avctp.c 49 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996997998999100010011002100310041005100610071008100910101011101210131014101510161017101810191020102110221023102410251026102710281029103010311032103310341035103610371038103910401041104210431044104510461047104810491050105110521053105410551056105710581059106010611062106310641065106610671068106910701071107210731074107510761077107810791080108110821083108410851086108710881089109010911092109310941095109610971098109911001101110211031104110511061107110811091110111111121113111411151116111711181119112011211122112311241125112611271128112911301131113211331134113511361137113811391140114111421143114411451146114711481149115011511152115311541155115611571158115911601161116211631164116511661167116811691170117111721173117411751176117711781179118011811182118311841185118611871188118911901191119211931194119511961197119811991200120112021203120412051206120712081209121012111212121312141215121612171218121912201221122212231224122512261227122812291230123112321233123412351236123712381239124012411242124312441245124612471248124912501251125212531254125512561257125812591260126112621263126412651266126712681269127012711272127312741275127612771278127912801281128212831284128512861287128812891290129112921293129412951296129712981299130013011302130313041305130613071308130913101311131213131314131513161317131813191320132113221323132413251326132713281329133013311332133313341335133613371338133913401341134213431344134513461347134813491350135113521353135413551356135713581359136013611362136313641365136613671368136913701371137213731374137513761377137813791380138113821383138413851386138713881389139013911392139313941395139613971398139914001401140214031404140514061407140814091410141114121413141414151416141714181419142014211422142314241425142614271428142914301431143214331434143514361437143814391440144114421443144414451446144714481449145014511452145314541455145614571458145914601461146214631464146514661467146814691470147114721473147414751476147714781479148014811482148314841485148614871488148914901491149214931494149514961497149814991500150115021503150415051506150715081509151015111512151315141515151615171518151915201521152215231524152515261527152815291530153115321533153415351536153715381539154015411542154315441545154615471548154915501551155215531554155515561557155815591560156115621563156415651566156715681569157015711572157315741575157615771578157915801581158215831584158515861587158815891590159115921593159415951596159715981599160016011602160316041605160616071608160916101611161216131614161516161617161816191620162116221623162416251626162716281629163016311632163316341635163616371638163916401641164216431644164516461647164816491650165116521653165416551656165716581659166016611662166316641665166616671668166916701671167216731674167516761677167816791680168116821683168416851686168716881689169016911692169316941695169616971698169917001701170217031704170517061707170817091710171117121713171417151716171717181719172017211722172317241725172617271728172917301731173217331734173517361737173817391740174117421743174417451746174717481749175017511752175317541755175617571758175917601761176217631764176517661767176817691770177117721773177417751776177717781779178017811782178317841785178617871788178917901791179217931794179517961797179817991800180118021803180418051806180718081809181018111812181318141815181618171818181918201821182218231824182518261827182818291830183118321833183418351836183718381839184018411842184318441845184618471848184918501851185218531854185518561857185818591860186118621863186418651866186718681869187018711872187318741875187618771878187918801881188218831884188518861887188818891890189118921893189418951896189718981899190019011902190319041905190619071908190919101911191219131914191519161917191819191920192119221923192419251926192719281929193019311932193319341935193619371938193919401941194219431944194519461947194819491950195119521953195419551956195719581959196019611962196319641965196619671968196919701971197219731974197519761977197819791980198119821983198419851986198719881989199019911992199319941995199619971998199920002001200220032004200520062007200820092010201120122013201420152016201720182019202020212022202320242025202620272028202920302031203220332034203520362037203820392040204120422043204420452046204720482049205020512052205320542055205620572058205920602061206220632064206520662067206820692070207120722073207420752076207720782079208020812082208320842085208620872088208920902091209220932094209520962097209820992100210121022103210421052106210721082109211021112112211321142115211621172118211921202121212221232124212521262127212821292130213121322133213421352136213721382139214021412142214321442145214621472148214921502151215221532154215521562157215821592160216121622163216421652166216721682169217021712172217321742175217621772178217921802181218221832184218521862187218821892190219121922193219421952196219721982199220022012202220322042205220622072208220922102211221222132214221522162217221822192220222122222223222422252226222722282229223022312232223322342235223622372238
  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. *
  4. * BlueZ - Bluetooth protocol stack for Linux
  5. *
  6. * Copyright (C) 2006-2010 Nokia Corporation
  7. * Copyright (C) 2004-2010 Marcel Holtmann <marcel@holtmann.org>
  8. * Copyright (C) 2011 Texas Instruments, Inc.
  9. *
  10. *
  11. */
  12. #ifdef HAVE_CONFIG_H
  13. #include <config.h>
  14. #endif
  15. #include <stdlib.h>
  16. #include <stdint.h>
  17. #include <stdbool.h>
  18. #include <errno.h>
  19. #include <unistd.h>
  20. #include <assert.h>
  21. #include <signal.h>
  22. #include <sys/types.h>
  23. #include <sys/stat.h>
  24. #include <fcntl.h>
  25. #include <netinet/in.h>
  26. #include <glib.h>
  27. #include "lib/bluetooth.h"
  28. #include "lib/sdp.h"
  29. #include "lib/l2cap.h"
  30. #include "lib/uuid.h"
  31. #include "btio/btio.h"
  32. #include "src/adapter.h"
  33. #include "src/device.h"
  34. #include "src/log.h"
  35. #include "src/error.h"
  36. #include "src/uinput.h"
  37. #include "src/shared/timeout.h"
  38. #include "avctp.h"
  39. #include "avrcp.h"
  40. /* AV/C Panel 1.23, page 76:
  41. * command with the pressed value is valid for two seconds
  42. */
  43. #define AVC_PRESS_TIMEOUT 2
  44. /* We need to send hold event before AVC_PRESS time runs out */
  45. #define AVC_HOLD_TIMEOUT 1
  46. #define CONTROL_TIMEOUT 10
  47. #define BROWSING_TIMEOUT 10
  48. #define PASSTHROUGH_QUEUE 0
  49. #define CONTROL_QUEUE 1
  50. #define QUIRK_NO_RELEASE 1 << 0
  51. /* Message types */
  52. #define AVCTP_COMMAND 0
  53. #define AVCTP_RESPONSE 1
  54. /* Packet types */
  55. #define AVCTP_PACKET_SINGLE 0
  56. #define AVCTP_PACKET_START 1
  57. #define AVCTP_PACKET_CONTINUE 2
  58. #define AVCTP_PACKET_END 3
  59. #if __BYTE_ORDER == __LITTLE_ENDIAN
  60. struct avctp_header {
  61. uint8_t ipid:1;
  62. uint8_t cr:1;
  63. uint8_t packet_type:2;
  64. uint8_t transaction:4;
  65. uint16_t pid;
  66. } __attribute__ ((packed));
  67. #define AVCTP_HEADER_LENGTH 3
  68. struct avc_header {
  69. uint8_t code:4;
  70. uint8_t _hdr0:4;
  71. uint8_t subunit_id:3;
  72. uint8_t subunit_type:5;
  73. uint8_t opcode;
  74. } __attribute__ ((packed));
  75. #elif __BYTE_ORDER == __BIG_ENDIAN
  76. struct avctp_header {
  77. uint8_t transaction:4;
  78. uint8_t packet_type:2;
  79. uint8_t cr:1;
  80. uint8_t ipid:1;
  81. uint16_t pid;
  82. } __attribute__ ((packed));
  83. #define AVCTP_HEADER_LENGTH 3
  84. struct avc_header {
  85. uint8_t _hdr0:4;
  86. uint8_t code:4;
  87. uint8_t subunit_type:5;
  88. uint8_t subunit_id:3;
  89. uint8_t opcode;
  90. } __attribute__ ((packed));
  91. #else
  92. #error "Unknown byte order"
  93. #endif
  94. struct avctp_state_callback {
  95. avctp_state_cb cb;
  96. struct btd_device *dev;
  97. unsigned int id;
  98. void *user_data;
  99. };
  100. struct avctp_server {
  101. struct btd_adapter *adapter;
  102. GIOChannel *control_io;
  103. GIOChannel *browsing_io;
  104. GSList *sessions;
  105. };
  106. struct avctp_control_req {
  107. struct avctp_pending_req *p;
  108. uint8_t code;
  109. uint8_t subunit;
  110. uint8_t op;
  111. uint8_t *operands;
  112. uint16_t operand_count;
  113. avctp_rsp_cb func;
  114. void *user_data;
  115. };
  116. struct avctp_browsing_req {
  117. struct avctp_pending_req *p;
  118. uint8_t *operands;
  119. uint16_t operand_count;
  120. avctp_browsing_rsp_cb func;
  121. void *user_data;
