mavlink_msg_debug_float_array.h 16 KB

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  1. #pragma once
  2. // MESSAGE DEBUG_FLOAT_ARRAY PACKING
  3. #define MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY 350
  4. typedef struct __mavlink_debug_float_array_t {
  5. uint64_t time_usec; /*< [us] Timestamp (UNIX Epoch time or time since system boot). The receiving end can infer timestamp format (since 1.1.1970 or since system boot) by checking for the magnitude of the number.*/
  6. uint16_t array_id; /*< Unique ID used to discriminate between arrays*/
  7. char name[10]; /*< Name, for human-friendly display in a Ground Control Station*/
  8. float data[58]; /*< data*/
  9. } mavlink_debug_float_array_t;
  10. #define MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN 252
  11. #define MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN 20
  12. #define MAVLINK_MSG_ID_350_LEN 252
  13. #define MAVLINK_MSG_ID_350_MIN_LEN 20
  14. #define MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC 232
  15. #define MAVLINK_MSG_ID_350_CRC 232
  16. #define MAVLINK_MSG_DEBUG_FLOAT_ARRAY_FIELD_NAME_LEN 10
  17. #define MAVLINK_MSG_DEBUG_FLOAT_ARRAY_FIELD_DATA_LEN 58
  18. #if MAVLINK_COMMAND_24BIT
  19. #define MAVLINK_MESSAGE_INFO_DEBUG_FLOAT_ARRAY { \
  20. 350, \
  21. "DEBUG_FLOAT_ARRAY", \
  22. 4, \
  23. { { "time_usec", NULL, MAVLINK_TYPE_UINT64_T, 0, 0, offsetof(mavlink_debug_float_array_t, time_usec) }, \
  24. { "name", NULL, MAVLINK_TYPE_CHAR, 10, 10, offsetof(mavlink_debug_float_array_t, name) }, \
  25. { "array_id", NULL, MAVLINK_TYPE_UINT16_T, 0, 8, offsetof(mavlink_debug_float_array_t, array_id) }, \
  26. { "data", NULL, MAVLINK_TYPE_FLOAT, 58, 20, offsetof(mavlink_debug_float_array_t, data) }, \
  27. } \
  28. }
  29. #else
  30. #define MAVLINK_MESSAGE_INFO_DEBUG_FLOAT_ARRAY { \
  31. "DEBUG_FLOAT_ARRAY", \
  32. 4, \
  33. { { "time_usec", NULL, MAVLINK_TYPE_UINT64_T, 0, 0, offsetof(mavlink_debug_float_array_t, time_usec) }, \
  34. { "name", NULL, MAVLINK_TYPE_CHAR, 10, 10, offsetof(mavlink_debug_float_array_t, name) }, \
  35. { "array_id", NULL, MAVLINK_TYPE_UINT16_T, 0, 8, offsetof(mavlink_debug_float_array_t, array_id) }, \
  36. { "data", NULL, MAVLINK_TYPE_FLOAT, 58, 20, offsetof(mavlink_debug_float_array_t, data) }, \
  37. } \
  38. }
  39. #endif
  40. /**
  41. * @brief Pack a debug_float_array message
  42. * @param system_id ID of this system
  43. * @param component_id ID of this component (e.g. 200 for IMU)
  44. * @param msg The MAVLink message to compress the data into
  45. *
  46. * @param time_usec [us] Timestamp (UNIX Epoch time or time since system boot). The receiving end can infer timestamp format (since 1.1.1970 or since system boot) by checking for the magnitude of the number.
  47. * @param name Name, for human-friendly display in a Ground Control Station
  48. * @param array_id Unique ID used to discriminate between arrays
  49. * @param data data
  50. * @return length of the message in bytes (excluding serial stream start sign)
  51. */
  52. static inline uint16_t mavlink_msg_debug_float_array_pack(uint8_t system_id, uint8_t component_id, mavlink_message_t* msg,
  53. uint64_t time_usec, const char *name, uint16_t array_id, const float *data)
  54. {
  55. #if MAVLINK_NEED_BYTE_SWAP || !MAVLINK_ALIGNED_FIELDS
  56. char buf[MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN];
  57. _mav_put_uint64_t(buf, 0, time_usec);
  58. _mav_put_uint16_t(buf, 8, array_id);
  59. _mav_put_char_array(buf, 10, name, 10);
  60. _mav_put_float_array(buf, 20, data, 58);
  61. memcpy(_MAV_PAYLOAD_NON_CONST(msg), buf, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  62. #else
  63. mavlink_debug_float_array_t packet;
  64. packet.time_usec = time_usec;
  65. packet.array_id = array_id;
  66. mav_array_memcpy(packet.name, name, sizeof(char)*10);
  67. mav_array_memcpy(packet.data, data, sizeof(float)*58);
  68. memcpy(_MAV_PAYLOAD_NON_CONST(msg), &packet, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  69. #endif
  70. msg->msgid = MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY;
  71. return mavlink_finalize_message(msg, system_id, component_id, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  72. }
  73. /**
  74. * @brief Pack a debug_float_array message
  75. * @param system_id ID of this system
  76. * @param component_id ID of this component (e.g. 200 for IMU)
  77. * @param status MAVLink status structure
  78. * @param msg The MAVLink message to compress the data into
  79. *
  80. * @param time_usec [us] Timestamp (UNIX Epoch time or time since system boot). The receiving end can infer timestamp format (since 1.1.1970 or since system boot) by checking for the magnitude of the number.
