mirror of
https://github.com/DarkFlippers/unleashed-firmware.git
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88a6860913
* Update radio stack to v1.19.0 * Ble: set max connection interal same as min, kinda speedups everything
170 lines
5.8 KiB
C
170 lines
5.8 KiB
C
#include "ble_app.h"
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#include <core/check.h>
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#include <ble/ble.h>
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#include <interface/patterns/ble_thread/tl/hci_tl.h>
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#include <interface/patterns/ble_thread/shci/shci.h>
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#include "gap.h"
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#include "furi_ble/event_dispatcher.h"
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#include <furi_hal.h>
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#include <furi.h>
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#define TAG "Bt"
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PLACE_IN_SECTION("MB_MEM1") ALIGN(4) static TL_CmdPacket_t ble_app_cmd_buffer;
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PLACE_IN_SECTION("MB_MEM2") ALIGN(4) static uint32_t ble_app_nvm[BLE_NVM_SRAM_SIZE];
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_Static_assert(
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sizeof(SHCI_C2_Ble_Init_Cmd_Packet_t) == 58,
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"Ble stack config structure size mismatch (check new config options - last updated for v.1.17.3)");
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typedef struct {
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FuriMutex* hci_mtx;
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FuriSemaphore* hci_sem;
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} BleApp;
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static BleApp* ble_app = NULL;
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static void ble_app_hci_event_handler(void* pPayload);
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static void ble_app_hci_status_not_handler(HCI_TL_CmdStatus_t status);
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static const HCI_TL_HciInitConf_t hci_tl_config = {
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.p_cmdbuffer = (uint8_t*)&ble_app_cmd_buffer,
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.StatusNotCallBack = ble_app_hci_status_not_handler,
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};
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static const SHCI_C2_CONFIG_Cmd_Param_t config_param = {
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.PayloadCmdSize = SHCI_C2_CONFIG_PAYLOAD_CMD_SIZE,
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.Config1 = SHCI_C2_CONFIG_CONFIG1_BIT0_BLE_NVM_DATA_TO_SRAM,
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.BleNvmRamAddress = (uint32_t)ble_app_nvm,
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.EvtMask1 = SHCI_C2_CONFIG_EVTMASK1_BIT1_BLE_NVM_RAM_UPDATE_ENABLE,
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};
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static const SHCI_C2_Ble_Init_Cmd_Packet_t ble_init_cmd_packet = {
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.Header = {{0, 0, 0}}, // Header unused
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.Param = {
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.pBleBufferAddress = 0, // pBleBufferAddress not used
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.BleBufferSize = 0, // BleBufferSize not used
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.NumAttrRecord = CFG_BLE_NUM_GATT_ATTRIBUTES,
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.NumAttrServ = CFG_BLE_NUM_GATT_SERVICES,
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.AttrValueArrSize = CFG_BLE_ATT_VALUE_ARRAY_SIZE,
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.NumOfLinks = CFG_BLE_NUM_LINK,
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.ExtendedPacketLengthEnable = CFG_BLE_DATA_LENGTH_EXTENSION,
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.PrWriteListSize = CFG_BLE_PREPARE_WRITE_LIST_SIZE,
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.MblockCount = CFG_BLE_MBLOCK_COUNT,
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.AttMtu = CFG_BLE_MAX_ATT_MTU,
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.PeripheralSca = CFG_BLE_SLAVE_SCA,
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.CentralSca = CFG_BLE_MASTER_SCA,
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.LsSource = CFG_BLE_LSE_SOURCE,
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.MaxConnEventLength = CFG_BLE_MAX_CONN_EVENT_LENGTH,
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.HsStartupTime = CFG_BLE_HSE_STARTUP_TIME,
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.ViterbiEnable = CFG_BLE_VITERBI_MODE,
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.Options = CFG_BLE_OPTIONS,
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.HwVersion = 0,
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.max_coc_initiator_nbr = 32,
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.min_tx_power = 0,
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.max_tx_power = 0,
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.rx_model_config = 1,
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/* New stack (13.3->15.0) */
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.max_adv_set_nbr = 1, // Only used if SHCI_C2_BLE_INIT_OPTIONS_EXT_ADV is set
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.max_adv_data_len = 1650, // Only used if SHCI_C2_BLE_INIT_OPTIONS_EXT_ADV is set
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.tx_path_compens = 0, // RF TX Path Compensation, * 0.1 dB
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.rx_path_compens = 0, // RF RX Path Compensation, * 0.1 dB
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.ble_core_version = SHCI_C2_BLE_INIT_BLE_CORE_5_4,
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/*15.0->17.0*/
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.Options_extension = SHCI_C2_BLE_INIT_OPTIONS_ENHANCED_ATT_NOTSUPPORTED |
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SHCI_C2_BLE_INIT_OPTIONS_APPEARANCE_READONLY,
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}};
