iso.c 51 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * BlueZ - Bluetooth protocol stack for Linux
  4. *
  5. * Copyright (C) 2022 Intel Corporation
  6. * Copyright 2023-2024 NXP
  7. */
  8. #include <linux/module.h>
  9. #include <linux/debugfs.h>
  10. #include <linux/seq_file.h>
  11. #include <linux/sched/signal.h>
  12. #include <net/bluetooth/bluetooth.h>
  13. #include <net/bluetooth/hci_core.h>
  14. #include <net/bluetooth/iso.h>
  15. #include "eir.h"
  16. static const struct proto_ops iso_sock_ops;
  17. static struct bt_sock_list iso_sk_list = {
  18. .lock = __RW_LOCK_UNLOCKED(iso_sk_list.lock)
  19. };
  20. /* ---- ISO connections ---- */
  21. struct iso_conn {
  22. struct hci_conn *hcon;
  23. /* @lock: spinlock protecting changes to iso_conn fields */
  24. spinlock_t lock;
  25. struct sock *sk;
  26. struct delayed_work timeout_work;
  27. struct sk_buff *rx_skb;
  28. __u32 rx_len;
  29. __u16 tx_sn;
  30. struct kref ref;
  31. };
  32. #define iso_conn_lock(c) spin_lock(&(c)->lock)
  33. #define iso_conn_unlock(c) spin_unlock(&(c)->lock)
  34. static void iso_sock_close(struct sock *sk);
  35. static void iso_sock_kill(struct sock *sk);
  36. /* ----- ISO socket info ----- */
  37. #define iso_pi(sk) ((struct iso_pinfo *)sk)
  38. #define EIR_SERVICE_DATA_LENGTH 4
  39. #define BASE_MAX_LENGTH (HCI_MAX_PER_AD_LENGTH - EIR_SERVICE_DATA_LENGTH)
  40. #define EIR_BAA_SERVICE_UUID 0x1851
  41. /* iso_pinfo flags values */
  42. enum {
  43. BT_SK_BIG_SYNC,
  44. BT_SK_PA_SYNC,
  45. };
  46. struct iso_pinfo {
  47. struct bt_sock bt;
  48. bdaddr_t src;
  49. __u8 src_type;
  50. bdaddr_t dst;
  51. __u8 dst_type;
  52. __u8 bc_sid;
  53. __u8 bc_num_bis;
  54. __u8 bc_bis[ISO_MAX_NUM_BIS];
  55. __u16 sync_handle;
  56. unsigned long flags;
  57. struct bt_iso_qos qos;
  58. bool qos_user_set;
  59. __u8 base_len;
  60. __u8 base[BASE_MAX_LENGTH];
  61. struct iso_conn *conn;
  62. };
  63. static struct bt_iso_qos default_qos;
  64. static bool check_ucast_qos(struct bt_iso_qos *qos);
  65. static bool check_bcast_qos(struct bt_iso_qos *qos);
  66. static bool iso_match_sid(struct sock *sk, void *data);
  67. static bool iso_match_sync_handle(struct sock *sk, void *data);
  68. static bool iso_match_sync_handle_pa_report(struct sock *sk, void *data);
  69. static void iso_sock_disconn(struct sock *sk);
  70. typedef bool (*iso_sock_match_t)(struct sock *sk, void *data);
  71. static struct sock *iso_get_sock(bdaddr_t *src, bdaddr_t *dst,
  72. enum bt_sock_state state,
  73. iso_sock_match_t match, void *data);
  74. /* ---- ISO timers ---- */
  75. #define ISO_CONN_TIMEOUT (HZ * 40)
  76. #define ISO_DISCONN_TIMEOUT (HZ * 2)
  77. static void iso_conn_free(struct kref *ref)
  78. {
  79. struct iso_conn *conn = container_of(ref, struct iso_conn, ref);
  80. BT_DBG("conn %p", conn);
  81. if (conn->sk)
  82. iso_pi(conn->sk)->conn = NULL;
  83. if (conn->hcon) {
  84. conn->hcon->iso_data = NULL;
  85. hci_conn_drop(conn->hcon);
  86. }
  87. /* Ensure no more work items will run since hci_conn has been dropped */
  88. disable_delayed_work_sync(&conn->timeout_work);
  89. kfree_skb(conn->rx_skb);
  90. kfree(conn);
  91. }
  92. static void iso_conn_put(struct iso_conn *conn)
  93. {
  94. if (!conn)
  95. return;
  96. BT_DBG("conn %p refcnt %d", conn, kref_read(&conn->ref));
  97. kref_put(&conn->ref, iso_conn_free);
  98. }
  99. static struct iso_conn *iso_conn_hold_unless_zero(struct iso_conn *conn)
  100. {
  101. if (!conn)
  102. return NULL;
  103. BT_DBG("conn %p refcnt %u", conn, kref_read(&conn->ref));
  104. if (!kref_get_unless_zero(&conn->ref))
  105. return NULL;
  106. return conn;
  107. }
  108. static struct sock *iso_sock_hold(struct iso_conn *conn)
  109. {
  110. if (!conn || !bt_sock_linked(&iso_sk_list, conn->sk))
  111. return NULL;
  112. sock_hold(conn->sk);
  113. return conn->sk;
  114. }
  115. static void iso_sock_timeout(struct work_struct *work)
  116. {
  117. struct iso_conn *conn = container_of(work, struct iso_conn,
  118. timeout_work.work);
  119. struct sock *sk;
  120. conn = iso_conn_hold_unless_zero(conn);
  121. if (!conn)
  122. return;
  123. iso_conn_lock(conn);
  124. sk = iso_sock_hold(conn);
  125. iso_conn_unlock(conn);
  126. iso_conn_put(conn);
  127. if (!sk)
  128. return;
  129. BT_DBG("sock %p state %d", sk, sk->sk_state);
  130. lock_sock(sk);
  131. sk->sk_err = ETIMEDOUT;
  132. sk->sk_state_change(sk);
  133. release_sock(sk);
  134. sock_put(sk);
  135. }
  136. static void iso_sock_set_timer(struct sock *sk, long timeout)
  137. {
  138. if (!iso_pi(sk)->conn)
  139. return;
  140. BT_DBG("sock %p state %d timeout %ld", sk, sk->sk_state, timeout);
  141. cancel_delayed_work(&iso_pi(sk)->conn->timeout_work);
  142. schedule_delayed_work(&iso_pi(sk)->conn->timeout_work, timeout);
  143. }
  144. static void iso_sock_clear_timer(struct sock *sk)
  145. {
  146. if (!iso_pi(sk)->conn)
  147. return;
  148. BT_DBG("sock %p state %d", sk, sk->sk_state);
  149. cancel_delayed_work(&iso_pi(sk)->conn->timeout_work);
  150. }
  151. /* ---- ISO connections ---- */
  152. static struct iso_conn *iso_conn_add(struct hci_conn *hcon)
  153. {
  154. struct iso_conn *conn = hcon->iso_data;
  155. conn = iso_conn_hold_unless_zero(conn);
  156. if (conn) {
  157. if (!conn->hcon) {
  158. iso_conn_lock(conn);
  159. conn->hcon = hcon;
  160. iso_conn_unlock(conn);
  161. }
  162. iso_conn_put(conn);
  163. return conn;
  164. }
  165. conn = kzalloc(sizeof(*conn), GFP_KERNEL);
  166. if (!conn)
  167. return NULL;
  168. kref_init(&conn->ref);
  169. spin_lock_init(&conn->lock);
  170. INIT_DELAYED_WORK(&conn->timeout_work, iso_sock_timeout);
  171. hcon->iso_data = conn;
  172. conn->hcon = hcon;
  173. conn->tx_sn = 0;
  174. BT_DBG("hcon %p conn %p", hcon, conn);
  175. return conn;
  176. }
  177. /* Delete channel. Must be called on the locked socket. */
  178. static void iso_chan_del(struct sock *sk, int err)
  179. {
  180. struct iso_conn *conn;
  181. struct sock *parent;
  182. conn = iso_pi(sk)->conn;
  183. iso_pi(sk)->conn = NULL;
  184. BT_DBG("sk %p, conn %p, err %d", sk, conn, err);
  185. if (conn) {
  186. iso_conn_lock(conn);
  187. conn->sk = NULL;
  188. iso_conn_unlock(conn);
  189. iso_conn_put(conn);
  190. }
  191. sk->sk_state = BT_CLOSED;
  192. sk->sk_err = err;
  193. parent = bt_sk(sk)->parent;
  194. if (parent) {
  195. bt_accept_unlink(sk);
  196. parent->sk_data_ready(parent);
  197. } else {
  198. sk->sk_state_change(sk);
  199. }
  200. sock_set_flag(sk, SOCK_ZAPPED);
  201. }
  202. static void iso_conn_del(struct hci_conn *hcon, int err)
  203. {
  204. struct iso_conn *conn = hcon->iso_data;
  205. struct sock *sk;
  206. conn = iso_conn_hold_unless_zero(conn);
  207. if (!conn)
  208. return;
  209. BT_DBG("hcon %p conn %p, err %d", hcon, conn, err);
  210. /* Kill socket */
  211. iso_conn_lock(conn);
  212. sk = iso_sock_hold(conn);
  213. iso_conn_unlock(conn);
  214. iso_conn_put(conn);
  215. if (!sk) {
  216. iso_conn_put(conn);
  217. return;
  218. }
  219. lock_sock(sk);
  220. iso_sock_clear_timer(sk);
  221. iso_chan_del(sk, err);
  222. release_sock(sk);
  223. sock_put(sk);
  224. }
  225. static int __iso_chan_add(struct iso_conn *conn, struct sock *sk,
  226. struct sock *parent)
  227. {
  228. BT_DBG("conn %p", conn);
  229. if (iso_pi(sk)->conn == conn && conn->sk == sk)
  230. return 0;
  231. if (conn->sk) {
  232. BT_ERR("conn->sk already set");
  233. return -EBUSY;
  234. }
  235. iso_pi(sk)->conn = conn;
  236. conn->sk = sk;
