1 /*
2 * Copyright (c) 2021 Nordic Semiconductor ASA
3 *
4 * SPDX-License-Identifier: Apache-2.0
5 */
6 #ifndef ZEPHYR_INCLUDE_LOGGING_LOG_MSG2_H_
7 #define ZEPHYR_INCLUDE_LOGGING_LOG_MSG2_H_
8
9 #include <logging/log_instance.h>
10 #include <sys/mpsc_packet.h>
11 #include <sys/cbprintf.h>
12 #include <sys/atomic.h>
13 #include <sys/util.h>
14 #include <string.h>
15
16 #ifdef __GNUC__
17 #ifndef alloca
18 #define alloca __builtin_alloca
19 #endif
20 #else
21 #include <alloca.h>
22 #endif
23
24 #ifdef __cplusplus
25 extern "C" {
26 #endif
27
28 #define LOG_MSG2_DEBUG 0
29 #define LOG_MSG2_DBG(...) IF_ENABLED(LOG_MSG2_DEBUG, (printk(__VA_ARGS__)))
30
31 #if CONFIG_LOG_TIMESTAMP_64BIT
32 typedef uint64_t log_timestamp_t;
33 #else
34 typedef uint32_t log_timestamp_t;
35 #endif
36
37 /**
38 * @brief Log message API
39 * @defgroup log_msg2 Log message v2 API
40 * @ingroup logger
41 * @{
42 */
43
44 #define Z_LOG_MSG2_LOG 0
45
46 #define LOG_MSG2_GENERIC_HDR \
47 MPSC_PBUF_HDR;\
48 uint32_t type:1
49
50 struct log_msg2_desc {
51 LOG_MSG2_GENERIC_HDR;
52 uint32_t domain:3;
53 uint32_t level:3;
54 uint32_t package_len:10;
55 uint32_t data_len:12;
56 uint32_t reserved:1;
57 };
58
59 union log_msg2_source {
60 const struct log_source_const_data *fixed;
61 struct log_source_dynamic_data *dynamic;
62 void *raw;
63 };
64
65 struct log_msg2_hdr {
66 struct log_msg2_desc desc;
67 /* Attempting to keep best alignment. When address is 64 bit and timestamp 32
68 * swap the order to have 16 byte header instead of 24 byte.
69 */
70 #if (INTPTR_MAX > INT32_MAX) && !CONFIG_LOG_TIMESTAMP_64BIT
71 log_timestamp_t timestamp;
72 const void *source;
73 #else
74 const void *source;
75 log_timestamp_t timestamp;
76 #endif
77 #if defined(__xtensa__) && !defined(CONFIG_LOG_TIMESTAMP_64BIT)
78 /* xtensa requires that cbprintf package that follows the header is
79 * aligned to 16 bytes. Adding padding when necessary.
80 */
81 uint32_t padding;
82 #endif
83 };
84
85 struct log_msg2 {
86 struct log_msg2_hdr hdr;
87 uint8_t data[];
88 };
89
90 struct log_msg2_generic_hdr {
91 LOG_MSG2_GENERIC_HDR;
92 };
93
94 union log_msg2_generic {
95 union mpsc_pbuf_generic buf;
96 struct log_msg2_generic_hdr generic;
97 struct log_msg2 log;
98 };
99
100 /** @brief Method used for creating a log message.
101 *
102 * It is used for testing purposes to validate that expected mode was used.
103 */
104 enum z_log_msg2_mode {
105 /* Runtime mode is least efficient but supports all cases thus it is
106 * threated as a fallback method when others cannot be used.
107 */
108 Z_LOG_MSG2_MODE_RUNTIME,
109 /* Mode creates statically a string package on stack and calls a
110 * function for creating a message. It takes code size than
111 * Z_LOG_MSG2_MODE_ZERO_COPY but is a bit slower.
112 */
113 Z_LOG_MSG2_MODE_FROM_STACK,
114
115 /* Mode calculates size of the message and allocates it and writes
116 * directly to the message space. It is the fastest method but requires
117 * more code size.
