a2mp.c 21 KB

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  1. /*
  2. Copyright (c) 2010,2011 Code Aurora Forum. All rights reserved.
  3. Copyright (c) 2011,2012 Intel Corp.
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License version 2 and
  6. only version 2 as published by the Free Software Foundation.
  7. This program is distributed in the hope that it will be useful,
  8. but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  10. GNU General Public License for more details.
  11. */
  12. #include <net/bluetooth/bluetooth.h>
  13. #include <net/bluetooth/hci_core.h>
  14. #include <net/bluetooth/l2cap.h>
  15. #include "a2mp.h"
  16. #include "amp.h"
  17. /* Global AMP Manager list */
  18. LIST_HEAD(amp_mgr_list);
  19. DEFINE_MUTEX(amp_mgr_list_lock);
  20. /* A2MP build & send command helper functions */
  21. static struct a2mp_cmd *__a2mp_build(u8 code, u8 ident, u16 len, void *data)
  22. {
  23. struct a2mp_cmd *cmd;
  24. int plen;
  25. plen = sizeof(*cmd) + len;
  26. cmd = kzalloc(plen, GFP_KERNEL);
  27. if (!cmd)
  28. return NULL;
  29. cmd->code = code;
  30. cmd->ident = ident;
  31. cmd->len = cpu_to_le16(len);
  32. memcpy(cmd->data, data, len);
  33. return cmd;
  34. }
  35. void a2mp_send(struct amp_mgr *mgr, u8 code, u8 ident, u16 len, void *data)
  36. {
  37. struct l2cap_chan *chan = mgr->a2mp_chan;
  38. struct a2mp_cmd *cmd;
  39. u16 total_len = len + sizeof(*cmd);
  40. struct kvec iv;
  41. struct msghdr msg;
  42. cmd = __a2mp_build(code, ident, len, data);
  43. if (!cmd)
  44. return;
  45. iv.iov_base = cmd;
  46. iv.iov_len = total_len;
  47. memset(&msg, 0, sizeof(msg));
  48. iov_iter_kvec(&msg.msg_iter, WRITE | ITER_KVEC, &iv, 1, total_len);
  49. l2cap_chan_send(chan, &msg, total_len);
  50. kfree(cmd);
  51. }
  52. u8 __next_ident(struct amp_mgr *mgr)
  53. {
  54. if (++mgr->ident == 0)
  55. mgr->ident = 1;
  56. return mgr->ident;
  57. }
  58. /* hci_dev_list shall be locked */
  59. static void __a2mp_add_cl(struct amp_mgr *mgr, struct a2mp_cl *cl)
  60. {
  61. struct hci_dev *hdev;
  62. int i = 1;
  63. cl[0].id = AMP_ID_BREDR;
  64. cl[0].type = AMP_TYPE_BREDR;
  65. cl[0].status = AMP_STATUS_BLUETOOTH_ONLY;
  66. list_for_each_entry(hdev, &hci_dev_list, list) {
  67. if (hdev->dev_type == HCI_AMP) {
  68. cl[i].id = hdev->id;
  69. cl[i].type = hdev->amp_type;
  70. if (test_bit(HCI_UP, &hdev->flags))
  71. cl[i].status = hdev->amp_status;
  72. else
  73. cl[i].status = AMP_STATUS_POWERED_DOWN;
  74. i++;
  75. }
  76. }
  77. }
  78. /* Processing A2MP messages */
  79. static int a2mp_command_rej(struct amp_mgr *mgr, struct sk_buff *skb,
  80. struct a2mp_cmd *hdr)
  81. {
  82. struct a2mp_cmd_rej *rej = (void *) skb->data;
  83. if (le16_to_cpu(hdr->len) < sizeof(*rej))
  84. return -EINVAL;
  85. BT_DBG("ident %d reason %d", hdr->ident, le16_to_cpu(rej->reason));
  86. skb_pull(skb, sizeof(*rej));
  87. return 0;
  88. }
  89. static int a2mp_discover_req(struct amp_mgr *mgr, struct sk_buff *skb,
  90. struct a2mp_cmd *hdr)
  91. {
  92. struct a2mp_discov_req *req = (void *) skb->data;
  93. u16 len = le16_to_cpu(hdr->len);
  94. struct a2mp_discov_rsp *rsp;
  95. u16 ext_feat;