  122. };
  123. typedef int (*avctp_process_cb) (void *data);
  124. struct avctp_pending_req {
  125. struct avctp_queue *queue;
  126. uint8_t transaction;
  127. unsigned int timeout;
  128. bool retry;
  129. int err;
  130. avctp_process_cb process;
  131. void *data;
  132. GDestroyNotify destroy;
  133. };
  134. struct avctp_queue {
  135. struct avctp_channel *chan;
  136. struct avctp_pending_req *p;
  137. GQueue *queue;
  138. guint process_id;
  139. };
  140. struct avctp_channel {
  141. struct avctp *session;
  142. GIOChannel *io;
  143. uint8_t transaction;
  144. guint watch;
  145. uint16_t imtu;
  146. uint16_t omtu;
  147. uint8_t *buffer;
  148. GSList *handlers;
  149. GSList *queues;
  150. GSList *processed;
  151. GDestroyNotify destroy;
  152. };
  153. struct key_pressed {
  154. uint16_t op;
  155. unsigned int timer;
  156. bool hold;
  157. };
  158. struct avctp {
  159. struct avctp_server *server;
  160. struct btd_device *device;
  161. avctp_state_t state;
  162. int uinput;
  163. guint auth_id;
  164. unsigned int passthrough_id;
  165. unsigned int unit_id;
  166. unsigned int subunit_id;
  167. struct avctp_channel *control;
  168. struct avctp_channel *browsing;
  169. struct avctp_passthrough_handler *handler;
  170. uint8_t key_quirks[256];
  171. struct key_pressed key;
  172. bool initiator;
  173. };
  174. struct avctp_passthrough_handler {
  175. avctp_passthrough_cb cb;
  176. void *user_data;
  177. unsigned int id;
  178. };
  179. struct avctp_pdu_handler {
  180. uint8_t opcode;
  181. avctp_control_pdu_cb cb;
  182. void *user_data;
  183. unsigned int id;
  184. };
  185. struct avctp_browsing_pdu_handler {
  186. avctp_browsing_pdu_cb cb;
  187. void *user_data;
  188. unsigned int id;
  189. GDestroyNotify destroy;
  190. };
  191. static struct {
  192. const char *name;
  193. uint8_t avc;
  194. uint16_t uinput;
  195. } key_map[] = {
  196. { "SELECT", AVC_SELECT, KEY_SELECT },
  197. { "UP", AVC_UP, KEY_UP },
  198. { "DOWN", AVC_DOWN, KEY_DOWN },
  199. { "LEFT", AVC_LEFT, KEY_LEFT },
  200. { "RIGHT", AVC_RIGHT, KEY_RIGHT },
  201. { "ROOT MENU", AVC_ROOT_MENU, KEY_MENU },
  202. { "CONTENTS MENU", AVC_CONTENTS_MENU, KEY_PROGRAM },
  203. { "FAVORITE MENU", AVC_FAVORITE_MENU, KEY_FAVORITES },
  204. { "EXIT", AVC_EXIT, KEY_EXIT },
  205. { "ON DEMAND MENU", AVC_ON_DEMAND_MENU, KEY_MENU },
  206. { "APPS MENU", AVC_APPS_MENU, KEY_MENU },
  207. { "0", AVC_0, KEY_0 },
  208. { "1", AVC_1, KEY_1 },
  209. { "2", AVC_2, KEY_2 },
  210. { "3", AVC_3, KEY_3 },
  211. { "4", AVC_4, KEY_4 },
  212. { "5", AVC_5, KEY_5 },
  213. { "6", AVC_6, KEY_6 },
  214. { "7", AVC_7, KEY_7 },
  215. { "8", AVC_8, KEY_8 },
  216. { "9", AVC_9, KEY_9 },
  217. { "DOT", AVC_DOT, KEY_DOT },
  218. { "ENTER", AVC_ENTER, KEY_ENTER },
  219. { "CHANNEL UP", AVC_CHANNEL_UP, KEY_CHANNELUP },
  220. { "CHANNEL DOWN", AVC_CHANNEL_DOWN, KEY_CHANNELDOWN },
  221. { "CHANNEL PREVIOUS", AVC_CHANNEL_PREVIOUS, KEY_LAST },
  222. { "INPUT SELECT", AVC_INPUT_SELECT, KEY_CONFIG },
  223. { "INFO", AVC_INFO, KEY_INFO },
  224. { "HELP", AVC_HELP, KEY_HELP },
  225. { "POWER", AVC_POWER, KEY_POWER2 },
  226. { "VOLUME UP", AVC_VOLUME_UP, KEY_VOLUMEUP },
  227. { "VOLUME DOWN", AVC_VOLUME_DOWN, KEY_VOLUMEDOWN },
  228. { "MUTE", AVC_MUTE, KEY_MUTE },
  229. { "PLAY", AVC_PLAY, KEY_PLAYCD },
  230. { "STOP", AVC_STOP, KEY_STOPCD },
  231. { "PAUSE", AVC_PAUSE, KEY_PAUSECD },
  232. { "FORWARD", AVC_FORWARD, KEY_NEXTSONG },
  233. { "BACKWARD", AVC_BACKWARD, KEY_PREVIOUSSONG },
  234. { "RECORD", AVC_RECORD, KEY_RECORD },
  235. { "REWIND", AVC_REWIND, KEY_REWIND },
  236. { "FAST FORWARD", AVC_FAST_FORWARD, KEY_FASTFORWARD },
  237. { "LIST", AVC_LIST, KEY_LIST },
  238. { "F1", AVC_F1, KEY_F1 },
  239. { "F2", AVC_F2, KEY_F2 },
  240. { "F3", AVC_F3, KEY_F3 },
  241. { "F4", AVC_F4, KEY_F4 },
  242. { "F5", AVC_F5, KEY_F5 },
  243. { "F6", AVC_F6, KEY_F6 },
  244. { "F7", AVC_F7, KEY_F7 },
  245. { "F8", AVC_F8, KEY_F8 },
  246. { "F9", AVC_F9, KEY_F9 },
  247. { "RED", AVC_RED, KEY_RED },
  248. { "GREEN", AVC_GREEN, KEY_GREEN },
  249. { "BLUE", AVC_BLUE, KEY_BLUE },
  250. { "YELLOW", AVC_YELLOW, KEY_YELLOW },
  251. { NULL }
  252. };
  253. static GSList *callbacks = NULL;
  254. static GSList *servers = NULL;
  255. static void auth_cb(DBusError *derr, void *user_data);
  256. static gboolean process_queue(gpointer user_data);
  257. static gboolean avctp_passthrough_rsp(struct avctp *session, uint8_t code,
  258. uint8_t subunit, uint8_t transaction,
  259. uint8_t *operands, size_t operand_count,
  260. void *user_data);
  261. static int send_event(int fd, uint16_t type, uint16_t code, int32_t value)
  262. {
  263. struct uinput_event event;
  264. memset(&event, 0, sizeof(event));
  265. event.type = type;
  266. event.code = code;
  267. event.value = value;
  268. return write(fd, &event, sizeof(event));
  269. }
  270. static void send_key(int fd, uint16_t key, int pressed)
  271. {
  272. if (fd < 0)
  273. return;
  274. send_event(fd, EV_KEY, key, pressed);
  275. send_event(fd, EV_SYN, SYN_REPORT, 0);
  276. }
  277. static bool auto_release(gpointer user_data)
  278. {
  279. struct avctp *session = user_data;
  280. session->key.timer = 0;
  281. DBG("AV/C: key press timeout");
  282. send_key(session->uinput, session->key.op, 0);
  283. return FALSE;
  284. }
  285. static void handle_press(struct avctp *session, uint16_t op)
  286. {
  287. if (session->key.timer > 0) {
  288. g_source_remove(session->key.timer);
  289. /* Only auto release if keys are different */
  290. if (session->key.op == op)
  291. goto done;
  292. send_key(session->uinput, session->key.op, 0);
  293. }
  294. session->key.op = op;
  295. send_key(session->uinput, op, 1);
  296. done:
  297. session->key.timer = timeout_add_seconds(AVC_PRESS_TIMEOUT,
  298. auto_release, session,
  299. NULL);
  300. }
  301. static void handle_release(struct avctp *session, uint16_t op)
  302. {
  303. if (session->key.timer > 0) {
  304. timeout_remove(session->key.timer);
  305. session->key.timer = 0;
  306. }
  307. send_key(session->uinput, op, 0);
  308. }
  309. static size_t handle_panel_passthrough(struct avctp *session,
  310. uint8_t transaction, uint8_t *code,
  311. uint8_t *subunit, uint8_t *operands,
  312. size_t operand_count, void *user_data)
  313. {
  314. struct avctp_passthrough_handler *handler = session->handler;
  315. const char *status;
  316. int pressed, i;
  317. if (*code != AVC_CTYPE_CONTROL || *subunit != AVC_SUBUNIT_PANEL) {
  318. *code = AVC_CTYPE_REJECTED;
  319. return operand_count;
  320. }
  321. if (operand_count == 0)
  322. goto done;
  323. if (operands[0] & 0x80) {
  324. status = "released";
  325. pressed = 0;
  326. } else {
  327. status = "pressed";
  328. pressed = 1;
  329. }
  330. if (session->key.timer == 0 && handler != NULL) {
  331. if (handler->cb(session, operands[0] & 0x7F,
  332. pressed, handler->user_data))
  333. goto done;
  334. }
  335. for (i = 0; key_map[i].name != NULL; i++) {
  336. uint8_t key_quirks;
  337. if ((operands[0] & 0x7F) != key_map[i].avc)
  338. continue;
  339. DBG("AV/C: %s %s", key_map[i].name, status);
  340. key_quirks = session->key_quirks[key_map[i].avc];
  341. if (key_quirks & QUIRK_NO_RELEASE) {
  342. if (!pressed) {
  343. DBG("AV/C: Ignoring release");
  344. break;
  345. }
  346. DBG("AV/C: treating key press as press + release");
  347. send_key(session->uinput, key_map[i].uinput, 1);
  348. send_key(session->uinput, key_map[i].uinput, 0);
  349. break;
  350. }
  351. if (pressed)
  352. handle_press(session, key_map[i].uinput);
  353. else
  354. handle_release(session, key_map[i].uinput);
  355. break;
  356. }
  357. if (key_map[i].name == NULL) {
  358. DBG("AV/C: unknown button 0x%02X %s",
  359. operands[0] & 0x7F, status);
  360. *code = AVC_CTYPE_NOT_IMPLEMENTED;
  361. return operand_count;
  362. }
  363. done:
  364. *code = AVC_CTYPE_ACCEPTED;
  365. return operand_count;
  366. }
  367. static size_t handle_unit_info(struct avctp *session,
  368. uint8_t transaction, uint8_t *code,
  369. uint8_t *subunit, uint8_t *operands,
  370. size_t operand_count, void *user_data)
  371. {
  372. if (*code != AVC_CTYPE_STATUS) {
  373. *code = AVC_CTYPE_REJECTED;
  374. return 0;
  375. }
  376. *code = AVC_CTYPE_STABLE;
  377. /* The first operand should be 0x07 for the UNITINFO response.
