rpc.c 15 KB

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  1. #include "rpc_i.h"
  2. #include <pb.h>
  3. #include <pb_decode.h>
  4. #include <pb_encode.h>
  5. #include <storage.pb.h>
  6. #include <flipper.pb.h>
  7. #include <portmacro.h>
  8. #include <furi.h>
  9. #include <cli/cli.h>
  10. #include <stdint.h>
  11. #include <stdio.h>
  12. #include <m-dict.h>
  13. #define TAG "RpcSrv"
  14. typedef enum {
  15. RpcEvtNewData = (1 << 0),
  16. RpcEvtDisconnect = (1 << 1),
  17. } RpcEvtFlags;
  18. #define RPC_ALL_EVENTS (RpcEvtNewData | RpcEvtDisconnect)
  19. DICT_DEF2(RpcHandlerDict, pb_size_t, M_DEFAULT_OPLIST, RpcHandler, M_POD_OPLIST)
  20. typedef struct {
  21. RpcSystemAlloc alloc;
  22. RpcSystemFree free;
  23. void* context;
  24. } RpcSystemCallbacks;
  25. static RpcSystemCallbacks rpc_systems[] = {
  26. {
  27. .alloc = rpc_system_system_alloc,
  28. .free = NULL,
  29. },
  30. {
  31. .alloc = rpc_system_storage_alloc,
  32. .free = rpc_system_storage_free,
  33. },
  34. {
  35. .alloc = rpc_system_app_alloc,
  36. .free = rpc_system_app_free,
  37. },
  38. {
  39. .alloc = rpc_system_gui_alloc,
  40. .free = rpc_system_gui_free,
  41. },
  42. {
  43. .alloc = rpc_system_gpio_alloc,
  44. .free = NULL,
  45. },
  46. {
  47. .alloc = rpc_system_property_alloc,
  48. .free = NULL,
  49. },
  50. {
  51. .alloc = rpc_desktop_alloc,
  52. .free = rpc_desktop_free,
  53. },
  54. };
  55. struct RpcSession {
  56. Rpc* rpc;
  57. FuriThread* thread;
  58. RpcHandlerDict_t handlers;
  59. FuriStreamBuffer* stream;
  60. PB_Main* decoded_message;
  61. bool terminate;
  62. void** system_contexts;
  63. bool decode_error;
  64. FuriMutex* callbacks_mutex;
  65. RpcSendBytesCallback send_bytes_callback;
  66. RpcBufferIsEmptyCallback buffer_is_empty_callback;
  67. RpcSessionClosedCallback closed_callback;
  68. RpcSessionTerminatedCallback terminated_callback;
  69. RpcOwner owner;
  70. void* context;
  71. };
  72. struct Rpc {
  73. FuriMutex* busy_mutex;
  74. };
  75. RpcOwner rpc_session_get_owner(RpcSession* session) {
  76. furi_assert(session);
  77. return session->owner;
  78. }
  79. static void rpc_close_session_process(const PB_Main* request, void* context) {
  80. furi_assert(request);
  81. furi_assert(context);
  82. RpcSession* session = (RpcSession*)context;
  83. rpc_send_and_release_empty(session, request->command_id, PB_CommandStatus_OK);
  84. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  85. if(session->closed_callback) {
  86. session->closed_callback(session->context);
  87. } else {
  88. FURI_LOG_W(TAG, "Session stop isn't processed by transport layer");
  89. }
  90. furi_mutex_release(session->callbacks_mutex);
  91. }
  92. void rpc_session_set_context(RpcSession* session, void* context) {
  93. furi_assert(session);
  94. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  95. session->context = context;
  96. furi_mutex_release(session->callbacks_mutex);
  97. }
  98. void rpc_session_set_close_callback(RpcSession* session, RpcSessionClosedCallback callback) {
  99. furi_assert(session);
  100. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  101. session->closed_callback = callback;
  102. furi_mutex_release(session->callbacks_mutex);
  103. }
  104. void rpc_session_set_send_bytes_callback(RpcSession* session, RpcSendBytesCallback callback) {
  105. furi_assert(session);
  106. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  107. session->send_bytes_callback = callback;
  108. furi_mutex_release(session->callbacks_mutex);
  109. }
  110. void rpc_session_set_buffer_is_empty_callback(
  111. RpcSession* session,
  112. RpcBufferIsEmptyCallback callback) {
  113. furi_assert(session);
  114. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  115. session->buffer_is_empty_callback = callback;
  116. furi_mutex_release(session->callbacks_mutex);
  117. }
  118. void rpc_session_set_terminated_callback(
  119. RpcSession* session,
  120. RpcSessionTerminatedCallback callback) {
  121. furi_assert(session);
  122. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  123. session->terminated_callback = callback;
  124. furi_mutex_release(session->callbacks_mutex);
  125. }
  126. /* Doesn't forbid using rpc_feed_bytes() after session close - it's safe.