  96. u8 num_ctrl;
  97. struct hci_dev *hdev;
  98. if (len < sizeof(*req))
  99. return -EINVAL;
  100. skb_pull(skb, sizeof(*req));
  101. ext_feat = le16_to_cpu(req->ext_feat);
  102. BT_DBG("mtu %d efm 0x%4.4x", le16_to_cpu(req->mtu), ext_feat);
  103. /* check that packet is not broken for now */
  104. while (ext_feat & A2MP_FEAT_EXT) {
  105. if (len < sizeof(ext_feat))
  106. return -EINVAL;
  107. ext_feat = get_unaligned_le16(skb->data);
  108. BT_DBG("efm 0x%4.4x", ext_feat);
  109. len -= sizeof(ext_feat);
  110. skb_pull(skb, sizeof(ext_feat));
  111. }
  112. read_lock(&hci_dev_list_lock);
  113. /* at minimum the BR/EDR needs to be listed */
  114. num_ctrl = 1;
  115. list_for_each_entry(hdev, &hci_dev_list, list) {
  116. if (hdev->dev_type == HCI_AMP)
  117. num_ctrl++;
  118. }
  119. len = num_ctrl * sizeof(struct a2mp_cl) + sizeof(*rsp);
  120. rsp = kmalloc(len, GFP_ATOMIC);
  121. if (!rsp) {
  122. read_unlock(&hci_dev_list_lock);
  123. return -ENOMEM;
  124. }
  125. rsp->mtu = cpu_to_le16(L2CAP_A2MP_DEFAULT_MTU);
  126. rsp->ext_feat = 0;
  127. __a2mp_add_cl(mgr, rsp->cl);
  128. read_unlock(&hci_dev_list_lock);
  129. a2mp_send(mgr, A2MP_DISCOVER_RSP, hdr->ident, len, rsp);
  130. kfree(rsp);
  131. return 0;
  132. }
  133. static int a2mp_discover_rsp(struct amp_mgr *mgr, struct sk_buff *skb,
  134. struct a2mp_cmd *hdr)
  135. {
  136. struct a2mp_discov_rsp *rsp = (void *) skb->data;
  137. u16 len = le16_to_cpu(hdr->len);
  138. struct a2mp_cl *cl;
  139. u16 ext_feat;
  140. bool found = false;
  141. if (len < sizeof(*rsp))
  142. return -EINVAL;
  143. len -= sizeof(*rsp);
  144. skb_pull(skb, sizeof(*rsp));
  145. ext_feat = le16_to_cpu(rsp->ext_feat);
  146. BT_DBG("mtu %d efm 0x%4.4x", le16_to_cpu(rsp->mtu), ext_feat);
  147. /* check that packet is not broken for now */
  148. while (ext_feat & A2MP_FEAT_EXT) {
  149. if (len < sizeof(ext_feat))
  150. return -EINVAL;
  151. ext_feat = get_unaligned_le16(skb->data);
  152. BT_DBG("efm 0x%4.4x", ext_feat);
  153. len -= sizeof(ext_feat);
  154. skb_pull(skb, sizeof(ext_feat));
  155. }
  156. cl = (void *) skb->data;
  157. while (len >= sizeof(*cl)) {
  158. BT_DBG("Remote AMP id %d type %d status %d", cl->id, cl->type,
  159. cl->status);
  160. if (cl->id != AMP_ID_BREDR && cl->type != AMP_TYPE_BREDR) {
  161. struct a2mp_info_req req;
  162. found = true;
  163. req.id = cl->id;
  164. a2mp_send(mgr, A2MP_GETINFO_REQ, __next_ident(mgr),
  165. sizeof(req), &req);
  166. }
  167. len -= sizeof(*cl);
  168. cl = (void *) skb_pull(skb, sizeof(*cl));
  169. }
  170. /* Fall back to L2CAP init sequence */
  171. if (!found) {
  172. struct l2cap_conn *conn = mgr->l2cap_conn;
  173. struct l2cap_chan *chan;
  174. mutex_lock(&conn->chan_lock);
  175. list_for_each_entry(chan, &conn->chan_l, list) {
  176. BT_DBG("chan %p state %s", chan,
  177. state_to_string(chan->state));
  178. if (chan->scid == L2CAP_CID_A2MP)
  179. continue;
  180. l2cap_chan_lock(chan);
  181. if (chan->state == BT_CONNECT)
  182. l2cap_send_conn_req(chan);
  183. l2cap_chan_unlock(chan);
  184. }
  185. mutex_unlock(&conn->chan_lock);
  186. }
  187. return 0;
  188. }
