1 | #ifndef _MAVLINK_HELPERS_H_ |
---|
2 | #define _MAVLINK_HELPERS_H_ |
---|
3 | |
---|
4 | #include "string.h" |
---|
5 | #include "checksum.h" |
---|
6 | #include "mavlink_types.h" |
---|
7 | #include "mavlink_conversions.h" |
---|
8 | #include <stdio.h> |
---|
9 | |
---|
10 | #ifndef MAVLINK_HELPER |
---|
11 | #define MAVLINK_HELPER |
---|
12 | #endif |
---|
13 | |
---|
14 | #include "mavlink_sha256.h" |
---|
15 | |
---|
16 | /* |
---|
17 | * Internal function to give access to the channel status for each channel |
---|
18 | */ |
---|
19 | #ifndef MAVLINK_GET_CHANNEL_STATUS |
---|
20 | MAVLINK_HELPER mavlink_status_t* mavlink_get_channel_status(uint8_t chan) |
---|
21 | { |
---|
22 | #ifdef MAVLINK_EXTERNAL_RX_STATUS |
---|
23 | // No m_mavlink_status array defined in function, |
---|
24 | // has to be defined externally |
---|
25 | #else |
---|
26 | static mavlink_status_t m_mavlink_status[MAVLINK_COMM_NUM_BUFFERS]; |
---|
27 | #endif |
---|
28 | return &m_mavlink_status[chan]; |
---|
29 | } |
---|
30 | #endif |
---|
31 | |
---|
32 | /* |
---|
33 | * Internal function to give access to the channel buffer for each channel |
---|
34 | */ |
---|
35 | #ifndef MAVLINK_GET_CHANNEL_BUFFER |
---|
36 | MAVLINK_HELPER mavlink_message_t* mavlink_get_channel_buffer(uint8_t chan) |
---|
37 | { |
---|
38 | |
---|
39 | #ifdef MAVLINK_EXTERNAL_RX_BUFFER |
---|
40 | // No m_mavlink_buffer array defined in function, |
---|
41 | // has to be defined externally |
---|
42 | #else |
---|
43 | static mavlink_message_t m_mavlink_buffer[MAVLINK_COMM_NUM_BUFFERS]; |
---|
44 | #endif |
---|
45 | return &m_mavlink_buffer[chan]; |
---|
46 | } |
---|
47 | #endif // MAVLINK_GET_CHANNEL_BUFFER |
---|
48 | |
---|
49 | /** |
---|
50 | * @brief Reset the status of a channel. |
---|
51 | */ |
---|
52 | MAVLINK_HELPER void mavlink_reset_channel_status(uint8_t chan) |
---|
53 | { |
---|
54 | mavlink_status_t *status = mavlink_get_channel_status(chan); |
---|
55 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
56 | } |
---|
57 | |
---|
58 | /** |
---|
59 | * @brief create a signature block for a packet |
---|
60 | */ |
---|
61 | MAVLINK_HELPER uint8_t mavlink_sign_packet(mavlink_signing_t *signing, |
---|
62 | uint8_t signature[MAVLINK_SIGNATURE_BLOCK_LEN], |
---|
63 | const uint8_t *header, uint8_t header_len, |
---|
64 | const uint8_t *packet, uint8_t packet_len, |
---|
65 | const uint8_t crc[2]) |
---|
66 | { |
---|
67 | mavlink_sha256_ctx ctx; |
---|
68 | union { |
---|
69 | uint64_t t64; |
---|
70 | uint8_t t8[8]; |
---|
71 | } tstamp; |
---|
72 | if (signing == NULL || !(signing->flags & MAVLINK_SIGNING_FLAG_SIGN_OUTGOING)) { |
---|
73 | return 0; |
---|
74 | } |
---|
75 | signature[0] = signing->link_id; |
---|
76 | tstamp.t64 = signing->timestamp; |
---|
77 | memcpy(&signature[1], tstamp.t8, 6); |
---|
78 | signing->timestamp++; |
---|
79 | |
---|
80 | mavlink_sha256_init(&ctx); |
---|
81 | mavlink_sha256_update(&ctx, signing->secret_key, sizeof(signing->secret_key)); |
---|
82 | mavlink_sha256_update(&ctx, header, header_len); |
---|
83 | mavlink_sha256_update(&ctx, packet, packet_len); |
---|
84 | mavlink_sha256_update(&ctx, crc, 2); |
---|
85 | mavlink_sha256_update(&ctx, signature, 7); |
---|
86 | mavlink_sha256_final_48(&ctx, &signature[7]); |
---|
87 | |
---|
88 | return MAVLINK_SIGNATURE_BLOCK_LEN; |
---|
89 | } |
---|
90 | |
---|
91 | /** |
---|
92 | * return new packet length for trimming payload of any trailing zero |
---|
93 | * bytes. Used in MAVLink2 to give simple support for variable length |
---|
94 | * arrays. |
---|
95 | */ |
---|
96 | MAVLINK_HELPER uint8_t _mav_trim_payload(const char *payload, uint8_t length) |
---|
97 | { |
---|
98 | while (length > 0 && payload[length-1] == 0) { |
---|
99 | length--; |
---|
100 | } |
---|
101 | return length; |
---|
102 | } |
---|
103 | |
---|
104 | /** |
---|
105 | * @brief check a signature block for a packet |
---|
106 | */ |
---|
107 | MAVLINK_HELPER bool mavlink_signature_check(mavlink_signing_t *signing, |
---|
108 | mavlink_signing_streams_t *signing_streams, |
---|
109 | const mavlink_message_t *msg) |
---|
110 | { |
---|
111 | if (signing == NULL) { |
---|
112 | return true; |
---|
113 | } |
---|
114 | const uint8_t *p = (const uint8_t *)&msg->magic; |
---|
115 | const uint8_t *psig = msg->signature; |
---|
116 | const uint8_t *incoming_signature = psig+7; |
---|
117 | mavlink_sha256_ctx ctx; |
---|
118 | uint8_t signature[6]; |
---|
119 | uint16_t i; |
---|
120 | |
---|
121 | mavlink_sha256_init(&ctx); |
---|
122 | mavlink_sha256_update(&ctx, signing->secret_key, sizeof(signing->secret_key)); |
---|
123 | mavlink_sha256_update(&ctx, p, MAVLINK_CORE_HEADER_LEN+1+msg->len); |
---|
124 | mavlink_sha256_update(&ctx, msg->ck, 2); |
---|
125 | mavlink_sha256_update(&ctx, psig, 1+6); |
---|
126 | mavlink_sha256_final_48(&ctx, signature); |
---|
127 | if (memcmp(signature, incoming_signature, 6) != 0) { |
---|
128 | return false; |
---|
129 | } |
---|
130 | |
---|
131 | // now check timestamp |
---|
132 | union tstamp { |
---|
133 | uint64_t t64; |
---|
134 | uint8_t t8[8]; |
---|
135 | } tstamp; |
---|
136 | uint8_t link_id = psig[0]; |
---|
137 | tstamp.t64 = 0; |
---|
138 | memcpy(tstamp.t8, psig+1, 6); |
---|
139 | |
---|
140 | if (signing_streams == NULL) { |
---|
141 | return false; |
---|
142 | } |
---|
143 | |
---|
144 | // find stream |
---|
145 | for (i=0; i<signing_streams->num_signing_streams; i++) { |
---|
146 | if (msg->sysid == signing_streams->stream[i].sysid && |
---|
147 | msg->compid == signing_streams->stream[i].compid && |
---|
148 | link_id == signing_streams->stream[i].link_id) { |
---|
149 | break; |
---|
150 | } |
---|
151 | } |
---|
152 | if (i == signing_streams->num_signing_streams) { |
---|
