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Laurence Lundblade3eead482023-12-16 20:53:22 -07001/* ===========================================================================
2 * Copyright (c) 2016-2018, The Linux Foundation.
3 * Copyright (c) 2018-2023, Laurence Lundblade.
4 * Copyright (c) 2021, Arm Limited.
5 * All rights reserved.
6 *
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8 * modification, are permitted provided that the following conditions are
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Michael Eckel5c531332020-03-02 01:35:30 +010033
34
Laurence Lundblade844bb5c2020-03-01 17:27:25 -080035#ifndef qcbor_encode_h
36#define qcbor_encode_h
Michael Eckel5c531332020-03-02 01:35:30 +010037
38
Laurence Lundblade844bb5c2020-03-01 17:27:25 -080039#include "qcbor/qcbor_common.h"
40#include "qcbor/qcbor_private.h"
Michael Eckel5c531332020-03-02 01:35:30 +010041#include <stdbool.h>
Laurence Lundblade844bb5c2020-03-01 17:27:25 -080042
Michael Eckel5c531332020-03-02 01:35:30 +010043
44#ifdef __cplusplus
45extern "C" {
Dave Thaler12b23752020-03-27 01:23:08 -070046#if 0
Michael Eckel5c531332020-03-02 01:35:30 +010047} // Keep editor indention formatting happy
48#endif
49#endif
50
Michael Eckel5c531332020-03-02 01:35:30 +010051
52/**
Laurence Lundblade3eead482023-12-16 20:53:22 -070053 * @file qcbor_encode.h
54 *
55 * @anchor Overview
56 *
57 * # QCBOR Overview
58 *
59 * This implements CBOR -- Concise Binary Object Representation as
60 * defined in [RFC 8949] (https://tools.ietf.org/html/rfc8949). More
61 * information is at http://cbor.io. This is a near-complete implementation of
62 * the specification. [RFC 8742] (https://tools.ietf.org/html/rfc8742) CBOR
63 * Sequences is also supported. Limitations are listed further down.
64 *
65 * See @ref Encoding for general discussion on encoding,
66 * @ref BasicDecode for general discussion on the basic decode features
67 * and @ref SpiffyDecode for general discussion on the easier-to-use
68 * decoder functions.
69 *
70 * CBOR is intentionally designed to be translatable to JSON, but not
71 * all CBOR can convert to JSON. See RFC 8949 for more info on how to
72 * construct CBOR that is the most JSON friendly.
73 *
74 * The memory model for encoding and decoding is that encoded CBOR must
75 * be in a contiguous buffer in memory. During encoding the caller must
76 * supply an output buffer and if the encoding would go off the end of
77 * the buffer an error is returned. During decoding the caller supplies
78 * the encoded CBOR in a contiguous buffer and the decoder returns
79 * pointers and lengths into that buffer for strings.
80 *
81 * This implementation does not require malloc. All data structures
82 * passed in/out of the APIs can fit on the stack.
83 *
84 * Decoding of indefinite-length strings is a special case that requires
85 * a "string allocator" to allocate memory into which the segments of
86 * the string are coalesced. Without this, decoding will error out if an
87 * indefinite-length string is encountered (indefinite-length maps and
88 * arrays do not require the string allocator). A simple string
89 * allocator called MemPool is built-in and will work if supplied with a
90 * block of memory to allocate. The string allocator can optionally use
91 * malloc() or some other custom scheme.
92 *
93 * Here are some terms and definitions:
94 *
95 * - "Item", "Data Item": An integer or string or such. The basic "thing" that
96 * CBOR is about. An array is an item itself that contains some items.
97 *
98 * - "Array": An ordered sequence of items, the same as JSON.
99 *
100 * - "Map": A collection of label/value pairs. Each pair is a data
101 * item. A JSON "object" is the same as a CBOR "map".
102 *
103 * - "Label": The data item in a pair in a map that names or identifies
104 * the pair, not the value. This implementation refers to it as a
105 * "label". JSON refers to it as the "name". The CBOR RFC refers to it
106 * this as a "key". This implementation chooses label instead because
107 * key is too easily confused with a cryptographic key. The COSE
108 * standard, which uses CBOR, has also chosen to use the term "label"
109 * rather than "key" for this same reason.
110 *
111 * - "Key": See "Label" above.
112 *
113 * - "Tag": A data item that is an explicitly labeled new data
114 * type made up of the tagging integer and the tag content.
115 * See @ref Tags-Overview and @ref Tag-Usage.
116 *
117 * - "Initial Byte": The first byte of an encoded item. Encoding and
118 * decoding of this byte is taken care of by the implementation.
119 *
120 * - "Additional Info": In addition to the major type, all data items
121 * have some other info. This is usually the length of the data but can
122 * be several other things. Encoding and decoding of this is taken care
123 * of by the implementation.
124 *
125 * CBOR has two mechanisms for tagging and labeling the data values like
126 * integers and strings. For example, an integer that represents
127 * someone's birthday in epoch seconds since Jan 1, 1970 could be
128 * encoded like this:
129 *
130 * - First it is CBOR_MAJOR_TYPE_POSITIVE_INT (@ref QCBOR_TYPE_INT64),
131 * the primitive positive integer.
132 *
133 * - Next it has a "tag" @ref CBOR_TAG_DATE_EPOCH indicating the integer
134 * represents a date in the form of the number of seconds since Jan 1,
135 * 1970.
136 *
137 * - Last it has a string "label" like "BirthDate" indicating the
138 * meaning of the data.
139 *
140 * The encoded binary looks like this:
141 *
142 * a1 # Map of 1 item
143 * 69 # Indicates text string of 9 bytes
144 * 426972746844617465 # The text "BirthDate"
145 * c1 # Tags next integer as epoch date
146 * 1a # Indicates a 4-byte integer
147 * 580d4172 # unsigned integer date 1477263730
148 *
149 * Implementors using this API will primarily work with
150 * labels. Generally, tags are only needed for making up new data
151 * types. This implementation covers most of the data types defined in
152 * the RFC using tags. It also, allows for the use of custom tags if
153 * necessary.
154 *
155 * This implementation explicitly supports labels that are text strings
156 * and integers. Text strings translate nicely into JSON objects and are
157 * very readable. Integer labels are much less readable but can be very
158 * compact. If they are in the range of 0 to 23, they take up only one
159 * byte.
160 *
161 * CBOR allows a label to be any type of data including an array or a
162 * map. It is possible to use this API to construct and parse such
163 * labels, but it is not explicitly supported.
164 *
165 * @anchor Encoding
166 *
167 * ## Encoding
168 *
169 * A common encoding usage mode is to invoke the encoding twice. First
170 * with the output buffer as @ref SizeCalculateUsefulBuf to compute the
171 * length of the needed output buffer. The correct sized output buffer
172 * is allocated. The encoder is invoked a second time with the allocated
173 * output buffer.