  378. * Neither AVRCP (section 22.1, page 117) nor AVC Digital
  379. * Interface Command Set (section 9.2.1, page 45) specs
  380. * explain this value but both use it */
  381. if (operand_count >= 1)
  382. operands[0] = 0x07;
  383. if (operand_count >= 2)
  384. operands[1] = AVC_SUBUNIT_PANEL << 3;
  385. DBG("reply to AVC_OP_UNITINFO");
  386. return operand_count;
  387. }
  388. static size_t handle_subunit_info(struct avctp *session,
  389. uint8_t transaction, uint8_t *code,
  390. uint8_t *subunit, uint8_t *operands,
  391. size_t operand_count, void *user_data)
  392. {
  393. if (*code != AVC_CTYPE_STATUS) {
  394. *code = AVC_CTYPE_REJECTED;
  395. return 0;
  396. }
  397. *code = AVC_CTYPE_STABLE;
  398. /* The first operand should be 0x07 for the UNITINFO response.
  399. * Neither AVRCP (section 22.1, page 117) nor AVC Digital
  400. * Interface Command Set (section 9.2.1, page 45) specs
  401. * explain this value but both use it */
  402. if (operand_count >= 2)
  403. operands[1] = AVC_SUBUNIT_PANEL << 3;
  404. DBG("reply to AVC_OP_SUBUNITINFO");
  405. return operand_count;
  406. }
  407. static struct avctp_pdu_handler *find_handler(GSList *list, uint8_t opcode)
  408. {
  409. for (; list; list = list->next) {
  410. struct avctp_pdu_handler *handler = list->data;
  411. if (handler->opcode == opcode)
  412. return handler;
  413. }
  414. return NULL;
  415. }
  416. static void pending_destroy(gpointer data, gpointer user_data)
  417. {
  418. struct avctp_pending_req *req = data;
  419. if (req->destroy)
  420. req->destroy(req->data);
  421. if (req->timeout > 0)
  422. timeout_remove(req->timeout);
  423. g_free(req);
  424. }
  425. static void avctp_queue_destroy(void *data)
  426. {
  427. struct avctp_queue *queue = data;
  428. if (queue->process_id > 0)
  429. g_source_remove(queue->process_id);
  430. if (queue->p)
  431. pending_destroy(queue->p, NULL);
  432. g_queue_foreach(queue->queue, pending_destroy, NULL);
  433. g_queue_free(queue->queue);
  434. g_free(queue);
  435. }
  436. static void avctp_channel_destroy(struct avctp_channel *chan)
  437. {
  438. g_io_channel_shutdown(chan->io, TRUE, NULL);
  439. g_io_channel_unref(chan->io);
  440. if (chan->watch)
  441. g_source_remove(chan->watch);
  442. if (chan->destroy)
  443. chan->destroy(chan);
  444. g_free(chan->buffer);
  445. g_slist_foreach(chan->processed, pending_destroy, NULL);
  446. g_slist_free(chan->processed);
  447. g_slist_free_full(chan->queues, avctp_queue_destroy);
  448. g_slist_free_full(chan->handlers, g_free);
  449. g_free(chan);
  450. }
  451. static void avctp_disconnected(struct avctp *session)
  452. {
  453. struct avctp_server *server;
  454. if (!session)
  455. return;
  456. if (session->browsing)
  457. avctp_channel_destroy(session->browsing);
  458. if (session->control)
  459. avctp_channel_destroy(session->control);
  460. if (session->auth_id != 0) {
  461. btd_cancel_authorization(session->auth_id);
  462. session->auth_id = 0;
  463. }
  464. if (session->key.timer > 0)
  465. timeout_remove(session->key.timer);
  466. if (session->uinput >= 0) {
  467. char address[18];
  468. ba2str(device_get_address(session->device), address);
  469. DBG("AVCTP: closing uinput for %s", address);
  470. ioctl(session->uinput, UI_DEV_DESTROY);
  471. close(session->uinput);
  472. session->uinput = -1;
  473. }
  474. server = session->server;
  475. server->sessions = g_slist_remove(server->sessions, session);
  476. btd_device_unref(session->device);
  477. g_free(session);
  478. }
  479. static void avctp_set_state(struct avctp *session, avctp_state_t new_state,
  480. int err)
  481. {
  482. GSList *l;
  483. avctp_state_t old_state = session->state;
  484. session->state = new_state;
  485. for (l = callbacks; l != NULL; l = l->next) {
  486. struct avctp_state_callback *cb = l->data;
  487. if (cb->dev && cb->dev != session->device)
  488. continue;
  489. cb->cb(session->device, old_state, new_state, err,
  490. cb->user_data);
  491. }
  492. switch (new_state) {
  493. case AVCTP_STATE_DISCONNECTED:
  494. DBG("AVCTP Disconnected");
  495. avctp_disconnected(session);
  496. break;
  497. case AVCTP_STATE_CONNECTING:
  498. DBG("AVCTP Connecting");
  499. break;
  500. case AVCTP_STATE_CONNECTED:
  501. DBG("AVCTP Connected");
  502. break;
  503. case AVCTP_STATE_BROWSING_CONNECTING:
  504. DBG("AVCTP Browsing Connecting");
  505. break;
  506. case AVCTP_STATE_BROWSING_CONNECTED:
  507. DBG("AVCTP Browsing Connected");
  508. break;
  509. default:
  510. error("Invalid AVCTP state %d", new_state);
  511. return;
  512. }
  513. }
  514. static uint8_t chan_get_transaction(struct avctp_channel *chan)
  515. {
  516. GSList *l, *tmp;
  517. uint8_t transaction;
  518. if (!chan->processed)
  519. goto done;
  520. tmp = g_slist_copy(chan->processed);
  521. /* Find first unused transaction id */
  522. for (l = tmp; l; l = g_slist_next(l)) {
  523. struct avctp_pending_req *req = l->data;
  524. if (req->transaction == chan->transaction) {
  525. chan->transaction++;
  526. chan->transaction %= 16;
  527. tmp = g_slist_delete_link(tmp, l);
  528. l = tmp;
  529. }
  530. }
  531. g_slist_free(tmp);
  532. done:
  533. transaction = chan->transaction;
  534. chan->transaction++;
  535. chan->transaction %= 16;
  536. return transaction;
  537. }
  538. static int avctp_send(struct avctp_channel *control, uint8_t transaction,
  539. uint8_t cr, uint8_t code,
  540. uint8_t subunit, uint8_t opcode,
  541. uint8_t *operands, size_t operand_count)
  542. {
  543. struct avctp_header *avctp;
  544. struct avc_header *avc;
  545. struct msghdr msg;
  546. struct iovec iov[2];
  547. int sk, err = 0;
  548. iov[0].iov_base = control->buffer;
  549. iov[0].iov_len = sizeof(*avctp) + sizeof(*avc);
  550. iov[1].iov_base = operands;
  551. iov[1].iov_len = operand_count;
  552. if (control->omtu < (iov[0].iov_len + iov[1].iov_len))
  553. return -EOVERFLOW;
  554. sk = g_io_channel_unix_get_fd(control->io);
  555. memset(control->buffer, 0, iov[0].iov_len);
  556. avctp = (void *) control->buffer;
  557. avc = (void *) avctp + sizeof(*avctp);
  558. if (transaction > 16)
  559. transaction = chan_get_transaction(control);
  560. avctp->transaction = transaction;
  561. avctp->packet_type = AVCTP_PACKET_SINGLE;
  562. avctp->cr = cr;
  563. avctp->pid = htons(AV_REMOTE_SVCLASS_ID);
  564. avc->code = code;
  565. avc->subunit_type = subunit;
  566. avc->opcode = opcode;
  567. memset(&msg, 0, sizeof(msg));
  568. msg.msg_iov = iov;
  569. msg.msg_iovlen = 2;
  570. if (sendmsg(sk, &msg, 0) < 0)
  571. err = -errno;
  572. return err;
  573. }
  574. static int avctp_browsing_send(struct avctp_queue *queue,
  575. uint8_t transaction, uint8_t cr,
  576. uint8_t *operands, size_t operand_count)
  577. {
  578. struct avctp_channel *browsing = queue->chan;
  579. struct avctp_header *avctp;
  580. struct msghdr msg;
  581. struct iovec iov[2];
  582. int sk, err = 0;
  583. iov[0].iov_base = browsing->buffer;
  584. iov[0].iov_len = sizeof(*avctp);
  585. iov[1].iov_base = operands;
  586. iov[1].iov_len = operand_count;
  587. if (browsing->omtu < (iov[0].iov_len + iov[1].iov_len))
  588. return -EOVERFLOW;
  589. sk = g_io_channel_unix_get_fd(browsing->io);
  590. memset(browsing->buffer, 0, iov[0].iov_len);
  591. avctp = (void *) browsing->buffer;
  592. avctp->transaction = transaction;
  593. avctp->packet_type = AVCTP_PACKET_SINGLE;
  594. avctp->cr = cr;
  595. avctp->pid = htons(AV_REMOTE_SVCLASS_ID);
  596. memset(&msg, 0, sizeof(msg));
  597. msg.msg_iov = iov;
  598. msg.msg_iovlen = 2;
  599. if (sendmsg(sk, &msg, 0) < 0)
  600. err = -errno;
  601. return err;
  602. }
  603. static void control_req_destroy(void *data)
  604. {
  605. struct avctp_control_req *req = data;
  606. struct avctp_pending_req *p = req->p;
  607. struct avctp *session = p->queue->chan->session;