153 | if (signing_streams->num_signing_streams >= MAVLINK_MAX_SIGNING_STREAMS) { |
---|
154 | // over max number of streams |
---|
155 | return false; |
---|
156 | } |
---|
157 | // new stream. Only accept if timestamp is not more than 1 minute old |
---|
158 | if (tstamp.t64 + 6000*1000UL < signing->timestamp) { |
---|
159 | return false; |
---|
160 | } |
---|
161 | // add new stream |
---|
162 | signing_streams->stream[i].sysid = msg->sysid; |
---|
163 | signing_streams->stream[i].compid = msg->compid; |
---|
164 | signing_streams->stream[i].link_id = link_id; |
---|
165 | signing_streams->num_signing_streams++; |
---|
166 | } else { |
---|
167 | union tstamp last_tstamp; |
---|
168 | last_tstamp.t64 = 0; |
---|
169 | memcpy(last_tstamp.t8, signing_streams->stream[i].timestamp_bytes, 6); |
---|
170 | if (tstamp.t64 <= last_tstamp.t64) { |
---|
171 | // repeating old timestamp |
---|
172 | return false; |
---|
173 | } |
---|
174 | } |
---|
175 | |
---|
176 | // remember last timestamp |
---|
177 | memcpy(signing_streams->stream[i].timestamp_bytes, psig+1, 6); |
---|
178 | |
---|
179 | // our next timestamp must be at least this timestamp |
---|
180 | if (tstamp.t64 > signing->timestamp) { |
---|
181 | signing->timestamp = tstamp.t64; |
---|
182 | } |
---|
183 | return true; |
---|
184 | } |
---|
185 | |
---|
186 | |
---|
187 | /** |
---|
188 | * @brief Finalize a MAVLink message with channel assignment |
---|
189 | * |
---|
190 | * This function calculates the checksum and sets length and aircraft id correctly. |
---|
191 | * It assumes that the message id and the payload are already correctly set. This function |
---|
192 | * can also be used if the message header has already been written before (as in mavlink_msg_xxx_pack |
---|
193 | * instead of mavlink_msg_xxx_pack_headerless), it just introduces little extra overhead. |
---|
194 | * |
---|
195 | * @param msg Message to finalize |
---|
196 | * @param system_id Id of the sending (this) system, 1-127 |
---|
197 | * @param length Message length |
---|
198 | */ |
---|
199 | MAVLINK_HELPER uint16_t mavlink_finalize_message_chan(mavlink_message_t* msg, uint8_t system_id, uint8_t component_id, |
---|
200 | uint8_t chan, uint8_t min_length, uint8_t length, uint8_t crc_extra) |
---|
201 | { |
---|
202 | mavlink_status_t *status = mavlink_get_channel_status(chan); |
---|
203 | bool mavlink1 = (status->flags & MAVLINK_STATUS_FLAG_OUT_MAVLINK1) != 0; |
---|
204 | bool signing = (!mavlink1) && status->signing && (status->signing->flags & MAVLINK_SIGNING_FLAG_SIGN_OUTGOING); |
---|
205 | uint8_t signature_len = signing? MAVLINK_SIGNATURE_BLOCK_LEN : 0; |
---|
206 | uint8_t header_len = MAVLINK_CORE_HEADER_LEN+1; |
---|
207 | uint8_t buf[MAVLINK_CORE_HEADER_LEN+1]; |
---|
208 | if (mavlink1) { |
---|
209 | msg->magic = MAVLINK_STX_MAVLINK1; |
---|
210 | header_len = MAVLINK_CORE_HEADER_MAVLINK1_LEN+1; |
---|
211 | } else { |
---|
212 | msg->magic = MAVLINK_STX; |
---|
213 | } |
---|
214 | msg->len = mavlink1?min_length:_mav_trim_payload(_MAV_PAYLOAD(msg), length); |
---|
215 | msg->sysid = system_id; |
---|
216 | msg->compid = component_id; |
---|
217 | msg->incompat_flags = 0; |
---|
218 | if (signing) { |
---|
219 | msg->incompat_flags |= MAVLINK_IFLAG_SIGNED; |
---|
220 | } |
---|
221 | msg->compat_flags = 0; |
---|
222 | msg->seq = status->current_tx_seq; |
---|
223 | status->current_tx_seq = status->current_tx_seq + 1; |
---|
224 | |
---|
225 | // form the header as a byte array for the crc |
---|
226 | buf[0] = msg->magic; |
---|
227 | buf[1] = msg->len; |
---|
228 | if (mavlink1) { |
---|
229 | buf[2] = msg->seq; |
---|
230 | buf[3] = msg->sysid; |
---|
231 | buf[4] = msg->compid; |
---|
232 | buf[5] = msg->msgid & 0xFF; |
---|
233 | } else { |
---|
234 | buf[2] = msg->incompat_flags; |
---|
235 | buf[3] = msg->compat_flags; |
---|
236 | buf[4] = msg->seq; |
---|
237 | buf[5] = msg->sysid; |
---|
238 | buf[6] = msg->compid; |
---|
239 | buf[7] = msg->msgid & 0xFF; |
---|
240 | buf[8] = (msg->msgid >> 8) & 0xFF; |
---|
241 | buf[9] = (msg->msgid >> 16) & 0xFF; |
---|
242 | } |
---|
243 | |
---|
244 | msg->checksum = crc_calculate(&buf[1], header_len-1); |
---|
245 | crc_accumulate_buffer(&msg->checksum, _MAV_PAYLOAD(msg), msg->len); |
---|
246 | crc_accumulate(crc_extra, &msg->checksum); |
---|
247 | mavlink_ck_a(msg) = (uint8_t)(msg->checksum & 0xFF); |
---|
248 | mavlink_ck_b(msg) = (uint8_t)(msg->checksum >> 8); |
---|
249 | |
---|
250 | if (signing) { |
---|
251 | mavlink_sign_packet(status->signing, |
---|
252 | msg->signature, |
---|
253 | (const uint8_t *)buf, header_len, |
---|
254 | (const uint8_t *)_MAV_PAYLOAD(msg), msg->len, |
---|
255 | (const uint8_t *)_MAV_PAYLOAD(msg)+(uint16_t)msg->len); |
---|
256 | } |
---|
257 | |
---|
258 | return msg->len + header_len + 2 + signature_len; |
---|
259 | } |
---|
260 | |
---|
261 | |
---|
262 | /** |
---|
263 | * @brief Finalize a MAVLink message with MAVLINK_COMM_0 as default channel |
---|
264 | */ |
---|
265 | MAVLINK_HELPER uint16_t mavlink_finalize_message(mavlink_message_t* msg, uint8_t system_id, uint8_t component_id, |
---|
266 | uint8_t min_length, uint8_t length, uint8_t crc_extra) |
---|
267 | { |
---|
268 | return mavlink_finalize_message_chan(msg, system_id, component_id, MAVLINK_COMM_0, min_length, length, crc_extra); |
---|
269 | } |
---|
270 | |
---|
271 | static inline void _mav_parse_error(mavlink_status_t *status) |
---|
272 | { |
---|
273 | status->parse_error++; |
---|
274 | } |
---|
275 | |
---|
276 | #ifdef MAVLINK_USE_CONVENIENCE_FUNCTIONS |
---|
277 | MAVLINK_HELPER void _mavlink_send_uart(mavlink_channel_t chan, const char *buf, uint16_t len); |
---|
278 | |
---|
279 | /** |
---|
280 | * @brief Finalize a MAVLink message with channel assignment and send |
---|
281 | */ |