174 *
175 * The double invocation is not required if the maximum output buffer
176 * size can be predicted. This is usually possible for simple CBOR
177 * structures.
178 *
179 * If a buffer too small to hold the encoded output is given, the error
180 * @ref QCBOR_ERR_BUFFER_TOO_SMALL will be returned. Data will never be
181 * written off the end of the output buffer no matter which functions
182 * here are called or what parameters are passed to them.
183 *
184 * The encoding error handling is simple. The only possible errors are
185 * trying to encode structures that are too large or too complex. There
186 * are no internal malloc calls so there will be no failures for out of
187 * memory. The error state is tracked internally, so there is no need
188 * to check for errors when encoding. Only the return code from
189 * QCBOREncode_Finish() need be checked as once an error happens, the
190 * encoder goes into an error state and calls to it to add more data
191 * will do nothing. An error check is not needed after every data item
192 * is added.
193 *
194 * Encoding generally proceeds by calling QCBOREncode_Init(), calling
195 * lots of @c QCBOREncode_AddXxx() functions and calling
196 * QCBOREncode_Finish(). There are many @c QCBOREncode_AddXxx()
197 * functions for various data types. The input buffers need only to be
198 * valid during the @c QCBOREncode_AddXxx() calls as the data is copied
199 * into the output buffer.
200 *
201 * There are three `Add` functions for each data type. The first / main
202 * one for the type is for adding the data item to an array. The second
203 * one's name ends in `ToMap`, is used for adding data items to maps and
204 * takes a string argument that is its label in the map. The third one
205 * ends in `ToMapN`, is also used for adding data items to maps, and
206 * takes an integer argument that is its label in the map.
207 *
208 * The simplest aggregate type is an array, which is a simple ordered
209 * set of items without labels the same as JSON arrays. Call
210 * QCBOREncode_OpenArray() to open a new array, then various @c
211 * QCBOREncode_AddXxx() functions to put items in the array and then
212 * QCBOREncode_CloseArray(). Nesting to the limit @ref
213 * QCBOR_MAX_ARRAY_NESTING is allowed. All opens must be matched by
214 * closes or an encoding error will be returned.
215 *
216 * The other aggregate type is a map which does use labels. The `Add`
217 * functions that end in `ToMap` and `ToMapN` are convenient ways to add
218 * labeled data items to a map. You can also call any type of `Add`
219 * function once to add a label of any type and then call any type of
220 * `Add` again to add its value.
221 *
222 * Note that when you nest arrays or maps in a map, the nested array or
223 * map has a label.
224 *
225 * Many CBOR-based protocols start with an array or map. This makes them
226 * self-delimiting. No external length or end marker is needed to know
227 * the end. It is also possible not start this way, in which case this
228 * it is usually called a CBOR sequence which is described in
229 * [RFC 8742] (https://tools.ietf.org/html/rfc8742). This encoder supports
230 * either just by whether the first item added is an array, map or other.
231 *
232 * If QCBOR is compiled with QCBOR_DISABLE_ENCODE_USAGE_GUARDS defined,
233 * the errors QCBOR_ERR_CLOSE_MISMATCH, QCBOR_ERR_ARRAY_TOO_LONG,
234 * QCBOR_ERR_TOO_MANY_CLOSES, QCBOR_ERR_ARRAY_OR_MAP_STILL_OPEN, and
235 * QCBOR_ERR_ENCODE_UNSUPPORTED will never be returned. It is up to the
236 * caller to make sure that opened maps, arrays and byte-string wrapping
237 * is closed correctly and that QCBOREncode_AddType7() is called
238 * correctly. With this defined, it is easier to make a mistake when
239 * authoring the encoding of a protocol that will output not well formed
240 * CBOR, but as long as the calling code is correct, it is safe to
241 * disable these checks. Bounds checking that prevents security issues
242 * in the code is still enforced. This define reduces the size of
243 * encoding object code by about 150 bytes.
244 *
245 * @anchor Tags-Overview
246 *
247 * ## Tags Overview
248 *
249 * Any CBOR data item can be made into a tag to add semantics, define a
250 * new data type or such. Some tags are fully standardized and some are
251 * just registered. Others are not registered and used in a proprietary
252 * way.
253 *
254 * Encoding and decoding of many of the registered tags is fully
255 * implemented by QCBOR. It is also possible to encode and decode tags
256 * that are not directly supported. For many use cases the built-in tag
257 * support should be adequate.
258 *
259 * For example, the registered epoch date tag is supported in encoding
260 * by QCBOREncode_AddDateEpoch() and in decoding by @ref
261 * QCBOR_TYPE_DATE_EPOCH and the @c epochDate member of @ref
262 * QCBORItem. This is typical of the built-in tag support. There is an
263 * API to encode data for it and a @c QCBOR_TYPE_XXX when it is decoded.
264 *
265 * Tags are registered in the [IANA CBOR Tags Registry]
266 * (https://www.iana.org/assignments/cbor-tags/cbor-tags.xhtml). There
267 * are roughly three options to create a new tag. First, a public
268 * specification can be created and the new tag registered with IANA.
269 * This is the most formal. Second, the new tag can be registered with
270 * IANA with just a short description rather than a full specification.
271 * These tags must be greater than 256. Third, a tag can be used without
272 * any IANA registration, though the registry should be checked to see
273 * that the new value doesn't collide with one that is registered. The
274 * value of these tags must be 256 or larger.
275 *
276 * See also @ref CBORTags and @ref Tag-Usage
277 *
278 * The encoding side of tags not built-in is handled by
279 * QCBOREncode_AddTag() and is relatively simple. Tag decoding is more
280 * complex and mainly handled by QCBORDecode_GetNext(). Decoding of the
281 * structure of tagged data not built-in (if there is any) has to be
282 * implemented by the caller.
283 *
284 * @anchor Floating-Point
285 *
286 * ## Floating-Point
287 *
288 * By default QCBOR fully supports IEEE 754 floating-point:
289 * - Encode/decode of double, single and half-precision
290 * - CBOR preferred serialization of floating-point
291 * - Floating-point epoch dates
292 *
293 * For the most part, the type double is used in the interface for
294 * floating-point values. In the default configuration, all decoded
295 * floating-point values are returned as a double.
296 *
297 * With CBOR preferred serialization, the encoder outputs the smallest
298 * representation of the double or float that preserves precision. Zero,
299 * NaN and infinity are always output as a half-precision, each taking
300 * just 2 bytes. This reduces the number of bytes needed to encode
301 * double and single-precision, especially if zero, NaN and infinity are
302 * frequently used.
303 *
304 * To avoid use of preferred serialization in the standard configuration
305 * when encoding, use QCBOREncode_AddDoubleNoPreferred() or
306 * QCBOREncode_AddFloatNoPreferred().
