ||
  1347. bacmp(&PARAM(accept_conn_req, bdaddr),
  1348. &hci->conn_req_host->bd_addr)) {
  1349. bt_hci_event_status(hci, HCI_INVALID_PARAMETERS);
  1350. break;
  1351. }
  1352. bt_hci_event_status(hci, HCI_SUCCESS);
  1353. bt_hci_connection_accept(hci, hci->conn_req_host);
  1354. hci->conn_req_host = NULL;
  1355. break;
  1356. case cmd_opcode_pack(OGF_LINK_CTL, OCF_REJECT_CONN_REQ):
  1357. LENGTH_CHECK(reject_conn_req);
  1358. if (!hci->conn_req_host ||
  1359. bacmp(&PARAM(reject_conn_req, bdaddr),
  1360. &hci->conn_req_host->bd_addr)) {
  1361. bt_hci_event_status(hci, HCI_INVALID_PARAMETERS);
  1362. break;
  1363. }
  1364. bt_hci_event_status(hci, HCI_SUCCESS);
  1365. bt_hci_connection_reject(hci, hci->conn_req_host,
  1366. PARAM(reject_conn_req, reason));
  1367. bt_hci_connection_reject_event(hci, &hci->conn_req_host->bd_addr);
  1368. hci->conn_req_host = NULL;
  1369. break;
  1370. case cmd_opcode_pack(OGF_LINK_CTL, OCF_AUTH_REQUESTED):
  1371. LENGTH_CHECK(auth_requested);
  1372. if (bt_hci_handle_bad(hci, PARAMHANDLE(auth_requested)))
  1373. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1374. else {
  1375. bt_hci_event_status(hci, HCI_SUCCESS);
  1376. bt_hci_event_auth_complete(hci, PARAMHANDLE(auth_requested));
  1377. }
  1378. break;
  1379. case cmd_opcode_pack(OGF_LINK_CTL, OCF_SET_CONN_ENCRYPT):
  1380. LENGTH_CHECK(set_conn_encrypt);
  1381. if (bt_hci_handle_bad(hci, PARAMHANDLE(set_conn_encrypt)))
  1382. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1383. else {
  1384. bt_hci_event_status(hci, HCI_SUCCESS);
  1385. bt_hci_event_encrypt_change(hci,
  1386. PARAMHANDLE(set_conn_encrypt),
  1387. PARAM(set_conn_encrypt, encrypt));
  1388. }
  1389. break;
  1390. case cmd_opcode_pack(OGF_LINK_CTL, OCF_REMOTE_NAME_REQ):
  1391. LENGTH_CHECK(remote_name_req);
  1392. if (bt_hci_name_req(hci, &PARAM(remote_name_req, bdaddr)))
  1393. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1394. break;
  1395. case cmd_opcode_pack(OGF_LINK_CTL, OCF_REMOTE_NAME_REQ_CANCEL):
  1396. LENGTH_CHECK(remote_name_req_cancel);
  1397. bt_hci_event_complete_name_cancel(hci,
  1398. &PARAM(remote_name_req_cancel, bdaddr));
  1399. break;
  1400. case cmd_opcode_pack(OGF_LINK_CTL, OCF_READ_REMOTE_FEATURES):
  1401. LENGTH_CHECK(read_remote_features);
  1402. if (bt_hci_features_req(hci, PARAMHANDLE(read_remote_features)))
  1403. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1404. break;
  1405. case cmd_opcode_pack(OGF_LINK_CTL, OCF_READ_REMOTE_EXT_FEATURES):
  1406. LENGTH_CHECK(read_remote_ext_features);
  1407. if (bt_hci_handle_bad(hci, PARAMHANDLE(read_remote_ext_features)))
  1408. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1409. else {
  1410. bt_hci_event_status(hci, HCI_SUCCESS);
  1411. bt_hci_event_read_remote_ext_features(hci,
  1412. PARAMHANDLE(read_remote_ext_features));
  1413. }
  1414. break;