  189. static int a2mp_change_notify(struct amp_mgr *mgr, struct sk_buff *skb,
  190. struct a2mp_cmd *hdr)
  191. {
  192. struct a2mp_cl *cl = (void *) skb->data;
  193. while (skb->len >= sizeof(*cl)) {
  194. BT_DBG("Controller id %d type %d status %d", cl->id, cl->type,
  195. cl->status);
  196. cl = (struct a2mp_cl *) skb_pull(skb, sizeof(*cl));
  197. }
  198. /* TODO send A2MP_CHANGE_RSP */
  199. return 0;
  200. }
  201. static int a2mp_getinfo_req(struct amp_mgr *mgr, struct sk_buff *skb,
  202. struct a2mp_cmd *hdr)
  203. {
  204. struct a2mp_info_req *req = (void *) skb->data;
  205. struct hci_dev *hdev;
  206. if (le16_to_cpu(hdr->len) < sizeof(*req))
  207. return -EINVAL;
  208. BT_DBG("id %d", req->id);
  209. hdev = hci_dev_get(req->id);
  210. if (!hdev || hdev->dev_type != HCI_AMP) {
  211. struct a2mp_info_rsp rsp;
  212. rsp.id = req->id;
  213. rsp.status = A2MP_STATUS_INVALID_CTRL_ID;
  214. a2mp_send(mgr, A2MP_GETINFO_RSP, hdr->ident, sizeof(rsp),
  215. &rsp);
  216. goto done;
  217. }
  218. set_bit(READ_LOC_AMP_INFO, &mgr->state);
  219. hci_send_cmd(hdev, HCI_OP_READ_LOCAL_AMP_INFO, 0, NULL);
  220. done:
  221. if (hdev)
  222. hci_dev_put(hdev);
  223. skb_pull(skb, sizeof(*req));
  224. return 0;
  225. }
  226. static int a2mp_getinfo_rsp(struct amp_mgr *mgr, struct sk_buff *skb,
  227. struct a2mp_cmd *hdr)
  228. {
  229. struct a2mp_info_rsp *rsp = (struct a2mp_info_rsp *) skb->data;
  230. struct a2mp_amp_assoc_req req;
  231. struct amp_ctrl *ctrl;
  232. if (le16_to_cpu(hdr->len) < sizeof(*rsp))
  233. return -EINVAL;
  234. BT_DBG("id %d status 0x%2.2x", rsp->id, rsp->status);
  235. if (rsp->status)
  236. return -EINVAL;
  237. ctrl = amp_ctrl_add(mgr, rsp->id);
  238. if (!ctrl)
  239. return -ENOMEM;
  240. req.id = rsp->id;
  241. a2mp_send(mgr, A2MP_GETAMPASSOC_REQ, __next_ident(mgr), sizeof(req),
  242. &req);
  243. skb_pull(skb, sizeof(*rsp));
  244. return 0;
  245. }
  246. static int a2mp_getampassoc_req(struct amp_mgr *mgr, struct sk_buff *skb,
  247. struct a2mp_cmd *hdr)
  248. {
  249. struct a2mp_amp_assoc_req *req = (void *) skb->data;
  250. struct hci_dev *hdev;
  251. struct amp_mgr *tmp;
  252. if (le16_to_cpu(hdr->len) < sizeof(*req))
  253. return -EINVAL;
  254. BT_DBG("id %d", req->id);
  255. /* Make sure that other request is not processed */
  256. tmp = amp_mgr_lookup_by_state(READ_LOC_AMP_ASSOC);
  257. hdev = hci_dev_get(req->id);
  258. if (!hdev || hdev->amp_type == AMP_TYPE_BREDR || tmp) {
  259. struct a2mp_amp_assoc_rsp rsp;
  260. rsp.id = req->id;
  261. if (tmp) {
  262. rsp.status = A2MP_STATUS_COLLISION_OCCURED;
  263. amp_mgr_put(tmp);
  264. } else {
  265. rsp.status = A2MP_STATUS_INVALID_CTRL_ID;
  266. }
  267. a2mp_send(mgr, A2MP_GETAMPASSOC_RSP, hdr->ident, sizeof(rsp),
  268. &rsp);
  269. goto done;
  270. }
  271. amp_read_loc_assoc(hdev, mgr);
  272. done:
  273. if (hdev)
  274. hci_dev_put(hdev);
  275. skb_pull(skb, sizeof(*req));
  276. return 0;
  277. }
  278. static int a2mp_getampassoc_rsp(struct amp_mgr *mgr, struct sk_buff *skb,
  279. struct a2mp_cmd *hdr)
  280. {
  281. struct a2mp_amp_assoc_rsp *rsp = (void *) skb->data;
  282. u16 len = le16_to_cpu(hdr->len);
  283. struct hci_dev *hdev;