118 */
119 Z_LOG_MSG2_MODE_ZERO_COPY,
120
121 /* Mode used when synchronous logging is enabled. */
122 Z_LOG_MSG2_MODE_SYNC
123 };
124
125 #define Z_LOG_MSG_DESC_INITIALIZER(_domain_id, _level, _plen, _dlen) \
126 { \
127 .valid = 0, \
128 .busy = 0, \
129 .type = Z_LOG_MSG2_LOG, \
130 .domain = _domain_id, \
131 .level = _level, \
132 .package_len = _plen, \
133 .data_len = _dlen, \
134 .reserved = 0, \
135 }
136
137 /* Messages are aligned to alignment required by cbprintf package. */
138 #define Z_LOG_MSG2_ALIGNMENT CBPRINTF_PACKAGE_ALIGNMENT
139
140 #if CONFIG_LOG2_USE_VLA
141 #define Z_LOG_MSG2_ON_STACK_ALLOC(ptr, len) \
142 long long _ll_buf[ceiling_fraction(len, sizeof(long long))]; \
143 long double _ld_buf[ceiling_fraction(len, sizeof(long double))]; \
144 ptr = (sizeof(long double) == Z_LOG_MSG2_ALIGNMENT) ? \
145 (struct log_msg2 *)_ld_buf : (struct log_msg2 *)_ll_buf; \
146 if (IS_ENABLED(CONFIG_LOG_TEST_CLEAR_MESSAGE_SPACE)) { \
147 /* During test fill with 0's to simplify message comparison */ \
148 memset(ptr, 0, len); \
149 }
150 #else /* Z_LOG_MSG2_USE_VLA */
151 /* When VLA cannot be used we need to trick compiler a bit and create multiple
152 * fixed size arrays and take the smallest one that will fit the message.
153 * Compiler will remove unused arrays and stack usage will be kept similar
154 * to vla case, rounded to the size of the used buffer.
155 */
156 #define Z_LOG_MSG2_ON_STACK_ALLOC(ptr, len) \
157 long long _ll_buf32[32 / sizeof(long long)]; \
158 long long _ll_buf48[48 / sizeof(long long)]; \
159 long long _ll_buf64[64 / sizeof(long long)]; \
160 long long _ll_buf128[128 / sizeof(long long)]; \
161 long long _ll_buf256[256 / sizeof(long long)]; \
162 long double _ld_buf32[32 / sizeof(long double)]; \
163 long double _ld_buf48[48 / sizeof(long double)]; \
164 long double _ld_buf64[64 / sizeof(long double)]; \
165 long double _ld_buf128[128 / sizeof(long double)]; \
166 long double _ld_buf256[256 / sizeof(long double)]; \
167 if (sizeof(long double) == Z_LOG_MSG2_ALIGNMENT) { \
168 ptr = (len > 128) ? (struct log_msg2 *)_ld_buf256 : \
169 ((len > 64) ? (struct log_msg2 *)_ld_buf128 : \
170 ((len > 48) ? (struct log_msg2 *)_ld_buf64 : \
171 ((len > 32) ? (struct log_msg2 *)_ld_buf48 : \
172 (struct log_msg2 *)_ld_buf32)));\
173 } else { \
174 ptr = (len > 128) ? (struct log_msg2 *)_ll_buf256 : \
175 ((len > 64) ? (struct log_msg2 *)_ll_buf128 : \
176 ((len > 48) ? (struct log_msg2 *)_ll_buf64 : \
177 ((len > 32) ? (struct log_msg2 *)_ll_buf48 : \
178 (struct log_msg2 *)_ll_buf32)));\
179 } \
180 if (IS_ENABLED(CONFIG_LOG_TEST_CLEAR_MESSAGE_SPACE)) { \
181 /* During test fill with 0's to simplify message comparison */ \
182 memset(ptr, 0, len); \
183 }
184 #endif /* Z_LOG_MSG2_USE_VLA */
185
186 #define Z_LOG_MSG2_ALIGN_OFFSET \
187 sizeof(struct log_msg2_hdr)
188
189 #define Z_LOG_MSG2_LEN(pkg_len, data_len) \
190 (sizeof(struct log_msg2_hdr) + pkg_len + (data_len))
191
192 #define Z_LOG_MSG2_ALIGNED_WLEN(pkg_len, data_len) \
193 ceiling_fraction(ROUND_UP(Z_LOG_MSG2_LEN(pkg_len, data_len), \
194 Z_LOG_MSG2_ALIGNMENT), \
195 sizeof(uint32_t))
196