  1415. case cmd_opcode_pack(OGF_LINK_CTL, OCF_READ_REMOTE_VERSION):
  1416. LENGTH_CHECK(read_remote_version);
  1417. if (bt_hci_version_req(hci, PARAMHANDLE(read_remote_version)))
  1418. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1419. break;
  1420. case cmd_opcode_pack(OGF_LINK_CTL, OCF_READ_CLOCK_OFFSET):
  1421. LENGTH_CHECK(read_clock_offset);
  1422. if (bt_hci_clkoffset_req(hci, PARAMHANDLE(read_clock_offset)))
  1423. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1424. break;
  1425. case cmd_opcode_pack(OGF_LINK_CTL, OCF_READ_LMP_HANDLE):
  1426. LENGTH_CHECK(read_lmp_handle);
  1427. /* TODO: */
  1428. bt_hci_event_complete_lmp_handle(hci, PARAMHANDLE(read_lmp_handle));
  1429. break;
  1430. case cmd_opcode_pack(OGF_LINK_POLICY, OCF_HOLD_MODE):
  1431. LENGTH_CHECK(hold_mode);
  1432. if (PARAM16(hold_mode, min_interval) >
  1433. PARAM16(hold_mode, max_interval) ||
  1434. PARAM16(hold_mode, min_interval) < 0x0002 ||
  1435. PARAM16(hold_mode, max_interval) > 0xff00 ||
  1436. (PARAM16(hold_mode, min_interval) & 1) ||
  1437. (PARAM16(hold_mode, max_interval) & 1)) {
  1438. bt_hci_event_status(hci, HCI_INVALID_PARAMETERS);
  1439. break;
  1440. }
  1441. if (bt_hci_mode_change(hci, PARAMHANDLE(hold_mode),
  1442. PARAM16(hold_mode, max_interval),
  1443. acl_hold))
  1444. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1445. break;
  1446. case cmd_opcode_pack(OGF_LINK_POLICY, OCF_PARK_MODE):
  1447. LENGTH_CHECK(park_mode);
  1448. if (PARAM16(park_mode, min_interval) >
  1449. PARAM16(park_mode, max_interval) ||
  1450. PARAM16(park_mode, min_interval) < 0x000e ||
  1451. (PARAM16(park_mode, min_interval) & 1) ||
  1452. (PARAM16(park_mode, max_interval) & 1)) {
  1453. bt_hci_event_status(hci, HCI_INVALID_PARAMETERS);
  1454. break;
  1455. }
  1456. if (bt_hci_mode_change(hci, PARAMHANDLE(park_mode),
  1457. PARAM16(park_mode, max_interval),
  1458. acl_parked))
  1459. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1460. break;
  1461. case cmd_opcode_pack(OGF_LINK_POLICY, OCF_EXIT_PARK_MODE):
  1462. LENGTH_CHECK(exit_park_mode);
  1463. if (bt_hci_mode_cancel(hci, PARAMHANDLE(exit_park_mode),
  1464. acl_parked))
  1465. bt_hci_event_status(hci, HCI_NO_CONNECTION);
  1466. break;
  1467. case cmd_opcode_pack(OGF_LINK_POLICY, OCF_ROLE_DISCOVERY):
  1468. LENGTH_CHECK(role_discovery);
  1469. if (bt_hci_handle_bad(hci, PARAMHANDLE(role_discovery)))
  1470. bt_hci_event_complete_role_discovery(hci,
  1471. HCI_NO_CONNECTION, PARAMHANDLE(role_discovery), 0);
  1472. else
  1473. bt_hci_event_complete_role_discovery(hci,
  1474. HCI_SUCCESS, PARAMHANDLE(role_discovery),
  1475. bt_hci_role_master(hci,
  1476. PARAMHANDLE(role_discovery)));
  1477. break;
  1478. case cmd_opcode_pack(OGF_HOST_CTL, OCF_SET_EVENT_MASK):
  1479. LENGTH_CHECK(set_event_mask);
  1480. memcpy(hci->event_mask, PARAM(set_event_mask, mask), 8);
  1481. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1482. break;