  237. if (parent)
  238. bt_accept_enqueue(parent, sk, true);
  239. return 0;
  240. }
  241. static int iso_chan_add(struct iso_conn *conn, struct sock *sk,
  242. struct sock *parent)
  243. {
  244. int err;
  245. iso_conn_lock(conn);
  246. err = __iso_chan_add(conn, sk, parent);
  247. iso_conn_unlock(conn);
  248. return err;
  249. }
  250. static inline u8 le_addr_type(u8 bdaddr_type)
  251. {
  252. if (bdaddr_type == BDADDR_LE_PUBLIC)
  253. return ADDR_LE_DEV_PUBLIC;
  254. else
  255. return ADDR_LE_DEV_RANDOM;
  256. }
  257. static int iso_connect_bis(struct sock *sk)
  258. {
  259. struct iso_conn *conn;
  260. struct hci_conn *hcon;
  261. struct hci_dev *hdev;
  262. int err;
  263. BT_DBG("%pMR", &iso_pi(sk)->src);
  264. hdev = hci_get_route(&iso_pi(sk)->dst, &iso_pi(sk)->src,
  265. iso_pi(sk)->src_type);
  266. if (!hdev)
  267. return -EHOSTUNREACH;
  268. hci_dev_lock(hdev);
  269. if (!bis_capable(hdev)) {
  270. err = -EOPNOTSUPP;
  271. goto unlock;
  272. }
  273. /* Fail if user set invalid QoS */
  274. if (iso_pi(sk)->qos_user_set && !check_bcast_qos(&iso_pi(sk)->qos)) {
  275. iso_pi(sk)->qos = default_qos;
  276. err = -EINVAL;
  277. goto unlock;
  278. }
  279. /* Fail if out PHYs are marked as disabled */
  280. if (!iso_pi(sk)->qos.bcast.out.phy) {
  281. err = -EINVAL;
  282. goto unlock;
  283. }
  284. /* Just bind if DEFER_SETUP has been set */
  285. if (test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags)) {
  286. hcon = hci_bind_bis(hdev, &iso_pi(sk)->dst,
  287. &iso_pi(sk)->qos, iso_pi(sk)->base_len,
  288. iso_pi(sk)->base);
  289. if (IS_ERR(hcon)) {
  290. err = PTR_ERR(hcon);
  291. goto unlock;
  292. }
  293. } else {
  294. hcon = hci_connect_bis(hdev, &iso_pi(sk)->dst,
  295. le_addr_type(iso_pi(sk)->dst_type),
  296. &iso_pi(sk)->qos, iso_pi(sk)->base_len,
  297. iso_pi(sk)->base);
  298. if (IS_ERR(hcon)) {
  299. err = PTR_ERR(hcon);
  300. goto unlock;
  301. }
  302. }
  303. conn = iso_conn_add(hcon);
  304. if (!conn) {
  305. hci_conn_drop(hcon);
  306. err = -ENOMEM;
  307. goto unlock;
  308. }
  309. lock_sock(sk);
  310. err = iso_chan_add(conn, sk, NULL);
  311. if (err) {
  312. release_sock(sk);
  313. goto unlock;
  314. }
  315. /* Update source addr of the socket */
  316. bacpy(&iso_pi(sk)->src, &hcon->src);
  317. if (hcon->state == BT_CONNECTED) {
  318. iso_sock_clear_timer(sk);
  319. sk->sk_state = BT_CONNECTED;
  320. } else if (test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags)) {
  321. iso_sock_clear_timer(sk);
  322. sk->sk_state = BT_CONNECT;
  323. } else {
  324. sk->sk_state = BT_CONNECT;
  325. iso_sock_set_timer(sk, sk->sk_sndtimeo);
  326. }
  327. release_sock(sk);
  328. unlock:
  329. hci_dev_unlock(hdev);
  330. hci_dev_put(hdev);
  331. return err;
  332. }
  333. static int iso_connect_cis(struct sock *sk)
  334. {
  335. struct iso_conn *conn;
  336. struct hci_conn *hcon;
  337. struct hci_dev *hdev;
  338. int err;
  339. BT_DBG("%pMR -> %pMR", &iso_pi(sk)->src, &iso_pi(sk)->dst);
  340. hdev = hci_get_route(&iso_pi(sk)->dst, &iso_pi(sk)->src,
  341. iso_pi(sk)->src_type);
  342. if (!hdev)
  343. return -EHOSTUNREACH;
  344. hci_dev_lock(hdev);
  345. if (!cis_central_capable(hdev)) {
  346. err = -EOPNOTSUPP;
  347. goto unlock;
  348. }
  349. /* Fail if user set invalid QoS */
  350. if (iso_pi(sk)->qos_user_set && !check_ucast_qos(&iso_pi(sk)->qos)) {
  351. iso_pi(sk)->qos = default_qos;
  352. err = -EINVAL;
  353. goto unlock;
  354. }
  355. /* Fail if either PHYs are marked as disabled */
  356. if (!iso_pi(sk)->qos.ucast.in.phy && !iso_pi(sk)->qos.ucast.out.phy) {
  357. err = -EINVAL;
  358. goto unlock;
  359. }
  360. /* Just bind if DEFER_SETUP has been set */
  361. if (test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags)) {
  362. hcon = hci_bind_cis(hdev, &iso_pi(sk)->dst,
  363. le_addr_type(iso_pi(sk)->dst_type),
  364. &iso_pi(sk)->qos);
  365. if (IS_ERR(hcon)) {
  366. err = PTR_ERR(hcon);
  367. goto unlock;
  368. }
  369. } else {
  370. hcon = hci_connect_cis(hdev, &iso_pi(sk)->dst,
  371. le_addr_type(iso_pi(sk)->dst_type),
  372. &iso_pi(sk)->qos);
  373. if (IS_ERR(hcon)) {
  374. err = PTR_ERR(hcon);
  375. goto unlock;
  376. }
  377. }
  378. conn = iso_conn_add(hcon);
  379. if (!conn) {
  380. hci_conn_drop(hcon);
  381. err = -ENOMEM;
  382. goto unlock;
  383. }
  384. lock_sock(sk);
  385. err = iso_chan_add(conn, sk, NULL);
  386. if (err) {
  387. release_sock(sk);
  388. goto unlock;
  389. }
  390. /* Update source addr of the socket */
  391. bacpy(&iso_pi(sk)->src, &hcon->src);
  392. if (hcon->state == BT_CONNECTED) {
  393. iso_sock_clear_timer(sk);
  394. sk->sk_state = BT_CONNECTED;
  395. } else if (test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags)) {
  396. iso_sock_clear_timer(sk);
  397. sk->sk_state = BT_CONNECT;
  398. } else {
  399. sk->sk_state = BT_CONNECT;
  400. iso_sock_set_timer(sk, sk->sk_sndtimeo);
  401. }
  402. release_sock(sk);
  403. unlock:
  404. hci_dev_unlock(hdev);
  405. hci_dev_put(hdev);
  406. return err;
  407. }
  408. static struct bt_iso_qos *iso_sock_get_qos(struct sock *sk)
  409. {
  410. if (sk->sk_state == BT_CONNECTED || sk->sk_state == BT_CONNECT2)
  411. return &iso_pi(sk)->conn->hcon->iso_qos;
  412. return &iso_pi(sk)->qos;
  413. }
  414. static int iso_send_frame(struct sock *sk, struct sk_buff *skb)
  415. {
  416. struct iso_conn *conn = iso_pi(sk)->conn;
  417. struct bt_iso_qos *qos = iso_sock_get_qos(sk);
  418. struct hci_iso_data_hdr *hdr;
  419. int len = 0;
  420. BT_DBG("sk %p len %d", sk, skb->len);
  421. if (skb->len > qos->ucast.out.sdu)
  422. return -EMSGSIZE;
  423. len = skb->len;
  424. /* Push ISO data header */
  425. hdr = skb_push(skb, HCI_ISO_DATA_HDR_SIZE);
  426. hdr->sn = cpu_to_le16(conn->tx_sn++);
  427. hdr->slen = cpu_to_le16(hci_iso_data_len_pack(len,
  428. HCI_ISO_STATUS_VALID));
  429. if (sk->sk_state == BT_CONNECTED)
  430. hci_send_iso(conn->hcon, skb);
  431. else
  432. len = -ENOTCONN;
  433. return len;
  434. }
  435. static void iso_recv_frame(struct iso_conn *conn, struct sk_buff *skb)
  436. {
  437. struct sock *sk;
  438. iso_conn_lock(conn);
  439. sk = conn->sk;
  440. iso_conn_unlock(conn);
  441. if (!sk)
  442. goto drop;
  443. BT_DBG("sk %p len %d", sk, skb->len);
  444. if (sk->sk_state != BT_CONNECTED)
  445. goto drop;
  446. if (!sock_queue_rcv_skb(sk, skb))
  447. return;
  448. drop:
  449. kfree_skb(skb);
  450. }
  451. /* -------- Socket interface ---------- */
  452. static struct sock *__iso_get_sock_listen_by_addr(bdaddr_t *src, bdaddr_t *dst)
  453. {
  454. struct sock *sk;
  455. sk_for_each(sk, &iso_sk_list.head) {
  456. if (sk->sk_state != BT_LISTEN)
  457. continue;
  458. if (bacmp(&iso_pi(sk)->dst, dst))
  459. continue;
  460. if (!bacmp(&iso_pi(sk)->src, src))
  461. return sk;
  462. }
  463. return NULL;
  464. }
  465. static struct sock *__iso_get_sock_listen_by_sid(bdaddr_t *ba, bdaddr_t *bc,
  466. __u8 sid)
  467. {
  468. struct sock *sk;
  469. sk_for_each(sk, &iso_sk_list.head) {
  470. if (sk->sk_state != BT_LISTEN)
  471. continue;
  472. if (bacmp(&iso_pi(sk)->src, ba))
  473. continue;
  474. if (bacmp(&iso_pi(sk)->dst, bc))
  475. continue;
  476. if (iso_pi(sk)->bc_sid == sid)
  477. return sk;
  478. }
  479. return NULL;
  480. }
  481. /* Find socket in given state:
  482. * source bdaddr (Unicast)
  483. * destination bdaddr (Broadcast only)
  484. * match func - pass NULL to ignore
  485. * match func data - pass -1 to ignore
  486. * Returns closest match.
