#pragma once #include #include #include #include #include #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_MAX_SIZE 15 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_SIGNATURE (0x68FFFE70FC771952ULL) #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_ID 1050 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_SENSOR_TYPE_UNDEFINED 0 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_SENSOR_TYPE_SONAR 1 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_SENSOR_TYPE_LIDAR 2 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_SENSOR_TYPE_RADAR 3 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_READING_TYPE_UNDEFINED 0 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_READING_TYPE_VALID_RANGE 1 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_READING_TYPE_TOO_CLOSE 2 #define UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_READING_TYPE_TOO_FAR 3 #if defined(__cplusplus) && defined(DRONECAN_CXX_WRAPPERS) class uavcan_equipment_range_sensor_Measurement_cxx_iface; #endif struct uavcan_equipment_range_sensor_Measurement { #if defined(__cplusplus) && defined(DRONECAN_CXX_WRAPPERS) using cxx_iface = uavcan_equipment_range_sensor_Measurement_cxx_iface; #endif struct uavcan_Timestamp timestamp; uint8_t sensor_id; struct uavcan_CoarseOrientation beam_orientation_in_body_frame; float field_of_view; uint8_t sensor_type; uint8_t reading_type; float range; }; #ifdef __cplusplus extern "C" { #endif uint32_t _uavcan_equipment_range_sensor_Measurement_encode(struct uavcan_equipment_range_sensor_Measurement* msg, uint8_t* buffer #if CANARD_ENABLE_TAO_OPTION , bool tao #endif ); bool _uavcan_equipment_range_sensor_Measurement_decode(const CanardRxTransfer* transfer, struct uavcan_equipment_range_sensor_Measurement* msg); static inline uint32_t uavcan_equipment_range_sensor_Measurement_encode(struct uavcan_equipment_range_sensor_Measurement* msg, uint8_t* buffer #if CANARD_ENABLE_TAO_OPTION , bool tao #endif ) { return _uavcan_equipment_range_sensor_Measurement_encode(msg, buffer #if CANARD_ENABLE_TAO_OPTION , tao #endif ); } static inline bool uavcan_equipment_range_sensor_Measurement_decode(const CanardRxTransfer* transfer, struct uavcan_equipment_range_sensor_Measurement* msg) { return _uavcan_equipment_range_sensor_Measurement_decode(transfer, msg); } #if defined(CANARD_DSDLC_INTERNAL) static inline void __uavcan_equipment_range_sensor_Measurement_encode(uint8_t* buffer, uint32_t* bit_ofs, struct uavcan_equipment_range_sensor_Measurement* msg, bool tao); static inline bool __uavcan_equipment_range_sensor_Measurement_decode(const CanardRxTransfer* transfer, uint32_t* bit_ofs, struct uavcan_equipment_range_sensor_Measurement* msg, bool tao); void __uavcan_equipment_range_sensor_Measurement_encode(uint8_t* buffer, uint32_t* bit_ofs, struct uavcan_equipment_range_sensor_Measurement* msg, bool tao) { (void)buffer; (void)bit_ofs; (void)msg; (void)tao; __uavcan_Timestamp_encode(buffer, bit_ofs, &msg->timestamp, false); canardEncodeScalar(buffer, *bit_ofs, 8, &msg->sensor_id); *bit_ofs += 8; __uavcan_CoarseOrientation_encode(buffer, bit_ofs, &msg->beam_orientation_in_body_frame, false); { uint16_t float16_val = canardConvertNativeFloatToFloat16(msg->field_of_view); canardEncodeScalar(buffer, *bit_ofs, 16, &float16_val); } *bit_ofs += 16; canardEncodeScalar(buffer, *bit_ofs, 5, &msg->sensor_type); *bit_ofs += 5; canardEncodeScalar(buffer, *bit_ofs, 3, &msg->reading_type); *bit_ofs += 3; { uint16_t float16_val = canardConvertNativeFloatToFloat16(msg->range); canardEncodeScalar(buffer, *bit_ofs, 16, &float16_val); } *bit_ofs += 16; } /* decode uavcan_equipment_range_sensor_Measurement, return true on failure, false on success */ bool __uavcan_equipment_range_sensor_Measurement_decode(const CanardRxTransfer* transfer, uint32_t* bit_ofs, struct uavcan_equipment_range_sensor_Measurement* msg, bool tao) { (void)transfer; (void)bit_ofs; (void)msg; (void)tao; if (__uavcan_Timestamp_decode(transfer, bit_ofs, &msg->timestamp, false)) {return true;} canardDecodeScalar(transfer, *bit_ofs, 8, false, &msg->sensor_id); *bit_ofs += 8; if (__uavcan_CoarseOrientation_decode(transfer, bit_ofs, &msg->beam_orientation_in_body_frame, false)) {return true;} { uint16_t float16_val; canardDecodeScalar(transfer, *bit_ofs, 16, true, &float16_val); msg->field_of_view = canardConvertFloat16ToNativeFloat(float16_val); } *bit_ofs += 16; canardDecodeScalar(transfer, *bit_ofs, 5, false, &msg->sensor_type); *bit_ofs += 5; canardDecodeScalar(transfer, *bit_ofs, 3, false, &msg->reading_type); *bit_ofs += 3; { uint16_t float16_val; canardDecodeScalar(transfer, *bit_ofs, 16, true, &float16_val); msg->range = canardConvertFloat16ToNativeFloat(float16_val); } *bit_ofs += 16; return false; /* success */ } #endif #ifdef CANARD_DSDLC_TEST_BUILD struct uavcan_equipment_range_sensor_Measurement sample_uavcan_equipment_range_sensor_Measurement_msg(void); #endif #ifdef __cplusplus } // extern "C" #ifdef DRONECAN_CXX_WRAPPERS #include BROADCAST_MESSAGE_CXX_IFACE(uavcan_equipment_range_sensor_Measurement, UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_ID, UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_SIGNATURE, UAVCAN_EQUIPMENT_RANGE_SENSOR_MEASUREMENT_MAX_SIZE); #endif #endif