  608. if (p->err == 0 || req->func == NULL)
  609. goto done;
  610. req->func(session, AVC_CTYPE_REJECTED, req->subunit, p->transaction,
  611. NULL, 0, req->user_data);
  612. done:
  613. g_free(req->operands);
  614. g_free(req);
  615. }
  616. static void browsing_req_destroy(void *data)
  617. {
  618. struct avctp_browsing_req *req = data;
  619. struct avctp_pending_req *p = req->p;
  620. struct avctp *session = p->queue->chan->session;
  621. if (p->err == 0 || req->func == NULL)
  622. goto done;
  623. req->func(session, NULL, 0, req->user_data);
  624. done:
  625. g_free(req->operands);
  626. g_free(req);
  627. }
  628. static bool req_timeout(gpointer user_data)
  629. {
  630. struct avctp_queue *queue = user_data;
  631. struct avctp_pending_req *p = queue->p;
  632. DBG("transaction %u retry %s", p->transaction, p->retry ? "true" :
  633. "false");
  634. p->timeout = 0;
  635. if (p->retry) {
  636. p->process(p->data);
  637. return FALSE;
  638. }
  639. p->err = -ETIMEDOUT;
  640. pending_destroy(p, NULL);
  641. queue->p = NULL;
  642. if (queue->process_id == 0)
  643. queue->process_id = g_idle_add(process_queue, queue);
  644. return FALSE;
  645. }
  646. static int process_passthrough(void *data)
  647. {
  648. struct avctp_control_req *req = data;
  649. struct avctp_pending_req *p = req->p;
  650. int ret;
  651. ret = avctp_send(p->queue->chan, p->transaction, AVCTP_COMMAND,
  652. req->code, req->subunit, req->op, req->operands,
  653. req->operand_count);
  654. if (ret < 0)
  655. return ret;
  656. p->timeout = timeout_add_seconds(AVC_PRESS_TIMEOUT, req_timeout,
  657. p->queue, NULL);
  658. return 0;
  659. }
  660. static int process_control(void *data)
  661. {
  662. struct avctp_control_req *req = data;
  663. struct avctp_pending_req *p = req->p;
  664. int ret;
  665. ret = avctp_send(p->queue->chan, p->transaction, AVCTP_COMMAND,
  666. req->code, req->subunit, req->op, req->operands,
  667. req->operand_count);
  668. if (ret < 0)
  669. return ret;
  670. p->retry = !p->retry;
  671. p->timeout = timeout_add_seconds(CONTROL_TIMEOUT, req_timeout,
  672. p->queue, NULL);
  673. return 0;
  674. }
  675. static int process_browsing(void *data)
  676. {
  677. struct avctp_browsing_req *req = data;
  678. struct avctp_pending_req *p = req->p;
  679. int ret;
  680. ret = avctp_browsing_send(p->queue, p->transaction, AVCTP_COMMAND,
  681. req->operands, req->operand_count);
  682. if (ret < 0)
  683. return ret;
  684. p->timeout = timeout_add_seconds(BROWSING_TIMEOUT, req_timeout,
  685. p->queue, NULL);
  686. return 0;
  687. }
  688. static gboolean process_queue(void *user_data)
  689. {
  690. struct avctp_queue *queue = user_data;
  691. struct avctp_pending_req *p = queue->p;
  692. queue->process_id = 0;
  693. if (p != NULL)
  694. return FALSE;
  695. while ((p = g_queue_pop_head(queue->queue))) {
  696. if (p->process(p->data) == 0)
  697. break;
  698. pending_destroy(p, NULL);
  699. }
  700. if (p == NULL)
  701. return FALSE;
  702. queue->p = p;
  703. return FALSE;
  704. }
  705. static void control_response(struct avctp_channel *control,
  706. struct avctp_header *avctp,
  707. struct avc_header *avc,
  708. uint8_t *operands,
  709. size_t operand_count)
  710. {
  711. struct avctp_pending_req *p;
  712. struct avctp_control_req *req;
  713. struct avctp_queue *queue;
  714. GSList *l;
  715. if (avc->opcode == AVC_OP_PASSTHROUGH)
  716. queue = g_slist_nth_data(control->queues, PASSTHROUGH_QUEUE);
  717. else
  718. queue = g_slist_nth_data(control->queues, CONTROL_QUEUE);
  719. p = queue->p;
  720. if (p && p->transaction == avctp->transaction) {
  721. req = p->data;
  722. if (req->op != avc->opcode)
  723. goto done;
  724. control->processed = g_slist_prepend(control->processed, p);
  725. if (p->timeout > 0) {
  726. timeout_remove(p->timeout);
  727. p->timeout = 0;
  728. }
  729. queue->p = NULL;
  730. if (queue->process_id == 0)
  731. queue->process_id = g_idle_add(process_queue, queue);
  732. }
  733. done:
  734. for (l = control->processed; l; l = l->next) {
  735. p = l->data;
  736. req = p->data;
  737. if (p->transaction != avctp->transaction)
  738. continue;
  739. if (req->op != avc->opcode)
  740. continue;
  741. if (req->func && req->func(control->session, avc->code,
  742. avc->subunit_type, p->transaction,
  743. operands, operand_count,
  744. req->user_data))
  745. return;
  746. control->processed = g_slist_remove(control->processed, p);
  747. pending_destroy(p, NULL);
  748. return;
  749. }
  750. }
  751. static void browsing_response(struct avctp_channel *browsing,
  752. struct avctp_header *avctp,
  753. uint8_t *operands,
  754. size_t operand_count)
  755. {
  756. struct avctp_pending_req *p;
  757. struct avctp_browsing_req *req;
  758. struct avctp_queue *queue;
  759. GSList *l;
  760. queue = g_slist_nth_data(browsing->queues, 0);
  761. p = queue->p;
  762. if (p && p->transaction == avctp->transaction) {
  763. browsing->processed = g_slist_prepend(browsing->processed, p);
  764. if (p->timeout > 0) {
  765. timeout_remove(p->timeout);
  766. p->timeout = 0;
  767. }
  768. queue->p = NULL;
  769. if (queue->process_id == 0)
  770. queue->process_id = g_idle_add(process_queue, queue);
  771. }
  772. for (l = browsing->processed; l; l = l->next) {
  773. p = l->data;
  774. req = p->data;
  775. if (p->transaction != avctp->transaction)
  776. continue;
  777. if (req->func && req->func(browsing->session, operands,
  778. operand_count, req->user_data))
  779. return;
  780. browsing->processed = g_slist_remove(browsing->processed, p);
  781. pending_destroy(p, NULL);
  782. return;
  783. }
  784. }
  785. static gboolean session_browsing_cb(GIOChannel *chan, GIOCondition cond,
  786. gpointer data)
  787. {
  788. struct avctp *session = data;
  789. struct avctp_channel *browsing = session->browsing;
  790. uint8_t *buf = browsing->buffer;
  791. uint8_t *operands;
  792. struct avctp_header *avctp;
  793. int sock, ret, packet_size, operand_count;
  794. struct avctp_browsing_pdu_handler *handler;
  795. if (cond & (G_IO_ERR | G_IO_HUP | G_IO_NVAL))
  796. goto failed;
  797. sock = g_io_channel_unix_get_fd(chan);
  798. ret = read(sock, buf, browsing->imtu);
  799. if (ret <= 0)
  800. goto failed;
  801. avctp = (struct avctp_header *) buf;
  802. if (avctp->packet_type != AVCTP_PACKET_SINGLE)
  803. goto failed;
  804. operands = buf + AVCTP_HEADER_LENGTH;
  805. ret -= AVCTP_HEADER_LENGTH;
  806. operand_count = ret;
  807. if (avctp->cr == AVCTP_RESPONSE) {
  808. browsing_response(browsing, avctp, operands, operand_count);
  809. return TRUE;
  810. }
  811. packet_size = AVCTP_HEADER_LENGTH;
  812. avctp->cr = AVCTP_RESPONSE;
  813. handler = g_slist_nth_data(browsing->handlers, 0);
  814. if (handler == NULL) {
  815. DBG("handler not found");
  816. packet_size += avrcp_browsing_general_reject(operands);
  817. goto send;
  818. }
  819. packet_size += handler->cb(session, avctp->transaction,
  820. operands, operand_count,
  821. handler->user_data);
  822. send:
  823. if (packet_size != 0) {
  824. ret = write(sock, buf, packet_size);
  825. if (ret != packet_size)
  826. goto failed;
  827. }
  828. return TRUE;
  829. failed:
  830. DBG("AVCTP Browsing: disconnected");
  831. avctp_set_state(session, AVCTP_STATE_CONNECTED, 0);
  832. if (session->browsing) {
  833. avctp_channel_destroy(session->browsing);
  834. session->browsing = NULL;
  835. }
  836. return FALSE;
  837. }
  838. static gboolean session_cb(GIOChannel *chan, GIOCondition cond, gpointer data)
  839. {
  840. struct avctp *session = data;
  841. struct avctp_channel *control = session->control;
  842. uint8_t *buf = control->buffer;
  843. uint8_t *operands, code, subunit;
  844. struct avctp_header *avctp;
  845. struct avc_header *avc;
  846. int ret, packet_size, operand_count, sock;
  847. struct avctp_pdu_handler *handler;