197 #define Z_LOG_MSG2_SYNC(_domain_id, _source, _level, _data, _dlen, ...) do { \
198 int _plen; \
199 CBPRINTF_STATIC_PACKAGE(NULL, 0, _plen, Z_LOG_MSG2_ALIGN_OFFSET, \
200 0, __VA_ARGS__); \
201 struct log_msg2 *_msg; \
202 Z_LOG_MSG2_ON_STACK_ALLOC(_msg, Z_LOG_MSG2_LEN(_plen, _dlen)); \
203 if (_plen) {\
204 CBPRINTF_STATIC_PACKAGE(_msg->data, _plen, _plen, \
205 Z_LOG_MSG2_ALIGN_OFFSET, \
206 0, __VA_ARGS__); \
207 } \
208 struct log_msg2_desc _desc = \
209 Z_LOG_MSG_DESC_INITIALIZER(_domain_id, _level, \
210 (uint32_t)_plen, _dlen); \
211 z_log_msg2_finalize(_msg, _source, _desc, _data); \
212 } while (0)
213
214 #define Z_LOG_MSG2_STACK_CREATE(_domain_id, _source, _level, _data, _dlen, ...)\
215 do { \
216 int _plen; \
217 if (GET_ARG_N(1, __VA_ARGS__) == NULL) { \
218 _plen = 0; \
219 } else { \
220 CBPRINTF_STATIC_PACKAGE(NULL, 0, _plen, Z_LOG_MSG2_ALIGN_OFFSET, \
221 0, __VA_ARGS__); \
222 } \
223 struct log_msg2 *_msg; \
224 Z_LOG_MSG2_ON_STACK_ALLOC(_msg, Z_LOG_MSG2_LEN(_plen, 0)); \
225 if (_plen) { \
226 CBPRINTF_STATIC_PACKAGE(_msg->data, _plen, \
227 _plen, Z_LOG_MSG2_ALIGN_OFFSET, \
228 0, __VA_ARGS__);\
229 } \
230 struct log_msg2_desc _desc = \
231 Z_LOG_MSG_DESC_INITIALIZER(_domain_id, _level, \
232 (uint32_t)_plen, _dlen); \
233 LOG_MSG2_DBG("creating message on stack: package len: %d, data len: %d\n", \
234 _plen, (int)(_dlen)); \
235 z_log_msg2_static_create((void *)_source, _desc, _msg->data, _data); \
236 } while (0)
237
238 #if CONFIG_LOG_SPEED
239 #define Z_LOG_MSG2_SIMPLE_CREATE(_domain_id, _source, _level, ...) do { \
240 int _plen; \
241 CBPRINTF_STATIC_PACKAGE(NULL, 0, _plen, Z_LOG_MSG2_ALIGN_OFFSET, \
242 0, __VA_ARGS__); \
243 size_t _msg_wlen = Z_LOG_MSG2_ALIGNED_WLEN(_plen, 0); \
244 struct log_msg2 *_msg = z_log_msg2_alloc(_msg_wlen); \
245 struct log_msg2_desc _desc = \
246 Z_LOG_MSG_DESC_INITIALIZER(_domain_id, _level, (uint32_t)_plen, 0); \
247 LOG_MSG2_DBG("creating message zero copy: package len: %d, msg: %p\n", \
248 _plen, _msg); \
249 if (_msg) { \
250 CBPRINTF_STATIC_PACKAGE(_msg->data, _plen, _plen, \
251 Z_LOG_MSG2_ALIGN_OFFSET, \
252 0, __VA_ARGS__); \
253 } \
254 z_log_msg2_finalize(_msg, (void *)_source, _desc, NULL); \
255 } while (0)
256 #else
257 /* Alternative empty macro created to speed up compilation when LOG_SPEED is
258 * disabled (default).
259 */
260 #define Z_LOG_MSG2_SIMPLE_CREATE(...)
261 #endif
262
263 /* Macro handles case when local variable with log message string is created.It
264 * replaces origing string literal with that variable.
265 */
266 #define Z_LOG_FMT_ARGS_2(_name, ...) \
267 COND_CODE_1(CONFIG_LOG2_FMT_SECTION, \
268 (COND_CODE_0(NUM_VA_ARGS_LESS_1(__VA_ARGS__), \
269 (_name), (_name, GET_ARGS_LESS_N(1, __VA_ARGS__)))), \
270 (__VA_ARGS__))
271
272 /** @brief Wrapper for log message string with arguments.
273 *
274 * Wrapper is replacing first argument with a variable from a dedicated memory
275 * section if option is enabled. Macro handles the case when there is no
276 * log message provided.
277 *
278 * @param _name Name of the variable with log message string. It is optionally used.
279 * @param ... Optional log message with arguments (may be empty).