  284. struct amp_ctrl *ctrl;
  285. struct hci_conn *hcon;
  286. size_t assoc_len;
  287. if (len < sizeof(*rsp))
  288. return -EINVAL;
  289. assoc_len = len - sizeof(*rsp);
  290. BT_DBG("id %d status 0x%2.2x assoc len %zu", rsp->id, rsp->status,
  291. assoc_len);
  292. if (rsp->status)
  293. return -EINVAL;
  294. /* Save remote ASSOC data */
  295. ctrl = amp_ctrl_lookup(mgr, rsp->id);
  296. if (ctrl) {
  297. u8 *assoc;
  298. assoc = kmemdup(rsp->amp_assoc, assoc_len, GFP_KERNEL);
  299. if (!assoc) {
  300. amp_ctrl_put(ctrl);
  301. return -ENOMEM;
  302. }
  303. ctrl->assoc = assoc;
  304. ctrl->assoc_len = assoc_len;
  305. ctrl->assoc_rem_len = assoc_len;
  306. ctrl->assoc_len_so_far = 0;
  307. amp_ctrl_put(ctrl);
  308. }
  309. /* Create Phys Link */
  310. hdev = hci_dev_get(rsp->id);
  311. if (!hdev)
  312. return -EINVAL;
  313. hcon = phylink_add(hdev, mgr, rsp->id, true);
  314. if (!hcon)
  315. goto done;
  316. BT_DBG("Created hcon %p: loc:%d -> rem:%d", hcon, hdev->id, rsp->id);
  317. mgr->bredr_chan->remote_amp_id = rsp->id;
  318. amp_create_phylink(hdev, mgr, hcon);
  319. done:
  320. hci_dev_put(hdev);
  321. skb_pull(skb, len);
  322. return 0;
  323. }
  324. static int a2mp_createphyslink_req(struct amp_mgr *mgr, struct sk_buff *skb,
  325. struct a2mp_cmd *hdr)
  326. {
  327. struct a2mp_physlink_req *req = (void *) skb->data;
  328. struct a2mp_physlink_rsp rsp;
  329. struct hci_dev *hdev;
  330. struct hci_conn *hcon;
  331. struct amp_ctrl *ctrl;
  332. if (le16_to_cpu(hdr->len) < sizeof(*req))
  333. return -EINVAL;
  334. BT_DBG("local_id %d, remote_id %d", req->local_id, req->remote_id);
  335. rsp.local_id = req->remote_id;
  336. rsp.remote_id = req->local_id;
  337. hdev = hci_dev_get(req->remote_id);
  338. if (!hdev || hdev->amp_type == AMP_TYPE_BREDR) {
  339. rsp.status = A2MP_STATUS_INVALID_CTRL_ID;
  340. goto send_rsp;
  341. }
  342. ctrl = amp_ctrl_lookup(mgr, rsp.remote_id);
  343. if (!ctrl) {
  344. ctrl = amp_ctrl_add(mgr, rsp.remote_id);
  345. if (ctrl) {
  346. amp_ctrl_get(ctrl);
  347. } else {
  348. rsp.status = A2MP_STATUS_UNABLE_START_LINK_CREATION;
  349. goto send_rsp;
  350. }
  351. }
  352. if (ctrl) {
  353. size_t assoc_len = le16_to_cpu(hdr->len) - sizeof(*req);
  354. u8 *assoc;
  355. assoc = kmemdup(req->amp_assoc, assoc_len, GFP_KERNEL);
  356. if (!assoc) {
  357. amp_ctrl_put(ctrl);
  358. return -ENOMEM;
  359. }
  360. ctrl->assoc = assoc;
  361. ctrl->assoc_len = assoc_len;
  362. ctrl->assoc_rem_len = assoc_len;
  363. ctrl->assoc_len_so_far = 0;
  364. amp_ctrl_put(ctrl);
  365. }
  366. hcon = phylink_add(hdev, mgr, req->local_id, false);
  367. if (hcon) {
  368. amp_accept_phylink(hdev, mgr, hcon);
  369. rsp.status = A2MP_STATUS_SUCCESS;
  370. } else {
  371. rsp.status = A2MP_STATUS_UNABLE_START_LINK_CREATION;
  372. }
  373. send_rsp:
  374. if (hdev)
  375. hci_dev_put(hdev);
  376. /* Reply error now and success after HCI Write Remote AMP Assoc
  377. command complete with success status
  378. */
  379. if (rsp.status != A2MP_STATUS_SUCCESS) {
  380. a2mp_send(mgr, A2MP_CREATEPHYSLINK_RSP, hdr->ident,
  381. sizeof(rsp), &rsp);
  382. } else {
  383. set_bit(WRITE_REMOTE_AMP_ASSOC, &mgr->state);
