mirror of
https://github.com/DarkFlippers/unleashed-firmware
synced 2024-12-19 09:13:11 +00:00
acc39a4bc0
* Api Symbols: replace asserts with checks * Api Symbols: replace asserts with checks part 2 * Update no args function signatures with void, to help compiler to track incorrect usage * More unavoidable void * Update PVS config and code to make it happy * Format sources * nfc: fix checks * dead code cleanup & include fixes Co-authored-by: gornekich <n.gorbadey@gmail.com> Co-authored-by: hedger <hedger@users.noreply.github.com> Co-authored-by: hedger <hedger@nanode.su>
259 lines
10 KiB
C
259 lines
10 KiB
C
#include "serial_service.h"
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#include "app_common.h"
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#include <ble/ble.h>
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#include <furi_ble/event_dispatcher.h>
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#include <furi_ble/gatt.h>
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#include <furi.h>
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#include "serial_service_uuid.inc"
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#include <stdint.h>
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#define TAG "BtSerialSvc"
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typedef enum {
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SerialSvcGattCharacteristicRx = 0,
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SerialSvcGattCharacteristicTx,
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SerialSvcGattCharacteristicFlowCtrl,
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SerialSvcGattCharacteristicStatus,
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SerialSvcGattCharacteristicCount,
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} SerialSvcGattCharacteristicId;
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static const BleGattCharacteristicParams ble_svc_serial_chars[SerialSvcGattCharacteristicCount] = {
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[SerialSvcGattCharacteristicRx] =
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{.name = "RX",
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.data_prop_type = FlipperGattCharacteristicDataFixed,
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.data.fixed.length = BLE_SVC_SERIAL_DATA_LEN_MAX,
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.uuid.Char_UUID_128 = BLE_SVC_SERIAL_RX_CHAR_UUID,
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.uuid_type = UUID_TYPE_128,
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.char_properties = CHAR_PROP_WRITE_WITHOUT_RESP | CHAR_PROP_WRITE | CHAR_PROP_READ,
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.security_permissions = ATTR_PERMISSION_AUTHEN_READ | ATTR_PERMISSION_AUTHEN_WRITE,
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.gatt_evt_mask = GATT_NOTIFY_ATTRIBUTE_WRITE,
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.is_variable = CHAR_VALUE_LEN_VARIABLE},
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[SerialSvcGattCharacteristicTx] =
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{.name = "TX",
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.data_prop_type = FlipperGattCharacteristicDataFixed,
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.data.fixed.length = BLE_SVC_SERIAL_DATA_LEN_MAX,
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.uuid.Char_UUID_128 = BLE_SVC_SERIAL_TX_CHAR_UUID,
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.uuid_type = UUID_TYPE_128,
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.char_properties = CHAR_PROP_READ | CHAR_PROP_INDICATE,
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.security_permissions = ATTR_PERMISSION_AUTHEN_READ,
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.gatt_evt_mask = GATT_DONT_NOTIFY_EVENTS,
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.is_variable = CHAR_VALUE_LEN_VARIABLE},
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[SerialSvcGattCharacteristicFlowCtrl] =
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{.name = "Flow control",
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.data_prop_type = FlipperGattCharacteristicDataFixed,
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.data.fixed.length = sizeof(uint32_t),
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.uuid.Char_UUID_128 = BLE_SVC_SERIAL_FLOW_CONTROL_UUID,
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.uuid_type = UUID_TYPE_128,
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.char_properties = CHAR_PROP_READ | CHAR_PROP_NOTIFY,
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.security_permissions = ATTR_PERMISSION_AUTHEN_READ,
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.gatt_evt_mask = GATT_DONT_NOTIFY_EVENTS,
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.is_variable = CHAR_VALUE_LEN_CONSTANT},
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[SerialSvcGattCharacteristicStatus] = {
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.name = "RPC status",
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.data_prop_type = FlipperGattCharacteristicDataFixed,
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.data.fixed.length = sizeof(uint32_t),
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.uuid.Char_UUID_128 = BLE_SVC_SERIAL_RPC_STATUS_UUID,
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.uuid_type = UUID_TYPE_128,
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.char_properties = CHAR_PROP_READ | CHAR_PROP_WRITE | CHAR_PROP_NOTIFY,
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.security_permissions = ATTR_PERMISSION_AUTHEN_READ | ATTR_PERMISSION_AUTHEN_WRITE,
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.gatt_evt_mask = GATT_NOTIFY_ATTRIBUTE_WRITE,
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.is_variable = CHAR_VALUE_LEN_CONSTANT}};
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struct BleServiceSerial {
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uint16_t svc_handle;
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BleGattCharacteristicInstance chars[SerialSvcGattCharacteristicCount];
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FuriMutex* buff_size_mtx;
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uint32_t buff_size;
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uint16_t bytes_ready_to_receive;
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SerialServiceEventCallback callback;
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void* context;
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GapSvcEventHandler* event_handler;
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};
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static BleEventAckStatus ble_svc_serial_event_handler(void* event, void* context) {
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BleServiceSerial* serial_svc = (BleServiceSerial*)context;
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BleEventAckStatus ret = BleEventNotAck;
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hci_event_pckt* event_pckt = (hci_event_pckt*)(((hci_uart_pckt*)event)->data);