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bool ble_app_init(void) {
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SHCI_CmdStatus_t status;
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ble_app = malloc(sizeof(BleApp));
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// Allocate semafore and mutex for ble command buffer access
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ble_app->hci_mtx = furi_mutex_alloc(FuriMutexTypeNormal);
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ble_app->hci_sem = furi_semaphore_alloc(1, 0);
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// Initialize Ble Transport Layer
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hci_init(ble_app_hci_event_handler, (void*)&hci_tl_config);
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do {
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// Configure NVM store for pairing data
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if((status = SHCI_C2_Config((SHCI_C2_CONFIG_Cmd_Param_t*)&config_param))) {
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FURI_LOG_E(TAG, "Failed to configure 2nd core: %d", status);
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break;
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}
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// Start ble stack on 2nd core
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if((status = SHCI_C2_BLE_Init((SHCI_C2_Ble_Init_Cmd_Packet_t*)&ble_init_cmd_packet))) {
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FURI_LOG_E(TAG, "Failed to start ble stack: %d", status);
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break;
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}
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if((status = SHCI_C2_SetFlashActivityControl(FLASH_ACTIVITY_CONTROL_SEM7))) {
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FURI_LOG_E(TAG, "Failed to set flash activity control: %d", status);
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break;
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}
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} while(false);
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return status == SHCI_Success;
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}
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void ble_app_get_key_storage_buff(uint8_t** addr, uint16_t* size) {
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*addr = (uint8_t*)ble_app_nvm;
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*size = sizeof(ble_app_nvm);
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}
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void ble_app_deinit(void) {
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furi_check(ble_app);
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furi_mutex_free(ble_app->hci_mtx);
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furi_semaphore_free(ble_app->hci_sem);
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free(ble_app);
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ble_app = NULL;
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memset(&ble_app_cmd_buffer, 0, sizeof(ble_app_cmd_buffer));
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}
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///////////////////////////////////////////////////////////////////////////////
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// AN5289, 4.9
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void hci_cmd_resp_release(uint32_t flag) {
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UNUSED(flag);
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furi_check(ble_app);
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furi_check(furi_semaphore_release(ble_app->hci_sem) == FuriStatusOk);
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}
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void hci_cmd_resp_wait(uint32_t timeout) {
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furi_check(ble_app);
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furi_check(furi_semaphore_acquire(ble_app->hci_sem, timeout) == FuriStatusOk);
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}
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///////////////////////////////////////////////////////////////////////////////
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static void ble_app_hci_event_handler(void* pPayload) {
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furi_check(ble_app);
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tHCI_UserEvtRxParam* pParam = (tHCI_UserEvtRxParam*)pPayload;
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BleEventFlowStatus event_flow_status =
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ble_event_dispatcher_process_event((void*)&(pParam->pckt->evtserial));
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if(event_flow_status != BleEventFlowDisable) {
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pParam->status = HCI_TL_UserEventFlow_Enable;
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} else {
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pParam->status = HCI_TL_UserEventFlow_Disable;
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}
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}
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static void ble_app_hci_status_not_handler(HCI_TL_CmdStatus_t status) {
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if(status == HCI_TL_CmdBusy) {
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furi_hal_power_insomnia_enter();
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furi_mutex_acquire(ble_app->hci_mtx, FuriWaitForever);
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} else if(status == HCI_TL_CmdAvailable) {
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furi_mutex_release(ble_app->hci_mtx);
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furi_hal_power_insomnia_exit();
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}
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}
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void SVCCTL_ResumeUserEventFlow(void) {
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hci_resume_flow();
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}
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