  384. mgr->ident = hdr->ident;
  385. }
  386. skb_pull(skb, le16_to_cpu(hdr->len));
  387. return 0;
  388. }
  389. static int a2mp_discphyslink_req(struct amp_mgr *mgr, struct sk_buff *skb,
  390. struct a2mp_cmd *hdr)
  391. {
  392. struct a2mp_physlink_req *req = (void *) skb->data;
  393. struct a2mp_physlink_rsp rsp;
  394. struct hci_dev *hdev;
  395. struct hci_conn *hcon;
  396. if (le16_to_cpu(hdr->len) < sizeof(*req))
  397. return -EINVAL;
  398. BT_DBG("local_id %d remote_id %d", req->local_id, req->remote_id);
  399. rsp.local_id = req->remote_id;
  400. rsp.remote_id = req->local_id;
  401. rsp.status = A2MP_STATUS_SUCCESS;
  402. hdev = hci_dev_get(req->remote_id);
  403. if (!hdev) {
  404. rsp.status = A2MP_STATUS_INVALID_CTRL_ID;
  405. goto send_rsp;
  406. }
  407. hcon = hci_conn_hash_lookup_ba(hdev, AMP_LINK,
  408. &mgr->l2cap_conn->hcon->dst);
  409. if (!hcon) {
  410. BT_ERR("No phys link exist");
  411. rsp.status = A2MP_STATUS_NO_PHYSICAL_LINK_EXISTS;
  412. goto clean;
  413. }
  414. /* TODO Disconnect Phys Link here */
  415. clean:
  416. hci_dev_put(hdev);
  417. send_rsp:
  418. a2mp_send(mgr, A2MP_DISCONNPHYSLINK_RSP, hdr->ident, sizeof(rsp), &rsp);
  419. skb_pull(skb, sizeof(*req));
  420. return 0;
  421. }
  422. static inline int a2mp_cmd_rsp(struct amp_mgr *mgr, struct sk_buff *skb,
  423. struct a2mp_cmd *hdr)
  424. {
  425. BT_DBG("ident %d code 0x%2.2x", hdr->ident, hdr->code);
  426. skb_pull(skb, le16_to_cpu(hdr->len));
  427. return 0;
  428. }
  429. /* Handle A2MP signalling */
  430. static int a2mp_chan_recv_cb(struct l2cap_chan *chan, struct sk_buff *skb)
  431. {
  432. struct a2mp_cmd *hdr;
  433. struct amp_mgr *mgr = chan->data;
  434. int err = 0;
  435. amp_mgr_get(mgr);
  436. while (skb->len >= sizeof(*hdr)) {
  437. u16 len;
  438. hdr = (void *) skb->data;
  439. len = le16_to_cpu(hdr->len);
  440. BT_DBG("code 0x%2.2x id %d len %u", hdr->code, hdr->ident, len);
  441. skb_pull(skb, sizeof(*hdr));
  442. if (len > skb->len || !hdr->ident) {
  443. err = -EINVAL;
  444. break;
  445. }
  446. mgr->ident = hdr->ident;
  447. switch (hdr->code) {
  448. case A2MP_COMMAND_REJ:
  449. a2mp_command_rej(mgr, skb, hdr);
  450. break;
  451. case A2MP_DISCOVER_REQ:
  452. err = a2mp_discover_req(mgr, skb, hdr);
  453. break;
  454. case A2MP_CHANGE_NOTIFY:
  455. err = a2mp_change_notify(mgr, skb, hdr);
  456. break;
  457. case A2MP_GETINFO_REQ:
  458. err = a2mp_getinfo_req(mgr, skb, hdr);
  459. break;
  460. case A2MP_GETAMPASSOC_REQ:
  461. err = a2mp_getampassoc_req(mgr, skb, hdr);
  462. break;
  463. case A2MP_CREATEPHYSLINK_REQ:
  464. err = a2mp_createphyslink_req(mgr, skb, hdr);
  465. break;
  466. case A2MP_DISCONNPHYSLINK_REQ:
  467. err = a2mp_discphyslink_req(mgr, skb, hdr);
  468. break;
  469. case A2MP_DISCOVER_RSP:
  470. err = a2mp_discover_rsp(mgr, skb, hdr);
  471. break;
  472. case A2MP_GETINFO_RSP:
  473. err = a2mp_getinfo_rsp(mgr, skb, hdr);
  474. break;
  475. case A2MP_GETAMPASSOC_RSP:
  476. err = a2mp_getampassoc_rsp(mgr, skb, hdr);
  477. break;
  478. case A2MP_CHANGE_RSP:
  479. case A2MP_CREATEPHYSLINK_RSP:
  480. case A2MP_DISCONNPHYSLINK_RSP:
  481. err = a2mp_cmd_rsp(mgr, skb, hdr);
  482. break;
  483. default:
  484. BT_ERR("Unknown A2MP sig cmd 0x%2.2x", hdr->code);
  485. err = -EINVAL;
  486. break;
  487. }
  488. }
  489. if (err) {
  490. struct a2mp_cmd_rej rej;
  491. rej.reason = cpu_to_le16(0);
  492. hdr = (void *) skb->data;
  493. BT_DBG("Send A2MP Rej: cmd 0x%2.2x err %d", hdr->code, err);
  494. a2mp_send(mgr, A2MP_COMMAND_REJ, hdr->ident, sizeof(rej),
  495. &rej);
  496. }
  497. /* Always free skb and return success error code to prevent
  498. from sending L2CAP Disconnect over A2MP channel */
  499. kfree_skb(skb);
  500. amp_mgr_put(mgr);
  501. return 0;
  502. }
  503. static void a2mp_chan_close_cb(struct l2cap_chan *chan)
  504. {
  505. l2cap_chan_put(chan);
  506. }
  507. static void a2mp_chan_state_change_cb(struct l2cap_chan *chan, int state,
  508. int err)
  509. {
  510. struct amp_mgr *mgr = chan->data;
  511. if (!mgr)
  512. return;
  513. BT_DBG("chan %p state %s", chan, state_to_string(state));
  514. chan->state = state;
  515. switch (state) {
  516. case BT_CLOSED:
  517. if (mgr)
  518. amp_mgr_put(mgr);
  519. break;
  520. }
  521. }
  522. static struct sk_buff *a2mp_chan_alloc_skb_cb(struct l2cap_chan *chan,
  523. unsigned long hdr_len,
  524. unsigned long len, int nb)
  525. {
  526. struct sk_buff *skb;
  527. skb = bt_skb_alloc(hdr_len + len, GFP_KERNEL);
  528. if (!skb)
  529. return ERR_PTR(-ENOMEM);
  530. return skb;
  531. }
  532. static const struct l2cap_ops a2mp_chan_ops = {
  533. .name = "L2CAP A2MP channel",
  534. .recv = a2mp_chan_recv_cb,
  535. .close = a2mp_chan_close_cb,
  536. .state_change = a2mp_chan_state_change_cb,
  537. .alloc_skb = a2mp_chan_alloc_skb_cb,
  538. /* Not implemented for A2MP */
  539. .new_connection = l2cap_chan_no_new_connection,
  540. .teardown = l2cap_chan_no_teardown,
  541. .ready = l2cap_chan_no_ready,
  542. .defer = l2cap_chan_no_defer,
  543. .resume = l2cap_chan_no_resume,
  544. .set_shutdown = l2cap_chan_no_set_shutdown,
  545. .get_sndtimeo = l2cap_chan_no_get_sndtimeo,
  546. };
  547. static struct l2cap_chan *a2mp_chan_open(struct l2cap_conn *conn, bool locked)
  548. {
  549. struct l2cap_chan *chan;
  550. int err;
  551. chan = l2cap_chan_create();
  552. if (!chan)
  553. return NULL;
  554. BT_DBG("chan %p", chan);
  555. chan->chan_type = L2CAP_CHAN_FIXED;
  556. chan->scid = L2CAP_CID_A2MP;
  557. chan->dcid = L2CAP_CID_A2MP;
  558. chan->omtu = L2CAP_A2MP_DEFAULT_MTU;
  559. chan->imtu = L2CAP_A2MP_DEFAULT_MTU;
  560. chan->flush_to = L2CAP_DEFAULT_FLUSH_TO;
  561. chan->ops = &a2mp_chan_ops;
  562. l2cap_chan_set_defaults(chan);
  563. chan->remote_max_tx = chan->max_tx;
  564. chan->remote_tx_win = chan->tx_win;
  565. chan->retrans_timeout = L2CAP_DEFAULT_RETRANS_TO;
  566. chan->monitor_timeout = L2CAP_DEFAULT_MONITOR_TO;
  567. skb_queue_head_init(&chan->tx_q);
  568. chan->mode = L2CAP_MODE_ERTM;
  569. err = l2cap_ertm_init(chan);
  570. if (err < 0) {
  571. l2cap_chan_del(chan, 0);
  572. return NULL;
  573. }
  574. chan->conf_state = 0;
  575. if (locked)
  576. __l2cap_chan_add(conn, chan);
  577. else
  578. l2cap_chan_add(conn, chan);
  579. chan->remote_mps = chan->omtu;