  127. * Because any bytes received in buffer will be flushed before next session.
  128. * If bytes get into stream buffer before it's get epmtified and this
  129. * command is gets processed - it's safe either. But case of it is quite
  130. * odd: client sends close request and sends command after.
  131. */
  132. size_t
  133. rpc_session_feed(RpcSession* session, uint8_t* encoded_bytes, size_t size, TickType_t timeout) {
  134. furi_assert(session);
  135. furi_assert(encoded_bytes);
  136. if(!size) return 0;
  137. size_t bytes_sent = furi_stream_buffer_send(session->stream, encoded_bytes, size, timeout);
  138. furi_thread_flags_set(furi_thread_get_id(session->thread), RpcEvtNewData);
  139. return bytes_sent;
  140. }
  141. size_t rpc_session_get_available_size(RpcSession* session) {
  142. furi_assert(session);
  143. return furi_stream_buffer_spaces_available(session->stream);
  144. }
  145. bool rpc_pb_stream_read(pb_istream_t* istream, pb_byte_t* buf, size_t count) {
  146. furi_assert(istream);
  147. furi_assert(buf);
  148. RpcSession* session = istream->state;
  149. furi_assert(session);
  150. furi_assert(istream->bytes_left);
  151. uint32_t flags = 0;
  152. size_t bytes_received = 0;
  153. while(1) {
  154. bytes_received += furi_stream_buffer_receive(
  155. session->stream, buf + bytes_received, count - bytes_received, 0);
  156. if(furi_stream_buffer_is_empty(session->stream)) {
  157. if(session->buffer_is_empty_callback) {
  158. session->buffer_is_empty_callback(session->context);
  159. }
  160. }
  161. if(session->decode_error) {
  162. /* never go out till RPC_EVENT_DISCONNECT come */
  163. bytes_received = 0;
  164. }
  165. if(count == bytes_received) {
  166. break;
  167. } else {
  168. flags = furi_thread_flags_wait(RPC_ALL_EVENTS, FuriFlagWaitAny, FuriWaitForever);
  169. if(flags & RpcEvtDisconnect) {
  170. if(furi_stream_buffer_is_empty(session->stream)) {
  171. session->terminate = true;
  172. istream->bytes_left = 0;
  173. bytes_received = 0;
  174. break;
  175. } else {
  176. /* Save disconnect flag and continue reading buffer */
  177. furi_thread_flags_set(furi_thread_get_id(session->thread), RpcEvtDisconnect);
  178. }
  179. } else if(flags & RpcEvtNewData) {
  180. // Just wake thread up
  181. }
  182. }
  183. }
  184. #if SRV_RPC_DEBUG
  185. rpc_debug_print_data("INPUT", buf, bytes_received);
  186. #endif
  187. return (count == bytes_received);
  188. }
  189. static bool rpc_pb_content_callback(pb_istream_t* stream, const pb_field_t* field, void** arg) {
  190. furi_assert(stream);
  191. RpcSession* session = stream->state;
  192. furi_assert(session);
  193. furi_assert(field);
  194. RpcHandler* handler = RpcHandlerDict_get(session->handlers, field->tag);
  195. if(handler && handler->decode_submessage) {
  196. handler->decode_submessage(stream, field, arg);
  197. }
  198. return true;
  199. }
  200. static int32_t rpc_session_worker(void* context) {
  201. furi_assert(context);
  202. RpcSession* session = (RpcSession*)context;
  203. Rpc* rpc = session->rpc;
  204. FURI_LOG_D(TAG, "Session started");
  205. while(1) {
  206. pb_istream_t istream = {
  207. .callback = rpc_pb_stream_read,
  208. .state = session,
  209. .errmsg = NULL,
  210. .bytes_left = SIZE_MAX,
  211. };
  212. bool message_decode_failed = false;
  213. if(pb_decode_ex(&istream, &PB_Main_msg, session->decoded_message, PB_DECODE_DELIMITED)) {
  214. #if SRV_RPC_DEBUG
  215. FURI_LOG_I(TAG, "INPUT:");
  216. rpc_debug_print_message(session->decoded_message);
  217. #endif
  218. RpcHandler* handler =
  219. RpcHandlerDict_get(session->handlers, session->decoded_message->which_content);
  220. if(handler && handler->message_handler) {
  221. furi_check(furi_mutex_acquire(rpc->busy_mutex, FuriWaitForever) == FuriStatusOk);
  222. handler->message_handler(session->decoded_message, handler->context);
  223. furi_check(furi_mutex_release(rpc->busy_mutex) == FuriStatusOk);
  224. } else if(session->decoded_message->which_content == 0) {
  225. /* Receiving zeroes means message is 0-length, which
  226. * is valid for proto3: all fields are filled with default values.