  487. */
  488. static struct sock *iso_get_sock(bdaddr_t *src, bdaddr_t *dst,
  489. enum bt_sock_state state,
  490. iso_sock_match_t match, void *data)
  491. {
  492. struct sock *sk = NULL, *sk1 = NULL;
  493. read_lock(&iso_sk_list.lock);
  494. sk_for_each(sk, &iso_sk_list.head) {
  495. if (sk->sk_state != state)
  496. continue;
  497. /* Match Broadcast destination */
  498. if (bacmp(dst, BDADDR_ANY) && bacmp(&iso_pi(sk)->dst, dst))
  499. continue;
  500. /* Use Match function if provided */
  501. if (match && !match(sk, data))
  502. continue;
  503. /* Exact match. */
  504. if (!bacmp(&iso_pi(sk)->src, src)) {
  505. sock_hold(sk);
  506. break;
  507. }
  508. /* Closest match */
  509. if (!bacmp(&iso_pi(sk)->src, BDADDR_ANY)) {
  510. if (sk1)
  511. sock_put(sk1);
  512. sk1 = sk;
  513. sock_hold(sk1);
  514. }
  515. }
  516. if (sk && sk1)
  517. sock_put(sk1);
  518. read_unlock(&iso_sk_list.lock);
  519. return sk ? sk : sk1;
  520. }
  521. static struct sock *iso_get_sock_big(struct sock *match_sk, bdaddr_t *src,
  522. bdaddr_t *dst, uint8_t big)
  523. {
  524. struct sock *sk = NULL;
  525. read_lock(&iso_sk_list.lock);
  526. sk_for_each(sk, &iso_sk_list.head) {
  527. if (match_sk == sk)
  528. continue;
  529. /* Look for sockets that have already been
  530. * connected to the BIG
  531. */
  532. if (sk->sk_state != BT_CONNECTED &&
  533. sk->sk_state != BT_CONNECT)
  534. continue;
  535. /* Match Broadcast destination */
  536. if (bacmp(&iso_pi(sk)->dst, dst))
  537. continue;
  538. /* Match BIG handle */
  539. if (iso_pi(sk)->qos.bcast.big != big)
  540. continue;
  541. /* Match source address */
  542. if (bacmp(&iso_pi(sk)->src, src))
  543. continue;
  544. sock_hold(sk);
  545. break;
  546. }
  547. read_unlock(&iso_sk_list.lock);
  548. return sk;
  549. }
  550. static void iso_sock_destruct(struct sock *sk)
  551. {
  552. BT_DBG("sk %p", sk);
  553. iso_conn_put(iso_pi(sk)->conn);
  554. skb_queue_purge(&sk->sk_receive_queue);
  555. skb_queue_purge(&sk->sk_write_queue);
  556. }
  557. static void iso_sock_cleanup_listen(struct sock *parent)
  558. {
  559. struct sock *sk;
  560. BT_DBG("parent %p", parent);
  561. /* Close not yet accepted channels */
  562. while ((sk = bt_accept_dequeue(parent, NULL))) {
  563. iso_sock_close(sk);
  564. iso_sock_kill(sk);
  565. }
  566. /* If listening socket has a hcon, properly disconnect it */
  567. if (iso_pi(parent)->conn && iso_pi(parent)->conn->hcon) {
  568. iso_sock_disconn(parent);
  569. return;
  570. }
  571. parent->sk_state = BT_CLOSED;
  572. sock_set_flag(parent, SOCK_ZAPPED);
  573. }
  574. /* Kill socket (only if zapped and orphan)
  575. * Must be called on unlocked socket.
  576. */
  577. static void iso_sock_kill(struct sock *sk)
  578. {
  579. if (!sock_flag(sk, SOCK_ZAPPED) || sk->sk_socket ||
  580. sock_flag(sk, SOCK_DEAD))
  581. return;
  582. BT_DBG("sk %p state %d", sk, sk->sk_state);
  583. /* Sock is dead, so set conn->sk to NULL to avoid possible UAF */
  584. if (iso_pi(sk)->conn) {
  585. iso_conn_lock(iso_pi(sk)->conn);
  586. iso_pi(sk)->conn->sk = NULL;
  587. iso_conn_unlock(iso_pi(sk)->conn);
  588. }
  589. /* Kill poor orphan */
  590. bt_sock_unlink(&iso_sk_list, sk);
  591. sock_set_flag(sk, SOCK_DEAD);
  592. sock_put(sk);
  593. }
  594. static void iso_sock_disconn(struct sock *sk)
  595. {
  596. struct sock *bis_sk;
  597. struct hci_conn *hcon = iso_pi(sk)->conn->hcon;
  598. if (test_bit(HCI_CONN_BIG_CREATED, &hcon->flags)) {
  599. bis_sk = iso_get_sock_big(sk, &iso_pi(sk)->src,
  600. &iso_pi(sk)->dst,
  601. iso_pi(sk)->qos.bcast.big);
  602. /* If there are any other connected sockets for the
  603. * same BIG, just delete the sk and leave the bis
  604. * hcon active, in case later rebinding is needed.
  605. */
  606. if (bis_sk) {
  607. hcon->state = BT_OPEN;
  608. hcon->iso_data = NULL;
  609. iso_pi(sk)->conn->hcon = NULL;
  610. iso_sock_clear_timer(sk);
  611. iso_chan_del(sk, bt_to_errno(hcon->abort_reason));
  612. sock_put(bis_sk);
  613. return;
  614. }
  615. }
  616. sk->sk_state = BT_DISCONN;
  617. iso_conn_lock(iso_pi(sk)->conn);
  618. hci_conn_drop(iso_pi(sk)->conn->hcon);
  619. iso_pi(sk)->conn->hcon = NULL;
  620. iso_conn_unlock(iso_pi(sk)->conn);
  621. }
  622. static void __iso_sock_close(struct sock *sk)
  623. {
  624. BT_DBG("sk %p state %d socket %p", sk, sk->sk_state, sk->sk_socket);
  625. switch (sk->sk_state) {
  626. case BT_LISTEN:
  627. iso_sock_cleanup_listen(sk);
  628. break;
  629. case BT_CONNECT:
  630. case BT_CONNECTED:
  631. case BT_CONFIG:
  632. if (iso_pi(sk)->conn->hcon)
  633. iso_sock_disconn(sk);
  634. else
  635. iso_chan_del(sk, ECONNRESET);
  636. break;
  637. case BT_CONNECT2:
  638. if (iso_pi(sk)->conn->hcon &&
  639. (test_bit(HCI_CONN_PA_SYNC, &iso_pi(sk)->conn->hcon->flags) ||
  640. test_bit(HCI_CONN_PA_SYNC_FAILED, &iso_pi(sk)->conn->hcon->flags)))
  641. iso_sock_disconn(sk);
  642. else
  643. iso_chan_del(sk, ECONNRESET);
  644. break;
  645. case BT_DISCONN:
  646. iso_chan_del(sk, ECONNRESET);
  647. break;
  648. default:
  649. sock_set_flag(sk, SOCK_ZAPPED);
  650. break;
  651. }
  652. }
  653. /* Must be called on unlocked socket. */
  654. static void iso_sock_close(struct sock *sk)
  655. {
  656. iso_sock_clear_timer(sk);
  657. lock_sock(sk);
  658. __iso_sock_close(sk);
  659. release_sock(sk);
  660. iso_sock_kill(sk);
  661. }
  662. static void iso_sock_init(struct sock *sk, struct sock *parent)
  663. {
  664. BT_DBG("sk %p", sk);
  665. if (parent) {
  666. sk->sk_type = parent->sk_type;
  667. bt_sk(sk)->flags = bt_sk(parent)->flags;
  668. security_sk_clone(parent, sk);
  669. }
  670. }
  671. static struct proto iso_proto = {
  672. .name = "ISO",
  673. .owner = THIS_MODULE,
  674. .obj_size = sizeof(struct iso_pinfo)
  675. };
  676. #define DEFAULT_IO_QOS \
  677. { \
  678. .interval = 10000u, \
  679. .latency = 10u, \
  680. .sdu = 40u, \
  681. .phy = BT_ISO_PHY_2M, \
  682. .rtn = 2u, \
  683. }
  684. static struct bt_iso_qos default_qos = {
  685. .bcast = {
  686. .big = BT_ISO_QOS_BIG_UNSET,
  687. .bis = BT_ISO_QOS_BIS_UNSET,
  688. .sync_factor = 0x01,
  689. .packing = 0x00,
  690. .framing = 0x00,
  691. .in = DEFAULT_IO_QOS,
  692. .out = DEFAULT_IO_QOS,
  693. .encryption = 0x00,
  694. .bcode = {0x00},
  695. .options = 0x00,
  696. .skip = 0x0000,
  697. .sync_timeout = BT_ISO_SYNC_TIMEOUT,
  698. .sync_cte_type = 0x00,
  699. .mse = 0x00,
  700. .timeout = BT_ISO_SYNC_TIMEOUT,
  701. },
  702. };
  703. static struct sock *iso_sock_alloc(struct net *net, struct socket *sock,
  704. int proto, gfp_t prio, int kern)
  705. {
  706. struct sock *sk;
  707. sk = bt_sock_alloc(net, sock, &iso_proto, proto, prio, kern);
  708. if (!sk)
  709. return NULL;
  710. sk->sk_destruct = iso_sock_destruct;
  711. sk->sk_sndtimeo = ISO_CONN_TIMEOUT;
  712. /* Set address type as public as default src address is BDADDR_ANY */
  713. iso_pi(sk)->src_type = BDADDR_LE_PUBLIC;
  714. iso_pi(sk)->qos = default_qos;
  715. iso_pi(sk)->sync_handle = -1;
  716. bt_sock_link(&iso_sk_list, sk);
  717. return sk;
  718. }
  719. static int iso_sock_create(struct net *net, struct socket *sock, int protocol,
  720. int kern)
  721. {
  722. struct sock *sk;
  723. BT_DBG("sock %p", sock);
  724. sock->state = SS_UNCONNECTED;
  725. if (sock->type != SOCK_SEQPACKET)
  726. return -ESOCKTNOSUPPORT;
  727. sock->ops = &iso_sock_ops;
  728. sk = iso_sock_alloc(net, sock, protocol, GFP_ATOMIC, kern);
  729. if (!sk)
  730. return -ENOMEM;
  731. iso_sock_init(sk, NULL);
  732. return 0;
  733. }
  734. static int iso_sock_bind_bc(struct socket *sock, struct sockaddr *addr,
  735. int addr_len)
  736. {
  737. struct sockaddr_iso *sa = (struct sockaddr_iso *)addr;
  738. struct sock *sk = sock->sk;
  739. int i;
  740. BT_DBG("sk %p bc_sid %u bc_num_bis %u", sk, sa->iso_bc->bc_sid,
  741. sa->iso_bc->bc_num_bis);
  742. if (addr_len != sizeof(*sa) + sizeof(*sa->iso_bc))
  743. return -EINVAL;
  744. bacpy(&iso_pi(sk)->dst, &sa->iso_bc->bc_bdaddr);
  745. /* Check if the address type is of LE type */
  746. if (!bdaddr_type_is_le(sa->iso_bc->bc_bdaddr_type))
  747. return -EINVAL;
  748. iso_pi(sk)->dst_type = sa->iso_bc->bc_bdaddr_type;
  749. if (sa->iso_bc->bc_sid > 0x0f && sa->iso_bc->bc_sid != HCI_SID_INVALID)
  750. return -EINVAL;
  751. iso_pi(sk)->bc_sid = sa->iso_bc->bc_sid;
  752. if (sa->iso_bc->bc_num_bis > ISO_MAX_NUM_BIS)
  753. return -EINVAL;
  754. iso_pi(sk)->bc_num_bis = sa->iso_bc->bc_num_bis;
  755. for (i = 0; i < iso_pi(sk)->bc_num_bis; i++)
  756. if (sa->iso_bc->bc_bis[i] < 0x01 ||
  757. sa->iso_bc->bc_bis[i] > 0x1f)
  758. return -EINVAL;
  759. memcpy(iso_pi(sk)->bc_bis, sa->iso_bc->bc_bis,
  760. iso_pi(sk)->bc_num_bis);
  761. return 0;
  762. }
  763. static int iso_sock_bind_pa_sk(struct sock *sk, struct sockaddr_iso *sa,
  764. int addr_len)
  765. {
  766. int err = 0;
  767. if (sk->sk_type != SOCK_SEQPACKET) {
  768. err = -EINVAL;
  769. goto done;
  770. }
  771. if (addr_len != sizeof(*sa) + sizeof(*sa->iso_bc)) {
  772. err = -EINVAL;
  773. goto done;
  774. }
  775. if (sa->iso_bc->bc_num_bis > ISO_MAX_NUM_BIS) {
  776. err = -EINVAL;
  777. goto done;
  778. }
  779. iso_pi(sk)->bc_num_bis = sa->iso_bc->bc_num_bis;
  780. for (int i = 0; i < iso_pi(sk)->bc_num_bis; i++)
  781. if (sa->iso_bc->bc_bis[i] < 0x01 ||
  782. sa->iso_bc->bc_bis[i] > 0x1f) {
  783. err = -EINVAL;
  784. goto done;
  785. }
  786. memcpy(iso_pi(sk)->bc_bis, sa->iso_bc->bc_bis,
  787. iso_pi(sk)->bc_num_bis);
  788. done:
  789. return err;
  790. }
  791. static int iso_sock_bind(struct socket *sock, struct sockaddr *addr,
  792. int addr_len)
  793. {
  794. struct sockaddr_iso *sa = (struct sockaddr_iso *)addr;
  795. struct sock *sk = sock->sk;
  796. int err = 0;
  797. BT_DBG("sk %p %pMR type %u", sk, &sa->iso_bdaddr, sa->iso_bdaddr_type);
  798. if (!addr || addr_len < sizeof(struct sockaddr_iso) ||
  799. addr->sa_family != AF_BLUETOOTH)
  800. return -EINVAL;
  801. lock_sock(sk);
  802. /* Allow the user to bind a PA sync socket to a number
  803. * of BISes to sync to.
