ble_glue.c 15 KB

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  1. #include "ble_glue.h"
  2. #include "app_common.h"
  3. #include "ble_app.h"
  4. #include <ble/ble.h>
  5. #include <interface/patterns/ble_thread/tl/tl.h>
  6. #include <interface/patterns/ble_thread/shci/shci.h>
  7. #include <interface/patterns/ble_thread/tl/shci_tl.h>
  8. #include "app_debug.h"
  9. #include <furi_hal.h>
  10. #define TAG "Core2"
  11. #define BLE_GLUE_FLAG_SHCI_EVENT (1UL << 0)
  12. #define BLE_GLUE_FLAG_KILL_THREAD (1UL << 1)
  13. #define BLE_GLUE_FLAG_ALL (BLE_GLUE_FLAG_SHCI_EVENT | BLE_GLUE_FLAG_KILL_THREAD)
  14. #define POOL_SIZE \
  15. (CFG_TLBLE_EVT_QUEUE_LENGTH * 4U * \
  16. DIVC((sizeof(TL_PacketHeader_t) + TL_BLE_EVENT_FRAME_SIZE), 4U))
  17. PLACE_IN_SECTION("MB_MEM2") ALIGN(4) static uint8_t ble_glue_event_pool[POOL_SIZE];
  18. PLACE_IN_SECTION("MB_MEM2") ALIGN(4) static TL_CmdPacket_t ble_glue_system_cmd_buff;
  19. PLACE_IN_SECTION("MB_MEM2")
  20. ALIGN(4)
  21. static uint8_t ble_glue_system_spare_event_buff[sizeof(TL_PacketHeader_t) + TL_EVT_HDR_SIZE + 255U];
  22. PLACE_IN_SECTION("MB_MEM2")
  23. ALIGN(4)
  24. static uint8_t ble_glue_ble_spare_event_buff[sizeof(TL_PacketHeader_t) + TL_EVT_HDR_SIZE + 255];
  25. typedef struct {
  26. FuriMutex* shci_mtx;
  27. FuriSemaphore* shci_sem;
  28. FuriThread* thread;
  29. BleGlueStatus status;
  30. BleGlueKeyStorageChangedCallback callback;
  31. BleGlueC2Info c2_info;
  32. void* context;
  33. } BleGlue;
  34. static BleGlue* ble_glue = NULL;
  35. static int32_t ble_glue_shci_thread(void* argument);
  36. static void ble_glue_sys_status_not_callback(SHCI_TL_CmdStatus_t status);
  37. static void ble_glue_sys_user_event_callback(void* pPayload);
  38. void ble_glue_set_key_storage_changed_callback(
  39. BleGlueKeyStorageChangedCallback callback,
  40. void* context) {
  41. furi_assert(ble_glue);
  42. furi_assert(callback);
  43. ble_glue->callback = callback;
  44. ble_glue->context = context;
  45. }
  46. void ble_glue_init() {
  47. ble_glue = malloc(sizeof(BleGlue));
  48. ble_glue->status = BleGlueStatusStartup;
  49. #ifdef BLE_GLUE_DEBUG
  50. APPD_Init();
  51. #endif
  52. // Initialize all transport layers
  53. TL_MM_Config_t tl_mm_config;
  54. SHCI_TL_HciInitConf_t SHci_Tl_Init_Conf;
  55. // Reference table initialization
  56. TL_Init();
  57. ble_glue->shci_mtx = furi_mutex_alloc(FuriMutexTypeNormal);
  58. ble_glue->shci_sem = furi_semaphore_alloc(1, 0);
  59. // FreeRTOS system task creation
  60. ble_glue->thread = furi_thread_alloc_ex("BleShciDriver", 1024, ble_glue_shci_thread, ble_glue);
  61. furi_thread_start(ble_glue->thread);
  62. // System channel initialization
  63. SHci_Tl_Init_Conf.p_cmdbuffer = (uint8_t*)&ble_glue_system_cmd_buff;
  64. SHci_Tl_Init_Conf.StatusNotCallBack = ble_glue_sys_status_not_callback;
  65. shci_init(ble_glue_sys_user_event_callback, (void*)&SHci_Tl_Init_Conf);
  66. /**< Memory Manager channel initialization */
  67. tl_mm_config.p_BleSpareEvtBuffer = ble_glue_ble_spare_event_buff;
  68. tl_mm_config.p_SystemSpareEvtBuffer = ble_glue_system_spare_event_buff;
  69. tl_mm_config.p_AsynchEvtPool = ble_glue_event_pool;
  70. tl_mm_config.AsynchEvtPoolSize = POOL_SIZE;
  71. TL_MM_Init(&tl_mm_config);
  72. TL_Enable();
  73. /*
  74. * From now, the application is waiting for the ready event ( VS_HCI_C2_Ready )