  227. * 0 - is default value for which_content field.
  228. * Mark it as decode error, because there is no content message
  229. * in Main message with tag 0.
  230. */
  231. message_decode_failed = true;
  232. } else if(!handler && !session->terminate) {
  233. FURI_LOG_E(
  234. TAG,
  235. "Message(%d) decoded, but not implemented",
  236. session->decoded_message->which_content);
  237. rpc_send_and_release_empty(
  238. session,
  239. session->decoded_message->command_id,
  240. PB_CommandStatus_ERROR_NOT_IMPLEMENTED);
  241. }
  242. } else {
  243. message_decode_failed = true;
  244. }
  245. if(message_decode_failed) {
  246. furi_stream_buffer_reset(session->stream);
  247. if(!session->terminate) {
  248. /* Protobuf can't determine start and end of message.
  249. * Handle this by adding varint at beginning
  250. * of a message (PB_ENCODE_DELIMITED). But decoding fail
  251. * means we can't be sure next bytes are varint for next
  252. * message, so the only way to close session.
  253. * RPC itself can't make decision to close session. It has
  254. * to notify:
  255. * 1) down layer (transport)
  256. * 2) other side (companion app)
  257. * Who are responsible to handle RPC session lifecycle.
  258. * Companion receives 2 messages: ERROR_DECODE and session_closed.
  259. */
  260. FURI_LOG_E(TAG, "Decode failed, error: \'%.128s\'", PB_GET_ERROR(&istream));
  261. session->decode_error = true;
  262. rpc_send_and_release_empty(session, 0, PB_CommandStatus_ERROR_DECODE);
  263. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  264. if(session->closed_callback) {
  265. session->closed_callback(session->context);
  266. }
  267. furi_mutex_release(session->callbacks_mutex);
  268. }
  269. }
  270. pb_release(&PB_Main_msg, session->decoded_message);
  271. if(session->terminate) {
  272. FURI_LOG_D(TAG, "Session terminated");
  273. break;
  274. }
  275. }
  276. return 0;
  277. }
  278. static void rpc_session_thread_pending_callback(void* context, uint32_t arg) {
  279. UNUSED(arg);
  280. RpcSession* session = (RpcSession*)context;
  281. for(size_t i = 0; i < COUNT_OF(rpc_systems); ++i) {
  282. if(rpc_systems[i].free) {
  283. (rpc_systems[i].free)(session->system_contexts[i]);
  284. }
  285. }
  286. free(session->system_contexts);
  287. free(session->decoded_message);
  288. RpcHandlerDict_clear(session->handlers);
  289. furi_stream_buffer_free(session->stream);
  290. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  291. if(session->terminated_callback) {
  292. session->terminated_callback(session->context);
  293. }
  294. furi_mutex_release(session->callbacks_mutex);
  295. furi_mutex_free(session->callbacks_mutex);
  296. furi_thread_join(session->thread);
  297. furi_thread_free(session->thread);
  298. free(session);
  299. }
  300. static void rpc_session_thread_state_callback(FuriThreadState thread_state, void* context) {
  301. if(thread_state == FuriThreadStateStopped) {
  302. furi_timer_pending_callback(rpc_session_thread_pending_callback, context, 0);
  303. }
  304. }
  305. RpcSession* rpc_session_open(Rpc* rpc, RpcOwner owner) {
  306. furi_assert(rpc);
  307. RpcSession* session = malloc(sizeof(RpcSession));
  308. session->callbacks_mutex = furi_mutex_alloc(FuriMutexTypeNormal);
  309. session->stream = furi_stream_buffer_alloc(RPC_BUFFER_SIZE, 1);
  310. session->rpc = rpc;
  311. session->terminate = false;
  312. session->decode_error = false;
  313. session->owner = owner;
  314. RpcHandlerDict_init(session->handlers);