280 */
281 #define Z_LOG_FMT_ARGS(_name, ...) \
282 COND_CODE_0(NUM_VA_ARGS_LESS_1(_, ##__VA_ARGS__), \
283 (NULL), \
284 (Z_LOG_FMT_ARGS_2(_name, ##__VA_ARGS__)))
285
286 /* Macro handles case when there is no string provided, in that case variable
287 * is not created.
288 */
289 #define Z_LOG_MSG2_STR_VAR_IN_SECTION(_name, ...) \
290 COND_CODE_0(NUM_VA_ARGS_LESS_1(_, ##__VA_ARGS__), \
291 (/* No args provided, no variable */), \
292 (static const char _name[] \
293 __attribute__((__section__(".log_strings"))) = \
294 GET_ARG_N(1, __VA_ARGS__);))
295
296 /** @brief Create variable in the dedicated memory section (if enabled).
297 *
298 * Variable is initialized with a format string from the log message.
299 *
300 * @param _name Variable name.
301 * @param ... Optional log message with arguments (may be empty).
302 */
303 #define Z_LOG_MSG2_STR_VAR(_name, ...) \
304 IF_ENABLED(CONFIG_LOG2_FMT_SECTION, \
305 (Z_LOG_MSG2_STR_VAR_IN_SECTION(_name, ##__VA_ARGS__)))
306
307 /** @brief Create log message and write it into the logger buffer.
308 *
309 * Macro handles creation of log message which includes storing log message
310 * description, timestamp, arguments, copying string arguments into message and
311 * copying user data into the message space. The are 3 modes of message
312 * creation:
313 * - at compile time message size is determined, message is allocated and
314 * content is written directly to the message. It is the fastest but cannot
315 * be used in user mode. Message size cannot be determined at compile time if
316 * it contains data or string arguments which are string pointers.
317 * - at compile time message size is determined, string package is created on
318 * stack, message is created in function call. String package can only be
319 * created on stack if it does not contain unexpected pointers to strings.
320 * - string package is created at runtime. This mode has no limitations but
321 * it is significantly slower.
322 *
323 * @param _try_0cpy If positive then, if possible, message content is written
324 * directly to message. If 0 then, if possible, string package is created on
325 * the stack and message is created in the function call.
326 *
327 * @param _mode Used for testing. It is set according to message creation mode
328 * used.
329 *
330 * @param _cstr_cnt Number of constant strings present in the string. It is
331 * used to help detect messages which must be runtime processed, compared to
332 * message which can be prebuilt at compile time.
333 *
334 * @param _domain_id Domain ID.
335 *
336 * @param _source Pointer to the constant descriptor of the log message source.
337 *
338 * @param _level Log message level.
339 *
340 * @param _data Pointer to the data. Can be null.
341 *
342 * @param _dlen Number of data bytes. 0 if data is not provided.
343 *
344 * @param ... Optional string with arguments (fmt, ...). It may be empty.
345 */
346 #if CONFIG_LOG2_ALWAYS_RUNTIME
347 #define Z_LOG_MSG2_CREATE2(_try_0cpy, _mode, _cstr_cnt, _domain_id, _source,\
348 _level, _data, _dlen, ...) \
349 do {\
350 Z_LOG_MSG2_STR_VAR(_fmt, ##__VA_ARGS__) \
351 z_log_msg2_runtime_create(_domain_id, (void *)_source, \
352 _level, (uint8_t *)_data, _dlen,\
353 Z_LOG_FMT_ARGS(_fmt, ##__VA_ARGS__));\
354 _mode = Z_LOG_MSG2_MODE_RUNTIME; \
355 } while (0)
356 #elif CONFIG_LOG2_MODE_IMMEDIATE /* CONFIG_LOG2_ALWAYS_RUNTIME */
357 #define Z_LOG_MSG2_CREATE2(_try_0cpy, _mode, _cstr_cnt, _domain_id, _source,\
358 _level, _data, _dlen, ...) \
359 do { \
360 Z_LOG_MSG2_STR_VAR(_fmt, ##__VA_ARGS__); \
361 if (CBPRINTF_MUST_RUNTIME_PACKAGE(_cstr_cnt, __VA_ARGS__)) { \
362 LOG_MSG2_DBG("create runtime message\n");\