307 *
308 * This implementation of preferred floating-point serialization and
309 * half-precision does not depend on the CPU having floating-point HW or
310 * the compiler bringing in a (sometimes large) library to compensate
311 * for lack of CPU support. This implementation uses shifts and masks
312 * rather than floating-point functions.
313 *
314 * To reduce overall object code by about 900 bytes, define
315 * QCBOR_DISABLE_PREFERRED_FLOAT. This will eliminate all support for
316 * preferred serialization and half-precision. An error will be returned
317 * when attempting to decode half-precision. A float will always be
318 * encoded and decoded as 32-bits and a double will always be encoded
319 * and decoded as 64 bits.
320 *
321 * Note that even if QCBOR_DISABLE_PREFERRED_FLOAT is not defined all
322 * the float-point encoding object code can be avoided by never calling
323 * any functions that encode double or float. Just not calling
324 * floating-point functions will reduce object code by about 500 bytes.
325 *
326 * On CPUs that have no floating-point hardware,
327 * QCBOR_DISABLE_FLOAT_HW_USE should be defined in most cases. If it is
328 * not, then the compiler will bring in possibly large software
329 * libraries to compensate. Defining QCBOR_DISABLE_FLOAT_HW_USE reduces
330 * object code size on CPUs with floating-point hardware by a tiny
331 * amount and eliminates the need for <math.h>
332 *
333 * When QCBOR_DISABLE_FLOAT_HW_USE is defined, trying to decoding
334 * floating-point dates will give error
335 * @ref QCBOR_ERR_FLOAT_DATE_DISABLED and decoded single-precision
336 * numbers will be returned as @ref QCBOR_TYPE_FLOAT instead of
337 * converting them to double as usual.
338 *
339 * If both QCBOR_DISABLE_FLOAT_HW_USE and QCBOR_DISABLE_PREFERRED_FLOAT
340 * are defined, then the only thing QCBOR can do is encode/decode a C
341 * float type as 32-bits and a C double type as 64-bits. Floating-point
342 * epoch dates will be unsupported.
343 *
344 * If USEFULBUF_DISABLE_ALL_FLOATis defined, then floating point
345 * support is completely disabled. Decoding functions return
346 * @ref QCBOR_ERR_ALL_FLOAT_DISABLED if a floating point value is
347 * encountered during decoding. Functions that are encoding floating
348 * point values are not available.
349 *
350 * ## Limitations
351 *
352 * Summary Limits of this implementation:
353 * - The entire encoded CBOR must fit into contiguous memory.
354 * - Max size of encoded / decoded CBOR data is a few bytes less than @c UINT32_MAX (4GB).
355 * - Max array / map nesting level when encoding / decoding is
356 * @ref QCBOR_MAX_ARRAY_NESTING (this is typically 15).
357 * - Max items in an array or map when encoding / decoding is
358 * @ref QCBOR_MAX_ITEMS_IN_ARRAY (typically 65,536).
359 * - Does not directly support labels in maps other than text strings & integers.
360 * - Does not directly support integer labels greater than @c INT64_MAX.
361 * - Epoch dates limited to @c INT64_MAX (+/- 292 billion years).
362 * - Exponents for bigfloats and decimal integers are limited to @c INT64_MAX.
363 * - Tags on labels are ignored during decoding.
364 * - The maximum tag nesting is @c QCBOR_MAX_TAGS_PER_ITEM (typically 4).
365 * - Works only on 32- and 64-bit CPUs (modifications could make it work
366 * on 16-bit CPUs).
367 *
368 * The public interface uses @c size_t for all lengths. Internally the
369 * implementation uses 32-bit lengths by design to use less memory and
370 * fit structures on the stack. This limits the encoded CBOR it can
371 * work with to size @c UINT32_MAX (4GB) which should be enough.
372 *
373 * This implementation assumes two's compliment integer machines.
374 * @c <stdint.h> also requires this. It is possible to modify this
375 * implementation for another integer representation, but all modern
376 * machines seem to be two's compliment.
Michael Eckel5c531332020-03-02 01:35:30 +0100377 */
378
379
Laurence Lundblade825164e2020-10-22 20:18:06 -0700380/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700381 * The size of the buffer to be passed to QCBOREncode_EncodeHead(). It
382 * is one byte larger than sizeof(uint64_t) + 1, the actual maximum
383 * size of the head of a CBOR data item because
384 * QCBOREncode_EncodeHead() needs one extra byte to work.
Michael Eckel5c531332020-03-02 01:35:30 +0100385 */
386#define QCBOR_HEAD_BUFFER_SIZE (sizeof(uint64_t) + 2)
387
Michael Eckel5c531332020-03-02 01:35:30 +0100388
Laurence Lundblade9b334962020-08-27 10:55:53 -0700389/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700390 * Output the full CBOR tag. See @ref CBORTags, @ref Tag-Usage and
391 * @ref Tags-Overview.
Laurence Lundblade9b334962020-08-27 10:55:53 -0700392 */
393#define QCBOR_ENCODE_AS_TAG 0
394
395/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700396 * Output only the 'borrowed' content format for the relevant tag.
397 * See @ref CBORTags, @ref Tag-Usage and @ref Tags-Overview.
Laurence Lundblade9b334962020-08-27 10:55:53 -0700398 */
399#define QCBOR_ENCODE_AS_BORROWED 1
400
Michael Eckel5c531332020-03-02 01:35:30 +0100401
402/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700403 * QCBOREncodeContext is the data type that holds context for all the
404 * encoding functions. It is less than 200 bytes, so it can go on the
405 * stack. The contents are opaque, and the caller should not access
406 * internal members. A context may be re used serially as long as it is
407 * re initialized.
Michael Eckel5c531332020-03-02 01:35:30 +0100408 */
409typedef struct _QCBOREncodeContext QCBOREncodeContext;
410
411
412/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700413 * Initialize the encoder to prepare to encode some CBOR.
414 *
415 * @param[in,out] pCtx The encoder context to initialize.
416 * @param[in] Storage The buffer into which the encoded result
417 * will be written.
418 *
419 * Call this once at the start of an encoding of some CBOR. Then call
420 * the many functions like QCBOREncode_AddInt64() and
421 * QCBOREncode_AddText() to add the different data items. Finally,
422 * call QCBOREncode_Finish() to get the pointer and length of the
423 * encoded result.
424 *
425 * The primary purpose of this function is to give the pointer and
426 * length of the output buffer into which the encoded CBOR will be
427 * written. This is done with a @ref UsefulBuf structure, which is
428 * just a pointer and length (it is equivalent to two parameters, one
429 * a pointer and one a length, but a little prettier).