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evt_blecore_aci* blecore_evt = (evt_blecore_aci*)event_pckt->data;
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aci_gatt_attribute_modified_event_rp0* attribute_modified;
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if(event_pckt->evt == HCI_VENDOR_SPECIFIC_DEBUG_EVT_CODE) {
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if(blecore_evt->ecode == ACI_GATT_ATTRIBUTE_MODIFIED_VSEVT_CODE) {
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attribute_modified = (aci_gatt_attribute_modified_event_rp0*)blecore_evt->data;
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if(attribute_modified->Attr_Handle ==
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serial_svc->chars[SerialSvcGattCharacteristicRx].handle + 2) {
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// Descriptor handle
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ret = BleEventAckFlowEnable;
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FURI_LOG_D(TAG, "RX descriptor event");
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} else if(
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attribute_modified->Attr_Handle ==
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serial_svc->chars[SerialSvcGattCharacteristicRx].handle + 1) {
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FURI_LOG_D(TAG, "Received %d bytes", attribute_modified->Attr_Data_Length);
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if(serial_svc->callback) {
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furi_check(
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furi_mutex_acquire(serial_svc->buff_size_mtx, FuriWaitForever) ==
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FuriStatusOk);
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if(attribute_modified->Attr_Data_Length > serial_svc->bytes_ready_to_receive) {
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FURI_LOG_W(
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TAG,
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"Received %d, while was ready to receive %d bytes. Can lead to buffer overflow!",
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attribute_modified->Attr_Data_Length,
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serial_svc->bytes_ready_to_receive);
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}
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serial_svc->bytes_ready_to_receive -= MIN(
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serial_svc->bytes_ready_to_receive, attribute_modified->Attr_Data_Length);
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SerialServiceEvent event = {
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.event = SerialServiceEventTypeDataReceived,
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.data = {
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.buffer = attribute_modified->Attr_Data,
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.size = attribute_modified->Attr_Data_Length,
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}};
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uint32_t buff_free_size = serial_svc->callback(event, serial_svc->context);
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FURI_LOG_D(TAG, "Available buff size: %ld", buff_free_size);
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furi_check(furi_mutex_release(serial_svc->buff_size_mtx) == FuriStatusOk);
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}
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ret = BleEventAckFlowEnable;
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} else if(
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attribute_modified->Attr_Handle ==
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serial_svc->chars[SerialSvcGattCharacteristicStatus].handle + 1) {
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bool* rpc_status = (bool*)attribute_modified->Attr_Data;
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if(!*rpc_status) {
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if(serial_svc->callback) {
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SerialServiceEvent event = {
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.event = SerialServiceEventTypesBleResetRequest,
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};
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serial_svc->callback(event, serial_svc->context);
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}
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}
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}
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} else if(blecore_evt->ecode == ACI_GATT_SERVER_CONFIRMATION_VSEVT_CODE) {
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FURI_LOG_T(TAG, "Ack received");
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if(serial_svc->callback) {
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SerialServiceEvent event = {
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.event = SerialServiceEventTypeDataSent,
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};
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serial_svc->callback(event, serial_svc->context);
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}
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ret = BleEventAckFlowEnable;
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}
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}
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return ret;
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}
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typedef enum {
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SerialServiceRpcStatusNotActive = 0UL,
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SerialServiceRpcStatusActive = 1UL,
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} SerialServiceRpcStatus;
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static void
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ble_svc_serial_update_rpc_char(BleServiceSerial* serial_svc, SerialServiceRpcStatus status) {
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ble_gatt_characteristic_update(
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serial_svc->svc_handle, &serial_svc->chars[SerialSvcGattCharacteristicStatus], &status);
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}
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BleServiceSerial* ble_svc_serial_start(void) {
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BleServiceSerial* serial_svc = malloc(sizeof(BleServiceSerial));
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serial_svc->event_handler =
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ble_event_dispatcher_register_svc_handler(ble_svc_serial_event_handler, serial_svc);
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if(!ble_gatt_service_add(
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UUID_TYPE_128, &service_uuid, PRIMARY_SERVICE, 12, &serial_svc->svc_handle)) {