---|
282 | MAVLINK_HELPER void _mav_finalize_message_chan_send(mavlink_channel_t chan, uint32_t msgid, |
---|
283 | const char *packet, |
---|
284 | uint8_t min_length, uint8_t length, uint8_t crc_extra) |
---|
285 | { |
---|
286 | uint16_t checksum; |
---|
287 | uint8_t buf[MAVLINK_NUM_HEADER_BYTES]; |
---|
288 | uint8_t ck[2]; |
---|
289 | mavlink_status_t *status = mavlink_get_channel_status(chan); |
---|
290 | uint8_t header_len = MAVLINK_CORE_HEADER_LEN; |
---|
291 | uint8_t signature_len = 0; |
---|
292 | uint8_t signature[MAVLINK_SIGNATURE_BLOCK_LEN]; |
---|
293 | bool mavlink1 = (status->flags & MAVLINK_STATUS_FLAG_OUT_MAVLINK1) != 0; |
---|
294 | bool signing = (!mavlink1) && status->signing && (status->signing->flags & MAVLINK_SIGNING_FLAG_SIGN_OUTGOING); |
---|
295 | |
---|
296 | if (mavlink1) { |
---|
297 | length = min_length; |
---|
298 | if (msgid > 255) { |
---|
299 | // can't send 16 bit messages |
---|
300 | _mav_parse_error(status); |
---|
301 | return; |
---|
302 | } |
---|
303 | header_len = MAVLINK_CORE_HEADER_MAVLINK1_LEN; |
---|
304 | buf[0] = MAVLINK_STX_MAVLINK1; |
---|
305 | buf[1] = length; |
---|
306 | buf[2] = status->current_tx_seq; |
---|
307 | buf[3] = mavlink_system.sysid; |
---|
308 | buf[4] = mavlink_system.compid; |
---|
309 | buf[5] = msgid & 0xFF; |
---|
310 | } else { |
---|
311 | uint8_t incompat_flags = 0; |
---|
312 | if (signing) { |
---|
313 | incompat_flags |= MAVLINK_IFLAG_SIGNED; |
---|
314 | } |
---|
315 | length = _mav_trim_payload(packet, length); |
---|
316 | buf[0] = MAVLINK_STX; |
---|
317 | buf[1] = length; |
---|
318 | buf[2] = incompat_flags; |
---|
319 | buf[3] = 0; // compat_flags |
---|
320 | buf[4] = status->current_tx_seq; |
---|
321 | buf[5] = mavlink_system.sysid; |
---|
322 | buf[6] = mavlink_system.compid; |
---|
323 | buf[7] = msgid & 0xFF; |
---|
324 | buf[8] = (msgid >> 8) & 0xFF; |
---|
325 | buf[9] = (msgid >> 16) & 0xFF; |
---|
326 | } |
---|
327 | status->current_tx_seq++; |
---|
328 | checksum = crc_calculate((const uint8_t*)&buf[1], header_len); |
---|
329 | crc_accumulate_buffer(&checksum, packet, length); |
---|
330 | crc_accumulate(crc_extra, &checksum); |
---|
331 | ck[0] = (uint8_t)(checksum & 0xFF); |
---|
332 | ck[1] = (uint8_t)(checksum >> 8); |
---|
333 | |
---|
334 | if (signing) { |
---|
335 | // possibly add a signature |
---|
336 | signature_len = mavlink_sign_packet(status->signing, signature, buf, header_len+1, |
---|
337 | (const uint8_t *)packet, length, ck); |
---|
338 | } |
---|
339 | |
---|
340 | MAVLINK_START_UART_SEND(chan, header_len + 3 + (uint16_t)length + (uint16_t)signature_len); |
---|
341 | _mavlink_send_uart(chan, (const char *)buf, header_len+1); |
---|
342 | _mavlink_send_uart(chan, packet, length); |
---|
343 | _mavlink_send_uart(chan, (const char *)ck, 2); |
---|
344 | if (signature_len != 0) { |
---|
345 | _mavlink_send_uart(chan, (const char *)signature, signature_len); |
---|
346 | } |
---|
347 | MAVLINK_END_UART_SEND(chan, header_len + 3 + (uint16_t)length + (uint16_t)signature_len); |
---|
348 | } |
---|
349 | |
---|
350 | /** |
---|
351 | * @brief re-send a message over a uart channel |
---|
352 | * this is more stack efficient than re-marshalling the message |
---|
353 | * If the message is signed then the original signature is also sent |
---|
354 | */ |
---|
355 | MAVLINK_HELPER void _mavlink_resend_uart(mavlink_channel_t chan, const mavlink_message_t *msg) |
---|
356 | { |
---|
357 | uint8_t ck[2]; |
---|
358 | |
---|
359 | ck[0] = (uint8_t)(msg->checksum & 0xFF); |
---|
360 | ck[1] = (uint8_t)(msg->checksum >> 8); |
---|
361 | // XXX use the right sequence here |
---|
362 | |
---|
363 | uint8_t header_len; |
---|
364 | uint8_t signature_len; |
---|
365 | |
---|
366 | if (msg->magic == MAVLINK_STX_MAVLINK1) { |
---|
367 | header_len = MAVLINK_CORE_HEADER_MAVLINK1_LEN + 1; |
---|
368 | signature_len = 0; |
---|
369 | MAVLINK_START_UART_SEND(chan, header_len + msg->len + 2 + signature_len); |
---|
370 | // we can't send the structure directly as it has extra mavlink2 elements in it |
---|
371 | uint8_t buf[header_len]; |
---|
372 | buf[0] = msg->magic; |
---|
373 | buf[1] = msg->len; |
---|
374 | buf[2] = msg->seq; |
---|
375 | buf[3] = msg->sysid; |
---|
376 | buf[4] = msg->compid; |
---|
377 | buf[5] = msg->msgid & 0xFF; |
---|
378 | _mavlink_send_uart(chan, (const char*)buf, header_len); |
---|
379 | } else { |
---|
380 | header_len = MAVLINK_CORE_HEADER_LEN + 1; |
---|
381 | signature_len = (msg->incompat_flags & MAVLINK_IFLAG_SIGNED)?MAVLINK_SIGNATURE_BLOCK_LEN:0; |
---|
382 | MAVLINK_START_UART_SEND(chan, header_len + msg->len + 2 + signature_len); |
---|
383 | uint8_t buf[header_len]; |
---|
384 | buf[0] = msg->magic; |
---|
385 | buf[1] = msg->len; |
---|
386 | buf[2] = msg->incompat_flags; |
---|
387 | buf[3] = msg->compat_flags; |
---|
388 | buf[4] = msg->seq; |
---|
389 | buf[5] = msg->sysid; |
---|
390 | buf[6] = msg->compid; |
---|
391 | buf[7] = msg->msgid & 0xFF; |
---|
392 | buf[8] = (msg->msgid >> 8) & 0xFF; |
---|
393 | buf[9] = (msg->msgid >> 16) & 0xFF; |
---|
394 | _mavlink_send_uart(chan, (const char *)buf, header_len); |
---|
395 | } |
---|
396 | _mavlink_send_uart(chan, _MAV_PAYLOAD(msg), msg->len); |
---|
397 | _mavlink_send_uart(chan, (const char *)ck, 2); |
---|
398 | if (signature_len != 0) { |
---|
399 | _mavlink_send_uart(chan, (const char *)msg->signature, MAVLINK_SIGNATURE_BLOCK_LEN); |
---|
400 | } |
---|
401 | MAVLINK_END_UART_SEND(chan, header_len + msg->len + 2 + signature_len); |
---|
402 | } |
---|
403 | #endif // MAVLINK_USE_CONVENIENCE_FUNCTIONS |
---|
404 | |
---|
405 | /** |
---|
406 | * @brief Pack a message to send it over a serial byte stream |
---|
407 | */ |
---|
408 | MAVLINK_HELPER uint16_t mavlink_msg_to_send_buffer(uint8_t *buf, const mavlink_message_t *msg) |