  1483. case cmd_opcode_pack(OGF_HOST_CTL, OCF_RESET):
  1484. bt_hci_reset(hci);
  1485. bt_hci_event_status(hci, HCI_SUCCESS);
  1486. break;
  1487. case cmd_opcode_pack(OGF_HOST_CTL, OCF_SET_EVENT_FLT):
  1488. if (length >= 1 && PARAM(set_event_flt, flt_type) == FLT_CLEAR_ALL)
  1489. /* No length check */;
  1490. else
  1491. LENGTH_CHECK(set_event_flt);
  1492. /* Filters are not implemented */
  1493. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1494. break;
  1495. case cmd_opcode_pack(OGF_HOST_CTL, OCF_FLUSH):
  1496. LENGTH_CHECK(flush);
  1497. if (bt_hci_handle_bad(hci, PARAMHANDLE(flush)))
  1498. bt_hci_event_complete_flush(hci,
  1499. HCI_NO_CONNECTION, PARAMHANDLE(flush));
  1500. else {
  1501. /* TODO: ordering? */
  1502. bt_hci_event(hci, EVT_FLUSH_OCCURRED,
  1503. &PARAM(flush, handle),
  1504. EVT_FLUSH_OCCURRED_SIZE);
  1505. bt_hci_event_complete_flush(hci,
  1506. HCI_SUCCESS, PARAMHANDLE(flush));
  1507. }
  1508. break;
  1509. case cmd_opcode_pack(OGF_HOST_CTL, OCF_CHANGE_LOCAL_NAME):
  1510. LENGTH_CHECK(change_local_name);
  1511. if (hci->device.lmp_name)
  1512. g_free((void *) hci->device.lmp_name);
  1513. hci->device.lmp_name = g_strndup(PARAM(change_local_name, name),
  1514. sizeof(PARAM(change_local_name, name)));
  1515. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1516. break;
  1517. case cmd_opcode_pack(OGF_HOST_CTL, OCF_READ_LOCAL_NAME):
  1518. bt_hci_event_complete_read_local_name(hci);
  1519. break;
  1520. case cmd_opcode_pack(OGF_HOST_CTL, OCF_READ_CONN_ACCEPT_TIMEOUT):
  1521. bt_hci_event_complete_read_conn_accept_timeout(hci);
  1522. break;
  1523. case cmd_opcode_pack(OGF_HOST_CTL, OCF_WRITE_CONN_ACCEPT_TIMEOUT):
  1524. /* TODO */
  1525. LENGTH_CHECK(write_conn_accept_timeout);
  1526. if (PARAM16(write_conn_accept_timeout, timeout) < 0x0001 ||
  1527. PARAM16(write_conn_accept_timeout, timeout) > 0xb540) {
  1528. bt_hci_event_complete_status(hci, HCI_INVALID_PARAMETERS);
  1529. break;
  1530. }
  1531. hci->conn_accept_tout = PARAM16(write_conn_accept_timeout, timeout);
  1532. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1533. break;
  1534. case cmd_opcode_pack(OGF_HOST_CTL, OCF_READ_SCAN_ENABLE):
  1535. bt_hci_event_complete_read_scan_enable(hci);
  1536. break;
  1537. case cmd_opcode_pack(OGF_HOST_CTL, OCF_WRITE_SCAN_ENABLE):
  1538. LENGTH_CHECK(write_scan_enable);
  1539. /* TODO: check that the remaining bits are all 0 */
  1540. hci->device.inquiry_scan =
  1541. !!(PARAM(write_scan_enable, scan_enable) & SCAN_INQUIRY);
  1542. hci->device.page_scan =
  1543. !!(PARAM(write_scan_enable, scan_enable) & SCAN_PAGE);
  1544. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1545. break;
  1546. case cmd_opcode_pack(OGF_HOST_CTL, OCF_READ_CLASS_OF_DEV):
  1547. bt_hci_event_complete_read_local_class(hci);
  1548. break;
  1549. case cmd_opcode_pack(OGF_HOST_CTL, OCF_WRITE_CLASS_OF_DEV):