  804. */
  805. if ((sk->sk_state == BT_CONNECT2 ||
  806. sk->sk_state == BT_CONNECTED) &&
  807. test_bit(BT_SK_PA_SYNC, &iso_pi(sk)->flags)) {
  808. err = iso_sock_bind_pa_sk(sk, sa, addr_len);
  809. goto done;
  810. }
  811. if (sk->sk_state != BT_OPEN) {
  812. err = -EBADFD;
  813. goto done;
  814. }
  815. if (sk->sk_type != SOCK_SEQPACKET) {
  816. err = -EINVAL;
  817. goto done;
  818. }
  819. /* Check if the address type is of LE type */
  820. if (!bdaddr_type_is_le(sa->iso_bdaddr_type)) {
  821. err = -EINVAL;
  822. goto done;
  823. }
  824. bacpy(&iso_pi(sk)->src, &sa->iso_bdaddr);
  825. iso_pi(sk)->src_type = sa->iso_bdaddr_type;
  826. /* Check for Broadcast address */
  827. if (addr_len > sizeof(*sa)) {
  828. err = iso_sock_bind_bc(sock, addr, addr_len);
  829. if (err)
  830. goto done;
  831. }
  832. sk->sk_state = BT_BOUND;
  833. done:
  834. release_sock(sk);
  835. return err;
  836. }
  837. static int iso_sock_connect(struct socket *sock, struct sockaddr *addr,
  838. int alen, int flags)
  839. {
  840. struct sockaddr_iso *sa = (struct sockaddr_iso *)addr;
  841. struct sock *sk = sock->sk;
  842. int err;
  843. BT_DBG("sk %p", sk);
  844. if (alen < sizeof(struct sockaddr_iso) ||
  845. addr->sa_family != AF_BLUETOOTH)
  846. return -EINVAL;
  847. if (sk->sk_state != BT_OPEN && sk->sk_state != BT_BOUND)
  848. return -EBADFD;
  849. if (sk->sk_type != SOCK_SEQPACKET)
  850. return -EINVAL;
  851. /* Check if the address type is of LE type */
  852. if (!bdaddr_type_is_le(sa->iso_bdaddr_type))
  853. return -EINVAL;
  854. lock_sock(sk);
  855. bacpy(&iso_pi(sk)->dst, &sa->iso_bdaddr);
  856. iso_pi(sk)->dst_type = sa->iso_bdaddr_type;
  857. release_sock(sk);
  858. if (bacmp(&iso_pi(sk)->dst, BDADDR_ANY))
  859. err = iso_connect_cis(sk);
  860. else
  861. err = iso_connect_bis(sk);
  862. if (err)
  863. return err;
  864. lock_sock(sk);
  865. if (!test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags)) {
  866. err = bt_sock_wait_state(sk, BT_CONNECTED,
  867. sock_sndtimeo(sk, flags & O_NONBLOCK));
  868. }
  869. release_sock(sk);
  870. return err;
  871. }
  872. static int iso_listen_bis(struct sock *sk)
  873. {
  874. struct hci_dev *hdev;
  875. int err = 0;
  876. struct iso_conn *conn;
  877. struct hci_conn *hcon;
  878. BT_DBG("%pMR -> %pMR (SID 0x%2.2x)", &iso_pi(sk)->src,
  879. &iso_pi(sk)->dst, iso_pi(sk)->bc_sid);
  880. write_lock(&iso_sk_list.lock);
  881. if (__iso_get_sock_listen_by_sid(&iso_pi(sk)->src, &iso_pi(sk)->dst,
  882. iso_pi(sk)->bc_sid))
  883. err = -EADDRINUSE;
  884. write_unlock(&iso_sk_list.lock);
  885. if (err)
  886. return err;
  887. hdev = hci_get_route(&iso_pi(sk)->dst, &iso_pi(sk)->src,
  888. iso_pi(sk)->src_type);
  889. if (!hdev)
  890. return -EHOSTUNREACH;
  891. hci_dev_lock(hdev);
  892. lock_sock(sk);
  893. /* Fail if user set invalid QoS */
  894. if (iso_pi(sk)->qos_user_set && !check_bcast_qos(&iso_pi(sk)->qos)) {
  895. iso_pi(sk)->qos = default_qos;
  896. err = -EINVAL;
  897. goto unlock;
  898. }
  899. hcon = hci_pa_create_sync(hdev, &iso_pi(sk)->dst,
  900. le_addr_type(iso_pi(sk)->dst_type),
  901. iso_pi(sk)->bc_sid, &iso_pi(sk)->qos);
  902. if (IS_ERR(hcon)) {
  903. err = PTR_ERR(hcon);
  904. goto unlock;
  905. }
  906. conn = iso_conn_add(hcon);
  907. if (!conn) {
  908. hci_conn_drop(hcon);
  909. err = -ENOMEM;
  910. goto unlock;
  911. }
  912. err = iso_chan_add(conn, sk, NULL);
  913. if (err) {
  914. hci_conn_drop(hcon);
  915. goto unlock;
  916. }
  917. unlock:
  918. release_sock(sk);
  919. hci_dev_unlock(hdev);
  920. hci_dev_put(hdev);
  921. return err;
  922. }
  923. static int iso_listen_cis(struct sock *sk)
  924. {
  925. int err = 0;
  926. BT_DBG("%pMR", &iso_pi(sk)->src);
  927. write_lock(&iso_sk_list.lock);
  928. if (__iso_get_sock_listen_by_addr(&iso_pi(sk)->src, &iso_pi(sk)->dst))
  929. err = -EADDRINUSE;
  930. write_unlock(&iso_sk_list.lock);
  931. return err;
  932. }
  933. static int iso_sock_listen(struct socket *sock, int backlog)
  934. {
  935. struct sock *sk = sock->sk;
  936. int err = 0;
  937. BT_DBG("sk %p backlog %d", sk, backlog);
  938. sock_hold(sk);
  939. lock_sock(sk);
  940. if (sk->sk_state != BT_BOUND) {
  941. err = -EBADFD;
  942. goto done;
  943. }
  944. if (sk->sk_type != SOCK_SEQPACKET) {
  945. err = -EINVAL;
  946. goto done;
  947. }
  948. if (!bacmp(&iso_pi(sk)->dst, BDADDR_ANY)) {
  949. err = iso_listen_cis(sk);
  950. } else {
  951. /* Drop sock lock to avoid potential
  952. * deadlock with the hdev lock.
  953. */
  954. release_sock(sk);
  955. err = iso_listen_bis(sk);
  956. lock_sock(sk);
  957. }
  958. if (err)
  959. goto done;
  960. sk->sk_max_ack_backlog = backlog;
  961. sk->sk_ack_backlog = 0;
  962. sk->sk_state = BT_LISTEN;
  963. done:
  964. release_sock(sk);
  965. sock_put(sk);
  966. return err;
  967. }
  968. static int iso_sock_accept(struct socket *sock, struct socket *newsock,
  969. struct proto_accept_arg *arg)
  970. {
  971. DEFINE_WAIT_FUNC(wait, woken_wake_function);
  972. struct sock *sk = sock->sk, *ch;
  973. long timeo;
  974. int err = 0;
  975. /* Use explicit nested locking to avoid lockdep warnings generated
  976. * because the parent socket and the child socket are locked on the
  977. * same thread.