430 *
431 * The output buffer can be allocated any way (malloc, stack,
432 * static). It is just some memory that QCBOR writes to. The length
433 * must be the length of the allocated buffer. QCBOR will never write
434 * past that length, but might write up to that length. If the buffer
435 * is too small, encoding will go into an error state and not write
436 * anything further.
437 *
438 * If allocating on the stack the convenience macro
439 * UsefulBuf_MAKE_STACK_UB() can be used, but its use is not required.
440 *
441 * Since there is no reallocation or such, the output buffer must be
442 * correctly sized when passed in here. It is OK, but wasteful if it
443 * is too large. One way to pick the size is to figure out the maximum
444 * size that will ever be needed and hard code a buffer of that size.
445 *
446 * Another way to do it is to have QCBOR calculate it for you. To do
447 * this, pass @ref SizeCalculateUsefulBuf for @c Storage. Then call
448 * all the functions to add the CBOR exactly as if encoding for
449 * real. Finally, call QCBOREncode_FinishGetSize(). Once the length
450 * is obtained, allocate a buffer of that size, call
451 * QCBOREncode_Init() again with the real buffer. Call all the add
452 * functions again and finally, QCBOREncode_Finish() to obtain the
453 * final result. This uses twice the CPU time, but that is usually not
454 * an issue.
455 *
456 * See QCBOREncode_Finish() for how the pointer and length for the
457 * encoded CBOR is returned.
458 *
459 * For practical purposes QCBOR can't output encoded CBOR larger than
460 * @c UINT32_MAX (4GB) even on 64-bit CPUs because the internal
461 * offsets used to track the start of an array/map are 32 bits to
462 * reduce the size of the encoding context.
463 *
464 * A @ref QCBOREncodeContext can be reused over and over as long as
465 * QCBOREncode_Init() is called before each use.
Michael Eckel5c531332020-03-02 01:35:30 +0100466 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700467void
468QCBOREncode_Init(QCBOREncodeContext *pCtx, UsefulBuf Storage);
Michael Eckel5c531332020-03-02 01:35:30 +0100469
470
471/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700472 * @brief Add a signed 64-bit integer to the encoded output.
473 *
474 * @param[in] pCtx The encoding context to add the integer to.
475 * @param[in] nNum The integer to add.
476 *
477 * The integer will be encoded and added to the CBOR output.
478 *
479 * This function figures out the size and the sign and encodes in the
480 * correct minimal CBOR. Specifically, it will select CBOR major type
481 * 0 or 1 based on sign and will encode to 1, 2, 4 or 8 bytes
482 * depending on the value of the integer. Values less than 24
483 * effectively encode to one byte because they are encoded in with the
484 * CBOR major type. This is a neat and efficient characteristic of
485 * CBOR that can be taken advantage of when designing CBOR-based
486 * protocols. If integers like tags can be kept between -23 and 23
487 * they will be encoded in one byte including the major type.
488 *
489 * If you pass a smaller int, say an @c int16_t or a small value, say
490 * 100, the encoding will still be CBOR's most compact that can
491 * represent the value. For example, CBOR always encodes the value 0
492 * as one byte, 0x00. The representation as 0x00 includes
493 * identification of the type as an integer too as the major type for
494 * an integer is 0. See [RFC 8949]
495 * (https://tools.ietf.org/html/rfc8949) Appendix A for more examples
496 * of CBOR encoding. This compact encoding is also preferred
497 * serialization CBOR as per section 34.1 in RFC 8949.
498 *
499 * There are no functions to add @c int16_t or @c int32_t because they
500 * are not necessary because this always encodes to the smallest
501 * number of bytes based on the value (If this code is running on a
502 * 32-bit machine having a way to add 32-bit integers would reduce
503 * code size some).
504 *
505 * If the encoding context is in an error state, this will do
506 * nothing. If an error occurs when adding this integer, the internal
507 * error flag will be set, and the error will be returned when
508 * QCBOREncode_Finish() is called.
509 *
510 * See also QCBOREncode_AddUInt64().
Michael Eckel5c531332020-03-02 01:35:30 +0100511 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700512void
513QCBOREncode_AddInt64(QCBOREncodeContext *pCtx, int64_t nNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100514
Laurence Lundblade3eead482023-12-16 20:53:22 -0700515static void
516QCBOREncode_AddInt64ToMap(QCBOREncodeContext *pCtx, const char *szLabel, int64_t uNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100517
Laurence Lundblade3eead482023-12-16 20:53:22 -0700518static void
519QCBOREncode_AddInt64ToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, int64_t uNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100520
521
522/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700523 * @brief Add an unsigned 64-bit integer to the encoded output.
524 *
525 * @param[in] pCtx The encoding context to add the integer to.
526 * @param[in] uNum The integer to add.
527 *
528 * The integer will be encoded and added to the CBOR output.
529 *
530 * The only reason so use this function is for integers larger than
531 * @c INT64_MAX and smaller than @c UINT64_MAX. Otherwise
532 * QCBOREncode_AddInt64() will work fine.
533 *
534 * Error handling is the same as for QCBOREncode_AddInt64().
Michael Eckel5c531332020-03-02 01:35:30 +0100535 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700536void
537QCBOREncode_AddUInt64(QCBOREncodeContext *pCtx, uint64_t uNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100538
Laurence Lundblade3eead482023-12-16 20:53:22 -0700539static void
540QCBOREncode_AddUInt64ToMap(QCBOREncodeContext *pCtx, const char *szLabel, uint64_t uNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100541
Laurence Lundblade3eead482023-12-16 20:53:22 -0700542static void
543QCBOREncode_AddUInt64ToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, uint64_t uNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100544
545
546/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700547 * @brief Add a UTF-8 text string to the encoded output.
548 *
549 * @param[in] pCtx The encoding context to add the text to.
550 * @param[in] Text Pointer and length of text to add.
551 *
552 * The text passed in must be unencoded UTF-8 according to [RFC 3629]
553 * (https://tools.ietf.org/html/rfc3629). There is no NULL
554 * termination. The text is added as CBOR major type 3.
555 *
556 * If called with @c nBytesLen equal to 0, an empty string will be
557 * added. When @c nBytesLen is 0, @c pBytes may be @c NULL.
558 *
559 * Note that the restriction of the buffer length to a @c uint32_t is
560 * entirely intentional as this encoder is not capable of encoding
561 * lengths greater. This limit to 4GB for a text string should not be
562 * a problem.
563 *
564 * Text lines in Internet protocols (on the wire) are delimited by
565 * either a CRLF or just an LF. Officially many protocols specify
566 * CRLF, but implementations often work with either. CBOR type 3 text
567 * can be either line ending, even a mixture of both.
568 *
569 * Operating systems usually have a line end convention. Windows uses
570 * CRLF. Linux and MacOS use LF. Some applications on a given OS may
571 * work with either and some may not.