  75. * received on the system channel before starting the Stack
  76. * This system event is received with ble_glue_sys_user_event_callback()
  77. */
  78. }
  79. const BleGlueC2Info* ble_glue_get_c2_info() {
  80. return &ble_glue->c2_info;
  81. }
  82. BleGlueStatus ble_glue_get_c2_status() {
  83. return ble_glue->status;
  84. }
  85. static const char* ble_glue_get_reltype_str(const uint8_t reltype) {
  86. static char relcode[3] = {0};
  87. switch(reltype) {
  88. case INFO_STACK_TYPE_BLE_FULL:
  89. return "F";
  90. case INFO_STACK_TYPE_BLE_HCI:
  91. return "H";
  92. case INFO_STACK_TYPE_BLE_LIGHT:
  93. return "L";
  94. case INFO_STACK_TYPE_BLE_BEACON:
  95. return "Be";
  96. case INFO_STACK_TYPE_BLE_BASIC:
  97. return "Ba";
  98. case INFO_STACK_TYPE_BLE_FULL_EXT_ADV:
  99. return "F+";
  100. case INFO_STACK_TYPE_BLE_HCI_EXT_ADV:
  101. return "H+";
  102. default:
  103. snprintf(relcode, sizeof(relcode), "%X", reltype);
  104. return relcode;
  105. }
  106. }
  107. static void ble_glue_update_c2_fw_info() {
  108. WirelessFwInfo_t wireless_info;
  109. SHCI_GetWirelessFwInfo(&wireless_info);
  110. BleGlueC2Info* local_info = &ble_glue->c2_info;
  111. local_info->VersionMajor = wireless_info.VersionMajor;
  112. local_info->VersionMinor = wireless_info.VersionMinor;
  113. local_info->VersionSub = wireless_info.VersionSub;
  114. local_info->VersionBranch = wireless_info.VersionBranch;
  115. local_info->VersionReleaseType = wireless_info.VersionReleaseType;
  116. local_info->MemorySizeSram2B = wireless_info.MemorySizeSram2B;
  117. local_info->MemorySizeSram2A = wireless_info.MemorySizeSram2A;
  118. local_info->MemorySizeSram1 = wireless_info.MemorySizeSram1;
  119. local_info->MemorySizeFlash = wireless_info.MemorySizeFlash;
  120. local_info->StackType = wireless_info.StackType;
  121. snprintf(
  122. local_info->StackTypeString,
  123. BLE_GLUE_MAX_VERSION_STRING_LEN,
  124. "%d.%d.%d:%s",
  125. local_info->VersionMajor,
  126. local_info->VersionMinor,
  127. local_info->VersionSub,
  128. ble_glue_get_reltype_str(local_info->StackType));
  129. local_info->FusVersionMajor = wireless_info.FusVersionMajor;
  130. local_info->FusVersionMinor = wireless_info.FusVersionMinor;
  131. local_info->FusVersionSub = wireless_info.FusVersionSub;
  132. local_info->FusMemorySizeSram2B = wireless_info.FusMemorySizeSram2B;
  133. local_info->FusMemorySizeSram2A = wireless_info.FusMemorySizeSram2A;
  134. local_info->FusMemorySizeFlash = wireless_info.FusMemorySizeFlash;
  135. }
  136. static void ble_glue_dump_stack_info() {
  137. const BleGlueC2Info* c2_info = &ble_glue->c2_info;
  138. FURI_LOG_I(
  139. TAG,
  140. "Core2: FUS: %d.%d.%d, mem %d/%d, flash %d pages",
  141. c2_info->FusVersionMajor,
  142. c2_info->FusVersionMinor,
  143. c2_info->FusVersionSub,
  144. c2_info->FusMemorySizeSram2B,
  145. c2_info->FusMemorySizeSram2A,
  146. c2_info->FusMemorySizeFlash);
  147. FURI_LOG_I(
  148. TAG,
  149. "Core2: Stack: %d.%d.%d, branch %d, reltype %d, stacktype %d, flash %d pages",
  150. c2_info->VersionMajor,
  151. c2_info->VersionMinor,
  152. c2_info->VersionSub,
  153. c2_info->VersionBranch,
  154. c2_info->VersionReleaseType,
  155. c2_info->StackType,
  156. c2_info->MemorySizeFlash);
  157. }
  158. bool ble_glue_wait_for_c2_start(int32_t timeout) {
  159. bool started = false;
  160. do {
  161. // TODO: use mutex?