  848. if (cond & (G_IO_ERR | G_IO_HUP | G_IO_NVAL))
  849. goto failed;
  850. sock = g_io_channel_unix_get_fd(chan);
  851. ret = read(sock, buf, control->imtu);
  852. if (ret <= 0)
  853. goto failed;
  854. if (ret < AVCTP_HEADER_LENGTH) {
  855. error("Too small AVCTP packet");
  856. goto failed;
  857. }
  858. avctp = (struct avctp_header *) buf;
  859. ret -= AVCTP_HEADER_LENGTH;
  860. if (ret < AVC_HEADER_LENGTH) {
  861. error("Too small AVC packet");
  862. goto failed;
  863. }
  864. avc = (struct avc_header *) (buf + AVCTP_HEADER_LENGTH);
  865. ret -= AVC_HEADER_LENGTH;
  866. operands = (uint8_t *) avc + AVC_HEADER_LENGTH;
  867. operand_count = ret;
  868. if (avctp->cr == AVCTP_RESPONSE) {
  869. control_response(control, avctp, avc, operands, operand_count);
  870. return TRUE;
  871. }
  872. packet_size = AVCTP_HEADER_LENGTH + AVC_HEADER_LENGTH;
  873. avctp->cr = AVCTP_RESPONSE;
  874. if (avctp->packet_type != AVCTP_PACKET_SINGLE) {
  875. avc->code = AVC_CTYPE_NOT_IMPLEMENTED;
  876. goto done;
  877. }
  878. if (avctp->pid != htons(AV_REMOTE_SVCLASS_ID)) {
  879. avctp->ipid = 1;
  880. packet_size = AVCTP_HEADER_LENGTH;
  881. goto done;
  882. }
  883. handler = find_handler(control->handlers, avc->opcode);
  884. if (!handler) {
  885. DBG("handler not found for 0x%02x", avc->opcode);
  886. packet_size += avrcp_handle_vendor_reject(&code, operands);
  887. avc->code = code;
  888. goto done;
  889. }
  890. code = avc->code;
  891. subunit = avc->subunit_type;
  892. packet_size += handler->cb(session, avctp->transaction, &code,
  893. &subunit, operands, operand_count,
  894. handler->user_data);
  895. avc->code = code;
  896. avc->subunit_type = subunit;
  897. done:
  898. ret = write(sock, buf, packet_size);
  899. if (ret != packet_size)
  900. goto failed;
  901. return TRUE;
  902. failed:
  903. DBG("AVCTP session %p got disconnected", session);
  904. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  905. return FALSE;
  906. }
  907. static int uinput_create(struct btd_device *device, const char *name,
  908. const char *suffix)
  909. {
  910. struct uinput_dev dev;
  911. int fd, err, i;
  912. char src[18];
  913. fd = open("/dev/uinput", O_RDWR);
  914. if (fd < 0) {
  915. fd = open("/dev/input/uinput", O_RDWR);
  916. if (fd < 0) {
  917. fd = open("/dev/misc/uinput", O_RDWR);
  918. if (fd < 0) {
  919. err = -errno;
  920. error("Can't open input device: %s (%d)",
  921. strerror(-err), -err);
  922. return err;
  923. }
  924. }
  925. }
  926. memset(&dev, 0, sizeof(dev));
  927. if (name) {
  928. strncpy(dev.name, name, UINPUT_MAX_NAME_SIZE);
  929. dev.name[UINPUT_MAX_NAME_SIZE - 1] = '\0';
  930. }
  931. if (suffix) {
  932. int len, slen;
  933. len = strlen(dev.name);
  934. slen = strlen(suffix);
  935. /* If name + suffix don't fit, truncate the name, then add the
  936. * suffix.
  937. */
  938. if (len + slen < UINPUT_MAX_NAME_SIZE - 1) {
  939. strcpy(dev.name + len, suffix);
  940. } else {
  941. len = UINPUT_MAX_NAME_SIZE - slen - 1;
  942. strncpy(dev.name + len, suffix, slen);
  943. dev.name[UINPUT_MAX_NAME_SIZE - 1] = '\0';
  944. }
  945. }
  946. dev.id.bustype = BUS_BLUETOOTH;
  947. dev.id.vendor = btd_device_get_vendor(device);
  948. dev.id.product = btd_device_get_product(device);
  949. dev.id.version = btd_device_get_version(device);
  950. if (write(fd, &dev, sizeof(dev)) < 0) {
  951. err = -errno;
  952. error("Can't write device information: %s (%d)",
  953. strerror(-err), -err);
  954. close(fd);
  955. return err;
  956. }
  957. ioctl(fd, UI_SET_EVBIT, EV_KEY);
  958. ioctl(fd, UI_SET_EVBIT, EV_REL);
  959. ioctl(fd, UI_SET_EVBIT, EV_REP);
  960. ioctl(fd, UI_SET_EVBIT, EV_SYN);
  961. ba2strlc(btd_adapter_get_address(device_get_adapter(device)), src);
  962. ioctl(fd, UI_SET_PHYS, src);
  963. for (i = 0; key_map[i].name != NULL; i++)
  964. ioctl(fd, UI_SET_KEYBIT, key_map[i].uinput);
  965. if (ioctl(fd, UI_DEV_CREATE, NULL) < 0) {
  966. err = -errno;
  967. error("Can't create uinput device: %s (%d)",
  968. strerror(-err), -err);
  969. close(fd);
  970. return err;
  971. }
  972. send_event(fd, EV_REP, REP_DELAY, 300);
  973. return fd;
  974. }
  975. static void init_uinput(struct avctp *session)
  976. {
  977. char name[UINPUT_MAX_NAME_SIZE];
  978. device_get_name(session->device, name, sizeof(name));
  979. if (g_str_equal(name, "Nokia CK-20W")) {
  980. session->key_quirks[AVC_FORWARD] |= QUIRK_NO_RELEASE;
  981. session->key_quirks[AVC_BACKWARD] |= QUIRK_NO_RELEASE;
  982. session->key_quirks[AVC_PLAY] |= QUIRK_NO_RELEASE;
  983. session->key_quirks[AVC_PAUSE] |= QUIRK_NO_RELEASE;
  984. }
  985. session->uinput = uinput_create(session->device, name, " (AVRCP)");
  986. if (session->uinput < 0)
  987. error("AVRCP: failed to init uinput for %s", name);
  988. else
  989. DBG("AVRCP: uinput initialized for %s", name);
  990. }
  991. static struct avctp_queue *avctp_queue_create(struct avctp_channel *chan)
  992. {
  993. struct avctp_queue *queue;
  994. queue = g_new0(struct avctp_queue, 1);
  995. queue->chan = chan;
  996. queue->queue = g_queue_new();
  997. return queue;
  998. }
  999. static struct avctp_channel *avctp_channel_create(struct avctp *session,
  1000. GIOChannel *io,
  1001. int queues,
  1002. GDestroyNotify destroy)
  1003. {
  1004. struct avctp_channel *chan;
  1005. chan = g_new0(struct avctp_channel, 1);
  1006. chan->session = session;
  1007. chan->io = g_io_channel_ref(io);
  1008. chan->destroy = destroy;
  1009. while (queues--) {
  1010. struct avctp_queue *queue;
  1011. queue = avctp_queue_create(chan);
  1012. chan->queues = g_slist_prepend(chan->queues, queue);
  1013. }
  1014. return chan;
  1015. }
  1016. static void handler_free(void *data)
  1017. {
  1018. struct avctp_browsing_pdu_handler *handler = data;
  1019. if (handler->destroy)
  1020. handler->destroy(handler->user_data);
  1021. g_free(data);
  1022. }
  1023. static void avctp_destroy_browsing(void *data)
  1024. {
  1025. struct avctp_channel *chan = data;
  1026. g_slist_free_full(chan->handlers, handler_free);
  1027. chan->handlers = NULL;
  1028. }
  1029. static void avctp_connect_browsing_cb(GIOChannel *chan, GError *err,
  1030. gpointer data)
  1031. {
  1032. struct avctp *session = data;
  1033. struct avctp_channel *browsing = session->browsing;
  1034. struct avctp_queue *queue;
  1035. char address[18];
  1036. uint16_t imtu, omtu;
  1037. GError *gerr = NULL;
  1038. if (err) {
  1039. error("Browsing: %s", err->message);
  1040. goto fail;
  1041. }
  1042. bt_io_get(chan, &gerr,
  1043. BT_IO_OPT_DEST, &address,
  1044. BT_IO_OPT_IMTU, &imtu,
  1045. BT_IO_OPT_OMTU, &omtu,
  1046. BT_IO_OPT_INVALID);
  1047. if (gerr) {
  1048. error("%s", gerr->message);
  1049. g_io_channel_shutdown(chan, TRUE, NULL);
  1050. g_io_channel_unref(chan);
  1051. g_error_free(gerr);
  1052. goto fail;
  1053. }
  1054. DBG("AVCTP Browsing: connected to %s", address);
  1055. if (browsing == NULL) {
  1056. browsing = avctp_channel_create(session, chan, 1,
  1057. avctp_destroy_browsing);
  1058. session->browsing = browsing;
  1059. }
  1060. browsing->imtu = imtu;
  1061. browsing->omtu = omtu;
  1062. browsing->buffer = g_malloc0(MAX(imtu, omtu));
  1063. browsing->watch = g_io_add_watch(session->browsing->io,
  1064. G_IO_IN | G_IO_ERR | G_IO_HUP | G_IO_NVAL,
  1065. (GIOFunc) session_browsing_cb, session);
  1066. avctp_set_state(session, AVCTP_STATE_BROWSING_CONNECTED, 0);
  1067. /* Process any request that was pending the connection to complete */
  1068. queue = g_slist_nth_data(browsing->queues, 0);
  1069. if (queue->process_id == 0 && !g_queue_is_empty(queue->queue))
  1070. queue->process_id = g_idle_add(process_queue, queue);
  1071. return;
  1072. fail:
  1073. avctp_set_state(session, AVCTP_STATE_CONNECTED, 0);
  1074. if (session->browsing) {
  1075. avctp_channel_destroy(session->browsing);