---|
409 | { |
---|
410 | uint8_t signature_len, header_len; |
---|
411 | uint8_t *ck; |
---|
412 | uint8_t length = msg->len; |
---|
413 | |
---|
414 | if (msg->magic == MAVLINK_STX_MAVLINK1) { |
---|
415 | signature_len = 0; |
---|
416 | header_len = MAVLINK_CORE_HEADER_MAVLINK1_LEN; |
---|
417 | buf[0] = msg->magic; |
---|
418 | buf[1] = length; |
---|
419 | buf[2] = msg->seq; |
---|
420 | buf[3] = msg->sysid; |
---|
421 | buf[4] = msg->compid; |
---|
422 | buf[5] = msg->msgid & 0xFF; |
---|
423 | memcpy(&buf[6], _MAV_PAYLOAD(msg), msg->len); |
---|
424 | ck = buf + header_len + 1 + (uint16_t)msg->len; |
---|
425 | } else { |
---|
426 | length = _mav_trim_payload(_MAV_PAYLOAD(msg), length); |
---|
427 | header_len = MAVLINK_CORE_HEADER_LEN; |
---|
428 | buf[0] = msg->magic; |
---|
429 | buf[1] = length; |
---|
430 | buf[2] = msg->incompat_flags; |
---|
431 | buf[3] = msg->compat_flags; |
---|
432 | buf[4] = msg->seq; |
---|
433 | buf[5] = msg->sysid; |
---|
434 | buf[6] = msg->compid; |
---|
435 | buf[7] = msg->msgid & 0xFF; |
---|
436 | buf[8] = (msg->msgid >> 8) & 0xFF; |
---|
437 | buf[9] = (msg->msgid >> 16) & 0xFF; |
---|
438 | memcpy(&buf[10], _MAV_PAYLOAD(msg), length); |
---|
439 | ck = buf + header_len + 1 + (uint16_t)length; |
---|
440 | signature_len = (msg->incompat_flags & MAVLINK_IFLAG_SIGNED)?MAVLINK_SIGNATURE_BLOCK_LEN:0; |
---|
441 | } |
---|
442 | ck[0] = (uint8_t)(msg->checksum & 0xFF); |
---|
443 | ck[1] = (uint8_t)(msg->checksum >> 8); |
---|
444 | if (signature_len > 0) { |
---|
445 | memcpy(&ck[2], msg->signature, signature_len); |
---|
446 | } |
---|
447 | |
---|
448 | return header_len + 1 + 2 + (uint16_t)length + (uint16_t)signature_len; |
---|
449 | } |
---|
450 | |
---|
451 | union __mavlink_bitfield { |
---|
452 | uint8_t uint8; |
---|
453 | int8_t int8; |
---|
454 | uint16_t uint16; |
---|
455 | int16_t int16; |
---|
456 | uint32_t uint32; |
---|
457 | int32_t int32; |
---|
458 | }; |
---|
459 | |
---|
460 | |
---|
461 | MAVLINK_HELPER void mavlink_start_checksum(mavlink_message_t* msg) |
---|
462 | { |
---|
463 | crc_init(&msg->checksum); |
---|
464 | } |
---|
465 | |
---|
466 | MAVLINK_HELPER void mavlink_update_checksum(mavlink_message_t* msg, uint8_t c) |
---|
467 | { |
---|
468 | crc_accumulate(c, &msg->checksum); |
---|
469 | } |
---|
470 | |
---|
471 | /* |
---|
472 | return the crc_entry value for a msgid |
---|
473 | */ |
---|
474 | MAVLINK_HELPER const mavlink_msg_entry_t *mavlink_get_msg_entry(uint32_t msgid) |
---|
475 | { |
---|
476 | static const mavlink_msg_entry_t mavlink_message_crcs[] = MAVLINK_MESSAGE_CRCS; |
---|
477 | /* |
---|
478 | use a bisection search to find the right entry. A perfect hash may be better |
---|
479 | Note that this assumes the table is sorted by msgid |
---|
480 | */ |
---|
481 | uint32_t low=0, high=sizeof(mavlink_message_crcs)/sizeof(mavlink_message_crcs[0]); |
---|
482 | while (low < high) { |
---|
483 | uint32_t mid = (low+1+high)/2; |
---|
484 | if (msgid < mavlink_message_crcs[mid].msgid) { |
---|
485 | high = mid-1; |
---|
486 | continue; |
---|
487 | } |
---|
488 | if (msgid > mavlink_message_crcs[mid].msgid) { |
---|
489 | low = mid; |
---|
490 | continue; |
---|
491 | } |
---|
492 | low = mid; |
---|
493 | break; |
---|
494 | } |
---|
495 | if (mavlink_message_crcs[low].msgid != msgid) { |
---|
496 | // msgid is not in the table |
---|
497 | return NULL; |
---|
498 | } |
---|
499 | return &mavlink_message_crcs[low]; |
---|
500 | } |
---|
501 | |
---|
502 | /* |
---|
503 | return the crc_extra value for a message |
---|
504 | */ |
---|
505 | MAVLINK_HELPER uint8_t mavlink_get_crc_extra(const mavlink_message_t *msg) |
---|
506 | { |
---|
507 | const mavlink_msg_entry_t *e = mavlink_get_msg_entry(msg->msgid); |
---|
508 | return e?e->crc_extra:0; |
---|
509 | } |
---|
510 | |
---|
511 | /* |
---|
512 | return the expected message length |
---|
513 | */ |
---|
514 | #define MAVLINK_HAVE_EXPECTED_MESSAGE_LENGTH |
---|
515 | MAVLINK_HELPER uint8_t mavlink_expected_message_length(const mavlink_message_t *msg) |
---|
516 | { |
---|
517 | const mavlink_msg_entry_t *e = mavlink_get_msg_entry(msg->msgid); |
---|
518 | return e?e->msg_len:0; |
---|
519 | } |
---|
520 | |
---|
521 | /** |
---|
522 | * This is a varient of mavlink_frame_char() but with caller supplied |
---|
523 | * parsing buffers. It is useful when you want to create a MAVLink |
---|
524 | * parser in a library that doesn't use any global variables |
---|
525 | * |
---|
526 | * @param rxmsg parsing message buffer |
---|
527 | * @param status parsing starus buffer |
---|
528 | * @param c The char to parse |
---|
529 | * |
---|
530 | * @param returnMsg NULL if no message could be decoded, the message data else |
---|
531 | * @param returnStats if a message was decoded, this is filled with the channel's stats |
---|
532 | * @return 0 if no message could be decoded, 1 on good message and CRC, 2 on bad CRC |
---|
533 | * |
---|
534 | * A typical use scenario of this function call is: |
---|
535 | * |
---|
536 | * @code |
---|
537 | * #include <mavlink.h> |
---|
538 | * |
---|
539 | * mavlink_message_t msg; |
---|
540 | * int chan = 0; |
---|
541 | * |
---|
542 | * |
---|
543 | * while(serial.bytesAvailable > 0) |
---|
544 | * { |
---|
545 | * uint8_t byte = serial.getNextByte(); |
---|
546 | * if (mavlink_frame_char(chan, byte, &msg) != MAVLINK_FRAMING_INCOMPLETE) |
---|
547 | * { |
---|
548 | * printf("Received message with ID %d, sequence: %d from component %d of system %d", msg.msgid, msg.seq, msg.compid, msg.sysid); |
---|
549 | * } |
---|
550 | * } |
---|
551 | * |
---|
552 | * |
---|
553 | * @endcode |
---|
554 | */ |
---|
555 | MAVLINK_HELPER uint8_t mavlink_frame_char_buffer(mavlink_message_t* rxmsg, |