  162. started = ble_glue->status == BleGlueStatusC2Started;
  163. if(!started) {
  164. timeout--;
  165. furi_delay_tick(1);
  166. }
  167. } while(!started && (timeout > 0));
  168. if(started) {
  169. FURI_LOG_I(
  170. TAG,
  171. "C2 boot completed, mode: %s",
  172. ble_glue->c2_info.mode == BleGlueC2ModeFUS ? "FUS" : "Stack");
  173. ble_glue_update_c2_fw_info();
  174. ble_glue_dump_stack_info();
  175. } else {
  176. FURI_LOG_E(TAG, "C2 startup failed");
  177. ble_glue->status = BleGlueStatusBroken;
  178. }
  179. return started;
  180. }
  181. bool ble_glue_start() {
  182. furi_assert(ble_glue);
  183. if(ble_glue->status != BleGlueStatusC2Started) {
  184. return false;
  185. }
  186. bool ret = false;
  187. if(ble_app_init()) {
  188. FURI_LOG_I(TAG, "Radio stack started");
  189. ble_glue->status = BleGlueStatusRadioStackRunning;
  190. ret = true;
  191. if(SHCI_C2_SetFlashActivityControl(FLASH_ACTIVITY_CONTROL_SEM7) == SHCI_Success) {
  192. FURI_LOG_I(TAG, "Flash activity control switched to SEM7");
  193. } else {
  194. FURI_LOG_E(TAG, "Failed to switch flash activity control to SEM7");
  195. }
  196. } else {
  197. FURI_LOG_E(TAG, "Radio stack startup failed");
  198. ble_glue->status = BleGlueStatusRadioStackMissing;
  199. ble_app_thread_stop();
  200. }
  201. return ret;
  202. }
  203. bool ble_glue_is_alive() {
  204. if(!ble_glue) {
  205. return false;
  206. }
  207. return ble_glue->status >= BleGlueStatusC2Started;
  208. }
  209. bool ble_glue_is_radio_stack_ready() {
  210. if(!ble_glue) {
  211. return false;
  212. }
  213. return ble_glue->status == BleGlueStatusRadioStackRunning;
  214. }
  215. BleGlueCommandResult ble_glue_force_c2_mode(BleGlueC2Mode desired_mode) {
  216. furi_check(desired_mode > BleGlueC2ModeUnknown);
  217. if(desired_mode == ble_glue->c2_info.mode) {
  218. return BleGlueCommandResultOK;
  219. }
  220. if((ble_glue->c2_info.mode == BleGlueC2ModeFUS) && (desired_mode == BleGlueC2ModeStack)) {
  221. if((ble_glue->c2_info.VersionMajor == 0) && (ble_glue->c2_info.VersionMinor == 0)) {
  222. FURI_LOG_W(TAG, "Stack isn't installed!");
  223. return BleGlueCommandResultError;
  224. }
  225. SHCI_CmdStatus_t status = SHCI_C2_FUS_StartWs();
  226. if(status) {
  227. FURI_LOG_E(TAG, "Failed to start Radio Stack with status: %02X", status);
  228. return BleGlueCommandResultError;
  229. }
  230. return BleGlueCommandResultRestartPending;
  231. }
  232. if((ble_glue->c2_info.mode == BleGlueC2ModeStack) && (desired_mode == BleGlueC2ModeFUS)) {
  233. SHCI_FUS_GetState_ErrorCode_t error_code = 0;
  234. uint8_t fus_state = SHCI_C2_FUS_GetState(&error_code);
  235. FURI_LOG_D(TAG, "FUS state: %X, error = %x", fus_state, error_code);
  236. if(fus_state == SHCI_FUS_CMD_NOT_SUPPORTED) {
  237. // Second call to SHCI_C2_FUS_GetState() restarts whole MCU & boots FUS
  238. fus_state = SHCI_C2_FUS_GetState(&error_code);
  239. FURI_LOG_D(TAG, "FUS state#2: %X, error = %x", fus_state, error_code);
  240. return BleGlueCommandResultRestartPending;
  241. }
  242. return BleGlueCommandResultOK;
  243. }
  244. return BleGlueCommandResultError;
  245. }