  978. */
  979. lock_sock_nested(sk, SINGLE_DEPTH_NESTING);
  980. timeo = sock_rcvtimeo(sk, arg->flags & O_NONBLOCK);
  981. BT_DBG("sk %p timeo %ld", sk, timeo);
  982. /* Wait for an incoming connection. (wake-one). */
  983. add_wait_queue_exclusive(sk_sleep(sk), &wait);
  984. while (1) {
  985. if (sk->sk_state != BT_LISTEN) {
  986. err = -EBADFD;
  987. break;
  988. }
  989. ch = bt_accept_dequeue(sk, newsock);
  990. if (ch)
  991. break;
  992. if (!timeo) {
  993. err = -EAGAIN;
  994. break;
  995. }
  996. if (signal_pending(current)) {
  997. err = sock_intr_errno(timeo);
  998. break;
  999. }
  1000. release_sock(sk);
  1001. timeo = wait_woken(&wait, TASK_INTERRUPTIBLE, timeo);
  1002. lock_sock_nested(sk, SINGLE_DEPTH_NESTING);
  1003. }
  1004. remove_wait_queue(sk_sleep(sk), &wait);
  1005. if (err)
  1006. goto done;
  1007. newsock->state = SS_CONNECTED;
  1008. BT_DBG("new socket %p", ch);
  1009. done:
  1010. release_sock(sk);
  1011. return err;
  1012. }
  1013. static int iso_sock_getname(struct socket *sock, struct sockaddr *addr,
  1014. int peer)
  1015. {
  1016. struct sockaddr_iso *sa = (struct sockaddr_iso *)addr;
  1017. struct sock *sk = sock->sk;
  1018. BT_DBG("sock %p, sk %p", sock, sk);
  1019. addr->sa_family = AF_BLUETOOTH;
  1020. if (peer) {
  1021. bacpy(&sa->iso_bdaddr, &iso_pi(sk)->dst);
  1022. sa->iso_bdaddr_type = iso_pi(sk)->dst_type;
  1023. } else {
  1024. bacpy(&sa->iso_bdaddr, &iso_pi(sk)->src);
  1025. sa->iso_bdaddr_type = iso_pi(sk)->src_type;
  1026. }
  1027. return sizeof(struct sockaddr_iso);
  1028. }
  1029. static int iso_sock_sendmsg(struct socket *sock, struct msghdr *msg,
  1030. size_t len)
  1031. {
  1032. struct sock *sk = sock->sk;
  1033. struct sk_buff *skb, **frag;
  1034. size_t mtu;
  1035. int err;
  1036. BT_DBG("sock %p, sk %p", sock, sk);
  1037. err = sock_error(sk);
  1038. if (err)
  1039. return err;
  1040. if (msg->msg_flags & MSG_OOB)
  1041. return -EOPNOTSUPP;
  1042. lock_sock(sk);
  1043. if (sk->sk_state != BT_CONNECTED) {
  1044. release_sock(sk);
  1045. return -ENOTCONN;
  1046. }
  1047. mtu = iso_pi(sk)->conn->hcon->mtu;
  1048. release_sock(sk);
  1049. skb = bt_skb_sendmsg(sk, msg, len, mtu, HCI_ISO_DATA_HDR_SIZE, 0);
  1050. if (IS_ERR(skb))
  1051. return PTR_ERR(skb);
  1052. len -= skb->len;
  1053. BT_DBG("skb %p len %d", sk, skb->len);
  1054. /* Continuation fragments */
  1055. frag = &skb_shinfo(skb)->frag_list;
  1056. while (len) {
  1057. struct sk_buff *tmp;
  1058. tmp = bt_skb_sendmsg(sk, msg, len, mtu, 0, 0);
  1059. if (IS_ERR(tmp)) {
  1060. kfree_skb(skb);
  1061. return PTR_ERR(tmp);
  1062. }
  1063. *frag = tmp;
  1064. len -= tmp->len;
  1065. skb->len += tmp->len;
  1066. skb->data_len += tmp->len;
  1067. BT_DBG("frag %p len %d", *frag, tmp->len);
  1068. frag = &(*frag)->next;
  1069. }
  1070. lock_sock(sk);
  1071. if (sk->sk_state == BT_CONNECTED)
  1072. err = iso_send_frame(sk, skb);
  1073. else
  1074. err = -ENOTCONN;
  1075. release_sock(sk);
  1076. if (err < 0)
  1077. kfree_skb(skb);
  1078. return err;
  1079. }
  1080. static void iso_conn_defer_accept(struct hci_conn *conn)
  1081. {
  1082. struct hci_cp_le_accept_cis cp;
  1083. struct hci_dev *hdev = conn->hdev;
  1084. BT_DBG("conn %p", conn);
  1085. conn->state = BT_CONFIG;
  1086. cp.handle = cpu_to_le16(conn->handle);
  1087. hci_send_cmd(hdev, HCI_OP_LE_ACCEPT_CIS, sizeof(cp), &cp);
  1088. }
  1089. static void iso_conn_big_sync(struct sock *sk)
  1090. {
  1091. int err;
  1092. struct hci_dev *hdev;
  1093. hdev = hci_get_route(&iso_pi(sk)->dst, &iso_pi(sk)->src,
  1094. iso_pi(sk)->src_type);
  1095. if (!hdev)
  1096. return;
  1097. /* hci_le_big_create_sync requires hdev lock to be held, since
  1098. * it enqueues the HCI LE BIG Create Sync command via
  1099. * hci_cmd_sync_queue_once, which checks hdev flags that might
  1100. * change.
  1101. */
  1102. hci_dev_lock(hdev);
  1103. lock_sock(sk);
  1104. if (!test_and_set_bit(BT_SK_BIG_SYNC, &iso_pi(sk)->flags)) {
  1105. err = hci_conn_big_create_sync(hdev, iso_pi(sk)->conn->hcon,
  1106. &iso_pi(sk)->qos,
  1107. iso_pi(sk)->sync_handle,
  1108. iso_pi(sk)->bc_num_bis,
  1109. iso_pi(sk)->bc_bis);
  1110. if (err)
  1111. bt_dev_err(hdev, "hci_big_create_sync: %d", err);
  1112. }
  1113. release_sock(sk);
  1114. hci_dev_unlock(hdev);
  1115. }
  1116. static int iso_sock_recvmsg(struct socket *sock, struct msghdr *msg,
  1117. size_t len, int flags)
  1118. {
  1119. struct sock *sk = sock->sk;
  1120. struct iso_pinfo *pi = iso_pi(sk);
  1121. bool early_ret = false;
  1122. int err = 0;
  1123. BT_DBG("sk %p", sk);
  1124. if (test_and_clear_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags)) {
  1125. sock_hold(sk);
  1126. lock_sock(sk);
  1127. switch (sk->sk_state) {
  1128. case BT_CONNECT2:
  1129. if (test_bit(BT_SK_PA_SYNC, &pi->flags)) {
  1130. release_sock(sk);
  1131. iso_conn_big_sync(sk);
  1132. lock_sock(sk);
  1133. sk->sk_state = BT_LISTEN;
  1134. } else {
  1135. iso_conn_defer_accept(pi->conn->hcon);
  1136. sk->sk_state = BT_CONFIG;
  1137. }
  1138. early_ret = true;
  1139. break;
  1140. case BT_CONNECTED:
  1141. if (test_bit(BT_SK_PA_SYNC, &iso_pi(sk)->flags)) {
  1142. release_sock(sk);
  1143. iso_conn_big_sync(sk);
  1144. lock_sock(sk);
  1145. sk->sk_state = BT_LISTEN;
  1146. early_ret = true;
  1147. }
  1148. break;
  1149. case BT_CONNECT:
  1150. release_sock(sk);
  1151. err = iso_connect_cis(sk);
  1152. lock_sock(sk);
  1153. early_ret = true;
  1154. break;
  1155. default:
  1156. break;
  1157. }
  1158. release_sock(sk);
  1159. sock_put(sk);
  1160. if (early_ret)
  1161. return err;
  1162. }
  1163. return bt_sock_recvmsg(sock, msg, len, flags);
  1164. }
  1165. static bool check_io_qos(struct bt_iso_io_qos *qos)
  1166. {
  1167. /* If no PHY is enable SDU must be 0 */
  1168. if (!qos->phy && qos->sdu)
  1169. return false;
  1170. if (qos->interval && (qos->interval < 0xff || qos->interval > 0xfffff))
  1171. return false;
  1172. if (qos->latency && (qos->latency < 0x05 || qos->latency > 0xfa0))
  1173. return false;
  1174. if (qos->phy > BT_ISO_PHY_ANY)
  1175. return false;
  1176. return true;
  1177. }
  1178. static bool check_ucast_qos(struct bt_iso_qos *qos)
  1179. {
  1180. if (qos->ucast.cig > 0xef && qos->ucast.cig != BT_ISO_QOS_CIG_UNSET)
  1181. return false;
  1182. if (qos->ucast.cis > 0xef && qos->ucast.cis != BT_ISO_QOS_CIS_UNSET)
  1183. return false;
  1184. if (qos->ucast.sca > 0x07)
  1185. return false;
  1186. if (qos->ucast.packing > 0x01)
  1187. return false;
  1188. if (qos->ucast.framing > 0x01)
  1189. return false;
  1190. if (!check_io_qos(&qos->ucast.in))
  1191. return false;
  1192. if (!check_io_qos(&qos->ucast.out))
  1193. return false;
  1194. return true;
  1195. }
  1196. static bool check_bcast_qos(struct bt_iso_qos *qos)
  1197. {
  1198. if (!qos->bcast.sync_factor)
  1199. qos->bcast.sync_factor = 0x01;
  1200. if (qos->bcast.packing > 0x01)
  1201. return false;
  1202. if (qos->bcast.framing > 0x01)
  1203. return false;
  1204. if (!check_io_qos(&qos->bcast.in))
  1205. return false;
  1206. if (!check_io_qos(&qos->bcast.out))
  1207. return false;
  1208. if (qos->bcast.encryption > 0x01)
  1209. return false;
  1210. if (qos->bcast.options > 0x07)
  1211. return false;
  1212. if (qos->bcast.skip > 0x01f3)
  1213. return false;
  1214. if (!qos->bcast.sync_timeout)
  1215. qos->bcast.sync_timeout = BT_ISO_SYNC_TIMEOUT;
  1216. if (qos->bcast.sync_timeout < 0x000a || qos->bcast.sync_timeout > 0x4000)
  1217. return false;
  1218. if (qos->bcast.sync_cte_type > 0x1f)
  1219. return false;
  1220. if (qos->bcast.mse > 0x1f)
  1221. return false;
  1222. if (!qos->bcast.timeout)
  1223. qos->bcast.sync_timeout = BT_ISO_SYNC_TIMEOUT;
  1224. if (qos->bcast.timeout < 0x000a || qos->bcast.timeout > 0x4000)
  1225. return false;
  1226. return true;
  1227. }
  1228. static int iso_sock_setsockopt(struct socket *sock, int level, int optname,
  1229. sockptr_t optval, unsigned int optlen)
  1230. {
  1231. struct sock *sk = sock->sk;
  1232. int err = 0;
  1233. struct bt_iso_qos qos = default_qos;
  1234. u32 opt;
  1235. BT_DBG("sk %p", sk);
  1236. lock_sock(sk);
