furi-hal-bt.c 5.5 KB

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  1. #include <furi-hal-bt.h>
  2. #include <ble.h>
  3. #include <stm32wbxx.h>
  4. #include <shci.h>
  5. #include <cmsis_os2.h>
  6. #include <furi.h>
  7. osMutexId_t furi_hal_bt_core2_mtx = NULL;
  8. void furi_hal_bt_init() {
  9. furi_hal_bt_core2_mtx = osMutexNew(NULL);
  10. }
  11. void furi_hal_bt_lock_core2() {
  12. furi_assert(furi_hal_bt_core2_mtx);
  13. furi_check(osMutexAcquire(furi_hal_bt_core2_mtx, osWaitForever) == osOK);
  14. }
  15. void furi_hal_bt_unlock_core2() {
  16. furi_assert(furi_hal_bt_core2_mtx);
  17. furi_check(osMutexRelease(furi_hal_bt_core2_mtx) == osOK);
  18. }
  19. static bool furi_hal_bt_wait_startup() {
  20. uint16_t counter = 0;
  21. while (!(ble_glue_get_status() == BleGlueStatusStarted || ble_glue_get_status() == BleGlueStatusBleStackMissing)) {
  22. osDelay(10);
  23. counter++;
  24. if (counter > 1000) {
  25. return false;
  26. }
  27. }
  28. return true;
  29. }
  30. bool furi_hal_bt_start_core2() {
  31. furi_assert(furi_hal_bt_core2_mtx);
  32. bool ret = false;
  33. osMutexAcquire(furi_hal_bt_core2_mtx, osWaitForever);
  34. // Explicitly tell that we are in charge of CLK48 domain
  35. HAL_HSEM_FastTake(CFG_HW_CLK48_CONFIG_SEMID);
  36. // Start Core2
  37. ble_glue_init();
  38. // Wait for Core2 start
  39. ret = furi_hal_bt_wait_startup();
  40. osMutexRelease(furi_hal_bt_core2_mtx);
  41. return ret;
  42. }
  43. bool furi_hal_bt_init_app(BleEventCallback event_cb, void* context) {
  44. furi_assert(event_cb);
  45. return gap_init(event_cb, context);
  46. }
  47. void furi_hal_bt_start_advertising() {
  48. if(gap_get_state() == GapStateIdle) {
  49. gap_start_advertising();
  50. }
  51. }
  52. void furi_hal_bt_stop_advertising() {
  53. if(furi_hal_bt_is_active()) {
  54. gap_stop_advertising();
  55. while(furi_hal_bt_is_active()) {
  56. osDelay(1);
  57. }
  58. }
  59. }
  60. void furi_hal_bt_set_data_event_callbacks(uint16_t buff_size, SerialSvcDataReceivedCallback on_received_cb, SerialSvcDataSentCallback on_sent_cb, void* context) {
  61. serial_svc_set_callbacks(buff_size, on_received_cb, on_sent_cb, context);
  62. }
  63. void furi_hal_bt_notify_buffer_is_empty() {
  64. serial_svc_notify_buffer_is_empty();
  65. }
  66. bool furi_hal_bt_tx(uint8_t* data, uint16_t size) {
  67. if(size > FURI_HAL_BT_PACKET_SIZE_MAX) {
  68. return false;
  69. }
  70. return serial_svc_update_tx(data, size);
  71. }
  72. bool furi_hal_bt_get_key_storage_buff(uint8_t** key_buff_addr, uint16_t* key_buff_size) {
  73. bool ret = false;
  74. BleGlueStatus status = ble_glue_get_status();
  75. if(status == BleGlueStatusUninitialized || BleGlueStatusStarted) {
  76. ble_app_get_key_storage_buff(key_buff_addr, key_buff_size);
  77. ret = true;
  78. }
  79. return ret;
  80. }
  81. void furi_hal_bt_set_key_storage_change_callback(BleGlueKeyStorageChangedCallback callback, void* context) {
  82. furi_assert(callback);
  83. ble_glue_set_key_storage_changed_callback(callback, context);