  246. static void ble_glue_sys_status_not_callback(SHCI_TL_CmdStatus_t status) {
  247. switch(status) {
  248. case SHCI_TL_CmdBusy:
  249. furi_mutex_acquire(ble_glue->shci_mtx, FuriWaitForever);
  250. break;
  251. case SHCI_TL_CmdAvailable:
  252. furi_mutex_release(ble_glue->shci_mtx);
  253. break;
  254. default:
  255. break;
  256. }
  257. }
  258. /*
  259. * The type of the payload for a system user event is tSHCI_UserEvtRxParam
  260. * When the system event is both :
  261. * - a ready event (subevtcode = SHCI_SUB_EVT_CODE_READY)
  262. * - reported by the FUS (sysevt_ready_rsp == FUS_FW_RUNNING)
  263. * The buffer shall not be released
  264. * ( eg ((tSHCI_UserEvtRxParam*)pPayload)->status shall be set to SHCI_TL_UserEventFlow_Disable )
  265. * When the status is not filled, the buffer is released by default
  266. */
  267. static void ble_glue_sys_user_event_callback(void* pPayload) {
  268. UNUSED(pPayload);
  269. #ifdef BLE_GLUE_DEBUG
  270. APPD_EnableCPU2();
  271. #endif
  272. TL_AsynchEvt_t* p_sys_event =
  273. (TL_AsynchEvt_t*)(((tSHCI_UserEvtRxParam*)pPayload)->pckt->evtserial.evt.payload);
  274. if(p_sys_event->subevtcode == SHCI_SUB_EVT_CODE_READY) {
  275. FURI_LOG_I(TAG, "Core2 started");
  276. SHCI_C2_Ready_Evt_t* p_c2_ready_evt = (SHCI_C2_Ready_Evt_t*)p_sys_event->payload;
  277. if(p_c2_ready_evt->sysevt_ready_rsp == WIRELESS_FW_RUNNING) {
  278. ble_glue->c2_info.mode = BleGlueC2ModeStack;
  279. } else if(p_c2_ready_evt->sysevt_ready_rsp == FUS_FW_RUNNING) {
  280. ble_glue->c2_info.mode = BleGlueC2ModeFUS;
  281. }
  282. ble_glue->status = BleGlueStatusC2Started;
  283. } else if(p_sys_event->subevtcode == SHCI_SUB_EVT_ERROR_NOTIF) {
  284. FURI_LOG_E(TAG, "Error during initialization");
  285. } else if(p_sys_event->subevtcode == SHCI_SUB_EVT_BLE_NVM_RAM_UPDATE) {
  286. SHCI_C2_BleNvmRamUpdate_Evt_t* p_sys_ble_nvm_ram_update_event =
  287. (SHCI_C2_BleNvmRamUpdate_Evt_t*)p_sys_event->payload;
  288. if(ble_glue->callback) {
  289. ble_glue->callback(
  290. (uint8_t*)p_sys_ble_nvm_ram_update_event->StartAddress,
  291. p_sys_ble_nvm_ram_update_event->Size,
  292. ble_glue->context);
  293. }
  294. }
  295. }
  296. static void ble_glue_clear_shared_memory() {
  297. memset(ble_glue_event_pool, 0, sizeof(ble_glue_event_pool));
  298. memset(&ble_glue_system_cmd_buff, 0, sizeof(ble_glue_system_cmd_buff));
  299. memset(ble_glue_system_spare_event_buff, 0, sizeof(ble_glue_system_spare_event_buff));
  300. memset(ble_glue_ble_spare_event_buff, 0, sizeof(ble_glue_ble_spare_event_buff));
  301. }
  302. void ble_glue_thread_stop() {
  303. if(ble_glue) {
  304. FuriThreadId thread_id = furi_thread_get_id(ble_glue->thread);
  305. furi_assert(thread_id);
  306. furi_thread_flags_set(thread_id, BLE_GLUE_FLAG_KILL_THREAD);
  307. furi_thread_join(ble_glue->thread);
  308. furi_thread_free(ble_glue->thread);
  309. // Free resources
  310. furi_mutex_free(ble_glue->shci_mtx);
  311. furi_semaphore_free(ble_glue->shci_sem);
  312. ble_glue_clear_shared_memory();
  313. free(ble_glue);
  314. ble_glue = NULL;
  315. }
  316. }
  317. // Wrap functions
  318. static int32_t ble_glue_shci_thread(void* context) {