  81. * @param name Name, for human-friendly display in a Ground Control Station
  82. * @param array_id Unique ID used to discriminate between arrays
  83. * @param data data
  84. * @return length of the message in bytes (excluding serial stream start sign)
  85. */
  86. static inline uint16_t mavlink_msg_debug_float_array_pack_status(uint8_t system_id, uint8_t component_id, mavlink_status_t *_status, mavlink_message_t* msg,
  87. uint64_t time_usec, const char *name, uint16_t array_id, const float *data)
  88. {
  89. #if MAVLINK_NEED_BYTE_SWAP || !MAVLINK_ALIGNED_FIELDS
  90. char buf[MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN];
  91. _mav_put_uint64_t(buf, 0, time_usec);
  92. _mav_put_uint16_t(buf, 8, array_id);
  93. _mav_put_char_array(buf, 10, name, 10);
  94. _mav_put_float_array(buf, 20, data, 58);
  95. memcpy(_MAV_PAYLOAD_NON_CONST(msg), buf, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  96. #else
  97. mavlink_debug_float_array_t packet;
  98. packet.time_usec = time_usec;
  99. packet.array_id = array_id;
  100. mav_array_memcpy(packet.name, name, sizeof(char)*10);
  101. mav_array_memcpy(packet.data, data, sizeof(float)*58);
  102. memcpy(_MAV_PAYLOAD_NON_CONST(msg), &packet, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  103. #endif
  104. msg->msgid = MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY;
  105. #if MAVLINK_CRC_EXTRA
  106. return mavlink_finalize_message_buffer(msg, system_id, component_id, _status, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  107. #else
  108. return mavlink_finalize_message_buffer(msg, system_id, component_id, _status, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  109. #endif
  110. }
  111. /**
  112. * @brief Pack a debug_float_array message on a channel
  113. * @param system_id ID of this system
  114. * @param component_id ID of this component (e.g. 200 for IMU)
  115. * @param chan The MAVLink channel this message will be sent over
  116. * @param msg The MAVLink message to compress the data into
  117. * @param time_usec [us] Timestamp (UNIX Epoch time or time since system boot). The receiving end can infer timestamp format (since 1.1.1970 or since system boot) by checking for the magnitude of the number.
  118. * @param name Name, for human-friendly display in a Ground Control Station
  119. * @param array_id Unique ID used to discriminate between arrays
  120. * @param data data
  121. * @return length of the message in bytes (excluding serial stream start sign)
  122. */
  123. static inline uint16_t mavlink_msg_debug_float_array_pack_chan(uint8_t system_id, uint8_t component_id, uint8_t chan,
  124. mavlink_message_t* msg,
  125. uint64_t time_usec,const char *name,uint16_t array_id,const float *data)
  126. {
  127. #if MAVLINK_NEED_BYTE_SWAP || !MAVLINK_ALIGNED_FIELDS
  128. char buf[MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN];
  129. _mav_put_uint64_t(buf, 0, time_usec);
  130. _mav_put_uint16_t(buf, 8, array_id);
  131. _mav_put_char_array(buf, 10, name, 10);
  132. _mav_put_float_array(buf, 20, data, 58);
  133. memcpy(_MAV_PAYLOAD_NON_CONST(msg), buf, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  134. #else
  135. mavlink_debug_float_array_t packet;
  136. packet.time_usec = time_usec;
  137. packet.array_id = array_id;
  138. mav_array_memcpy(packet.name, name, sizeof(char)*10);
  139. mav_array_memcpy(packet.data, data, sizeof(float)*58);
  140. memcpy(_MAV_PAYLOAD_NON_CONST(msg), &packet, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  141. #endif
  142. msg->msgid = MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY;
  143. return mavlink_finalize_message_chan(msg, system_id, component_id, chan, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  144. }
  145. /**
  146. * @brief Encode a debug_float_array struct
  147. *
  148. * @param system_id ID of this system
  149. * @param component_id ID of this component (e.g. 200 for IMU)
  150. * @param msg The MAVLink message to compress the data into
  151. * @param debug_float_array C-struct to read the message contents from
  152. */
  153. static inline uint16_t mavlink_msg_debug_float_array_encode(uint8_t system_id, uint8_t component_id, mavlink_message_t* msg, const mavlink_debug_float_array_t* debug_float_array)
  154. {
  155. return mavlink_msg_debug_float_array_pack(system_id, component_id, msg, debug_float_array->time_usec, debug_float_array->name, debug_float_array->array_id, debug_float_array->data);
  156. }
  157. /**
  158. * @brief Encode a debug_float_array struct on a channel