572 *
573 * The majority of use cases and CBOR protocols using type 3 text will
574 * work with either line ending. However, some use cases or protocols
575 * may not work with either in which case translation to and/or from
576 * the local line end convention, typically that of the OS, is
577 * necessary.
578 *
579 * QCBOR does no line ending translation for type 3 text when encoding
580 * and decoding.
581 *
582 * Error handling is the same as QCBOREncode_AddInt64().
Michael Eckel5c531332020-03-02 01:35:30 +0100583 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700584static void
585QCBOREncode_AddText(QCBOREncodeContext *pCtx, UsefulBufC Text);
Michael Eckel5c531332020-03-02 01:35:30 +0100586
Laurence Lundblade3eead482023-12-16 20:53:22 -0700587static void
588QCBOREncode_AddTextToMap(QCBOREncodeContext *pCtx, const char *szLabel, UsefulBufC Text);
Michael Eckel5c531332020-03-02 01:35:30 +0100589
Laurence Lundblade3eead482023-12-16 20:53:22 -0700590static void
591QCBOREncode_AddTextToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, UsefulBufC Text);
Michael Eckel5c531332020-03-02 01:35:30 +0100592
593
594/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700595 * @brief Add a UTF-8 text string to the encoded output.
596 *
597 * @param[in] pCtx The encoding context to add the text to.
598 * @param[in] szString Null-terminated text to add.
599 *
600 * This works the same as QCBOREncode_AddText().
Michael Eckel5c531332020-03-02 01:35:30 +0100601 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700602static void
603QCBOREncode_AddSZString(QCBOREncodeContext *pCtx, const char *szString);
Michael Eckel5c531332020-03-02 01:35:30 +0100604
Laurence Lundblade3eead482023-12-16 20:53:22 -0700605static void
606QCBOREncode_AddSZStringToMap(QCBOREncodeContext *pCtx, const char *szLabel, const char *szString);
Michael Eckel5c531332020-03-02 01:35:30 +0100607
Laurence Lundblade3eead482023-12-16 20:53:22 -0700608static void
609QCBOREncode_AddSZStringToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, const char *szString);
Michael Eckel5c531332020-03-02 01:35:30 +0100610
611
Máté Tóth-Pálef5f07a2021-09-17 19:31:37 +0200612#ifndef USEFULBUF_DISABLE_ALL_FLOAT
Michael Eckel5c531332020-03-02 01:35:30 +0100613/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700614 * @brief Add a double-precision floating-point number to the encoded output.
615 *
616 * @param[in] pCtx The encoding context to add the double to.
617 * @param[in] dNum The double-precision number to add.
618 *
619 * This encodes and outputs a floating-point number. CBOR major type 7
620 * is used.
621 *
622 * This implements preferred serialization, selectively encoding the
623 * double-precision floating-point number as either double-precision,
624 * single-precision or half-precision. Infinity, NaN and 0 are always
625 * encoded as half-precision. If no precision will be lost in the
626 * conversion to half-precision, then it will be converted and
627 * encoded. If not and no precision will be lost in conversion to
628 * single-precision, then it will be converted and encoded. If not,
629 * then no conversion is performed, and it encoded as a
630 * double-precision.
631 *
632 * Half-precision floating-point numbers take up 2 bytes, half that of
633 * single-precision, one quarter of double-precision
634 *
635 * This automatically reduces the size of encoded CBOR, maybe even by
636 * four if most of values are 0, infinity or NaN.
637 *
638 * When decoded, QCBOR will usually return these values as
639 * double-precision.
640 *
641 * It is possible to disable this preferred serialization when compiling
642 * QCBOR. In that case, this functions the same as
643 * QCBOREncode_AddDoubleNoPreferred().
644 *
645 * Error handling is the same as QCBOREncode_AddInt64().
646 *
647 * See also QCBOREncode_AddDoubleNoPreferred(), QCBOREncode_AddFloat()
648 * and QCBOREncode_AddFloatNoPreferred() and @ref Floating-Point.
Michael Eckel5c531332020-03-02 01:35:30 +0100649 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700650void
651QCBOREncode_AddDouble(QCBOREncodeContext *pCtx, double dNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100652
Laurence Lundblade3eead482023-12-16 20:53:22 -0700653static void
654QCBOREncode_AddDoubleToMap(QCBOREncodeContext *pCtx, const char *szLabel, double dNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100655
Laurence Lundblade3eead482023-12-16 20:53:22 -0700656static void
657QCBOREncode_AddDoubleToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, double dNum);
Michael Eckel5c531332020-03-02 01:35:30 +0100658
659
660/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700661 * @brief Add a single-precision floating-point number to the encoded output.
662 *
663 * @param[in] pCtx The encoding context to add the double to.
664 * @param[in] fNum The single-precision number to add.
665 *
666 * This is identical to QCBOREncode_AddDouble() except the input is
667 * single-precision.
668 *
669 * See also QCBOREncode_AddDouble(), QCBOREncode_AddDoubleNoPreferred(),
670 * and QCBOREncode_AddFloatNoPreferred() and @ref Floating-Point.
671 */
672void
673QCBOREncode_AddFloat(QCBOREncodeContext *pCtx, float fNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -0700674
Laurence Lundblade3eead482023-12-16 20:53:22 -0700675static void
676QCBOREncode_AddFloatToMap(QCBOREncodeContext *pCtx, const char *szLabel, float fNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -0700677
Laurence Lundblade3eead482023-12-16 20:53:22 -0700678static void
679QCBOREncode_AddFloatToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, float dNum);
Laurence Lundbladeb275cdc2020-07-12 12:34:38 -0700680
681
Laurence Lundblade32f3e622020-07-13 20:35:11 -0700682/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700683 * @brief Add a double-precision floating-point number without preferred encoding.
684 *
685 * @param[in] pCtx The encoding context to add the double to.
686 * @param[in] dNum The double-precision number to add.
687 *
688 * This always outputs the number as a 64-bit double-precision.
689 * Preferred serialization is not used.
690 *
691 * Error handling is the same as QCBOREncode_AddInt64().
692 *
693 * See also QCBOREncode_AddDouble(), QCBOREncode_AddFloat(), and
694 * QCBOREncode_AddFloatNoPreferred() and @ref Floating-Point.
695 */
696void
697QCBOREncode_AddDoubleNoPreferred(QCBOREncodeContext *pCtx, double dNum);
Laurence Lundbladeb275cdc2020-07-12 12:34:38 -0700698
Laurence Lundblade3eead482023-12-16 20:53:22 -0700699static void
700QCBOREncode_AddDoubleNoPreferredToMap(QCBOREncodeContext *pCtx, const char *szLabel, double dNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -0700701
Laurence Lundblade3eead482023-12-16 20:53:22 -0700702static void
703QCBOREncode_AddDoubleNoPreferredToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, double dNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -0700704
705
706/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700707 * @brief Add a single-precision floating-point number without preferred encoding.