  1076. session->browsing = NULL;
  1077. }
  1078. }
  1079. static void avctp_connect_cb(GIOChannel *chan, GError *err, gpointer data)
  1080. {
  1081. struct avctp *session = data;
  1082. char address[18];
  1083. uint16_t imtu, omtu;
  1084. GError *gerr = NULL;
  1085. if (err) {
  1086. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  1087. error("%s", err->message);
  1088. return;
  1089. }
  1090. bt_io_get(chan, &gerr,
  1091. BT_IO_OPT_DEST, &address,
  1092. BT_IO_OPT_IMTU, &imtu,
  1093. BT_IO_OPT_OMTU, &omtu,
  1094. BT_IO_OPT_INVALID);
  1095. if (gerr) {
  1096. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  1097. error("%s", gerr->message);
  1098. g_error_free(gerr);
  1099. return;
  1100. }
  1101. DBG("AVCTP: connected to %s", address);
  1102. if (session->control == NULL)
  1103. session->control = avctp_channel_create(session, chan, 2, NULL);
  1104. session->control->imtu = imtu;
  1105. session->control->omtu = omtu;
  1106. session->control->buffer = g_malloc0(MAX(imtu, omtu));
  1107. session->control->watch = g_io_add_watch(session->control->io,
  1108. G_IO_IN | G_IO_ERR | G_IO_HUP | G_IO_NVAL,
  1109. (GIOFunc) session_cb, session);
  1110. session->passthrough_id = avctp_register_pdu_handler(session,
  1111. AVC_OP_PASSTHROUGH,
  1112. handle_panel_passthrough,
  1113. NULL);
  1114. session->unit_id = avctp_register_pdu_handler(session,
  1115. AVC_OP_UNITINFO,
  1116. handle_unit_info,
  1117. NULL);
  1118. session->subunit_id = avctp_register_pdu_handler(session,
  1119. AVC_OP_SUBUNITINFO,
  1120. handle_subunit_info,
  1121. NULL);
  1122. init_uinput(session);
  1123. avctp_set_state(session, AVCTP_STATE_CONNECTED, 0);
  1124. }
  1125. static void auth_cb(DBusError *derr, void *user_data)
  1126. {
  1127. struct avctp *session = user_data;
  1128. GError *err = NULL;
  1129. session->auth_id = 0;
  1130. if (session->control->watch > 0) {
  1131. g_source_remove(session->control->watch);
  1132. session->control->watch = 0;
  1133. }
  1134. if (derr && dbus_error_is_set(derr)) {
  1135. error("Access denied: %s", derr->message);
  1136. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  1137. return;
  1138. }
  1139. if (!bt_io_accept(session->control->io, avctp_connect_cb, session,
  1140. NULL, &err)) {
  1141. error("bt_io_accept: %s", err->message);
  1142. g_error_free(err);
  1143. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  1144. }
  1145. }
  1146. static struct avctp_server *find_server(GSList *list, struct btd_adapter *a)
  1147. {
  1148. for (; list; list = list->next) {
  1149. struct avctp_server *server = list->data;
  1150. if (server->adapter == a)
  1151. return server;
  1152. }
  1153. return NULL;
  1154. }
  1155. static struct avctp *find_session(GSList *list, struct btd_device *device)
  1156. {
  1157. for (; list != NULL; list = g_slist_next(list)) {
  1158. struct avctp *s = list->data;
  1159. if (s->device == device)
  1160. return s;
  1161. }
  1162. return NULL;
  1163. }
  1164. static struct avctp *avctp_get_internal(struct btd_device *device)
  1165. {
  1166. struct avctp_server *server;
  1167. struct avctp *session;
  1168. server = find_server(servers, device_get_adapter(device));
  1169. if (server == NULL)
  1170. return NULL;
  1171. session = find_session(server->sessions, device);
  1172. if (session)
  1173. return session;
  1174. session = g_new0(struct avctp, 1);
  1175. session->server = server;
  1176. session->device = btd_device_ref(device);
  1177. session->state = AVCTP_STATE_DISCONNECTED;
  1178. session->uinput = -1;
  1179. session->key.op = AVC_INVALID;
  1180. server->sessions = g_slist_append(server->sessions, session);
  1181. return session;
  1182. }
  1183. static void avctp_control_confirm(struct avctp *session, GIOChannel *chan,
  1184. struct btd_device *dev)
  1185. {
  1186. const bdaddr_t *src;
  1187. const bdaddr_t *dst;
  1188. if (session->control != NULL) {
  1189. error("Control: Refusing unexpected connect");
  1190. g_io_channel_shutdown(chan, TRUE, NULL);
  1191. /*
  1192. * Close AVCTP channel if remote tried connect
  1193. * at the same time
  1194. * AVRCP SPEC V1.5 4.1.1 Connection Establishment
  1195. */
  1196. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EAGAIN);
  1197. return;
  1198. }
  1199. avctp_set_state(session, AVCTP_STATE_CONNECTING, 0);
  1200. session->control = avctp_channel_create(session, chan, 2, NULL);
  1201. src = btd_adapter_get_address(device_get_adapter(dev));
  1202. dst = device_get_address(dev);
  1203. session->auth_id = btd_request_authorization(src, dst,
  1204. AVRCP_REMOTE_UUID,
  1205. auth_cb, session);
  1206. if (session->auth_id == 0)
  1207. goto drop;
  1208. session->control->watch = g_io_add_watch(chan, G_IO_ERR | G_IO_HUP |
  1209. G_IO_NVAL, session_cb, session);
  1210. return;
  1211. drop:
  1212. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  1213. }
  1214. static void avctp_browsing_confirm(struct avctp *session, GIOChannel *chan,
  1215. struct btd_device *dev)
  1216. {
  1217. GError *err = NULL;
  1218. if (session->control == NULL || session->browsing != NULL) {
  1219. error("Browsing: Refusing unexpected connect");
  1220. g_io_channel_shutdown(chan, TRUE, NULL);
  1221. return;
  1222. }
  1223. if (bt_io_accept(chan, avctp_connect_browsing_cb, session, NULL,
  1224. &err)) {
  1225. avctp_set_state(session, AVCTP_STATE_BROWSING_CONNECTING, 0);
  1226. session->browsing = avctp_channel_create(session, chan, 1,
  1227. avctp_destroy_browsing);
  1228. return;
  1229. }
  1230. error("Browsing: %s", err->message);
  1231. g_error_free(err);
  1232. return;
  1233. }
  1234. static void avctp_confirm_cb(GIOChannel *chan, gpointer data)
  1235. {
  1236. struct avctp *session;
  1237. char address[18];
  1238. bdaddr_t src, dst;
  1239. GError *err = NULL;
  1240. uint16_t psm;
  1241. struct btd_device *device;
  1242. bt_io_get(chan, &err,
  1243. BT_IO_OPT_SOURCE_BDADDR, &src,
  1244. BT_IO_OPT_DEST_BDADDR, &dst,
  1245. BT_IO_OPT_DEST, address,
  1246. BT_IO_OPT_PSM, &psm,
  1247. BT_IO_OPT_INVALID);
  1248. if (err) {
  1249. error("%s", err->message);
  1250. g_error_free(err);
  1251. g_io_channel_shutdown(chan, TRUE, NULL);
  1252. return;
  1253. }
  1254. DBG("AVCTP: incoming connect from %s", address);
  1255. device = btd_adapter_find_device(adapter_find(&src), &dst,
  1256. BDADDR_BREDR);
  1257. if (!device)
  1258. return;
  1259. session = avctp_get_internal(device);
  1260. if (session == NULL)
  1261. return;
  1262. if (btd_device_get_service(device, AVRCP_REMOTE_UUID) == NULL)
  1263. btd_device_add_uuid(device, AVRCP_REMOTE_UUID);
  1264. if (btd_device_get_service(device, AVRCP_TARGET_UUID) == NULL)
  1265. btd_device_add_uuid(device, AVRCP_TARGET_UUID);
  1266. switch (psm) {
  1267. case AVCTP_CONTROL_PSM:
  1268. avctp_control_confirm(session, chan, device);
  1269. break;
  1270. case AVCTP_BROWSING_PSM:
  1271. avctp_browsing_confirm(session, chan, device);
  1272. break;
  1273. }
  1274. return;
  1275. }
  1276. static GIOChannel *avctp_server_socket(const bdaddr_t *src, gboolean central,
  1277. uint8_t mode, uint16_t psm)
  1278. {
  1279. GError *err = NULL;
  1280. GIOChannel *io;
  1281. io = bt_io_listen(NULL, avctp_confirm_cb, NULL,
  1282. NULL, &err,
  1283. BT_IO_OPT_SOURCE_BDADDR, src,
  1284. BT_IO_OPT_PSM, psm,
  1285. BT_IO_OPT_SEC_LEVEL, BT_IO_SEC_MEDIUM,
  1286. BT_IO_OPT_CENTRAL, central,
  1287. BT_IO_OPT_MODE, mode,
  1288. BT_IO_OPT_INVALID);
  1289. if (!io) {
  1290. error("%s", err->message);
  1291. g_error_free(err);
  1292. }
  1293. return io;
  1294. }
  1295. int avctp_register(struct btd_adapter *adapter, bool central, bool *browsing)
  1296. {
  1297. struct avctp_server *server;
  1298. const bdaddr_t *src = btd_adapter_get_address(adapter);
  1299. server = g_new0(struct avctp_server, 1);