---|
556 | mavlink_status_t* status, |
---|
557 | uint8_t c, |
---|
558 | mavlink_message_t* r_message, |
---|
559 | mavlink_status_t* r_mavlink_status) |
---|
560 | { |
---|
561 | /* Enable this option to check the length of each message. |
---|
562 | This allows invalid messages to be caught much sooner. Use if the transmission |
---|
563 | medium is prone to missing (or extra) characters (e.g. a radio that fades in |
---|
564 | and out). Only use if the channel will only contain messages types listed in |
---|
565 | the headers. |
---|
566 | */ |
---|
567 | #ifdef MAVLINK_CHECK_MESSAGE_LENGTH |
---|
568 | #ifndef MAVLINK_MESSAGE_LENGTH |
---|
569 | static const uint8_t mavlink_message_lengths[256] = MAVLINK_MESSAGE_LENGTHS; |
---|
570 | #define MAVLINK_MESSAGE_LENGTH(msgid) mavlink_message_lengths[msgid] |
---|
571 | #endif |
---|
572 | #endif |
---|
573 | |
---|
574 | int bufferIndex = 0; |
---|
575 | |
---|
576 | status->msg_received = MAVLINK_FRAMING_INCOMPLETE; |
---|
577 | |
---|
578 | switch (status->parse_state) |
---|
579 | { |
---|
580 | case MAVLINK_PARSE_STATE_UNINIT: |
---|
581 | case MAVLINK_PARSE_STATE_IDLE: |
---|
582 | if (c == MAVLINK_STX) |
---|
583 | { |
---|
584 | status->parse_state = MAVLINK_PARSE_STATE_GOT_STX; |
---|
585 | rxmsg->len = 0; |
---|
586 | rxmsg->magic = c; |
---|
587 | status->flags &= ~MAVLINK_STATUS_FLAG_IN_MAVLINK1; |
---|
588 | mavlink_start_checksum(rxmsg); |
---|
589 | } else if (c == MAVLINK_STX_MAVLINK1) |
---|
590 | { |
---|
591 | status->parse_state = MAVLINK_PARSE_STATE_GOT_STX; |
---|
592 | rxmsg->len = 0; |
---|
593 | rxmsg->magic = c; |
---|
594 | status->flags |= MAVLINK_STATUS_FLAG_IN_MAVLINK1; |
---|
595 | mavlink_start_checksum(rxmsg); |
---|
596 | } |
---|
597 | break; |
---|
598 | |
---|
599 | case MAVLINK_PARSE_STATE_GOT_STX: |
---|
600 | if (status->msg_received |
---|
601 | /* Support shorter buffers than the |
---|
602 | default maximum packet size */ |
---|
603 | #if (MAVLINK_MAX_PAYLOAD_LEN < 255) |
---|
604 | || c > MAVLINK_MAX_PAYLOAD_LEN |
---|
605 | #endif |
---|
606 | ) |
---|
607 | { |
---|
608 | status->buffer_overrun++; |
---|
609 | _mav_parse_error(status); |
---|
610 | status->msg_received = 0; |
---|
611 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
612 | } |
---|
613 | else |
---|
614 | { |
---|
615 | // NOT counting STX, LENGTH, SEQ, SYSID, COMPID, MSGID, CRC1 and CRC2 |
---|
616 | rxmsg->len = c; |
---|
617 | status->packet_idx = 0; |
---|
618 | mavlink_update_checksum(rxmsg, c); |
---|
619 | if (status->flags & MAVLINK_STATUS_FLAG_IN_MAVLINK1) { |
---|
620 | rxmsg->incompat_flags = 0; |
---|
621 | rxmsg->compat_flags = 0; |
---|
622 | status->parse_state = MAVLINK_PARSE_STATE_GOT_COMPAT_FLAGS; |
---|
623 | } else { |
---|
624 | status->parse_state = MAVLINK_PARSE_STATE_GOT_LENGTH; |
---|
625 | } |
---|
626 | } |
---|
627 | break; |
---|
628 | |
---|
629 | case MAVLINK_PARSE_STATE_GOT_LENGTH: |
---|
630 | rxmsg->incompat_flags = c; |
---|
631 | if ((rxmsg->incompat_flags & ~MAVLINK_IFLAG_MASK) != 0) { |
---|
632 | // message includes an incompatible feature flag |
---|
633 | _mav_parse_error(status); |
---|
634 | status->msg_received = 0; |
---|
635 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
636 | break; |
---|
637 | } |
---|
638 | mavlink_update_checksum(rxmsg, c); |
---|
639 | status->parse_state = MAVLINK_PARSE_STATE_GOT_INCOMPAT_FLAGS; |
---|
640 | break; |
---|
641 | |
---|
642 | case MAVLINK_PARSE_STATE_GOT_INCOMPAT_FLAGS: |
---|
643 | rxmsg->compat_flags = c; |
---|
644 | mavlink_update_checksum(rxmsg, c); |
---|
645 | status->parse_state = MAVLINK_PARSE_STATE_GOT_COMPAT_FLAGS; |
---|
646 | break; |
---|
647 | |
---|
648 | case MAVLINK_PARSE_STATE_GOT_COMPAT_FLAGS: |
---|
649 | rxmsg->seq = c; |
---|
650 | mavlink_update_checksum(rxmsg, c); |
---|
651 | status->parse_state = MAVLINK_PARSE_STATE_GOT_SEQ; |
---|
652 | break; |
---|
653 | |
---|
654 | case MAVLINK_PARSE_STATE_GOT_SEQ: |
---|
655 | rxmsg->sysid = c; |
---|
656 | mavlink_update_checksum(rxmsg, c); |
---|
657 | status->parse_state = MAVLINK_PARSE_STATE_GOT_SYSID; |
---|
658 | break; |
---|
659 | |
---|
660 | case MAVLINK_PARSE_STATE_GOT_SYSID: |
---|
661 | rxmsg->compid = c; |
---|
662 | mavlink_update_checksum(rxmsg, c); |
---|
663 | status->parse_state = MAVLINK_PARSE_STATE_GOT_COMPID; |
---|
664 | break; |
---|
665 | |
---|
666 | case MAVLINK_PARSE_STATE_GOT_COMPID: |
---|
667 | rxmsg->msgid = c; |
---|
668 | mavlink_update_checksum(rxmsg, c); |
---|
669 | if (status->flags & MAVLINK_STATUS_FLAG_IN_MAVLINK1) { |
---|
670 | status->parse_state = MAVLINK_PARSE_STATE_GOT_MSGID3; |
---|
671 | #ifdef MAVLINK_CHECK_MESSAGE_LENGTH |
---|
672 | if (rxmsg->len != MAVLINK_MESSAGE_LENGTH(rxmsg->msgid)) |
---|
673 | { |
---|
674 | _mav_parse_error(status); |
---|
675 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
676 | break; |
---|
677 | } |
---|
678 | #endif |
---|
679 | } else { |
---|
680 | status->parse_state = MAVLINK_PARSE_STATE_GOT_MSGID1; |
---|
681 | } |
---|
682 | break; |
---|
683 | |
---|
684 | case MAVLINK_PARSE_STATE_GOT_MSGID1: |
---|
685 | rxmsg->msgid |= c<<8; |
---|
686 | mavlink_update_checksum(rxmsg, c); |
---|
687 | status->parse_state = MAVLINK_PARSE_STATE_GOT_MSGID2; |
---|
688 | break; |
---|
689 | |
---|
690 | case MAVLINK_PARSE_STATE_GOT_MSGID2: |
---|
691 | rxmsg->msgid |= c<<16; |
---|
692 | mavlink_update_checksum(rxmsg, c); |
---|
693 | status->parse_state = MAVLINK_PARSE_STATE_GOT_MSGID3; |
---|
694 | #ifdef MAVLINK_CHECK_MESSAGE_LENGTH |
---|
695 | if (rxmsg->len != MAVLINK_MESSAGE_LENGTH(rxmsg->msgid)) |
---|
696 | { |
---|
697 | _mav_parse_error(status); |
---|
698 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
699 | break; |
---|
700 | } |
---|
701 | #endif |