  1550. LENGTH_CHECK(write_class_of_dev);
  1551. memcpy(hci->device.class, PARAM(write_class_of_dev, dev_class),
  1552. sizeof(PARAM(write_class_of_dev, dev_class)));
  1553. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1554. break;
  1555. case cmd_opcode_pack(OGF_HOST_CTL, OCF_READ_VOICE_SETTING):
  1556. bt_hci_event_complete_voice_setting(hci);
  1557. break;
  1558. case cmd_opcode_pack(OGF_HOST_CTL, OCF_WRITE_VOICE_SETTING):
  1559. LENGTH_CHECK(write_voice_setting);
  1560. hci->voice_setting = PARAM(write_voice_setting, voice_setting);
  1561. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1562. break;
  1563. case cmd_opcode_pack(OGF_HOST_CTL, OCF_HOST_NUMBER_OF_COMPLETED_PACKETS):
  1564. if (length < data[0] * 2 + 1)
  1565. goto short_hci;
  1566. for (i = 0; i < data[0]; i ++)
  1567. if (bt_hci_handle_bad(hci,
  1568. data[i * 2 + 1] | (data[i * 2 + 2] << 8)))
  1569. bt_hci_event_complete_status(hci, HCI_INVALID_PARAMETERS);
  1570. break;
  1571. case cmd_opcode_pack(OGF_HOST_CTL, OCF_READ_INQUIRY_MODE):
  1572. /* Only if (local_features[3] & 0x40) && (local_commands[12] & 0x40)
  1573. * else
  1574. * goto unknown_command */
  1575. bt_hci_event_complete_read_inquiry_mode(hci);
  1576. break;
  1577. case cmd_opcode_pack(OGF_HOST_CTL, OCF_WRITE_INQUIRY_MODE):
  1578. /* Only if (local_features[3] & 0x40) && (local_commands[12] & 0x80)
  1579. * else
  1580. * goto unknown_command */
  1581. LENGTH_CHECK(write_inquiry_mode);
  1582. if (PARAM(write_inquiry_mode, mode) > 0x01) {
  1583. bt_hci_event_complete_status(hci, HCI_INVALID_PARAMETERS);
  1584. break;
  1585. }
  1586. hci->lm.inquiry_mode = PARAM(write_inquiry_mode, mode);
  1587. bt_hci_event_complete_status(hci, HCI_SUCCESS);
  1588. break;
  1589. case cmd_opcode_pack(OGF_INFO_PARAM, OCF_READ_LOCAL_VERSION):
  1590. bt_hci_read_local_version_rp(hci);
  1591. break;
  1592. case cmd_opcode_pack(OGF_INFO_PARAM, OCF_READ_LOCAL_COMMANDS):
  1593. bt_hci_read_local_commands_rp(hci);
  1594. break;
  1595. case cmd_opcode_pack(OGF_INFO_PARAM, OCF_READ_LOCAL_FEATURES):
  1596. bt_hci_read_local_features_rp(hci);
  1597. break;
  1598. case cmd_opcode_pack(OGF_INFO_PARAM, OCF_READ_LOCAL_EXT_FEATURES):
  1599. LENGTH_CHECK(read_local_ext_features);
  1600. bt_hci_read_local_ext_features_rp(hci,
  1601. PARAM(read_local_ext_features, page_num));
  1602. break;
  1603. case cmd_opcode_pack(OGF_INFO_PARAM, OCF_READ_BUFFER_SIZE):
  1604. bt_hci_read_buffer_size_rp(hci);
  1605. break;
  1606. case cmd_opcode_pack(OGF_INFO_PARAM, OCF_READ_COUNTRY_CODE):
  1607. bt_hci_read_country_code_rp(hci);
  1608. break;
  1609. case cmd_opcode_pack(OGF_INFO_PARAM, OCF_READ_BD_ADDR):
  1610. bt_hci_read_bd_addr_rp(hci);
  1611. break;
  1612. case cmd_opcode_pack(OGF_STATUS_PARAM, OCF_READ_LINK_QUALITY):
  1613. LENGTH_CHECK(read_link_quality);
  1614. bt_hci_link_quality_rp(hci, PARAMHANDLE(read_link_quality));