  84. }
  85. void furi_hal_bt_nvm_sram_sem_acquire() {
  86. while(HAL_HSEM_FastTake(CFG_HW_BLE_NVM_SRAM_SEMID) != HAL_OK) {
  87. osDelay(1);
  88. }
  89. }
  90. void furi_hal_bt_nvm_sram_sem_release() {
  91. HAL_HSEM_Release(CFG_HW_BLE_NVM_SRAM_SEMID, 0);
  92. }
  93. void furi_hal_bt_dump_state(string_t buffer) {
  94. BleGlueStatus status = ble_glue_get_status();
  95. if (status == BleGlueStatusStarted) {
  96. uint8_t HCI_Version;
  97. uint16_t HCI_Revision;
  98. uint8_t LMP_PAL_Version;
  99. uint16_t Manufacturer_Name;
  100. uint16_t LMP_PAL_Subversion;
  101. tBleStatus ret = hci_read_local_version_information(
  102. &HCI_Version, &HCI_Revision, &LMP_PAL_Version, &Manufacturer_Name, &LMP_PAL_Subversion
  103. );
  104. string_cat_printf(buffer,
  105. "Ret: %d, HCI_Version: %d, HCI_Revision: %d, LMP_PAL_Version: %d, Manufacturer_Name: %d, LMP_PAL_Subversion: %d",
  106. ret, HCI_Version, HCI_Revision, LMP_PAL_Version, Manufacturer_Name, LMP_PAL_Subversion
  107. );
  108. } else {
  109. string_cat_printf(buffer, "BLE not ready");
  110. }
  111. }
  112. bool furi_hal_bt_is_alive() {
  113. BleGlueStatus status = ble_glue_get_status();
  114. return (status == BleGlueStatusBleStackMissing) || (status == BleGlueStatusStarted);
  115. }
  116. bool furi_hal_bt_is_active() {
  117. return gap_get_state() > GapStateIdle;
  118. }
  119. void furi_hal_bt_start_tone_tx(uint8_t channel, uint8_t power) {
  120. aci_hal_set_tx_power_level(0, power);
  121. aci_hal_tone_start(channel, 0);
  122. }
  123. void furi_hal_bt_stop_tone_tx() {
  124. aci_hal_tone_stop();
  125. }
  126. void furi_hal_bt_start_packet_tx(uint8_t channel, uint8_t pattern, uint8_t datarate) {
  127. hci_le_enhanced_transmitter_test(channel, 0x25, pattern, datarate);
  128. }
  129. void furi_hal_bt_start_packet_rx(uint8_t channel, uint8_t datarate) {
  130. hci_le_enhanced_receiver_test(channel, datarate, 0);
  131. }
  132. uint16_t furi_hal_bt_stop_packet_test() {
  133. uint16_t num_of_packets = 0;
  134. hci_le_test_end(&num_of_packets);
  135. return num_of_packets;
  136. }
  137. void furi_hal_bt_start_rx(uint8_t channel) {
  138. aci_hal_rx_start(channel);
  139. }
  140. float furi_hal_bt_get_rssi() {
  141. float val;
  142. uint8_t rssi_raw[3];
  143. if (aci_hal_read_raw_rssi(rssi_raw) != BLE_STATUS_SUCCESS) {
  144. return 0.0f;
  145. }
  146. // Some ST magic with rssi
  147. uint8_t agc = rssi_raw[2] & 0xFF;
  148. int rssi = (((int)rssi_raw[1] << 8) & 0xFF00) + (rssi_raw[0] & 0xFF);
  149. if(rssi == 0 || agc > 11) {
  150. val = -127.0;
  151. } else {
  152. val = agc * 6.0f - 127.0f;
  153. while(rssi > 30) {
  154. val += 6.0;
  155. rssi >>=1;
  156. }
  157. val += (417 * rssi + 18080) >> 10;
  158. }
  159. return val;
  160. }
  161. uint32_t furi_hal_bt_get_transmitted_packets() {
  162. uint32_t packets = 0;
  163. aci_hal_le_tx_test_packet_number(&packets);
  164. return packets;
  165. }
  166. void furi_hal_bt_stop_rx() {
  167. aci_hal_rx_stop();
  168. }