---|
702 | break; |
---|
703 | |
---|
704 | case MAVLINK_PARSE_STATE_GOT_MSGID3: |
---|
705 | _MAV_PAYLOAD_NON_CONST(rxmsg)[status->packet_idx++] = (char)c; |
---|
706 | mavlink_update_checksum(rxmsg, c); |
---|
707 | if (status->packet_idx == rxmsg->len) |
---|
708 | { |
---|
709 | status->parse_state = MAVLINK_PARSE_STATE_GOT_PAYLOAD; |
---|
710 | } |
---|
711 | break; |
---|
712 | |
---|
713 | case MAVLINK_PARSE_STATE_GOT_PAYLOAD: { |
---|
714 | const mavlink_msg_entry_t *e = mavlink_get_msg_entry(rxmsg->msgid); |
---|
715 | uint8_t crc_extra = e?e->crc_extra:0; |
---|
716 | mavlink_update_checksum(rxmsg, crc_extra); |
---|
717 | if (c != (rxmsg->checksum & 0xFF)) { |
---|
718 | status->parse_state = MAVLINK_PARSE_STATE_GOT_BAD_CRC1; |
---|
719 | } else { |
---|
720 | status->parse_state = MAVLINK_PARSE_STATE_GOT_CRC1; |
---|
721 | } |
---|
722 | rxmsg->ck[0] = c; |
---|
723 | |
---|
724 | // zero-fill the packet to cope with short incoming packets |
---|
725 | if (e && status->packet_idx < e->msg_len) { |
---|
726 | memset(&_MAV_PAYLOAD_NON_CONST(rxmsg)[status->packet_idx], 0, e->msg_len - status->packet_idx); |
---|
727 | } |
---|
728 | break; |
---|
729 | } |
---|
730 | |
---|
731 | case MAVLINK_PARSE_STATE_GOT_CRC1: |
---|
732 | case MAVLINK_PARSE_STATE_GOT_BAD_CRC1: |
---|
733 | if (status->parse_state == MAVLINK_PARSE_STATE_GOT_BAD_CRC1 || c != (rxmsg->checksum >> 8)) { |
---|
734 | // got a bad CRC message |
---|
735 | status->msg_received = MAVLINK_FRAMING_BAD_CRC; |
---|
736 | } else { |
---|
737 | // Successfully got message |
---|
738 | status->msg_received = MAVLINK_FRAMING_OK; |
---|
739 | } |
---|
740 | rxmsg->ck[1] = c; |
---|
741 | if (rxmsg->incompat_flags & MAVLINK_IFLAG_SIGNED) { |
---|
742 | status->parse_state = MAVLINK_PARSE_STATE_SIGNATURE_WAIT; |
---|
743 | status->signature_wait = MAVLINK_SIGNATURE_BLOCK_LEN; |
---|
744 | status->msg_received = MAVLINK_FRAMING_INCOMPLETE; |
---|
745 | } else { |
---|
746 | if (status->signing && |
---|
747 | (status->signing->accept_unsigned_callback == NULL || |
---|
748 | !status->signing->accept_unsigned_callback(status, rxmsg->msgid))) { |
---|
749 | // don't accept this unsigned packet |
---|
750 | status->msg_received = MAVLINK_FRAMING_BAD_SIGNATURE; |
---|
751 | } |
---|
752 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
753 | memcpy(r_message, rxmsg, sizeof(mavlink_message_t)); |
---|
754 | } |
---|
755 | break; |
---|
756 | case MAVLINK_PARSE_STATE_SIGNATURE_WAIT: |
---|
757 | rxmsg->signature[MAVLINK_SIGNATURE_BLOCK_LEN-status->signature_wait] = c; |
---|
758 | status->signature_wait--; |
---|
759 | if (status->signature_wait == 0) { |
---|
760 | // we have the whole signature, check it is OK |
---|
761 | bool sig_ok = mavlink_signature_check(status->signing, status->signing_streams, rxmsg); |
---|
762 | if (!sig_ok && |
---|
763 | (status->signing->accept_unsigned_callback && |
---|
764 | status->signing->accept_unsigned_callback(status, rxmsg->msgid))) { |
---|
765 | // accepted via application level override |
---|
766 | sig_ok = true; |
---|
767 | } |
---|
768 | if (sig_ok) { |
---|
769 | status->msg_received = MAVLINK_FRAMING_OK; |
---|
770 | } else { |
---|
771 | status->msg_received = MAVLINK_FRAMING_BAD_SIGNATURE; |
---|
772 | } |
---|
773 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
774 | memcpy(r_message, rxmsg, sizeof(mavlink_message_t)); |
---|
775 | } |
---|
776 | break; |
---|
777 | } |
---|
778 | |
---|
779 | bufferIndex++; |
---|
780 | // If a message has been sucessfully decoded, check index |
---|
781 | if (status->msg_received == MAVLINK_FRAMING_OK) |
---|
782 | { |
---|
783 | //while(status->current_seq != rxmsg->seq) |
---|
784 | //{ |
---|
785 | // status->packet_rx_drop_count++; |
---|
786 | // status->current_seq++; |
---|
787 | //} |
---|
788 | status->current_rx_seq = rxmsg->seq; |
---|
789 | // Initial condition: If no packet has been received so far, drop count is undefined |
---|
790 | if (status->packet_rx_success_count == 0) status->packet_rx_drop_count = 0; |
---|
791 | // Count this packet as received |
---|
792 | status->packet_rx_success_count++; |
---|
793 | } |
---|
794 | |
---|
795 | r_message->len = rxmsg->len; // Provide visibility on how far we are into current msg |
---|
796 | r_mavlink_status->parse_state = status->parse_state; |
---|
797 | r_mavlink_status->packet_idx = status->packet_idx; |
---|
798 | r_mavlink_status->current_rx_seq = status->current_rx_seq+1; |
---|
799 | r_mavlink_status->packet_rx_success_count = status->packet_rx_success_count; |
---|
800 | r_mavlink_status->packet_rx_drop_count = status->parse_error; |
---|
801 | r_mavlink_status->flags = status->flags; |
---|
802 | status->parse_error = 0; |
---|
803 | |
---|
804 | if (status->msg_received == MAVLINK_FRAMING_BAD_CRC) { |
---|
805 | /* |
---|
806 | the CRC came out wrong. We now need to overwrite the |
---|
807 | msg CRC with the one on the wire so that if the |
---|
808 | caller decides to forward the message anyway that |
---|
809 | mavlink_msg_to_send_buffer() won't overwrite the |
---|
810 | checksum |
---|
811 | */ |
---|
812 | r_message->checksum = rxmsg->ck[0] | (rxmsg->ck[1]<<8); |
---|
813 | } |
---|
814 | |
---|
815 | return status->msg_received; |
---|
816 | } |
---|
817 | |
---|
818 | /** |
---|
819 | * This is a convenience function which handles the complete MAVLink parsing. |
---|
820 | * the function will parse one byte at a time and return the complete packet once |
---|
821 | * it could be successfully decoded. This function will return 0, 1 or |
---|
822 | * 2 (MAVLINK_FRAMING_INCOMPLETE, MAVLINK_FRAMING_OK or MAVLINK_FRAMING_BAD_CRC) |
---|
823 | * |
---|
824 | * Messages are parsed into an internal buffer (one for each channel). When a complete |
---|