  1615. break;
  1616. default:
  1617. bt_hci_event_status(hci, HCI_UNKNOWN_COMMAND);
  1618. break;
  1619. short_hci:
  1620. fprintf(stderr, "%s: HCI packet too short (%iB)\n",
  1621. __FUNCTION__, length);
  1622. bt_hci_event_status(hci, HCI_INVALID_PARAMETERS);
  1623. break;
  1624. }
  1625. }
  1626. /* We could perform fragmentation here, we can't do "recombination" because
  1627. * at this layer the length of the payload is not know ahead, so we only
  1628. * know that a packet contained the last fragment of the SDU when the next
  1629. * SDU starts. */
  1630. static inline void bt_hci_lmp_acl_data(struct bt_hci_s *hci, uint16_t handle,
  1631. const uint8_t *data, int start, int len)
  1632. {
  1633. struct hci_acl_hdr *pkt = (void *) hci->acl_buf;
  1634. /* TODO: packet flags */
  1635. /* TODO: avoid memcpy'ing */
  1636. if (len + HCI_ACL_HDR_SIZE > sizeof(hci->acl_buf)) {
  1637. fprintf(stderr, "%s: can't take ACL packets %i bytes long\n",
  1638. __FUNCTION__, len);
  1639. return;
  1640. }
  1641. memcpy(hci->acl_buf + HCI_ACL_HDR_SIZE, data, len);
  1642. pkt->handle = cpu_to_le16(
  1643. acl_handle_pack(handle, start ? ACL_START : ACL_CONT));
  1644. pkt->dlen = cpu_to_le16(len);
  1645. hci->info.acl_recv(hci->info.opaque,
  1646. hci->acl_buf, len + HCI_ACL_HDR_SIZE);
  1647. }
  1648. static void bt_hci_lmp_acl_data_slave(struct bt_link_s *btlink,
  1649. const uint8_t *data, int start, int len)
  1650. {
  1651. struct bt_hci_link_s *link = (struct bt_hci_link_s *) btlink;
  1652. bt_hci_lmp_acl_data(hci_from_device(btlink->slave),
  1653. link->handle, data, start, len);
  1654. }
  1655. static void bt_hci_lmp_acl_data_host(struct bt_link_s *link,
  1656. const uint8_t *data, int start, int len)
  1657. {
  1658. bt_hci_lmp_acl_data(hci_from_device(link->host),
  1659. link->handle, data, start, len);
  1660. }
  1661. static void bt_submit_acl(struct HCIInfo *info,
  1662. const uint8_t *data, int length)
  1663. {
  1664. struct bt_hci_s *hci = hci_from_info(info);
  1665. uint16_t handle;
  1666. int datalen, flags;
  1667. struct bt_link_s *link;
  1668. if (length < HCI_ACL_HDR_SIZE) {
  1669. fprintf(stderr, "%s: ACL packet too short (%iB)\n",
  1670. __FUNCTION__, length);
  1671. return;
  1672. }
  1673. handle = acl_handle((data[1] << 8) | data[0]);
  1674. flags = acl_flags((data[1] << 8) | data[0]);
  1675. datalen = (data[3] << 8) | data[2];
  1676. data += HCI_ACL_HDR_SIZE;
  1677. length -= HCI_ACL_HDR_SIZE;
  1678. if (bt_hci_handle_bad(hci, handle)) {
  1679. fprintf(stderr, "%s: invalid ACL handle %03x\n",
  1680. __FUNCTION__, handle);
  1681. /* TODO: signal an error */
  1682. return;
  1683. }
  1684. handle &= ~HCI_HANDLE_OFFSET;
  1685. if (datalen > length) {
  1686. fprintf(stderr, "%s: ACL packet too short (%iB < %iB)\n",
  1687. __FUNCTION__, length, datalen);
  1688. return;
  1689. }