  319. UNUSED(context);
  320. uint32_t flags = 0;
  321. while(true) {
  322. flags = furi_thread_flags_wait(BLE_GLUE_FLAG_ALL, FuriFlagWaitAny, FuriWaitForever);
  323. if(flags & BLE_GLUE_FLAG_SHCI_EVENT) {
  324. shci_user_evt_proc();
  325. }
  326. if(flags & BLE_GLUE_FLAG_KILL_THREAD) {
  327. break;
  328. }
  329. }
  330. return 0;
  331. }
  332. void shci_notify_asynch_evt(void* pdata) {
  333. UNUSED(pdata);
  334. if(ble_glue) {
  335. FuriThreadId thread_id = furi_thread_get_id(ble_glue->thread);
  336. furi_assert(thread_id);
  337. furi_thread_flags_set(thread_id, BLE_GLUE_FLAG_SHCI_EVENT);
  338. }
  339. }
  340. void shci_cmd_resp_release(uint32_t flag) {
  341. UNUSED(flag);
  342. if(ble_glue) {
  343. furi_semaphore_release(ble_glue->shci_sem);
  344. }
  345. }
  346. void shci_cmd_resp_wait(uint32_t timeout) {
  347. UNUSED(timeout);
  348. if(ble_glue) {
  349. furi_hal_power_insomnia_enter();
  350. furi_semaphore_acquire(ble_glue->shci_sem, FuriWaitForever);
  351. furi_hal_power_insomnia_exit();
  352. }
  353. }
  354. bool ble_glue_reinit_c2() {
  355. return SHCI_C2_Reinit() == SHCI_Success;
  356. }
  357. BleGlueCommandResult ble_glue_fus_stack_delete() {
  358. FURI_LOG_I(TAG, "Erasing stack");
  359. SHCI_CmdStatus_t erase_stat = SHCI_C2_FUS_FwDelete();
  360. FURI_LOG_I(TAG, "Cmd res = %x", erase_stat);
  361. if(erase_stat == SHCI_Success) {
  362. return BleGlueCommandResultOperationOngoing;
  363. }
  364. ble_glue_fus_get_status();
  365. return BleGlueCommandResultError;
  366. }
  367. BleGlueCommandResult ble_glue_fus_stack_install(uint32_t src_addr, uint32_t dst_addr) {
  368. FURI_LOG_I(TAG, "Installing stack");
  369. SHCI_CmdStatus_t write_stat = SHCI_C2_FUS_FwUpgrade(src_addr, dst_addr);
  370. FURI_LOG_I(TAG, "Cmd res = %x", write_stat);
  371. if(write_stat == SHCI_Success) {
  372. return BleGlueCommandResultOperationOngoing;
  373. }
  374. ble_glue_fus_get_status();
  375. return BleGlueCommandResultError;
  376. }
  377. BleGlueCommandResult ble_glue_fus_get_status() {
  378. furi_check(ble_glue->c2_info.mode == BleGlueC2ModeFUS);
  379. SHCI_FUS_GetState_ErrorCode_t error_code = 0;
  380. uint8_t fus_state = SHCI_C2_FUS_GetState(&error_code);
  381. FURI_LOG_I(TAG, "FUS state: %x, error: %x", fus_state, error_code);
  382. if((error_code != 0) || (fus_state == FUS_STATE_VALUE_ERROR)) {
  383. return BleGlueCommandResultError;
  384. } else if(
  385. (fus_state >= FUS_STATE_VALUE_FW_UPGRD_ONGOING) &&
  386. (fus_state <= FUS_STATE_VALUE_SERVICE_ONGOING_END)) {
  387. return BleGlueCommandResultOperationOngoing;
  388. }
  389. return BleGlueCommandResultOK;
  390. }
  391. BleGlueCommandResult ble_glue_fus_wait_operation() {
  392. furi_check(ble_glue->c2_info.mode == BleGlueC2ModeFUS);
  393. while(true) {
  394. BleGlueCommandResult fus_status = ble_glue_fus_get_status();
  395. if(fus_status == BleGlueCommandResultOperationOngoing) {
  396. furi_delay_ms(20);
  397. } else if(fus_status == BleGlueCommandResultError) {
  398. return BleGlueCommandResultError;
  399. } else {
  400. return BleGlueCommandResultOK;
  401. }
  402. }
  403. }