  315. session->decoded_message = malloc(sizeof(PB_Main));
  316. session->decoded_message->cb_content.funcs.decode = rpc_pb_content_callback;
  317. session->decoded_message->cb_content.arg = session;
  318. session->system_contexts = malloc(COUNT_OF(rpc_systems) * sizeof(void*));
  319. for(size_t i = 0; i < COUNT_OF(rpc_systems); ++i) {
  320. session->system_contexts[i] = rpc_systems[i].alloc(session);
  321. }
  322. RpcHandler rpc_handler = {
  323. .message_handler = rpc_close_session_process,
  324. .decode_submessage = NULL,
  325. .context = session,
  326. };
  327. rpc_add_handler(session, PB_Main_stop_session_tag, &rpc_handler);
  328. session->thread = furi_thread_alloc_ex("RpcSessionWorker", 3072, rpc_session_worker, session);
  329. furi_thread_set_state_context(session->thread, session);
  330. furi_thread_set_state_callback(session->thread, rpc_session_thread_state_callback);
  331. furi_thread_start(session->thread);
  332. return session;
  333. }
  334. void rpc_session_close(RpcSession* session) {
  335. furi_assert(session);
  336. furi_assert(session->rpc);
  337. rpc_session_set_send_bytes_callback(session, NULL);
  338. rpc_session_set_close_callback(session, NULL);
  339. rpc_session_set_buffer_is_empty_callback(session, NULL);
  340. furi_thread_flags_set(furi_thread_get_id(session->thread), RpcEvtDisconnect);
  341. }
  342. void rpc_on_system_start(void* p) {
  343. UNUSED(p);
  344. Rpc* rpc = malloc(sizeof(Rpc));
  345. rpc->busy_mutex = furi_mutex_alloc(FuriMutexTypeNormal);
  346. Cli* cli = furi_record_open(RECORD_CLI);
  347. cli_add_command(
  348. cli, "start_rpc_session", CliCommandFlagParallelSafe, rpc_cli_command_start_session, rpc);
  349. furi_record_create(RECORD_RPC, rpc);
  350. }
  351. void rpc_add_handler(RpcSession* session, pb_size_t message_tag, RpcHandler* handler) {
  352. furi_assert(RpcHandlerDict_get(session->handlers, message_tag) == NULL);
  353. RpcHandlerDict_set_at(session->handlers, message_tag, *handler);
  354. }
  355. void rpc_send(RpcSession* session, PB_Main* message) {
  356. furi_assert(session);
  357. furi_assert(message);
  358. pb_ostream_t ostream = PB_OSTREAM_SIZING;
  359. #if SRV_RPC_DEBUG
  360. FURI_LOG_I(TAG, "OUTPUT:");
  361. rpc_debug_print_message(message);
  362. #endif
  363. bool result = pb_encode_ex(&ostream, &PB_Main_msg, message, PB_ENCODE_DELIMITED);
  364. furi_check(result && ostream.bytes_written);
  365. uint8_t* buffer = malloc(ostream.bytes_written);
  366. ostream = pb_ostream_from_buffer(buffer, ostream.bytes_written);
  367. pb_encode_ex(&ostream, &PB_Main_msg, message, PB_ENCODE_DELIMITED);
  368. #if SRV_RPC_DEBUG
  369. rpc_debug_print_data("OUTPUT", buffer, ostream.bytes_written);
  370. #endif
  371. furi_mutex_acquire(session->callbacks_mutex, FuriWaitForever);
  372. if(session->send_bytes_callback) {
  373. session->send_bytes_callback(session->context, buffer, ostream.bytes_written);
  374. }
  375. furi_mutex_release(session->callbacks_mutex);
  376. free(buffer);
  377. }
  378. void rpc_send_and_release(RpcSession* session, PB_Main* message) {
  379. rpc_send(session, message);
  380. pb_release(&PB_Main_msg, message);
  381. }
  382. void rpc_send_and_release_empty(RpcSession* session, uint32_t command_id, PB_CommandStatus status) {
  383. PB_Main message = {
  384. .command_id = command_id,
  385. .command_status = status,
  386. .has_next = false,
  387. .which_content = PB_Main_empty_tag,
  388. };
  389. rpc_send_and_release(session, &message);
  390. pb_release(&PB_Main_msg, &message);
  391. }