  1237. switch (optname) {
  1238. case BT_DEFER_SETUP:
  1239. if (sk->sk_state != BT_BOUND && sk->sk_state != BT_LISTEN) {
  1240. err = -EINVAL;
  1241. break;
  1242. }
  1243. err = copy_safe_from_sockptr(&opt, sizeof(opt), optval, optlen);
  1244. if (err)
  1245. break;
  1246. if (opt)
  1247. set_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags);
  1248. else
  1249. clear_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags);
  1250. break;
  1251. case BT_PKT_STATUS:
  1252. err = copy_safe_from_sockptr(&opt, sizeof(opt), optval, optlen);
  1253. if (err)
  1254. break;
  1255. if (opt)
  1256. set_bit(BT_SK_PKT_STATUS, &bt_sk(sk)->flags);
  1257. else
  1258. clear_bit(BT_SK_PKT_STATUS, &bt_sk(sk)->flags);
  1259. break;
  1260. case BT_ISO_QOS:
  1261. if (sk->sk_state != BT_OPEN && sk->sk_state != BT_BOUND &&
  1262. sk->sk_state != BT_CONNECT2 &&
  1263. (!test_bit(BT_SK_PA_SYNC, &iso_pi(sk)->flags) ||
  1264. sk->sk_state != BT_CONNECTED)) {
  1265. err = -EINVAL;
  1266. break;
  1267. }
  1268. err = copy_safe_from_sockptr(&qos, sizeof(qos), optval, optlen);
  1269. if (err)
  1270. break;
  1271. iso_pi(sk)->qos = qos;
  1272. iso_pi(sk)->qos_user_set = true;
  1273. break;
  1274. case BT_ISO_BASE:
  1275. if (sk->sk_state != BT_OPEN && sk->sk_state != BT_BOUND &&
  1276. sk->sk_state != BT_CONNECT2) {
  1277. err = -EINVAL;
  1278. break;
  1279. }
  1280. if (optlen > sizeof(iso_pi(sk)->base)) {
  1281. err = -EINVAL;
  1282. break;
  1283. }
  1284. err = copy_safe_from_sockptr(iso_pi(sk)->base, optlen, optval,
  1285. optlen);
  1286. if (err)
  1287. break;
  1288. iso_pi(sk)->base_len = optlen;
  1289. break;
  1290. default:
  1291. err = -ENOPROTOOPT;
  1292. break;
  1293. }
  1294. release_sock(sk);
  1295. return err;
  1296. }
  1297. static int iso_sock_getsockopt(struct socket *sock, int level, int optname,
  1298. char __user *optval, int __user *optlen)
  1299. {
  1300. struct sock *sk = sock->sk;
  1301. int len, err = 0;
  1302. struct bt_iso_qos *qos;
  1303. u8 base_len;
  1304. u8 *base;
  1305. BT_DBG("sk %p", sk);
  1306. if (get_user(len, optlen))
  1307. return -EFAULT;
  1308. lock_sock(sk);
  1309. switch (optname) {
  1310. case BT_DEFER_SETUP:
  1311. if (sk->sk_state == BT_CONNECTED) {
  1312. err = -EINVAL;
  1313. break;
  1314. }
  1315. if (put_user(test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags),
  1316. (u32 __user *)optval))
  1317. err = -EFAULT;
  1318. break;
  1319. case BT_PKT_STATUS:
  1320. if (put_user(test_bit(BT_SK_PKT_STATUS, &bt_sk(sk)->flags),
  1321. (int __user *)optval))
  1322. err = -EFAULT;
  1323. break;
  1324. case BT_ISO_QOS:
  1325. qos = iso_sock_get_qos(sk);
  1326. len = min_t(unsigned int, len, sizeof(*qos));
  1327. if (copy_to_user(optval, qos, len))
  1328. err = -EFAULT;
  1329. break;
  1330. case BT_ISO_BASE:
  1331. if (sk->sk_state == BT_CONNECTED &&
  1332. !bacmp(&iso_pi(sk)->dst, BDADDR_ANY)) {
  1333. base_len = iso_pi(sk)->conn->hcon->le_per_adv_data_len;
  1334. base = iso_pi(sk)->conn->hcon->le_per_adv_data;
  1335. } else {
  1336. base_len = iso_pi(sk)->base_len;
  1337. base = iso_pi(sk)->base;
  1338. }
  1339. len = min_t(unsigned int, len, base_len);
  1340. if (copy_to_user(optval, base, len))
  1341. err = -EFAULT;
  1342. if (put_user(len, optlen))
  1343. err = -EFAULT;
  1344. break;
  1345. default:
  1346. err = -ENOPROTOOPT;
  1347. break;
  1348. }
  1349. release_sock(sk);
  1350. return err;
  1351. }
  1352. static int iso_sock_shutdown(struct socket *sock, int how)
  1353. {
  1354. struct sock *sk = sock->sk;
  1355. int err = 0;
  1356. BT_DBG("sock %p, sk %p, how %d", sock, sk, how);
  1357. if (!sk)
  1358. return 0;
  1359. sock_hold(sk);
  1360. lock_sock(sk);
  1361. switch (how) {
  1362. case SHUT_RD:
  1363. if (sk->sk_shutdown & RCV_SHUTDOWN)
  1364. goto unlock;
  1365. sk->sk_shutdown |= RCV_SHUTDOWN;
  1366. break;
  1367. case SHUT_WR:
  1368. if (sk->sk_shutdown & SEND_SHUTDOWN)
  1369. goto unlock;
  1370. sk->sk_shutdown |= SEND_SHUTDOWN;
  1371. break;
  1372. case SHUT_RDWR:
  1373. if (sk->sk_shutdown & SHUTDOWN_MASK)
  1374. goto unlock;
  1375. sk->sk_shutdown |= SHUTDOWN_MASK;
  1376. break;
  1377. }
  1378. iso_sock_clear_timer(sk);
  1379. __iso_sock_close(sk);
  1380. if (sock_flag(sk, SOCK_LINGER) && sk->sk_lingertime &&
  1381. !(current->flags & PF_EXITING))
  1382. err = bt_sock_wait_state(sk, BT_CLOSED, sk->sk_lingertime);
  1383. unlock:
  1384. release_sock(sk);
  1385. sock_put(sk);
  1386. return err;
  1387. }
  1388. static int iso_sock_release(struct socket *sock)
  1389. {
  1390. struct sock *sk = sock->sk;
  1391. int err = 0;
  1392. BT_DBG("sock %p, sk %p", sock, sk);
  1393. if (!sk)
  1394. return 0;
  1395. iso_sock_close(sk);
  1396. if (sock_flag(sk, SOCK_LINGER) && READ_ONCE(sk->sk_lingertime) &&
  1397. !(current->flags & PF_EXITING)) {
  1398. lock_sock(sk);
  1399. err = bt_sock_wait_state(sk, BT_CLOSED, sk->sk_lingertime);
  1400. release_sock(sk);
  1401. }
  1402. sock_orphan(sk);
  1403. iso_sock_kill(sk);
  1404. return err;
  1405. }
  1406. static void iso_sock_ready(struct sock *sk)
  1407. {
  1408. BT_DBG("sk %p", sk);
  1409. if (!sk)
  1410. return;
  1411. lock_sock(sk);
  1412. iso_sock_clear_timer(sk);
  1413. sk->sk_state = BT_CONNECTED;
  1414. sk->sk_state_change(sk);
  1415. release_sock(sk);
  1416. }
  1417. static bool iso_match_big(struct sock *sk, void *data)
  1418. {
  1419. struct hci_evt_le_big_sync_estabilished *ev = data;
  1420. return ev->handle == iso_pi(sk)->qos.bcast.big;
  1421. }
  1422. static bool iso_match_pa_sync_flag(struct sock *sk, void *data)
  1423. {
  1424. return test_bit(BT_SK_PA_SYNC, &iso_pi(sk)->flags);
  1425. }
  1426. static void iso_conn_ready(struct iso_conn *conn)
  1427. {
  1428. struct sock *parent = NULL;
  1429. struct sock *sk = conn->sk;
  1430. struct hci_ev_le_big_sync_estabilished *ev = NULL;
  1431. struct hci_ev_le_pa_sync_established *ev2 = NULL;
  1432. struct hci_ev_le_per_adv_report *ev3 = NULL;
  1433. struct hci_conn *hcon;
  1434. BT_DBG("conn %p", conn);
  1435. if (sk) {
  1436. iso_sock_ready(conn->sk);
  1437. } else {
  1438. hcon = conn->hcon;
  1439. if (!hcon)
  1440. return;
  1441. if (test_bit(HCI_CONN_BIG_SYNC, &hcon->flags) ||
  1442. test_bit(HCI_CONN_BIG_SYNC_FAILED, &hcon->flags)) {
  1443. ev = hci_recv_event_data(hcon->hdev,
  1444. HCI_EVT_LE_BIG_SYNC_ESTABLISHED);
  1445. /* Get reference to PA sync parent socket, if it exists */
  1446. parent = iso_get_sock(&hcon->src, &hcon->dst,
  1447. BT_LISTEN,
  1448. iso_match_pa_sync_flag,
  1449. NULL);
  1450. if (!parent && ev)
  1451. parent = iso_get_sock(&hcon->src,
  1452. &hcon->dst,
  1453. BT_LISTEN,
  1454. iso_match_big, ev);
  1455. } else if (test_bit(HCI_CONN_PA_SYNC_FAILED, &hcon->flags)) {
  1456. ev2 = hci_recv_event_data(hcon->hdev,
  1457. HCI_EV_LE_PA_SYNC_ESTABLISHED);
  1458. if (ev2)
  1459. parent = iso_get_sock(&hcon->src,
  1460. &hcon->dst,
  1461. BT_LISTEN,
  1462. iso_match_sid, ev2);
  1463. } else if (test_bit(HCI_CONN_PA_SYNC, &hcon->flags)) {
  1464. ev3 = hci_recv_event_data(hcon->hdev,
  1465. HCI_EV_LE_PER_ADV_REPORT);
  1466. if (ev3)
  1467. parent = iso_get_sock(&hcon->src,
  1468. &hcon->dst,
  1469. BT_LISTEN,
  1470. iso_match_sync_handle_pa_report,
  1471. ev3);
  1472. }
  1473. if (!parent)
  1474. parent = iso_get_sock(&hcon->src, BDADDR_ANY,
  1475. BT_LISTEN, NULL, NULL);
  1476. if (!parent)
  1477. return;
  1478. lock_sock(parent);
  1479. sk = iso_sock_alloc(sock_net(parent), NULL,
  1480. BTPROTO_ISO, GFP_ATOMIC, 0);
  1481. if (!sk) {
  1482. release_sock(parent);
  1483. return;
  1484. }
  1485. iso_sock_init(sk, parent);
  1486. bacpy(&iso_pi(sk)->src, &hcon->src);
  1487. /* Convert from HCI to three-value type */
  1488. if (hcon->src_type == ADDR_LE_DEV_PUBLIC)
  1489. iso_pi(sk)->src_type = BDADDR_LE_PUBLIC;
  1490. else
  1491. iso_pi(sk)->src_type = BDADDR_LE_RANDOM;
  1492. /* If hcon has no destination address (BDADDR_ANY) it means it
  1493. * was created by HCI_EV_LE_BIG_SYNC_ESTABILISHED or
  1494. * HCI_EV_LE_PA_SYNC_ESTABLISHED so we need to initialize using
  1495. * the parent socket destination address.