825 | * message is received it is copies into *returnMsg and the channel's status is |
---|
826 | * copied into *returnStats. |
---|
827 | * |
---|
828 | * @param chan ID of the current channel. This allows to parse different channels with this function. |
---|
829 | * a channel is not a physical message channel like a serial port, but a logic partition of |
---|
830 | * the communication streams in this case. COMM_NB is the limit for the number of channels |
---|
831 | * on MCU (e.g. ARM7), while COMM_NB_HIGH is the limit for the number of channels in Linux/Windows |
---|
832 | * @param c The char to parse |
---|
833 | * |
---|
834 | * @param returnMsg NULL if no message could be decoded, the message data else |
---|
835 | * @param returnStats if a message was decoded, this is filled with the channel's stats |
---|
836 | * @return 0 if no message could be decoded, 1 on good message and CRC, 2 on bad CRC |
---|
837 | * |
---|
838 | * A typical use scenario of this function call is: |
---|
839 | * |
---|
840 | * @code |
---|
841 | * #include <mavlink.h> |
---|
842 | * |
---|
843 | * mavlink_message_t msg; |
---|
844 | * int chan = 0; |
---|
845 | * |
---|
846 | * |
---|
847 | * while(serial.bytesAvailable > 0) |
---|
848 | * { |
---|
849 | * uint8_t byte = serial.getNextByte(); |
---|
850 | * if (mavlink_frame_char(chan, byte, &msg) != MAVLINK_FRAMING_INCOMPLETE) |
---|
851 | * { |
---|
852 | * printf("Received message with ID %d, sequence: %d from component %d of system %d", msg.msgid, msg.seq, msg.compid, msg.sysid); |
---|
853 | * } |
---|
854 | * } |
---|
855 | * |
---|
856 | * |
---|
857 | * @endcode |
---|
858 | */ |
---|
859 | MAVLINK_HELPER uint8_t mavlink_frame_char(uint8_t chan, uint8_t c, mavlink_message_t* r_message, mavlink_status_t* r_mavlink_status) |
---|
860 | { |
---|
861 | return mavlink_frame_char_buffer(mavlink_get_channel_buffer(chan), |
---|
862 | mavlink_get_channel_status(chan), |
---|
863 | c, |
---|
864 | r_message, |
---|
865 | r_mavlink_status); |
---|
866 | } |
---|
867 | |
---|
868 | /** |
---|
869 | * Set the protocol version |
---|
870 | */ |
---|
871 | MAVLINK_HELPER void mavlink_set_proto_version(uint8_t chan, unsigned int version) |
---|
872 | { |
---|
873 | mavlink_status_t *status = mavlink_get_channel_status(chan); |
---|
874 | if (version > 1) { |
---|
875 | status->flags &= ~(MAVLINK_STATUS_FLAG_OUT_MAVLINK1); |
---|
876 | } else { |
---|
877 | status->flags |= MAVLINK_STATUS_FLAG_OUT_MAVLINK1; |
---|
878 | } |
---|
879 | } |
---|
880 | |
---|
881 | /** |
---|
882 | * Get the protocol version |
---|
883 | * |
---|
884 | * @return 1 for v1, 2 for v2 |
---|
885 | */ |
---|
886 | MAVLINK_HELPER unsigned int mavlink_get_proto_version(uint8_t chan, unsigned int version) |
---|
887 | { |
---|
888 | mavlink_status_t *status = mavlink_get_channel_status(chan); |
---|
889 | if ((status->flags & MAVLINK_STATUS_FLAG_OUT_MAVLINK1) > 0) { |
---|
890 | return 1; |
---|
891 | } else { |
---|
892 | return 2; |
---|
893 | } |
---|
894 | } |
---|
895 | |
---|
896 | /** |
---|
897 | * This is a convenience function which handles the complete MAVLink parsing. |
---|
898 | * the function will parse one byte at a time and return the complete packet once |
---|
899 | * it could be successfully decoded. This function will return 0 or 1. |
---|
900 | * |
---|
901 | * Messages are parsed into an internal buffer (one for each channel). When a complete |
---|
902 | * message is received it is copies into *returnMsg and the channel's status is |
---|
903 | * copied into *returnStats. |
---|
904 | * |
---|
905 | * @param chan ID of the current channel. This allows to parse different channels with this function. |
---|
906 | * a channel is not a physical message channel like a serial port, but a logic partition of |
---|
907 | * the communication streams in this case. COMM_NB is the limit for the number of channels |
---|
908 | * on MCU (e.g. ARM7), while COMM_NB_HIGH is the limit for the number of channels in Linux/Windows |
---|
909 | * @param c The char to parse |
---|
910 | * |
---|
911 | * @param returnMsg NULL if no message could be decoded, the message data else |
---|
912 | * @param returnStats if a message was decoded, this is filled with the channel's stats |
---|
913 | * @return 0 if no message could be decoded or bad CRC, 1 on good message and CRC |
---|
914 | * |
---|
915 | * A typical use scenario of this function call is: |
---|
916 | * |
---|
917 | * @code |
---|
918 | * #include <mavlink.h> |
---|
919 | * |
---|
920 | * mavlink_message_t msg; |
---|
921 | * int chan = 0; |
---|
922 | * |
---|
923 | * |
---|
924 | * while(serial.bytesAvailable > 0) |
---|
925 | * { |
---|
926 | * uint8_t byte = serial.getNextByte(); |
---|
927 | * if (mavlink_parse_char(chan, byte, &msg)) |
---|
928 | * { |
---|
929 | * printf("Received message with ID %d, sequence: %d from component %d of system %d", msg.msgid, msg.seq, msg.compid, msg.sysid); |
---|
930 | * } |
---|
931 | * } |
---|
932 | * |
---|
933 | * |
---|
934 | * @endcode |
---|
935 | */ |
---|
936 | MAVLINK_HELPER uint8_t mavlink_parse_char(uint8_t chan, uint8_t c, mavlink_message_t* r_message, mavlink_status_t* r_mavlink_status) |
---|
937 | { |
---|
938 | uint8_t msg_received = mavlink_frame_char(chan, c, r_message, r_mavlink_status); |
---|
939 | if (msg_received == MAVLINK_FRAMING_BAD_CRC || |
---|
940 | msg_received == MAVLINK_FRAMING_BAD_SIGNATURE) { |
---|
941 | // we got a bad CRC. Treat as a parse failure |
---|
942 | mavlink_message_t* rxmsg = mavlink_get_channel_buffer(chan); |
---|
943 | mavlink_status_t* status = mavlink_get_channel_status(chan); |
---|
944 | _mav_parse_error(status); |
---|
945 | status->msg_received = MAVLINK_FRAMING_INCOMPLETE; |
---|
946 | status->parse_state = MAVLINK_PARSE_STATE_IDLE; |