  1690. link = hci->lm.handle[handle].link;
  1691. if ((flags & ~3) == ACL_ACTIVE_BCAST) {
  1692. if (!hci->asb_handle)
  1693. hci->asb_handle = handle;
  1694. else if (handle != hci->asb_handle) {
  1695. fprintf(stderr, "%s: Bad handle %03x in Active Slave Broadcast\n",
  1696. __FUNCTION__, handle);
  1697. /* TODO: signal an error */
  1698. return;
  1699. }
  1700. /* TODO */
  1701. }
  1702. if ((flags & ~3) == ACL_PICO_BCAST) {
  1703. if (!hci->psb_handle)
  1704. hci->psb_handle = handle;
  1705. else if (handle != hci->psb_handle) {
  1706. fprintf(stderr, "%s: Bad handle %03x in Parked Slave Broadcast\n",
  1707. __FUNCTION__, handle);
  1708. /* TODO: signal an error */
  1709. return;
  1710. }
  1711. /* TODO */
  1712. }
  1713. /* TODO: increase counter and send EVT_NUM_COMP_PKTS */
  1714. bt_hci_event_num_comp_pkts(hci, handle | HCI_HANDLE_OFFSET, 1);
  1715. /* Do this last as it can trigger further events even in this HCI */
  1716. hci->lm.handle[handle].lmp_acl_data(link, data,
  1717. (flags & 3) == ACL_START, length);
  1718. }
  1719. static void bt_submit_sco(struct HCIInfo *info,
  1720. const uint8_t *data, int length)
  1721. {
  1722. struct bt_hci_s *hci = hci_from_info(info);
  1723. uint16_t handle;
  1724. int datalen;
  1725. if (length < 3)
  1726. return;
  1727. handle = acl_handle((data[1] << 8) | data[0]);
  1728. datalen = data[2];
  1729. length -= 3;
  1730. if (bt_hci_handle_bad(hci, handle)) {
  1731. fprintf(stderr, "%s: invalid SCO handle %03x\n",
  1732. __FUNCTION__, handle);
  1733. return;
  1734. }
  1735. if (datalen > length) {
  1736. fprintf(stderr, "%s: SCO packet too short (%iB < %iB)\n",
  1737. __FUNCTION__, length, datalen);
  1738. return;
  1739. }
  1740. /* TODO */
  1741. /* TODO: increase counter and send EVT_NUM_COMP_PKTS if synchronous
  1742. * Flow Control is enabled.
  1743. * (See Read/Write_Synchronous_Flow_Control_Enable on page 513 and
  1744. * page 514.) */
  1745. }
  1746. static uint8_t *bt_hci_evt_packet(void *opaque)
  1747. {
  1748. /* TODO: allocate a packet from upper layer */
  1749. struct bt_hci_s *s = opaque;
  1750. return s->evt_buf;
  1751. }
  1752. static void bt_hci_evt_submit(void *opaque, int len)
  1753. {
  1754. /* TODO: notify upper layer */
  1755. struct bt_hci_s *s = opaque;
  1756. s->info.evt_recv(s->info.opaque, s->evt_buf, len);
  1757. }
  1758. static int bt_hci_bdaddr_set(struct HCIInfo *info, const uint8_t *bd_addr)
  1759. {
  1760. struct bt_hci_s *hci = hci_from_info(info);
  1761. bacpy(&hci->device.bd_addr, (const bdaddr_t *) bd_addr);
  1762. return 0;
  1763. }
  1764. static void bt_hci_done(struct HCIInfo *info);
  1765. static void bt_hci_destroy(struct bt_device_s *dev)
  1766. {
  1767. struct bt_hci_s *hci = hci_from_device(dev);
  1768. bt_hci_done(&hci->info);
  1769. }
  1770. struct HCIInfo *bt_new_hci(struct bt_scatternet_s *net)
  1771. {