  159. *
  160. * @param system_id ID of this system
  161. * @param component_id ID of this component (e.g. 200 for IMU)
  162. * @param chan The MAVLink channel this message will be sent over
  163. * @param msg The MAVLink message to compress the data into
  164. * @param debug_float_array C-struct to read the message contents from
  165. */
  166. static inline uint16_t mavlink_msg_debug_float_array_encode_chan(uint8_t system_id, uint8_t component_id, uint8_t chan, mavlink_message_t* msg, const mavlink_debug_float_array_t* debug_float_array)
  167. {
  168. return mavlink_msg_debug_float_array_pack_chan(system_id, component_id, chan, msg, debug_float_array->time_usec, debug_float_array->name, debug_float_array->array_id, debug_float_array->data);
  169. }
  170. /**
  171. * @brief Encode a debug_float_array struct with provided status structure
  172. *
  173. * @param system_id ID of this system
  174. * @param component_id ID of this component (e.g. 200 for IMU)
  175. * @param status MAVLink status structure
  176. * @param msg The MAVLink message to compress the data into
  177. * @param debug_float_array C-struct to read the message contents from
  178. */
  179. static inline uint16_t mavlink_msg_debug_float_array_encode_status(uint8_t system_id, uint8_t component_id, mavlink_status_t* _status, mavlink_message_t* msg, const mavlink_debug_float_array_t* debug_float_array)
  180. {
  181. return mavlink_msg_debug_float_array_pack_status(system_id, component_id, _status, msg, debug_float_array->time_usec, debug_float_array->name, debug_float_array->array_id, debug_float_array->data);
  182. }
  183. /**
  184. * @brief Send a debug_float_array message
  185. * @param chan MAVLink channel to send the message
  186. *
  187. * @param time_usec [us] Timestamp (UNIX Epoch time or time since system boot). The receiving end can infer timestamp format (since 1.1.1970 or since system boot) by checking for the magnitude of the number.
  188. * @param name Name, for human-friendly display in a Ground Control Station
  189. * @param array_id Unique ID used to discriminate between arrays
  190. * @param data data
  191. */
  192. #ifdef MAVLINK_USE_CONVENIENCE_FUNCTIONS
  193. static inline void mavlink_msg_debug_float_array_send(mavlink_channel_t chan, uint64_t time_usec, const char *name, uint16_t array_id, const float *data)
  194. {
  195. #if MAVLINK_NEED_BYTE_SWAP || !MAVLINK_ALIGNED_FIELDS
  196. char buf[MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN];
  197. _mav_put_uint64_t(buf, 0, time_usec);
  198. _mav_put_uint16_t(buf, 8, array_id);
  199. _mav_put_char_array(buf, 10, name, 10);
  200. _mav_put_float_array(buf, 20, data, 58);
  201. _mav_finalize_message_chan_send(chan, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY, buf, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  202. #else
  203. mavlink_debug_float_array_t packet;
  204. packet.time_usec = time_usec;
  205. packet.array_id = array_id;
  206. mav_array_memcpy(packet.name, name, sizeof(char)*10);
  207. mav_array_memcpy(packet.data, data, sizeof(float)*58);
  208. _mav_finalize_message_chan_send(chan, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY, (const char *)&packet, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  209. #endif
  210. }
  211. /**
  212. * @brief Send a debug_float_array message
  213. * @param chan MAVLink channel to send the message
  214. * @param struct The MAVLink struct to serialize
  215. */
  216. static inline void mavlink_msg_debug_float_array_send_struct(mavlink_channel_t chan, const mavlink_debug_float_array_t* debug_float_array)
  217. {
  218. #if MAVLINK_NEED_BYTE_SWAP || !MAVLINK_ALIGNED_FIELDS
  219. mavlink_msg_debug_float_array_send(chan, debug_float_array->time_usec, debug_float_array->name, debug_float_array->array_id, debug_float_array->data);
  220. #else
  221. _mav_finalize_message_chan_send(chan, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY, (const char *)debug_float_array, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  222. #endif
  223. }
  224. #if MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN <= MAVLINK_MAX_PAYLOAD_LEN
  225. /*
  226. This variant of _send() can be used to save stack space by re-using
  227. memory from the receive buffer. The caller provides a
  228. mavlink_message_t which is the size of a full mavlink message. This
  229. is usually the receive buffer for the channel, and allows a reply to an
  230. incoming message with minimum stack space usage.