  1496. */
  1497. if (!bacmp(&hcon->dst, BDADDR_ANY)) {
  1498. bacpy(&hcon->dst, &iso_pi(parent)->dst);
  1499. hcon->dst_type = iso_pi(parent)->dst_type;
  1500. hcon->sync_handle = iso_pi(parent)->sync_handle;
  1501. }
  1502. if (ev3) {
  1503. iso_pi(sk)->qos = iso_pi(parent)->qos;
  1504. hcon->iso_qos = iso_pi(sk)->qos;
  1505. iso_pi(sk)->bc_num_bis = iso_pi(parent)->bc_num_bis;
  1506. memcpy(iso_pi(sk)->bc_bis, iso_pi(parent)->bc_bis, ISO_MAX_NUM_BIS);
  1507. set_bit(BT_SK_PA_SYNC, &iso_pi(sk)->flags);
  1508. }
  1509. bacpy(&iso_pi(sk)->dst, &hcon->dst);
  1510. iso_pi(sk)->dst_type = hcon->dst_type;
  1511. iso_pi(sk)->sync_handle = iso_pi(parent)->sync_handle;
  1512. memcpy(iso_pi(sk)->base, iso_pi(parent)->base, iso_pi(parent)->base_len);
  1513. iso_pi(sk)->base_len = iso_pi(parent)->base_len;
  1514. hci_conn_hold(hcon);
  1515. iso_chan_add(conn, sk, parent);
  1516. if ((ev && ((struct hci_evt_le_big_sync_estabilished *)ev)->status) ||
  1517. (ev2 && ev2->status)) {
  1518. /* Trigger error signal on child socket */
  1519. sk->sk_err = ECONNREFUSED;
  1520. sk->sk_error_report(sk);
  1521. }
  1522. if (test_bit(BT_SK_DEFER_SETUP, &bt_sk(parent)->flags))
  1523. sk->sk_state = BT_CONNECT2;
  1524. else
  1525. sk->sk_state = BT_CONNECTED;
  1526. /* Wake up parent */
  1527. parent->sk_data_ready(parent);
  1528. release_sock(parent);
  1529. sock_put(parent);
  1530. }
  1531. }
  1532. static bool iso_match_sid(struct sock *sk, void *data)
  1533. {
  1534. struct hci_ev_le_pa_sync_established *ev = data;
  1535. if (iso_pi(sk)->bc_sid == HCI_SID_INVALID)
  1536. return true;
  1537. return ev->sid == iso_pi(sk)->bc_sid;
  1538. }
  1539. static bool iso_match_sync_handle(struct sock *sk, void *data)
  1540. {
  1541. struct hci_evt_le_big_info_adv_report *ev = data;
  1542. return le16_to_cpu(ev->sync_handle) == iso_pi(sk)->sync_handle;
  1543. }
  1544. static bool iso_match_sync_handle_pa_report(struct sock *sk, void *data)
  1545. {
  1546. struct hci_ev_le_per_adv_report *ev = data;
  1547. return le16_to_cpu(ev->sync_handle) == iso_pi(sk)->sync_handle;
  1548. }
  1549. /* ----- ISO interface with lower layer (HCI) ----- */
  1550. int iso_connect_ind(struct hci_dev *hdev, bdaddr_t *bdaddr, __u8 *flags)
  1551. {
  1552. struct hci_ev_le_pa_sync_established *ev1;
  1553. struct hci_evt_le_big_info_adv_report *ev2;
  1554. struct hci_ev_le_per_adv_report *ev3;
  1555. struct sock *sk;
  1556. bt_dev_dbg(hdev, "bdaddr %pMR", bdaddr);
  1557. /* Broadcast receiver requires handling of some events before it can
  1558. * proceed to establishing a BIG sync:
  1559. *
  1560. * 1. HCI_EV_LE_PA_SYNC_ESTABLISHED: The socket may specify a specific
  1561. * SID to listen to and once sync is estabilished its handle needs to
  1562. * be stored in iso_pi(sk)->sync_handle so it can be matched once
  1563. * receiving the BIG Info.
  1564. * 2. HCI_EVT_LE_BIG_INFO_ADV_REPORT: When connect_ind is triggered by a
  1565. * a BIG Info it attempts to check if there any listening socket with
  1566. * the same sync_handle and if it does then attempt to create a sync.
  1567. * 3. HCI_EV_LE_PER_ADV_REPORT: When a PA report is received, it is stored
  1568. * in iso_pi(sk)->base so it can be passed up to user, in the case of a
  1569. * broadcast sink.
  1570. */
  1571. ev1 = hci_recv_event_data(hdev, HCI_EV_LE_PA_SYNC_ESTABLISHED);
  1572. if (ev1) {
  1573. sk = iso_get_sock(&hdev->bdaddr, bdaddr, BT_LISTEN,
  1574. iso_match_sid, ev1);
  1575. if (sk && !ev1->status) {
  1576. iso_pi(sk)->sync_handle = le16_to_cpu(ev1->handle);
  1577. iso_pi(sk)->bc_sid = ev1->sid;
  1578. }
  1579. goto done;
  1580. }
  1581. ev2 = hci_recv_event_data(hdev, HCI_EVT_LE_BIG_INFO_ADV_REPORT);
  1582. if (ev2) {
  1583. /* Check if BIGInfo report has already been handled */
  1584. sk = iso_get_sock(&hdev->bdaddr, bdaddr, BT_CONNECTED,
  1585. iso_match_sync_handle, ev2);
  1586. if (sk) {
  1587. sock_put(sk);
  1588. sk = NULL;
  1589. goto done;
  1590. }
  1591. /* Try to get PA sync socket, if it exists */
  1592. sk = iso_get_sock(&hdev->bdaddr, bdaddr, BT_CONNECT2,
  1593. iso_match_sync_handle, ev2);
  1594. if (!sk)
  1595. sk = iso_get_sock(&hdev->bdaddr, bdaddr,
  1596. BT_LISTEN,
  1597. iso_match_sync_handle,
  1598. ev2);
  1599. if (sk) {
  1600. int err;
  1601. struct hci_conn *hcon = iso_pi(sk)->conn->hcon;
  1602. iso_pi(sk)->qos.bcast.encryption = ev2->encryption;
  1603. if (ev2->num_bis < iso_pi(sk)->bc_num_bis)
  1604. iso_pi(sk)->bc_num_bis = ev2->num_bis;
  1605. if (!test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags) &&
  1606. !test_and_set_bit(BT_SK_BIG_SYNC, &iso_pi(sk)->flags)) {
  1607. err = hci_conn_big_create_sync(hdev, hcon,
  1608. &iso_pi(sk)->qos,
  1609. iso_pi(sk)->sync_handle,
  1610. iso_pi(sk)->bc_num_bis,
  1611. iso_pi(sk)->bc_bis);
  1612. if (err) {
  1613. bt_dev_err(hdev, "hci_le_big_create_sync: %d",
  1614. err);
  1615. sock_put(sk);
  1616. sk = NULL;
  1617. }
  1618. }
  1619. }
  1620. goto done;
  1621. }
  1622. ev3 = hci_recv_event_data(hdev, HCI_EV_LE_PER_ADV_REPORT);
  1623. if (ev3) {
  1624. size_t base_len = 0;
  1625. u8 *base;
  1626. struct hci_conn *hcon;
  1627. sk = iso_get_sock(&hdev->bdaddr, bdaddr, BT_LISTEN,
  1628. iso_match_sync_handle_pa_report, ev3);
  1629. if (!sk)
  1630. goto done;
  1631. hcon = iso_pi(sk)->conn->hcon;
  1632. if (!hcon)
  1633. goto done;
  1634. if (ev3->data_status == LE_PA_DATA_TRUNCATED) {
  1635. /* The controller was unable to retrieve PA data. */
  1636. memset(hcon->le_per_adv_data, 0,
  1637. HCI_MAX_PER_AD_TOT_LEN);
  1638. hcon->le_per_adv_data_len = 0;
  1639. hcon->le_per_adv_data_offset = 0;
  1640. goto done;
  1641. }
  1642. if (hcon->le_per_adv_data_offset + ev3->length >
  1643. HCI_MAX_PER_AD_TOT_LEN)
  1644. goto done;
  1645. memcpy(hcon->le_per_adv_data + hcon->le_per_adv_data_offset,
  1646. ev3->data, ev3->length);
  1647. hcon->le_per_adv_data_offset += ev3->length;
  1648. if (ev3->data_status == LE_PA_DATA_COMPLETE) {
  1649. /* All PA data has been received. */
  1650. hcon->le_per_adv_data_len =
  1651. hcon->le_per_adv_data_offset;
  1652. hcon->le_per_adv_data_offset = 0;
  1653. /* Extract BASE */
  1654. base = eir_get_service_data(hcon->le_per_adv_data,
  1655. hcon->le_per_adv_data_len,
  1656. EIR_BAA_SERVICE_UUID,
  1657. &base_len);
  1658. if (!base || base_len > BASE_MAX_LENGTH)
  1659. goto done;
  1660. memcpy(iso_pi(sk)->base, base, base_len);
  1661. iso_pi(sk)->base_len = base_len;
  1662. } else {
  1663. /* This is a PA data fragment. Keep pa_data_len set to 0
  1664. * until all data has been reassembled.