  1772. struct bt_hci_s *s = g_malloc0(sizeof(struct bt_hci_s));
  1773. s->lm.inquiry_done = qemu_new_timer_ns(vm_clock, bt_hci_inquiry_done, s);
  1774. s->lm.inquiry_next = qemu_new_timer_ns(vm_clock, bt_hci_inquiry_next, s);
  1775. s->conn_accept_timer =
  1776. qemu_new_timer_ns(vm_clock, bt_hci_conn_accept_timeout, s);
  1777. s->evt_packet = bt_hci_evt_packet;
  1778. s->evt_submit = bt_hci_evt_submit;
  1779. s->opaque = s;
  1780. bt_device_init(&s->device, net);
  1781. s->device.lmp_connection_request = bt_hci_lmp_connection_request;
  1782. s->device.lmp_connection_complete = bt_hci_lmp_connection_complete;
  1783. s->device.lmp_disconnect_master = bt_hci_lmp_disconnect_host;
  1784. s->device.lmp_disconnect_slave = bt_hci_lmp_disconnect_slave;
  1785. s->device.lmp_acl_data = bt_hci_lmp_acl_data_slave;
  1786. s->device.lmp_acl_resp = bt_hci_lmp_acl_data_host;
  1787. s->device.lmp_mode_change = bt_hci_lmp_mode_change_slave;
  1788. /* Keep updated! */
  1789. /* Also keep in sync with supported commands bitmask in
  1790. * bt_hci_read_local_commands_rp */
  1791. s->device.lmp_caps = 0x8000199b7e85355fll;
  1792. bt_hci_reset(s);
  1793. s->info.cmd_send = bt_submit_hci;
  1794. s->info.sco_send = bt_submit_sco;
  1795. s->info.acl_send = bt_submit_acl;
  1796. s->info.bdaddr_set = bt_hci_bdaddr_set;
  1797. s->device.handle_destroy = bt_hci_destroy;
  1798. return &s->info;
  1799. }
  1800. static void bt_hci_done(struct HCIInfo *info)
  1801. {
  1802. struct bt_hci_s *hci = hci_from_info(info);
  1803. int handle;
  1804. bt_device_done(&hci->device);
  1805. if (hci->device.lmp_name)
  1806. g_free((void *) hci->device.lmp_name);
  1807. /* Be gentle and send DISCONNECT to all connected peers and those
  1808. * currently waiting for us to accept or reject a connection request.
  1809. * This frees the links. */
  1810. if (hci->conn_req_host) {
  1811. bt_hci_connection_reject(hci,
  1812. hci->conn_req_host, HCI_OE_POWER_OFF);
  1813. return;
  1814. }
  1815. for (handle = HCI_HANDLE_OFFSET;
  1816. handle < (HCI_HANDLE_OFFSET | HCI_HANDLES_MAX); handle ++)
  1817. if (!bt_hci_handle_bad(hci, handle))
  1818. bt_hci_disconnect(hci, handle, HCI_OE_POWER_OFF);
  1819. /* TODO: this is not enough actually, there may be slaves from whom
  1820. * we have requested a connection who will soon (or not) respond with
  1821. * an accept or a reject, so we should also check if hci->lm.connecting
  1822. * is non-zero and if so, avoid freeing the hci but otherwise disappear
  1823. * from all qemu social life (e.g. stop scanning and request to be
  1824. * removed from s->device.net) and arrange for
  1825. * s->device.lmp_connection_complete to free the remaining bits once
  1826. * hci->lm.awaiting_bdaddr[] is empty. */
  1827. qemu_free_timer(hci->lm.inquiry_done);
  1828. qemu_free_timer(hci->lm.inquiry_next);
  1829. qemu_free_timer(hci->conn_accept_timer);
  1830. g_free(hci);
  1831. }