363 z_log_msg2_runtime_create(_domain_id, (void *)_source, \
364 _level, (uint8_t *)_data, _dlen,\
365 Z_LOG_FMT_ARGS(_fmt, ##__VA_ARGS__));\
366 _mode = Z_LOG_MSG2_MODE_RUNTIME; \
367 } else {\
368 Z_LOG_MSG2_SYNC(_domain_id, _source, _level, \
369 _data, _dlen, Z_LOG_FMT_ARGS(_fmt, ##__VA_ARGS__)); \
370 _mode = Z_LOG_MSG2_MODE_SYNC; \
371 } \
372 } while (0)
373 #else /* CONFIG_LOG2_ALWAYS_RUNTIME */
374 #define Z_LOG_MSG2_CREATE2(_try_0cpy, _mode, _cstr_cnt, _domain_id, _source,\
375 _level, _data, _dlen, ...) \
376 do { \
377 Z_LOG_MSG2_STR_VAR(_fmt, ##__VA_ARGS__); \
378 if (CBPRINTF_MUST_RUNTIME_PACKAGE(_cstr_cnt, __VA_ARGS__)) { \
379 LOG_MSG2_DBG("create runtime message\n");\
380 z_log_msg2_runtime_create(_domain_id, (void *)_source, \
381 _level, (uint8_t *)_data, _dlen,\
382 Z_LOG_FMT_ARGS(_fmt, ##__VA_ARGS__));\
383 _mode = Z_LOG_MSG2_MODE_RUNTIME; \
384 } else if (IS_ENABLED(CONFIG_LOG_SPEED) && _try_0cpy && ((_dlen) == 0)) {\
385 LOG_MSG2_DBG("create zero-copy message\n");\
386 Z_LOG_MSG2_SIMPLE_CREATE(_domain_id, _source, \
387 _level, Z_LOG_FMT_ARGS(_fmt, ##__VA_ARGS__)); \
388 _mode = Z_LOG_MSG2_MODE_ZERO_COPY; \
389 } else { \
390 LOG_MSG2_DBG("create on stack message\n");\
391 Z_LOG_MSG2_STACK_CREATE(_domain_id, _source, _level, _data, \
392 _dlen, Z_LOG_FMT_ARGS(_fmt, ##__VA_ARGS__)); \
393 _mode = Z_LOG_MSG2_MODE_FROM_STACK; \
394 } \
395 (void)_mode; \
396 } while (0)
397 #endif /* CONFIG_LOG2_ALWAYS_RUNTIME */
398
399 #define Z_LOG_MSG2_CREATE(_try_0cpy, _mode, _domain_id, _source,\
400 _level, _data, _dlen, ...) \
401 Z_LOG_MSG2_CREATE2(_try_0cpy, _mode, UTIL_CAT(Z_LOG_FUNC_PREFIX_, _level), \
402 _domain_id, _source, _level, _data, _dlen, \
403 Z_LOG_STR(_level, __VA_ARGS__))
404
405 /** @brief Finalize message.
406 *
407 * Finalization includes setting source, copying data and timestamp in the
408 * message followed by committing the message.
409 *
410 * @param msg Message.
411 *
412 * @param source Address of the source descriptor.
413 *
414 * @param desc Message descriptor.
415 *
416 * @param data Data.
417 */
418 void z_log_msg2_finalize(struct log_msg2 *msg, const void *source,
419 const struct log_msg2_desc desc, const void *data);
420
421 /** @brief Create simple message from message details and string package.
422 *
423 * @param source Source.
424 *
425 * @param desc Message descriptor.
426 *
427 * @param package Package.
428 *
429 * @oaram data Data.
430 */
431 __syscall void z_log_msg2_static_create(const void *source,
432 const struct log_msg2_desc desc,
433 uint8_t *package, const void *data);
434
435 /** @brief Create message at runtime.
436 *
437 * Function allows to build any log message based on input data. Processing
438 * time is significantly higher than statically message creating.
439 *
440 * @param domain_id Domain ID.
441 *
442 * @param source Source.
443 *
444 * @param level Log level.
445 *
446 * @param data Data.
447 *
448 * @param dlen Data length.
449 *
450 * @param fmt String.
451 *
452 * @param ap Variable list of string arguments.
453 */
454 __syscall void z_log_msg2_runtime_vcreate(uint8_t domain_id, const void *source,
455 uint8_t level, const void *data,
456 size_t dlen, const char *fmt,
457 va_list ap);
458
459 /** @brief Create message at runtime.
460 *
461 * Function allows to build any log message based on input data. Processing
462 * time is significantly higher than statically message creating.
463 *
464 * @param domain_id Domain ID.
465 *
466 * @param source Source.
467 *
468 * @param level Log level.
469 *
470 * @param data Data.
471 *
472 * @param dlen Data length.
473 *
474 * @param fmt String.
475 *
476 * @param ... String arguments.