708 *
709 * @param[in] pCtx The encoding context to add the double to.
710 * @param[in] fNum The single-precision number to add.
711 *
712 * This always outputs the number as a 32-bit single-precision.
713 * Preferred serialization is not used.
714 *
715 * Error handling is the same as QCBOREncode_AddInt64().
716 *
717 * See also QCBOREncode_AddDouble(), QCBOREncode_AddFloat(), and
718 * QCBOREncode_AddDoubleNoPreferred() and @ref Floating-Point.
719 */
720void
721QCBOREncode_AddFloatNoPreferred(QCBOREncodeContext *pCtx, float fNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -0700722
Laurence Lundblade3eead482023-12-16 20:53:22 -0700723static void
724QCBOREncode_AddFloatNoPreferredToMap(QCBOREncodeContext *pCtx, const char *szLabel, float fNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -0700725
Laurence Lundblade3eead482023-12-16 20:53:22 -0700726static void
727QCBOREncode_AddFloatNoPreferredToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, float fNum);
Máté Tóth-Pálef5f07a2021-09-17 19:31:37 +0200728#endif /* USEFULBUF_DISABLE_ALL_FLOAT */
Laurence Lundbladeb275cdc2020-07-12 12:34:38 -0700729
730
Michael Eckel5c531332020-03-02 01:35:30 +0100731/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700732 * @brief Add an optional tag.
733 *
734 * @param[in] pCtx The encoding context to add the tag to.
735 * @param[in] uTag The tag to add
736 *
737 * This outputs a CBOR major type 6 item that tags the next data item
738 * that is output usually to indicate it is some new data type.
739 *
740 * For many of the common standard tags, a function to encode data
741 * using it is provided and this is not needed. For example,
742 * QCBOREncode_AddDateEpoch() already exists to output integers
743 * representing dates with the right tag.
744 *
745 * The tag is applied to the next data item added to the encoded
746 * output. That data item that is to be tagged can be of any major
747 * CBOR type. Any number of tags can be added to a data item by
748 * calling this multiple times before the data item is added.
749 *
750 * See @ref Tags-Overview for discussion of creating new non-standard
751 * tags. See QCBORDecode_GetNext() for discussion of decoding custom
752 * tags.
Michael Eckel5c531332020-03-02 01:35:30 +0100753 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700754void
755QCBOREncode_AddTag(QCBOREncodeContext *pCtx, uint64_t uTag);
Laurence Lundblade46d63e92021-05-13 11:37:10 -0700756
757
Michael Eckel5c531332020-03-02 01:35:30 +0100758/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700759 * @brief Add an epoch-based date.
760 *
761 * @param[in] pCtx The encoding context to add the date to.
762 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
763 * @ref QCBOR_ENCODE_AS_BORROWED.
764 * @param[in] nDate Number of seconds since 1970-01-01T00:00Z
765 * in UTC time.
766 *
767 * As per RFC 8949 this is similar to UNIX/Linux/POSIX dates. This is
768 * the most compact way to specify a date and time in CBOR. Note that
769 * this is always UTC and does not include the time zone. Use
770 * QCBOREncode_AddDateString() if you want to include the time zone.
771 *
772 * The preferred integer serialization rules apply here so the date will be
773 * encoded in a minimal number of bytes. Until about the year 2106
774 * these dates will encode in 6 bytes -- one byte for the tag, one
775 * byte for the type and 4 bytes for the integer. After that it will
776 * encode to 10 bytes.
777 *
778 * Negative values are supported for dates before 1970.
779 *
780 * If you care about leap-seconds and that level of accuracy, make sure
781 * the system you are running this code on does it correctly. This code
782 * just takes the value passed in.
783 *
784 * This implementation cannot encode fractional seconds using float or
785 * double even though that is allowed by CBOR, but you can encode them
786 * if you want to by calling QCBOREncode_AddTag() and QCBOREncode_AddDouble().
787 *
788 * Error handling is the same as QCBOREncode_AddInt64().
789 *
790 * See also QCBOREncode_AddTDaysEpoch().
Michael Eckel5c531332020-03-02 01:35:30 +0100791 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700792static void
793QCBOREncode_AddTDateEpoch(QCBOREncodeContext *pCtx,
794 uint8_t uTagRequirement,
795 int64_t nDate);
Michael Eckel5c531332020-03-02 01:35:30 +0100796
Laurence Lundblade3eead482023-12-16 20:53:22 -0700797static void
798QCBOREncode_AddTDateEpochToMapSZ(QCBOREncodeContext *pCtx,
799 const char *szLabel,
800 uint8_t uTagRequirement,
801 int64_t nDate);
Michael Eckel5c531332020-03-02 01:35:30 +0100802
Laurence Lundblade3eead482023-12-16 20:53:22 -0700803static void
804QCBOREncode_AddTDateEpochToMapN(QCBOREncodeContext *pCtx,
805 int64_t nLabel,
806 uint8_t uTagRequirement,
807 int64_t nDate);
808
809
810static void
811QCBOREncode_AddDateEpoch(QCBOREncodeContext *pCtx,
812 int64_t nDate);
813
814static void
815QCBOREncode_AddDateEpochToMap(QCBOREncodeContext *pCtx,
816 const char *szLabel,
817 int64_t nDate);
818
819static void
820QCBOREncode_AddDateEpochToMapN(QCBOREncodeContext *pCtx,
821 int64_t nLabel,
822 int64_t nDate);
823
Michael Eckel5c531332020-03-02 01:35:30 +0100824
825
Michael Eckel5c531332020-03-02 01:35:30 +0100826/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700827 * @brief Add an epoch-based day-count date.
828 *
829 * @param[in] pCtx The encoding context to add the date to.
830 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
831 * @ref QCBOR_ENCODE_AS_BORROWED.
832 * @param[in] nDays Number of days before or after 1970-01-0.
833 *
834 * This date format is described in
835 * [RFC 8943] (https://tools.ietf.org/html/rfc8943).
836 *
837 * The preferred integer serialization rules apply here so the date
838 * will be encoded in a minimal number of bytes. Until about the year
839 * 2149 these dates will encode in 4 bytes -- one byte for the tag,
840 * one byte for the type and 2 bytes for the integer.
841 *
842 * See also QCBOREncode_AddTDateEpoch().
