uavcan.equipment.air_data.AngleOfAttack.h 4.0 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120
  1. #pragma once
  2. #include <stdbool.h>
  3. #include <stdint.h>
  4. #include <canard.h>
  5. #define UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_MAX_SIZE 5
  6. #define UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_SIGNATURE (0xD5513C3F7AFAC74EULL)
  7. #define UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_ID 1025
  8. #define UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_SENSOR_ID_LEFT 254
  9. #define UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_SENSOR_ID_RIGHT 255
  10. #if defined(__cplusplus) && defined(DRONECAN_CXX_WRAPPERS)
  11. class uavcan_equipment_air_data_AngleOfAttack_cxx_iface;
  12. #endif
  13. struct uavcan_equipment_air_data_AngleOfAttack {
  14. #if defined(__cplusplus) && defined(DRONECAN_CXX_WRAPPERS)
  15. using cxx_iface = uavcan_equipment_air_data_AngleOfAttack_cxx_iface;
  16. #endif
  17. uint8_t sensor_id;
  18. float aoa;
  19. float aoa_variance;
  20. };
  21. #ifdef __cplusplus
  22. extern "C"
  23. {
  24. #endif
  25. uint32_t _uavcan_equipment_air_data_AngleOfAttack_encode(struct uavcan_equipment_air_data_AngleOfAttack* msg, uint8_t* buffer
  26. #if CANARD_ENABLE_TAO_OPTION
  27. , bool tao
  28. #endif
  29. );
  30. bool _uavcan_equipment_air_data_AngleOfAttack_decode(const CanardRxTransfer* transfer, struct uavcan_equipment_air_data_AngleOfAttack* msg);
  31. static inline uint32_t uavcan_equipment_air_data_AngleOfAttack_encode(struct uavcan_equipment_air_data_AngleOfAttack* msg, uint8_t* buffer
  32. #if CANARD_ENABLE_TAO_OPTION
  33. , bool tao
  34. #endif
  35. ) {
  36. return _uavcan_equipment_air_data_AngleOfAttack_encode(msg, buffer
  37. #if CANARD_ENABLE_TAO_OPTION
  38. , tao
  39. #endif
  40. );
  41. }
  42. static inline bool uavcan_equipment_air_data_AngleOfAttack_decode(const CanardRxTransfer* transfer, struct uavcan_equipment_air_data_AngleOfAttack* msg) {
  43. return _uavcan_equipment_air_data_AngleOfAttack_decode(transfer, msg);
  44. }
  45. #if defined(CANARD_DSDLC_INTERNAL)
  46. static inline void __uavcan_equipment_air_data_AngleOfAttack_encode(uint8_t* buffer, uint32_t* bit_ofs, struct uavcan_equipment_air_data_AngleOfAttack* msg, bool tao);
  47. static inline bool __uavcan_equipment_air_data_AngleOfAttack_decode(const CanardRxTransfer* transfer, uint32_t* bit_ofs, struct uavcan_equipment_air_data_AngleOfAttack* msg, bool tao);
  48. void __uavcan_equipment_air_data_AngleOfAttack_encode(uint8_t* buffer, uint32_t* bit_ofs, struct uavcan_equipment_air_data_AngleOfAttack* msg, bool tao) {
  49. (void)buffer;
  50. (void)bit_ofs;
  51. (void)msg;
  52. (void)tao;
  53. canardEncodeScalar(buffer, *bit_ofs, 8, &msg->sensor_id);
  54. *bit_ofs += 8;
  55. {
  56. uint16_t float16_val = canardConvertNativeFloatToFloat16(msg->aoa);
  57. canardEncodeScalar(buffer, *bit_ofs, 16, &float16_val);
  58. }
  59. *bit_ofs += 16;
  60. {
  61. uint16_t float16_val = canardConvertNativeFloatToFloat16(msg->aoa_variance);
  62. canardEncodeScalar(buffer, *bit_ofs, 16, &float16_val);
  63. }
  64. *bit_ofs += 16;
  65. }
  66. /*
  67. decode uavcan_equipment_air_data_AngleOfAttack, return true on failure, false on success
  68. */
  69. bool __uavcan_equipment_air_data_AngleOfAttack_decode(const CanardRxTransfer* transfer, uint32_t* bit_ofs, struct uavcan_equipment_air_data_AngleOfAttack* msg, bool tao) {
  70. (void)transfer;
  71. (void)bit_ofs;
  72. (void)msg;
  73. (void)tao;
  74. canardDecodeScalar(transfer, *bit_ofs, 8, false, &msg->sensor_id);
  75. *bit_ofs += 8;
  76. {
  77. uint16_t float16_val;
  78. canardDecodeScalar(transfer, *bit_ofs, 16, true, &float16_val);
  79. msg->aoa = canardConvertFloat16ToNativeFloat(float16_val);
  80. }
  81. *bit_ofs += 16;
  82. {
  83. uint16_t float16_val;
  84. canardDecodeScalar(transfer, *bit_ofs, 16, true, &float16_val);
  85. msg->aoa_variance = canardConvertFloat16ToNativeFloat(float16_val);
  86. }
  87. *bit_ofs += 16;
  88. return false; /* success */
  89. }
  90. #endif
  91. #ifdef CANARD_DSDLC_TEST_BUILD
  92. struct uavcan_equipment_air_data_AngleOfAttack sample_uavcan_equipment_air_data_AngleOfAttack_msg(void);
  93. #endif
  94. #ifdef __cplusplus
  95. } // extern "C"
  96. #ifdef DRONECAN_CXX_WRAPPERS
  97. #include <canard/cxx_wrappers.h>
  98. BROADCAST_MESSAGE_CXX_IFACE(uavcan_equipment_air_data_AngleOfAttack, UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_ID, UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_SIGNATURE, UAVCAN_EQUIPMENT_AIR_DATA_ANGLEOFATTACK_MAX_SIZE);
  99. #endif
  100. #endif