477 */
z_log_msg2_runtime_create(uint8_t domain_id,const void * source,uint8_t level,const void * data,size_t dlen,const char * fmt,...)478 static inline void z_log_msg2_runtime_create(uint8_t domain_id,
479 const void *source,
480 uint8_t level, const void *data,
481 size_t dlen, const char *fmt, ...)
482 {
483 va_list ap;
484
485 va_start(ap, fmt);
486 z_log_msg2_runtime_vcreate(domain_id, source, level,
487 data, dlen, fmt, ap);
488 va_end(ap);
489 }
490
z_log_item_is_msg(union log_msg2_generic * msg)491 static inline bool z_log_item_is_msg(union log_msg2_generic *msg)
492 {
493 return msg->generic.type == Z_LOG_MSG2_LOG;
494 }
495
496 /** @brief Get total length (in 32 bit words) of a log message.
497 *
498 * @param desc Log message descriptor.
499 *
500 * @return Length.
501 */
log_msg2_get_total_wlen(const struct log_msg2_desc desc)502 static inline uint32_t log_msg2_get_total_wlen(const struct log_msg2_desc desc)
503 {
504 return Z_LOG_MSG2_ALIGNED_WLEN(desc.package_len, desc.data_len);
505 }
506
507 /** @brief Get length of the log item.
508 *
509 * @param item Item.
510 *
511 * @return Length in 32 bit words.
512 */
log_msg2_generic_get_wlen(const union mpsc_pbuf_generic * item)513 static inline uint32_t log_msg2_generic_get_wlen(const union mpsc_pbuf_generic *item)
514 {
515 union log_msg2_generic *generic_msg = (union log_msg2_generic *)item;
516
517 if (z_log_item_is_msg(generic_msg)) {
518 struct log_msg2 *msg = (struct log_msg2 *)generic_msg;
519
520 return log_msg2_get_total_wlen(msg->hdr.desc);
521 }
522
523 return 0;
524 }
525
526 /** @brief Get log message domain ID.
527 *
528 * @param msg Log message.
529 *
530 * @return Domain ID
531 */
log_msg2_get_domain(struct log_msg2 * msg)532 static inline uint8_t log_msg2_get_domain(struct log_msg2 *msg)
533 {
534 return msg->hdr.desc.domain;
535 }
536
537 /** @brief Get log message level.
538 *
539 * @param msg Log message.
540 *
541 * @return Log level.
542 */
log_msg2_get_level(struct log_msg2 * msg)543 static inline uint8_t log_msg2_get_level(struct log_msg2 *msg)
544 {
545 return msg->hdr.desc.level;
546 }
547
548 /** @brief Get message source data.
549 *
550 * @param msg Log message.
551 *
552 * @return Pointer to the source data.
553 */
log_msg2_get_source(struct log_msg2 * msg)554 static inline const void *log_msg2_get_source(struct log_msg2 *msg)
555 {
556 return msg->hdr.source;
557 }
558
559 /** @brief Get timestamp.
560 *
561 * @param msg Log message.
562 *
563 * @return Timestamp.
564 */
log_msg2_get_timestamp(struct log_msg2 * msg)565 static inline log_timestamp_t log_msg2_get_timestamp(struct log_msg2 *msg)
566 {
567 return msg->hdr.timestamp;
568 }
569
570 /** @brief Get data buffer.
571 *
572 * @param msg log message.
573 *
574 * @param len location where data length is written.
575 *
576 * @return pointer to the data buffer.
577 */
log_msg2_get_data(struct log_msg2 * msg,size_t * len)578 static inline uint8_t *log_msg2_get_data(struct log_msg2 *msg, size_t *len)
579 {
580 *len = msg->hdr.desc.data_len;
581
582 return msg->data + msg->hdr.desc.package_len;
583 }
584
585 /** @brief Get string package.
586 *
587 * @param msg log message.
588 *
589 * @param len location where string package length is written.
590 *
591 * @return pointer to the package.
592 */
log_msg2_get_package(struct log_msg2 * msg,size_t * len)593 static inline uint8_t *log_msg2_get_package(struct log_msg2 *msg, size_t *len)
594 {
595 *len = msg->hdr.desc.package_len;
596
597 return msg->data;
598 }
599
600 /**
601 * @}
602 */
603
604 #include <syscalls/log_msg2.h>
605
606 #ifdef __cplusplus
607 }
608 #endif
609
610 #endif /* ZEPHYR_INCLUDE_LOGGING_LOG_MSG2_H_ */
611