  1300. server->control_io = avctp_server_socket(src, central, BT_IO_MODE_BASIC,
  1301. AVCTP_CONTROL_PSM);
  1302. if (!server->control_io) {
  1303. g_free(server);
  1304. return -1;
  1305. }
  1306. server->browsing_io = avctp_server_socket(src, central, BT_IO_MODE_ERTM,
  1307. AVCTP_BROWSING_PSM);
  1308. if (browsing)
  1309. *browsing = server->browsing_io ? true : false;
  1310. server->adapter = btd_adapter_ref(adapter);
  1311. servers = g_slist_append(servers, server);
  1312. return 0;
  1313. }
  1314. void avctp_unregister(struct btd_adapter *adapter)
  1315. {
  1316. struct avctp_server *server;
  1317. server = find_server(servers, adapter);
  1318. if (!server)
  1319. return;
  1320. while (server->sessions)
  1321. avctp_disconnected(server->sessions->data);
  1322. servers = g_slist_remove(servers, server);
  1323. if (server->browsing_io) {
  1324. g_io_channel_shutdown(server->browsing_io, TRUE, NULL);
  1325. g_io_channel_unref(server->browsing_io);
  1326. server->browsing_io = NULL;
  1327. }
  1328. g_io_channel_shutdown(server->control_io, TRUE, NULL);
  1329. g_io_channel_unref(server->control_io);
  1330. btd_adapter_unref(server->adapter);
  1331. g_free(server);
  1332. }
  1333. static struct avctp_pending_req *pending_create(struct avctp_queue *queue,
  1334. avctp_process_cb process,
  1335. void *data,
  1336. GDestroyNotify destroy)
  1337. {
  1338. struct avctp_pending_req *p;
  1339. p = g_new0(struct avctp_pending_req, 1);
  1340. p->queue = queue;
  1341. p->transaction = chan_get_transaction(queue->chan);
  1342. p->process = process;
  1343. p->data = data;
  1344. p->destroy = destroy;
  1345. return p;
  1346. }
  1347. static int avctp_send_req(struct avctp *session, uint8_t code,
  1348. uint8_t subunit, uint8_t opcode,
  1349. uint8_t *operands, size_t operand_count,
  1350. avctp_rsp_cb func, void *user_data)
  1351. {
  1352. struct avctp_channel *control = session->control;
  1353. struct avctp_queue *queue;
  1354. struct avctp_pending_req *p;
  1355. struct avctp_control_req *req;
  1356. if (control == NULL)
  1357. return -ENOTCONN;
  1358. /* If the request set a callback send it directly */
  1359. if (!func)
  1360. return avctp_send(session->control, -1, AVCTP_COMMAND,
  1361. code, subunit, opcode, operands, operand_count);
  1362. req = g_new0(struct avctp_control_req, 1);
  1363. req->code = code;
  1364. req->subunit = subunit;
  1365. req->op = opcode;
  1366. req->func = func;
  1367. req->operands = g_memdup(operands, operand_count);
  1368. req->operand_count = operand_count;
  1369. req->user_data = user_data;
  1370. if (opcode == AVC_OP_PASSTHROUGH) {
  1371. queue = g_slist_nth_data(control->queues, PASSTHROUGH_QUEUE);
  1372. p = pending_create(queue, process_passthrough, req,
  1373. control_req_destroy);
  1374. } else {
  1375. queue = g_slist_nth_data(control->queues, CONTROL_QUEUE);
  1376. p = pending_create(queue, process_control, req,
  1377. control_req_destroy);
  1378. }
  1379. req->p = p;
  1380. g_queue_push_tail(queue->queue, p);
  1381. if (queue->process_id == 0)
  1382. queue->process_id = g_idle_add(process_queue, queue);
  1383. return 0;
  1384. }
  1385. int avctp_send_browsing_req(struct avctp *session,
  1386. uint8_t *operands, size_t operand_count,
  1387. avctp_browsing_rsp_cb func, void *user_data)
  1388. {
  1389. struct avctp_channel *browsing = session->browsing;
  1390. struct avctp_queue *queue;
  1391. struct avctp_pending_req *p;
  1392. struct avctp_browsing_req *req;
  1393. if (browsing == NULL)
  1394. return -ENOTCONN;
  1395. req = g_new0(struct avctp_browsing_req, 1);
  1396. req->func = func;
  1397. req->operands = g_memdup(operands, operand_count);
  1398. req->operand_count = operand_count;
  1399. req->user_data = user_data;
  1400. queue = g_slist_nth_data(browsing->queues, 0);
  1401. p = pending_create(queue, process_browsing, req, browsing_req_destroy);
  1402. req->p = p;
  1403. g_queue_push_tail(queue->queue, p);
  1404. /* Connection did not complete, delay process of the request */
  1405. if (browsing->watch == 0)
  1406. return 0;
  1407. if (queue->process_id == 0)
  1408. queue->process_id = g_idle_add(process_queue, queue);
  1409. return 0;
  1410. }
  1411. static const char *op2str(uint8_t op)
  1412. {
  1413. int i;
  1414. for (i = 0; key_map[i].name != NULL; i++) {
  1415. if ((op & 0x7F) == key_map[i].avc)
  1416. return key_map[i].name;
  1417. }
  1418. return "UNKNOWN";
  1419. }
  1420. static int avctp_passthrough_press(struct avctp *session, uint8_t op)
  1421. {
  1422. uint8_t operands[2];
  1423. DBG("%s", op2str(op));
  1424. /* Button pressed */
  1425. operands[0] = op & 0x7f;
  1426. operands[1] = 0;
  1427. return avctp_send_req(session, AVC_CTYPE_CONTROL,
  1428. AVC_SUBUNIT_PANEL, AVC_OP_PASSTHROUGH,
  1429. operands, sizeof(operands),
  1430. avctp_passthrough_rsp, NULL);
  1431. }
  1432. static int avctp_passthrough_release(struct avctp *session, uint8_t op)
  1433. {
  1434. uint8_t operands[2];
  1435. DBG("%s", op2str(op));
  1436. /* Button released */
  1437. operands[0] = op | 0x80;
  1438. operands[1] = 0;
  1439. return avctp_send_req(session, AVC_CTYPE_CONTROL,
  1440. AVC_SUBUNIT_PANEL, AVC_OP_PASSTHROUGH,
  1441. operands, sizeof(operands),
  1442. NULL, NULL);
  1443. }
  1444. static bool repeat_timeout(gpointer user_data)
  1445. {
  1446. struct avctp *session = user_data;
  1447. avctp_passthrough_press(session, session->key.op);
  1448. return TRUE;
  1449. }
  1450. static int release_pressed(struct avctp *session)
  1451. {
  1452. int ret = avctp_passthrough_release(session, session->key.op);
  1453. if (session->key.timer > 0)
  1454. timeout_remove(session->key.timer);
  1455. session->key.timer = 0;
  1456. session->key.op = AVC_INVALID;
  1457. session->key.hold = false;
  1458. return ret;
  1459. }
  1460. static bool hold_pressed(struct avctp *session, uint8_t op)
  1461. {
  1462. if (session->key.op != op || !session->key.hold)
  1463. return FALSE;
  1464. if (session->key.timer == 0)
  1465. session->key.timer = timeout_add_seconds(AVC_HOLD_TIMEOUT,
  1466. repeat_timeout,
  1467. session, NULL);
  1468. return TRUE;
  1469. }
  1470. static gboolean avctp_passthrough_rsp(struct avctp *session, uint8_t code,
  1471. uint8_t subunit, uint8_t transaction,
  1472. uint8_t *operands, size_t operand_count,
  1473. void *user_data)
  1474. {
  1475. uint8_t op = operands[0];
  1476. if (code != AVC_CTYPE_ACCEPTED)
  1477. return FALSE;
  1478. if (hold_pressed(session, op))
  1479. return FALSE;
  1480. if (op == session->key.op)
  1481. release_pressed(session);
  1482. return FALSE;
  1483. }
  1484. int avctp_send_passthrough(struct avctp *session, uint8_t op, bool hold)
  1485. {
  1486. if (op & 0x80)
  1487. return -EINVAL;
  1488. /* Release previously unreleased key */
  1489. if (session->key.op != AVC_INVALID && session->key.op != op)
  1490. release_pressed(session);
  1491. session->key.op = op;
  1492. session->key.hold = hold;
  1493. return avctp_passthrough_press(session, op);
  1494. }
  1495. int avctp_send_release_passthrough(struct avctp *session)
  1496. {
  1497. if (session->key.op != AVC_INVALID)
  1498. return release_pressed(session);
  1499. return 0;
  1500. }
  1501. int avctp_send_vendordep(struct avctp *session, uint8_t transaction,
  1502. uint8_t code, uint8_t subunit,
  1503. uint8_t *operands, size_t operand_count)
  1504. {
  1505. struct avctp_channel *control = session->control;
  1506. if (control == NULL)
  1507. return -ENOTCONN;
  1508. return avctp_send(control, transaction, AVCTP_RESPONSE, code, subunit,
  1509. AVC_OP_VENDORDEP, operands, operand_count);
  1510. }
  1511. int avctp_send_vendordep_req(struct avctp *session, uint8_t code,
  1512. uint8_t subunit, uint8_t *operands,
  1513. size_t operand_count,
  1514. avctp_rsp_cb func, void *user_data)
  1515. {
  1516. return avctp_send_req(session, code, subunit, AVC_OP_VENDORDEP,