843 */
844static void
845QCBOREncode_AddTDaysEpoch(QCBOREncodeContext *pCtx,
846 uint8_t uTagRequirement,
847 int64_t nDays);
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600848
Laurence Lundblade3eead482023-12-16 20:53:22 -0700849static void
850QCBOREncode_AddTDaysEpochToMapSZ(QCBOREncodeContext *pCtx,
851 const char *szLabel,
852 uint8_t uTagRequirement,
853 int64_t nDays);
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600854
Laurence Lundblade3eead482023-12-16 20:53:22 -0700855static void
856QCBOREncode_AddTDaysEpochToMapN(QCBOREncodeContext *pCtx,
857 int64_t nLabel,
858 uint8_t uTagRequirement,
859 int64_t nDays);
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600860
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600861
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600862
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600863
Laurence Lundblade3eead482023-12-16 20:53:22 -0700864/**
865 * @brief Add a byte string to the encoded output.
866 *
867 * @param[in] pCtx The encoding context to add the bytes to.
868 * @param[in] Bytes Pointer and length of the input data.
869 *
870 * Simply adds the bytes to the encoded output as CBOR major type 2.
871 *
872 * If called with @c Bytes.len equal to 0, an empty string will be
873 * added. When @c Bytes.len is 0, @c Bytes.ptr may be @c NULL.
874 *
875 * Error handling is the same as QCBOREncode_AddInt64().
876 */
877static void
878QCBOREncode_AddBytes(QCBOREncodeContext *pCtx, UsefulBufC Bytes);
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600879
Laurence Lundblade3eead482023-12-16 20:53:22 -0700880static void
881QCBOREncode_AddBytesToMap(QCBOREncodeContext *pCtx, const char *szLabel, UsefulBufC Bytes);
882
883static void
884QCBOREncode_AddBytesToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, UsefulBufC Bytes);
885
886
887/**
888 * @brief Set up to write a byte string value directly to encoded output.
889 *
890 * @param[in] pCtx The encoding context to add the bytes to.
891 * @param[out] pPlace Pointer and length of place to write byte string value.
892 *
893 * QCBOREncode_AddBytes() is the normal way to encode a byte string.
894 * This is for special cases and by passes some of the pointer safety.
895 *
896 * The purpose of this is to output the bytes that make up a byte
897 * string value directly to the QCBOR output buffer so you don't need
898 * to have a copy of it in memory. This is particularly useful if the
899 * byte string is large, for example, the encrypted payload of a
900 * COSE_Encrypt message. The payload encryption algorithm can output
901 * directly to the encoded CBOR buffer, perhaps by making it the
902 * output buffer for some function (e.g. symmetric encryption) or by
903 * multiple writes.
904 *
905 * The pointer in @c pPlace is where to start writing. Writing is just
906 * copying bytes to the location by the pointer in \c pPlace. Writing
907 * past the length in @c pPlace will be writing off the end of the
908 * output buffer.
909 *
910 * If there is no room in the output buffer @ref NULLUsefulBuf will be
911 * returned and there is no need to call QCBOREncode_CloseBytes().
912 *
913 * The byte string must be closed by calling QCBOREncode_CloseBytes().
914 *
915 * Warning: this bypasses some of the usual checks provided by QCBOR
916 * against writing off the end of the encoded output buffer.
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600917 */
918void
919QCBOREncode_OpenBytes(QCBOREncodeContext *pCtx, UsefulBuf *pPlace);
920
921static void
Laurence Lundblade3eead482023-12-16 20:53:22 -0700922QCBOREncode_OpenBytesInMapSZ(QCBOREncodeContext *pCtx,
923 const char *szLabel,
924 UsefulBuf *pPlace);
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600925
926static void
Laurence Lundblade3eead482023-12-16 20:53:22 -0700927QCBOREncode_OpenBytesInMapN(QCBOREncodeContext *pCtx,
928 int64_t nLabel,
929 UsefulBuf *pPlace);
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600930
931
932/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700933 * @brief Close out a byte string written directly to encoded output.
934 *
935 * @param[in] pCtx The encoding context to add the bytes to.
936 * @param[out] uAmount The number of bytes written, the length of the
937 * byte string.
938 *
939 * This closes out a call to QCBOREncode_OpenBytes(). This inserts a
940 * CBOR header at the front of the byte string value to make it a
941 * well-formed byte string.
942 *
943 * If there was no call to QCBOREncode_OpenBytes() then @ref
944 * QCBOR_ERR_TOO_MANY_CLOSES is set.
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600945 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700946void
947QCBOREncode_CloseBytes(QCBOREncodeContext *pCtx, size_t uAmount);
Laurence Lundbladeb24faef2022-04-26 11:03:08 -0600948
949
950/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700951 * @brief Add a binary UUID to the encoded output.
952 *
953 * @param[in] pCtx The encoding context to add the UUID to.
954 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
955 * @ref QCBOR_ENCODE_AS_BORROWED.
956 * @param[in] Bytes Pointer and length of the binary UUID.
957 *
958 * A binary UUID as defined in [RFC 4122]
959 * (https://tools.ietf.org/html/rfc4122) is added to the output.
960 *
961 * It is output as CBOR major type 2, a binary string, with tag @ref
962 * CBOR_TAG_BIN_UUID indicating the binary string is a UUID.
Michael Eckel5c531332020-03-02 01:35:30 +0100963 */
Laurence Lundblade3eead482023-12-16 20:53:22 -0700964static void
965QCBOREncode_AddTBinaryUUID(QCBOREncodeContext *pCtx,
966 uint8_t uTagRequirement,
967 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -0700968
Laurence Lundblade3eead482023-12-16 20:53:22 -0700969static void
970QCBOREncode_AddTBinaryUUIDToMapSZ(QCBOREncodeContext *pCtx,
971 const char *szLabel,
972 uint8_t uTagRequirement,
973 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -0700974
Laurence Lundblade3eead482023-12-16 20:53:22 -0700975static void
976QCBOREncode_AddTBinaryUUIDToMapN(QCBOREncodeContext *pCtx,
977 int64_t nLabel,
978 uint8_t uTagRequirement,
979 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -0700980
981
Laurence Lundblade3eead482023-12-16 20:53:22 -0700982static void
983QCBOREncode_AddBinaryUUID(QCBOREncodeContext *pCtx, UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +0100984
Laurence Lundblade3eead482023-12-16 20:53:22 -0700985static void
986QCBOREncode_AddBinaryUUIDToMap(QCBOREncodeContext *pCtx, const char *szLabel, UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +0100987
Laurence Lundblade3eead482023-12-16 20:53:22 -0700988static void
989QCBOREncode_AddBinaryUUIDToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +0100990
991
992/**
Laurence Lundblade3eead482023-12-16 20:53:22 -0700993 * @brief Add a positive big number to the encoded output.
994 *
995 * @param[in] pCtx The encoding context to add the big number to.
996 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
997 * @ref QCBOR_ENCODE_AS_BORROWED.
998 * @param[in] Bytes Pointer and length of the big number.
999 *
1000 * Big numbers are integers larger than 64-bits. Their format is
1001 * described in [RFC 8949] (https://tools.ietf.org/html/rfc8949).