  231. */
  232. static inline void mavlink_msg_debug_float_array_send_buf(mavlink_message_t *msgbuf, mavlink_channel_t chan, uint64_t time_usec, const char *name, uint16_t array_id, const float *data)
  233. {
  234. #if MAVLINK_NEED_BYTE_SWAP || !MAVLINK_ALIGNED_FIELDS
  235. char *buf = (char *)msgbuf;
  236. _mav_put_uint64_t(buf, 0, time_usec);
  237. _mav_put_uint16_t(buf, 8, array_id);
  238. _mav_put_char_array(buf, 10, name, 10);
  239. _mav_put_float_array(buf, 20, data, 58);
  240. _mav_finalize_message_chan_send(chan, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY, buf, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  241. #else
  242. mavlink_debug_float_array_t *packet = (mavlink_debug_float_array_t *)msgbuf;
  243. packet->time_usec = time_usec;
  244. packet->array_id = array_id;
  245. mav_array_memcpy(packet->name, name, sizeof(char)*10);
  246. mav_array_memcpy(packet->data, data, sizeof(float)*58);
  247. _mav_finalize_message_chan_send(chan, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY, (const char *)packet, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_MIN_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_CRC);
  248. #endif
  249. }
  250. #endif
  251. #endif
  252. // MESSAGE DEBUG_FLOAT_ARRAY UNPACKING
  253. /**
  254. * @brief Get field time_usec from debug_float_array message
  255. *
  256. * @return [us] Timestamp (UNIX Epoch time or time since system boot). The receiving end can infer timestamp format (since 1.1.1970 or since system boot) by checking for the magnitude of the number.
  257. */
  258. static inline uint64_t mavlink_msg_debug_float_array_get_time_usec(const mavlink_message_t* msg)
  259. {
  260. return _MAV_RETURN_uint64_t(msg, 0);
  261. }
  262. /**
  263. * @brief Get field name from debug_float_array message
  264. *
  265. * @return Name, for human-friendly display in a Ground Control Station
  266. */
  267. static inline uint16_t mavlink_msg_debug_float_array_get_name(const mavlink_message_t* msg, char *name)
  268. {
  269. return _MAV_RETURN_char_array(msg, name, 10, 10);
  270. }
  271. /**
  272. * @brief Get field array_id from debug_float_array message
  273. *
  274. * @return Unique ID used to discriminate between arrays
  275. */
  276. static inline uint16_t mavlink_msg_debug_float_array_get_array_id(const mavlink_message_t* msg)
  277. {
  278. return _MAV_RETURN_uint16_t(msg, 8);
  279. }
  280. /**
  281. * @brief Get field data from debug_float_array message
  282. *
  283. * @return data
  284. */
  285. static inline uint16_t mavlink_msg_debug_float_array_get_data(const mavlink_message_t* msg, float *data)
  286. {
  287. return _MAV_RETURN_float_array(msg, data, 58, 20);
  288. }
  289. /**
  290. * @brief Decode a debug_float_array message into a struct
  291. *
  292. * @param msg The message to decode
  293. * @param debug_float_array C-struct to decode the message contents into
  294. */
  295. static inline void mavlink_msg_debug_float_array_decode(const mavlink_message_t* msg, mavlink_debug_float_array_t* debug_float_array)
  296. {
  297. #if MAVLINK_NEED_BYTE_SWAP || !MAVLINK_ALIGNED_FIELDS
  298. debug_float_array->time_usec = mavlink_msg_debug_float_array_get_time_usec(msg);
  299. debug_float_array->array_id = mavlink_msg_debug_float_array_get_array_id(msg);
  300. mavlink_msg_debug_float_array_get_name(msg, debug_float_array->name);
  301. mavlink_msg_debug_float_array_get_data(msg, debug_float_array->data);
  302. #else
  303. uint8_t len = msg->len < MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN? msg->len : MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN;
  304. memset(debug_float_array, 0, MAVLINK_MSG_ID_DEBUG_FLOAT_ARRAY_LEN);
  305. memcpy(debug_float_array, _MAV_PAYLOAD(msg), len);
  306. #endif
  307. }