---|
947 | if (c == MAVLINK_STX) |
---|
948 | { |
---|
949 | status->parse_state = MAVLINK_PARSE_STATE_GOT_STX; |
---|
950 | rxmsg->len = 0; |
---|
951 | mavlink_start_checksum(rxmsg); |
---|
952 | } |
---|
953 | return 0; |
---|
954 | } |
---|
955 | return msg_received; |
---|
956 | } |
---|
957 | |
---|
958 | /** |
---|
959 | * @brief Put a bitfield of length 1-32 bit into the buffer |
---|
960 | * |
---|
961 | * @param b the value to add, will be encoded in the bitfield |
---|
962 | * @param bits number of bits to use to encode b, e.g. 1 for boolean, 2, 3, etc. |
---|
963 | * @param packet_index the position in the packet (the index of the first byte to use) |
---|
964 | * @param bit_index the position in the byte (the index of the first bit to use) |
---|
965 | * @param buffer packet buffer to write into |
---|
966 | * @return new position of the last used byte in the buffer |
---|
967 | */ |
---|
968 | MAVLINK_HELPER uint8_t put_bitfield_n_by_index(int32_t b, uint8_t bits, uint8_t packet_index, uint8_t bit_index, uint8_t* r_bit_index, uint8_t* buffer) |
---|
969 | { |
---|
970 | uint16_t bits_remain = bits; |
---|
971 | // Transform number into network order |
---|
972 | int32_t v; |
---|
973 | uint8_t i_bit_index, i_byte_index, curr_bits_n; |
---|
974 | #if MAVLINK_NEED_BYTE_SWAP |
---|
975 | union { |
---|
976 | int32_t i; |
---|
977 | uint8_t b[4]; |
---|
978 | } bin, bout; |
---|
979 | bin.i = b; |
---|
980 | bout.b[0] = bin.b[3]; |
---|
981 | bout.b[1] = bin.b[2]; |
---|
982 | bout.b[2] = bin.b[1]; |
---|
983 | bout.b[3] = bin.b[0]; |
---|
984 | v = bout.i; |
---|
985 | #else |
---|
986 | v = b; |
---|
987 | #endif |
---|
988 | |
---|
989 | // buffer in |
---|
990 | // 01100000 01000000 00000000 11110001 |
---|
991 | // buffer out |
---|
992 | // 11110001 00000000 01000000 01100000 |
---|
993 | |
---|
994 | // Existing partly filled byte (four free slots) |
---|
995 | // 0111xxxx |
---|
996 | |
---|
997 | // Mask n free bits |
---|
998 | // 00001111 = 2^0 + 2^1 + 2^2 + 2^3 = 2^n - 1 |
---|
999 | // = ((uint32_t)(1 << n)) - 1; // = 2^n - 1 |
---|
1000 | |
---|
1001 | // Shift n bits into the right position |
---|
1002 | // out = in >> n; |
---|
1003 | |
---|
1004 | // Mask and shift bytes |
---|
1005 | i_bit_index = bit_index; |
---|
1006 | i_byte_index = packet_index; |
---|
1007 | if (bit_index > 0) |
---|
1008 | { |
---|
1009 | // If bits were available at start, they were available |
---|
1010 | // in the byte before the current index |
---|
1011 | i_byte_index--; |
---|
1012 | } |
---|
1013 | |
---|
1014 | // While bits have not been packed yet |
---|
1015 | while (bits_remain > 0) |
---|
1016 | { |
---|
1017 | // Bits still have to be packed |
---|
1018 | // there can be more than 8 bits, so |
---|
1019 | // we might have to pack them into more than one byte |
---|
1020 | |
---|
1021 | // First pack everything we can into the current 'open' byte |
---|
1022 | //curr_bits_n = bits_remain << 3; // Equals bits_remain mod 8 |
---|
1023 | //FIXME |
---|
1024 | if (bits_remain <= (uint8_t)(8 - i_bit_index)) |
---|
1025 | { |
---|
1026 | // Enough space |
---|
1027 | curr_bits_n = (uint8_t)bits_remain; |
---|
1028 | } |
---|
1029 | else |
---|
1030 | { |
---|
1031 | curr_bits_n = (8 - i_bit_index); |
---|
1032 | } |
---|
1033 | |
---|
1034 | // Pack these n bits into the current byte |
---|
1035 | // Mask out whatever was at that position with ones (xxx11111) |
---|
1036 | buffer[i_byte_index] &= (0xFF >> (8 - curr_bits_n)); |
---|
1037 | // Put content to this position, by masking out the non-used part |
---|
1038 | buffer[i_byte_index] |= ((0x00 << curr_bits_n) & v); |
---|
1039 | |
---|
1040 | // Increment the bit index |
---|
1041 | i_bit_index += curr_bits_n; |
---|
1042 | |
---|
1043 | // Now proceed to the next byte, if necessary |
---|
1044 | bits_remain -= curr_bits_n; |
---|
1045 | if (bits_remain > 0) |
---|
1046 | { |
---|
1047 | // Offer another 8 bits / one byte |
---|
1048 | i_byte_index++; |
---|
1049 | i_bit_index = 0; |
---|
1050 | } |
---|
1051 | } |
---|
1052 | |
---|
1053 | *r_bit_index = i_bit_index; |
---|
1054 | // If a partly filled byte is present, mark this as consumed |
---|
1055 | if (i_bit_index != 7) i_byte_index++; |
---|
1056 | return i_byte_index - packet_index; |
---|
1057 | } |
---|
1058 | |
---|
1059 | #ifdef MAVLINK_USE_CONVENIENCE_FUNCTIONS |
---|
1060 | |
---|
1061 | // To make MAVLink work on your MCU, define comm_send_ch() if you wish |
---|
1062 | // to send 1 byte at a time, or MAVLINK_SEND_UART_BYTES() to send a |
---|
1063 | // whole packet at a time |
---|
1064 | |
---|
1065 | /* |
---|
1066 | |
---|
1067 | #include "mavlink_types.h" |
---|
1068 | |
---|
1069 | void comm_send_ch(mavlink_channel_t chan, uint8_t ch) |
---|
1070 | { |
---|
1071 | if (chan == MAVLINK_COMM_0) |
---|
1072 | { |
---|
1073 | uart0_transmit(ch); |
---|
1074 | } |
---|
1075 | if (chan == MAVLINK_COMM_1) |
---|
1076 | { |
---|
1077 | uart1_transmit(ch); |
---|
1078 | } |
---|
1079 | } |
---|
1080 | */ |
---|
1081 | |
---|
1082 | MAVLINK_HELPER void _mavlink_send_uart(mavlink_channel_t chan, const char *buf, uint16_t len) |
---|
1083 | { |
---|
1084 | #ifdef MAVLINK_SEND_UART_BYTES |
---|
1085 | /* this is the more efficient approach, if the platform |
---|
1086 | defines it */ |
---|
1087 | MAVLINK_SEND_UART_BYTES(chan, (const uint8_t *)buf, len); |
---|
1088 | #else |
---|
1089 | /* fallback to one byte at a time */ |
---|
1090 | uint16_t i; |
---|
1091 | for (i = 0; i < len; i++) { |
---|
1092 | comm_send_ch(chan, (uint8_t)buf[i]); |
---|
1093 | } |
---|
1094 | #endif |
---|
1095 | } |
---|
1096 | #endif // MAVLINK_USE_CONVENIENCE_FUNCTIONS |
---|
1097 | |
---|
1098 | #endif /* _MAVLINK_HELPERS_H_ */ |
---|
1099 | |
---|
1100 | |
---|