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free(serial_svc);
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return NULL;
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}
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for(uint8_t i = 0; i < SerialSvcGattCharacteristicCount; i++) {
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ble_gatt_characteristic_init(
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serial_svc->svc_handle, &ble_svc_serial_chars[i], &serial_svc->chars[i]);
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}
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ble_svc_serial_update_rpc_char(serial_svc, SerialServiceRpcStatusNotActive);
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serial_svc->buff_size_mtx = furi_mutex_alloc(FuriMutexTypeNormal);
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return serial_svc;
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}
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void ble_svc_serial_set_callbacks(
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BleServiceSerial* serial_svc,
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uint16_t buff_size,
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SerialServiceEventCallback callback,
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void* context) {
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furi_check(serial_svc);
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serial_svc->callback = callback;
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serial_svc->context = context;
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serial_svc->buff_size = buff_size;
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serial_svc->bytes_ready_to_receive = buff_size;
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uint32_t buff_size_reversed = REVERSE_BYTES_U32(serial_svc->buff_size);
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ble_gatt_characteristic_update(
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serial_svc->svc_handle,
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&serial_svc->chars[SerialSvcGattCharacteristicFlowCtrl],
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&buff_size_reversed);
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}
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void ble_svc_serial_notify_buffer_is_empty(BleServiceSerial* serial_svc) {
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furi_check(serial_svc);
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furi_check(serial_svc->buff_size_mtx);
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furi_check(furi_mutex_acquire(serial_svc->buff_size_mtx, FuriWaitForever) == FuriStatusOk);
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if(serial_svc->bytes_ready_to_receive == 0) {
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FURI_LOG_D(TAG, "Buffer is empty. Notifying client");
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serial_svc->bytes_ready_to_receive = serial_svc->buff_size;
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uint32_t buff_size_reversed = REVERSE_BYTES_U32(serial_svc->buff_size);
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ble_gatt_characteristic_update(
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serial_svc->svc_handle,
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&serial_svc->chars[SerialSvcGattCharacteristicFlowCtrl],
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&buff_size_reversed);
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}
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furi_check(furi_mutex_release(serial_svc->buff_size_mtx) == FuriStatusOk);
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}
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void ble_svc_serial_stop(BleServiceSerial* serial_svc) {
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furi_check(serial_svc);
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ble_event_dispatcher_unregister_svc_handler(serial_svc->event_handler);
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for(uint8_t i = 0; i < SerialSvcGattCharacteristicCount; i++) {
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ble_gatt_characteristic_delete(serial_svc->svc_handle, &serial_svc->chars[i]);
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}
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ble_gatt_service_delete(serial_svc->svc_handle);
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furi_mutex_free(serial_svc->buff_size_mtx);
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free(serial_svc);
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}
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bool ble_svc_serial_update_tx(BleServiceSerial* serial_svc, uint8_t* data, uint16_t data_len) {
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if(data_len > BLE_SVC_SERIAL_DATA_LEN_MAX) {
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return false;
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}
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for(uint16_t remained = data_len; remained > 0;) {
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uint8_t value_len = MIN(BLE_SVC_SERIAL_CHAR_VALUE_LEN_MAX, remained);
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uint16_t value_offset = data_len - remained;
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remained -= value_len;
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tBleStatus result = aci_gatt_update_char_value_ext(
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0,
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serial_svc->svc_handle,
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serial_svc->chars[SerialSvcGattCharacteristicTx].handle,
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remained ? 0x00 : 0x02,
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data_len,
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value_offset,
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value_len,
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data + value_offset);
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if(result) {
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FURI_LOG_E(TAG, "Failed updating TX characteristic: %d", result);
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return false;
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}
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}
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return true;
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}
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void ble_svc_serial_set_rpc_active(BleServiceSerial* serial_svc, bool active) {
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furi_check(serial_svc);
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ble_svc_serial_update_rpc_char(
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serial_svc, active ? SerialServiceRpcStatusActive : SerialServiceRpcStatusNotActive);
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}
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