  1517. operands, operand_count,
  1518. func, user_data);
  1519. }
  1520. unsigned int avctp_add_state_cb(struct btd_device *dev, avctp_state_cb cb,
  1521. void *user_data)
  1522. {
  1523. struct avctp_state_callback *state_cb;
  1524. static unsigned int id = 0;
  1525. state_cb = g_new(struct avctp_state_callback, 1);
  1526. state_cb->cb = cb;
  1527. state_cb->dev = dev;
  1528. state_cb->id = ++id;
  1529. state_cb->user_data = user_data;
  1530. callbacks = g_slist_append(callbacks, state_cb);
  1531. return state_cb->id;
  1532. }
  1533. gboolean avctp_remove_state_cb(unsigned int id)
  1534. {
  1535. GSList *l;
  1536. for (l = callbacks; l != NULL; l = l->next) {
  1537. struct avctp_state_callback *cb = l->data;
  1538. if (cb && cb->id == id) {
  1539. callbacks = g_slist_remove(callbacks, cb);
  1540. g_free(cb);
  1541. return TRUE;
  1542. }
  1543. }
  1544. return FALSE;
  1545. }
  1546. unsigned int avctp_register_passthrough_handler(struct avctp *session,
  1547. avctp_passthrough_cb cb,
  1548. void *user_data)
  1549. {
  1550. struct avctp_channel *control = session->control;
  1551. struct avctp_passthrough_handler *handler;
  1552. static unsigned int id = 0;
  1553. if (control == NULL || session->handler != NULL)
  1554. return 0;
  1555. handler = g_new(struct avctp_passthrough_handler, 1);
  1556. handler->cb = cb;
  1557. handler->user_data = user_data;
  1558. handler->id = ++id;
  1559. session->handler = handler;
  1560. return handler->id;
  1561. }
  1562. bool avctp_unregister_passthrough_handler(unsigned int id)
  1563. {
  1564. GSList *l;
  1565. for (l = servers; l; l = l->next) {
  1566. struct avctp_server *server = l->data;
  1567. GSList *s;
  1568. for (s = server->sessions; s; s = s->next) {
  1569. struct avctp *session = s->data;
  1570. if (session->handler == NULL)
  1571. continue;
  1572. if (session->handler->id == id) {
  1573. g_free(session->handler);
  1574. session->handler = NULL;
  1575. return true;
  1576. }
  1577. }
  1578. }
  1579. return false;
  1580. }
  1581. unsigned int avctp_register_pdu_handler(struct avctp *session, uint8_t opcode,
  1582. avctp_control_pdu_cb cb,
  1583. void *user_data)
  1584. {
  1585. struct avctp_channel *control = session->control;
  1586. struct avctp_pdu_handler *handler;
  1587. static unsigned int id = 0;
  1588. if (control == NULL)
  1589. return 0;
  1590. handler = find_handler(control->handlers, opcode);
  1591. if (handler)
  1592. return 0;
  1593. handler = g_new(struct avctp_pdu_handler, 1);
  1594. handler->opcode = opcode;
  1595. handler->cb = cb;
  1596. handler->user_data = user_data;
  1597. handler->id = ++id;
  1598. control->handlers = g_slist_append(control->handlers, handler);
  1599. return handler->id;
  1600. }
  1601. unsigned int avctp_register_browsing_pdu_handler(struct avctp *session,
  1602. avctp_browsing_pdu_cb cb,
  1603. void *user_data,
  1604. GDestroyNotify destroy)
  1605. {
  1606. struct avctp_channel *browsing = session->browsing;
  1607. struct avctp_browsing_pdu_handler *handler;
  1608. static unsigned int id = 0;
  1609. if (browsing == NULL)
  1610. return 0;
  1611. if (browsing->handlers != NULL)
  1612. return 0;
  1613. handler = g_new(struct avctp_browsing_pdu_handler, 1);
  1614. handler->cb = cb;
  1615. handler->user_data = user_data;
  1616. handler->id = ++id;
  1617. handler->destroy = destroy;
  1618. browsing->handlers = g_slist_append(browsing->handlers, handler);
  1619. return handler->id;
  1620. }
  1621. gboolean avctp_unregister_pdu_handler(unsigned int id)
  1622. {
  1623. GSList *l;
  1624. for (l = servers; l; l = l->next) {
  1625. struct avctp_server *server = l->data;
  1626. GSList *s;
  1627. for (s = server->sessions; s; s = s->next) {
  1628. struct avctp *session = s->data;
  1629. struct avctp_channel *control = session->control;
  1630. GSList *h;
  1631. if (control == NULL)
  1632. continue;
  1633. for (h = control->handlers; h; h = h->next) {
  1634. struct avctp_pdu_handler *handler = h->data;
  1635. if (handler->id != id)
  1636. continue;
  1637. control->handlers = g_slist_remove(
  1638. control->handlers,
  1639. handler);
  1640. g_free(handler);
  1641. return TRUE;
  1642. }
  1643. }
  1644. }
  1645. return FALSE;
  1646. }
  1647. gboolean avctp_unregister_browsing_pdu_handler(unsigned int id)
  1648. {
  1649. GSList *l;
  1650. for (l = servers; l; l = l->next) {
  1651. struct avctp_server *server = l->data;
  1652. GSList *s;
  1653. for (s = server->sessions; s; s = s->next) {
  1654. struct avctp *session = s->data;
  1655. struct avctp_channel *browsing = session->browsing;
  1656. GSList *h;
  1657. if (browsing == NULL)
  1658. continue;
  1659. for (h = browsing->handlers; h; h = h->next) {
  1660. struct avctp_browsing_pdu_handler *handler =
  1661. h->data;
  1662. if (handler->id != id)
  1663. continue;
  1664. browsing->handlers = g_slist_remove(
  1665. browsing->handlers,
  1666. handler);
  1667. g_free(handler);
  1668. return TRUE;
  1669. }
  1670. }
  1671. }
  1672. return FALSE;
  1673. }
  1674. struct avctp *avctp_connect(struct btd_device *device)
  1675. {
  1676. struct avctp *session;
  1677. GError *err = NULL;
  1678. GIOChannel *io;
  1679. const bdaddr_t *src;
  1680. session = avctp_get_internal(device);
  1681. if (!session)
  1682. return NULL;
  1683. if (session->state > AVCTP_STATE_DISCONNECTED)
  1684. return session;
  1685. avctp_set_state(session, AVCTP_STATE_CONNECTING, 0);
  1686. src = btd_adapter_get_address(session->server->adapter);
  1687. io = bt_io_connect(avctp_connect_cb, session, NULL, &err,
  1688. BT_IO_OPT_SOURCE_BDADDR, src,
  1689. BT_IO_OPT_DEST_BDADDR,
  1690. device_get_address(session->device),
  1691. BT_IO_OPT_SEC_LEVEL, BT_IO_SEC_MEDIUM,
  1692. BT_IO_OPT_PSM, AVCTP_CONTROL_PSM,
  1693. BT_IO_OPT_INVALID);
  1694. if (err) {
  1695. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  1696. error("%s", err->message);
  1697. g_error_free(err);
  1698. return NULL;
  1699. }
  1700. session->control = avctp_channel_create(session, io, 2, NULL);
  1701. session->initiator = true;
  1702. g_io_channel_unref(io);
  1703. return session;
  1704. }
  1705. int avctp_connect_browsing(struct avctp *session)
  1706. {
  1707. const bdaddr_t *src;
  1708. GError *err = NULL;
  1709. GIOChannel *io;
  1710. if (session->state != AVCTP_STATE_CONNECTED)
  1711. return -ENOTCONN;
  1712. if (session->browsing != NULL)
  1713. return 0;
  1714. avctp_set_state(session, AVCTP_STATE_BROWSING_CONNECTING, 0);
  1715. src = btd_adapter_get_address(session->server->adapter);
  1716. io = bt_io_connect(avctp_connect_browsing_cb, session, NULL, &err,
  1717. BT_IO_OPT_SOURCE_BDADDR, src,
  1718. BT_IO_OPT_DEST_BDADDR,
  1719. device_get_address(session->device),
  1720. BT_IO_OPT_SEC_LEVEL, BT_IO_SEC_MEDIUM,
  1721. BT_IO_OPT_PSM, AVCTP_BROWSING_PSM,
  1722. BT_IO_OPT_MODE, BT_IO_MODE_ERTM,
  1723. BT_IO_OPT_INVALID);
  1724. if (err) {
  1725. error("%s", err->message);
  1726. g_error_free(err);
  1727. return -EIO;
  1728. }
  1729. session->browsing = avctp_channel_create(session, io, 1,
  1730. avctp_destroy_browsing);
  1731. g_io_channel_unref(io);
  1732. return 0;
  1733. }
  1734. void avctp_disconnect(struct avctp *session)
  1735. {
  1736. if (session->state == AVCTP_STATE_DISCONNECTED)
  1737. return;
  1738. avctp_set_state(session, AVCTP_STATE_DISCONNECTED, -EIO);
  1739. }
  1740. struct avctp *avctp_get(struct btd_device *device)
  1741. {
  1742. return avctp_get_internal(device);
  1743. }
  1744. bool avctp_is_initiator(struct avctp *session)
  1745. {
  1746. return session->initiator;
  1747. }
  1748. bool avctp_supports_avc(uint8_t avc)
  1749. {
  1750. int i;
  1751. for (i = 0; key_map[i].name != NULL; i++) {
  1752. if (key_map[i].avc == avc)
  1753. return true;
  1754. }
  1755. return false;
  1756. }