  580. chan->mps = chan->omtu;
  581. chan->state = BT_CONNECTED;
  582. return chan;
  583. }
  584. /* AMP Manager functions */
  585. struct amp_mgr *amp_mgr_get(struct amp_mgr *mgr)
  586. {
  587. BT_DBG("mgr %p orig refcnt %d", mgr, atomic_read(&mgr->kref.refcount));
  588. kref_get(&mgr->kref);
  589. return mgr;
  590. }
  591. static void amp_mgr_destroy(struct kref *kref)
  592. {
  593. struct amp_mgr *mgr = container_of(kref, struct amp_mgr, kref);
  594. BT_DBG("mgr %p", mgr);
  595. mutex_lock(&amp_mgr_list_lock);
  596. list_del(&mgr->list);
  597. mutex_unlock(&amp_mgr_list_lock);
  598. amp_ctrl_list_flush(mgr);
  599. kfree(mgr);
  600. }
  601. int amp_mgr_put(struct amp_mgr *mgr)
  602. {
  603. BT_DBG("mgr %p orig refcnt %d", mgr, atomic_read(&mgr->kref.refcount));
  604. return kref_put(&mgr->kref, &amp_mgr_destroy);
  605. }
  606. static struct amp_mgr *amp_mgr_create(struct l2cap_conn *conn, bool locked)
  607. {
  608. struct amp_mgr *mgr;
  609. struct l2cap_chan *chan;
  610. mgr = kzalloc(sizeof(*mgr), GFP_KERNEL);
  611. if (!mgr)
  612. return NULL;
  613. BT_DBG("conn %p mgr %p", conn, mgr);
  614. mgr->l2cap_conn = conn;
  615. chan = a2mp_chan_open(conn, locked);
  616. if (!chan) {
  617. kfree(mgr);
  618. return NULL;
  619. }
  620. mgr->a2mp_chan = chan;
  621. chan->data = mgr;
  622. conn->hcon->amp_mgr = mgr;
  623. kref_init(&mgr->kref);
  624. /* Remote AMP ctrl list initialization */
  625. INIT_LIST_HEAD(&mgr->amp_ctrls);
  626. mutex_init(&mgr->amp_ctrls_lock);
  627. mutex_lock(&amp_mgr_list_lock);
  628. list_add(&mgr->list, &amp_mgr_list);
  629. mutex_unlock(&amp_mgr_list_lock);
  630. return mgr;
  631. }
  632. struct l2cap_chan *a2mp_channel_create(struct l2cap_conn *conn,
  633. struct sk_buff *skb)
  634. {
  635. struct amp_mgr *mgr;
  636. if (conn->hcon->type != ACL_LINK)
  637. return NULL;
  638. mgr = amp_mgr_create(conn, false);
  639. if (!mgr) {
  640. BT_ERR("Could not create AMP manager");
  641. return NULL;
  642. }
  643. BT_DBG("mgr: %p chan %p", mgr, mgr->a2mp_chan);
  644. return mgr->a2mp_chan;
  645. }
  646. struct amp_mgr *amp_mgr_lookup_by_state(u8 state)
  647. {
  648. struct amp_mgr *mgr;
  649. mutex_lock(&amp_mgr_list_lock);
  650. list_for_each_entry(mgr, &amp_mgr_list, list) {
  651. if (test_and_clear_bit(state, &mgr->state)) {
  652. amp_mgr_get(mgr);
  653. mutex_unlock(&amp_mgr_list_lock);
  654. return mgr;
  655. }
  656. }
  657. mutex_unlock(&amp_mgr_list_lock);
  658. return NULL;
  659. }
  660. void a2mp_send_getinfo_rsp(struct hci_dev *hdev)
  661. {
  662. struct amp_mgr *mgr;
  663. struct a2mp_info_rsp rsp;
  664. mgr = amp_mgr_lookup_by_state(READ_LOC_AMP_INFO);
  665. if (!mgr)
  666. return;
  667. BT_DBG("%s mgr %p", hdev->name, mgr);
  668. rsp.id = hdev->id;
  669. rsp.status = A2MP_STATUS_INVALID_CTRL_ID;
  670. if (hdev->amp_type != AMP_TYPE_BREDR) {
  671. rsp.status = 0;
  672. rsp.total_bw = cpu_to_le32(hdev->amp_total_bw);
  673. rsp.max_bw = cpu_to_le32(hdev->amp_max_bw);
  674. rsp.min_latency = cpu_to_le32(hdev->amp_min_latency);
  675. rsp.pal_cap = cpu_to_le16(hdev->amp_pal_cap);
  676. rsp.assoc_size = cpu_to_le16(hdev->amp_assoc_size);
  677. }