  1665. */
  1666. hcon->le_per_adv_data_len = 0;
  1667. }
  1668. } else {
  1669. sk = iso_get_sock(&hdev->bdaddr, BDADDR_ANY,
  1670. BT_LISTEN, NULL, NULL);
  1671. }
  1672. done:
  1673. if (!sk)
  1674. return 0;
  1675. if (test_bit(BT_SK_DEFER_SETUP, &bt_sk(sk)->flags))
  1676. *flags |= HCI_PROTO_DEFER;
  1677. sock_put(sk);
  1678. return HCI_LM_ACCEPT;
  1679. }
  1680. static void iso_connect_cfm(struct hci_conn *hcon, __u8 status)
  1681. {
  1682. if (hcon->type != ISO_LINK) {
  1683. if (hcon->type != LE_LINK)
  1684. return;
  1685. /* Check if LE link has failed */
  1686. if (status) {
  1687. struct hci_link *link, *t;
  1688. list_for_each_entry_safe(link, t, &hcon->link_list,
  1689. list)
  1690. iso_conn_del(link->conn, bt_to_errno(status));
  1691. return;
  1692. }
  1693. /* Create CIS if pending */
  1694. hci_le_create_cis_pending(hcon->hdev);
  1695. return;
  1696. }
  1697. BT_DBG("hcon %p bdaddr %pMR status %d", hcon, &hcon->dst, status);
  1698. /* Similar to the success case, if HCI_CONN_BIG_SYNC_FAILED or
  1699. * HCI_CONN_PA_SYNC_FAILED is set, queue the failed connection
  1700. * into the accept queue of the listening socket and wake up
  1701. * userspace, to inform the user about the event.
  1702. */
  1703. if (!status || test_bit(HCI_CONN_BIG_SYNC_FAILED, &hcon->flags) ||
  1704. test_bit(HCI_CONN_PA_SYNC_FAILED, &hcon->flags)) {
  1705. struct iso_conn *conn;
  1706. conn = iso_conn_add(hcon);
  1707. if (conn)
  1708. iso_conn_ready(conn);
  1709. } else {
  1710. iso_conn_del(hcon, bt_to_errno(status));
  1711. }
  1712. }
  1713. static void iso_disconn_cfm(struct hci_conn *hcon, __u8 reason)
  1714. {
  1715. if (hcon->type != ISO_LINK)
  1716. return;
  1717. BT_DBG("hcon %p reason %d", hcon, reason);
  1718. iso_conn_del(hcon, bt_to_errno(reason));
  1719. }
  1720. void iso_recv(struct hci_conn *hcon, struct sk_buff *skb, u16 flags)
  1721. {
  1722. struct iso_conn *conn = hcon->iso_data;
  1723. __u16 pb, ts, len;
  1724. if (!conn)
  1725. goto drop;
  1726. pb = hci_iso_flags_pb(flags);
  1727. ts = hci_iso_flags_ts(flags);
  1728. BT_DBG("conn %p len %d pb 0x%x ts 0x%x", conn, skb->len, pb, ts);
  1729. switch (pb) {
  1730. case ISO_START:
  1731. case ISO_SINGLE:
  1732. if (conn->rx_len) {
  1733. BT_ERR("Unexpected start frame (len %d)", skb->len);
  1734. kfree_skb(conn->rx_skb);
  1735. conn->rx_skb = NULL;
  1736. conn->rx_len = 0;
  1737. }
  1738. if (ts) {
  1739. struct hci_iso_ts_data_hdr *hdr;
  1740. /* TODO: add timestamp to the packet? */
  1741. hdr = skb_pull_data(skb, HCI_ISO_TS_DATA_HDR_SIZE);
  1742. if (!hdr) {
  1743. BT_ERR("Frame is too short (len %d)", skb->len);
  1744. goto drop;
  1745. }
  1746. len = __le16_to_cpu(hdr->slen);
  1747. } else {
  1748. struct hci_iso_data_hdr *hdr;
  1749. hdr = skb_pull_data(skb, HCI_ISO_DATA_HDR_SIZE);
  1750. if (!hdr) {
  1751. BT_ERR("Frame is too short (len %d)", skb->len);
  1752. goto drop;
  1753. }
  1754. len = __le16_to_cpu(hdr->slen);
  1755. }
  1756. flags = hci_iso_data_flags(len);
  1757. len = hci_iso_data_len(len);
  1758. BT_DBG("Start: total len %d, frag len %d flags 0x%4.4x", len,
  1759. skb->len, flags);
  1760. if (len == skb->len) {
  1761. /* Complete frame received */
  1762. hci_skb_pkt_status(skb) = flags & 0x03;
  1763. iso_recv_frame(conn, skb);
  1764. return;
  1765. }
  1766. if (pb == ISO_SINGLE) {
  1767. BT_ERR("Frame malformed (len %d, expected len %d)",
  1768. skb->len, len);
  1769. goto drop;
  1770. }
  1771. if (skb->len > len) {
  1772. BT_ERR("Frame is too long (len %d, expected len %d)",
  1773. skb->len, len);
  1774. goto drop;
  1775. }
  1776. /* Allocate skb for the complete frame (with header) */
  1777. conn->rx_skb = bt_skb_alloc(len, GFP_KERNEL);
  1778. if (!conn->rx_skb)
  1779. goto drop;
  1780. hci_skb_pkt_status(conn->rx_skb) = flags & 0x03;
  1781. skb_copy_from_linear_data(skb, skb_put(conn->rx_skb, skb->len),
  1782. skb->len);
  1783. conn->rx_len = len - skb->len;
  1784. break;
  1785. case ISO_CONT:
  1786. BT_DBG("Cont: frag len %d (expecting %d)", skb->len,
  1787. conn->rx_len);
  1788. if (!conn->rx_len) {
  1789. BT_ERR("Unexpected continuation frame (len %d)",
  1790. skb->len);
  1791. goto drop;
  1792. }
  1793. if (skb->len > conn->rx_len) {
  1794. BT_ERR("Fragment is too long (len %d, expected %d)",
  1795. skb->len, conn->rx_len);
  1796. kfree_skb(conn->rx_skb);
  1797. conn->rx_skb = NULL;
  1798. conn->rx_len = 0;
  1799. goto drop;
  1800. }
  1801. skb_copy_from_linear_data(skb, skb_put(conn->rx_skb, skb->len),
  1802. skb->len);
  1803. conn->rx_len -= skb->len;
  1804. break;
  1805. case ISO_END:
  1806. skb_copy_from_linear_data(skb, skb_put(conn->rx_skb, skb->len),
  1807. skb->len);
  1808. conn->rx_len -= skb->len;
  1809. if (!conn->rx_len) {
  1810. struct sk_buff *rx_skb = conn->rx_skb;
  1811. /* Complete frame received. iso_recv_frame
  1812. * takes ownership of the skb so set the global
  1813. * rx_skb pointer to NULL first.
  1814. */
  1815. conn->rx_skb = NULL;
  1816. iso_recv_frame(conn, rx_skb);
  1817. }
  1818. break;
  1819. }
  1820. drop:
  1821. kfree_skb(skb);
  1822. }
  1823. static struct hci_cb iso_cb = {
  1824. .name = "ISO",
  1825. .connect_cfm = iso_connect_cfm,
  1826. .disconn_cfm = iso_disconn_cfm,
  1827. };
  1828. static int iso_debugfs_show(struct seq_file *f, void *p)
  1829. {
  1830. struct sock *sk;
  1831. read_lock(&iso_sk_list.lock);
  1832. sk_for_each(sk, &iso_sk_list.head) {
  1833. seq_printf(f, "%pMR %pMR %d\n", &iso_pi(sk)->src,
  1834. &iso_pi(sk)->dst, sk->sk_state);
  1835. }
  1836. read_unlock(&iso_sk_list.lock);
  1837. return 0;
  1838. }
  1839. DEFINE_SHOW_ATTRIBUTE(iso_debugfs);
  1840. static struct dentry *iso_debugfs;
  1841. static const struct proto_ops iso_sock_ops = {
  1842. .family = PF_BLUETOOTH,
  1843. .owner = THIS_MODULE,
  1844. .release = iso_sock_release,
  1845. .bind = iso_sock_bind,
  1846. .connect = iso_sock_connect,
  1847. .listen = iso_sock_listen,
  1848. .accept = iso_sock_accept,
  1849. .getname = iso_sock_getname,
  1850. .sendmsg = iso_sock_sendmsg,
  1851. .recvmsg = iso_sock_recvmsg,
  1852. .poll = bt_sock_poll,
  1853. .ioctl = bt_sock_ioctl,
  1854. .mmap = sock_no_mmap,
  1855. .socketpair = sock_no_socketpair,
  1856. .shutdown = iso_sock_shutdown,
  1857. .setsockopt = iso_sock_setsockopt,
  1858. .getsockopt = iso_sock_getsockopt
  1859. };
  1860. static const struct net_proto_family iso_sock_family_ops = {
  1861. .family = PF_BLUETOOTH,
  1862. .owner = THIS_MODULE,
  1863. .create = iso_sock_create,
  1864. };
  1865. static bool iso_inited;
  1866. bool iso_enabled(void)
  1867. {
  1868. return iso_inited;
  1869. }
  1870. int iso_init(void)
  1871. {
  1872. int err;
  1873. BUILD_BUG_ON(sizeof(struct sockaddr_iso) > sizeof(struct sockaddr));
  1874. if (iso_inited)
  1875. return -EALREADY;
  1876. err = proto_register(&iso_proto, 0);
  1877. if (err < 0)
  1878. return err;
  1879. err = bt_sock_register(BTPROTO_ISO, &iso_sock_family_ops);
  1880. if (err < 0) {
  1881. BT_ERR("ISO socket registration failed");
  1882. goto error;
  1883. }
  1884. err = bt_procfs_init(&init_net, "iso", &iso_sk_list, NULL);
  1885. if (err < 0) {
  1886. BT_ERR("Failed to create ISO proc file");
  1887. bt_sock_unregister(BTPROTO_ISO);
  1888. goto error;
  1889. }
  1890. BT_INFO("ISO socket layer initialized");
  1891. hci_register_cb(&iso_cb);
  1892. if (!IS_ERR_OR_NULL(bt_debugfs))
  1893. iso_debugfs = debugfs_create_file("iso", 0444, bt_debugfs,
  1894. NULL, &iso_debugfs_fops);
  1895. iso_inited = true;
  1896. return 0;
  1897. error:
  1898. proto_unregister(&iso_proto);
  1899. return err;
  1900. }
  1901. int iso_exit(void)
  1902. {
  1903. if (!iso_inited)
  1904. return -EALREADY;
  1905. bt_procfs_cleanup(&init_net, "iso");
  1906. debugfs_remove(iso_debugfs);
  1907. iso_debugfs = NULL;
  1908. hci_unregister_cb(&iso_cb);
  1909. bt_sock_unregister(BTPROTO_ISO);
  1910. proto_unregister(&iso_proto);
  1911. iso_inited = false;
  1912. return 0;
  1913. }