  678. a2mp_send(mgr, A2MP_GETINFO_RSP, mgr->ident, sizeof(rsp), &rsp);
  679. amp_mgr_put(mgr);
  680. }
  681. void a2mp_send_getampassoc_rsp(struct hci_dev *hdev, u8 status)
  682. {
  683. struct amp_mgr *mgr;
  684. struct amp_assoc *loc_assoc = &hdev->loc_assoc;
  685. struct a2mp_amp_assoc_rsp *rsp;
  686. size_t len;
  687. mgr = amp_mgr_lookup_by_state(READ_LOC_AMP_ASSOC);
  688. if (!mgr)
  689. return;
  690. BT_DBG("%s mgr %p", hdev->name, mgr);
  691. len = sizeof(struct a2mp_amp_assoc_rsp) + loc_assoc->len;
  692. rsp = kzalloc(len, GFP_KERNEL);
  693. if (!rsp) {
  694. amp_mgr_put(mgr);
  695. return;
  696. }
  697. rsp->id = hdev->id;
  698. if (status) {
  699. rsp->status = A2MP_STATUS_INVALID_CTRL_ID;
  700. } else {
  701. rsp->status = A2MP_STATUS_SUCCESS;
  702. memcpy(rsp->amp_assoc, loc_assoc->data, loc_assoc->len);
  703. }
  704. a2mp_send(mgr, A2MP_GETAMPASSOC_RSP, mgr->ident, len, rsp);
  705. amp_mgr_put(mgr);
  706. kfree(rsp);
  707. }
  708. void a2mp_send_create_phy_link_req(struct hci_dev *hdev, u8 status)
  709. {
  710. struct amp_mgr *mgr;
  711. struct amp_assoc *loc_assoc = &hdev->loc_assoc;
  712. struct a2mp_physlink_req *req;
  713. struct l2cap_chan *bredr_chan;
  714. size_t len;
  715. mgr = amp_mgr_lookup_by_state(READ_LOC_AMP_ASSOC_FINAL);
  716. if (!mgr)
  717. return;
  718. len = sizeof(*req) + loc_assoc->len;
  719. BT_DBG("%s mgr %p assoc_len %zu", hdev->name, mgr, len);
  720. req = kzalloc(len, GFP_KERNEL);
  721. if (!req) {
  722. amp_mgr_put(mgr);
  723. return;
  724. }
  725. bredr_chan = mgr->bredr_chan;
  726. if (!bredr_chan)
  727. goto clean;
  728. req->local_id = hdev->id;
  729. req->remote_id = bredr_chan->remote_amp_id;
  730. memcpy(req->amp_assoc, loc_assoc->data, loc_assoc->len);
  731. a2mp_send(mgr, A2MP_CREATEPHYSLINK_REQ, __next_ident(mgr), len, req);
  732. clean:
  733. amp_mgr_put(mgr);
  734. kfree(req);
  735. }
  736. void a2mp_send_create_phy_link_rsp(struct hci_dev *hdev, u8 status)
  737. {
  738. struct amp_mgr *mgr;
  739. struct a2mp_physlink_rsp rsp;
  740. struct hci_conn *hs_hcon;
  741. mgr = amp_mgr_lookup_by_state(WRITE_REMOTE_AMP_ASSOC);
  742. if (!mgr)
  743. return;
  744. hs_hcon = hci_conn_hash_lookup_state(hdev, AMP_LINK, BT_CONNECT);
  745. if (!hs_hcon) {
  746. rsp.status = A2MP_STATUS_UNABLE_START_LINK_CREATION;
  747. } else {
  748. rsp.remote_id = hs_hcon->remote_id;
  749. rsp.status = A2MP_STATUS_SUCCESS;
  750. }
  751. BT_DBG("%s mgr %p hs_hcon %p status %u", hdev->name, mgr, hs_hcon,
  752. status);
  753. rsp.local_id = hdev->id;
  754. a2mp_send(mgr, A2MP_CREATEPHYSLINK_RSP, mgr->ident, sizeof(rsp), &rsp);
  755. amp_mgr_put(mgr);
  756. }
  757. void a2mp_discover_amp(struct l2cap_chan *chan)
  758. {
  759. struct l2cap_conn *conn = chan->conn;
  760. struct amp_mgr *mgr = conn->hcon->amp_mgr;
  761. struct a2mp_discov_req req;
  762. BT_DBG("chan %p conn %p mgr %p", chan, conn, mgr);
  763. if (!mgr) {
  764. mgr = amp_mgr_create(conn, true);
  765. if (!mgr)
  766. return;
  767. }
  768. mgr->bredr_chan = chan;
  769. req.mtu = cpu_to_le16(L2CAP_A2MP_DEFAULT_MTU);
  770. req.ext_feat = 0;
  771. a2mp_send(mgr, A2MP_DISCOVER_REQ, 1, sizeof(req), &req);
  772. }