1002 *
1003 * It is output as CBOR major type 2, a binary string, with tag
1004 * @ref CBOR_TAG_POS_BIGNUM indicating the binary string is a positive
1005 * big number.
1006 *
1007 * Often big numbers are used to represent cryptographic keys,
1008 * however, COSE which defines representations for keys chose not to
1009 * use this particular type.
Michael Eckel5c531332020-03-02 01:35:30 +01001010 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001011static void
1012QCBOREncode_AddTPositiveBignum(QCBOREncodeContext *pCtx,
1013 uint8_t uTagRequirement,
1014 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001015
Laurence Lundblade3eead482023-12-16 20:53:22 -07001016static void
1017QCBOREncode_AddTPositiveBignumToMapSZ(QCBOREncodeContext *pCtx,
1018 const char *szLabel,
1019 uint8_t uTagRequirement,
1020 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001021
Laurence Lundblade3eead482023-12-16 20:53:22 -07001022static void
1023QCBOREncode_AddTPositiveBignumToMapN(QCBOREncodeContext *pCtx,
1024 int64_t nLabel,
1025 uint8_t uTagRequirement,
1026 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001027
1028
Laurence Lundblade3eead482023-12-16 20:53:22 -07001029static void
1030QCBOREncode_AddPositiveBignum(QCBOREncodeContext *pCtx,
1031 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01001032
Laurence Lundblade3eead482023-12-16 20:53:22 -07001033static void
1034QCBOREncode_AddPositiveBignumToMap(QCBOREncodeContext *pCtx,
1035 const char *szLabel,
1036 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01001037
Laurence Lundblade3eead482023-12-16 20:53:22 -07001038static void
1039QCBOREncode_AddPositiveBignumToMapN(QCBOREncodeContext *pCtx,
1040 int64_t nLabel,
1041 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01001042
1043
1044/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001045 * @brief Add a negative big number to the encoded output.
1046 *
1047 * @param[in] pCtx The encoding context to add the big number to.
1048 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1049 * @ref QCBOR_ENCODE_AS_BORROWED.
1050 * @param[in] Bytes Pointer and length of the big number.
1051 *
1052 * Big numbers are integers larger than 64-bits. Their format is
1053 * described in [RFC 8949] (https://tools.ietf.org/html/rfc8949).
1054 *
1055 * It is output as CBOR major type 2, a binary string, with tag
1056 * @ref CBOR_TAG_NEG_BIGNUM indicating the binary string is a negative
1057 * big number.
1058 *
1059 * Often big numbers are used to represent cryptographic keys,
1060 * however, COSE which defines representations for keys chose not to
1061 * use this particular type.
Michael Eckel5c531332020-03-02 01:35:30 +01001062 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001063static void
1064QCBOREncode_AddTNegativeBignum(QCBOREncodeContext *pCtx,
1065 uint8_t uTagRequirement,
1066 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001067
Laurence Lundblade3eead482023-12-16 20:53:22 -07001068static void
1069QCBOREncode_AddTNegativeBignumToMapSZ(QCBOREncodeContext *pCtx,
1070 const char *szLabel,
1071 uint8_t uTagRequirement,
1072 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001073
Laurence Lundblade3eead482023-12-16 20:53:22 -07001074static void
1075QCBOREncode_AddTNegativeBignumToMapN(QCBOREncodeContext *pCtx,
1076 int64_t nLabel,
1077 uint8_t uTagRequirement,
1078 UsefulBufC Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001079
1080
Laurence Lundblade3eead482023-12-16 20:53:22 -07001081static void
1082QCBOREncode_AddNegativeBignum(QCBOREncodeContext *pCtx,
1083 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01001084
Laurence Lundblade3eead482023-12-16 20:53:22 -07001085static void
1086QCBOREncode_AddNegativeBignumToMap(QCBOREncodeContext *pCtx,
1087 const char *szLabel,
1088 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01001089
Laurence Lundblade3eead482023-12-16 20:53:22 -07001090static void
1091QCBOREncode_AddNegativeBignumToMapN(QCBOREncodeContext *pCtx,
1092 int64_t nLabel,
1093 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01001094
1095
Laurence Lundbladedd6e76e2021-03-10 01:54:01 -07001096#ifndef QCBOR_DISABLE_EXP_AND_MANTISSA
Michael Eckel5c531332020-03-02 01:35:30 +01001097/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001098 * @brief Add a decimal fraction to the encoded output.
1099 *
1100 * @param[in] pCtx Encoding context to add the decimal fraction to.
1101 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1102 * @ref QCBOR_ENCODE_AS_BORROWED.
1103 * @param[in] nMantissa The mantissa.
1104 * @param[in] nBase10Exponent The exponent.
1105 *
1106 * The value is nMantissa * 10 ^ nBase10Exponent.
1107 *
1108 * A decimal fraction is good for exact representation of some values
1109 * that can't be represented exactly with standard C (IEEE 754)
1110 * floating-point numbers. Much larger and much smaller numbers can
1111 * also be represented than floating-point because of the larger
1112 * number of bits in the exponent.
1113 *
1114 * The decimal fraction is conveyed as two integers, a mantissa and a
1115 * base-10 scaling factor.
1116 *
1117 * For example, 273.15 is represented by the two integers 27315 and -2.
1118 *
1119 * The exponent and mantissa have the range from @c INT64_MIN to
1120 * @c INT64_MAX for both encoding and decoding (CBOR allows
1121 * @c -UINT64_MAX to @c UINT64_MAX, but this implementation doesn't
1122 * support this range to reduce code size and interface complexity a
1123 * little).
1124 *
1125 * CBOR Preferred serialization of the integers is used, thus they
1126 * will be encoded in the smallest number of bytes possible.
1127 *
1128 * See also QCBOREncode_AddDecimalFractionBigNum() for a decimal
1129 * fraction with arbitrarily large precision and
1130 * QCBOREncode_AddBigFloat().
1131 *
1132 * There is no representation of positive or negative infinity or NaN
1133 * (Not a Number). Use QCBOREncode_AddDouble() to encode them.
1134 *
1135 * See @ref expAndMantissa for decoded representation.
Michael Eckel5c531332020-03-02 01:35:30 +01001136 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001137static void
1138QCBOREncode_AddTDecimalFraction(QCBOREncodeContext *pCtx,
1139 uint8_t uTagRequirement,
1140 int64_t nMantissa,
1141 int64_t nBase10Exponent);
1142
1143static void
1144QCBOREncode_AddTDecimalFractionToMapSZ(QCBOREncodeContext *pCtx,
1145 const char *szLabel,
1146 uint8_t uTagRequirement,
1147 int64_t nMantissa,
1148 int64_t nBase10Exponent);
1149
1150static void
1151QCBOREncode_AddTDecimalFractionToMapN(QCBOREncodeContext *pCtx,
1152 int64_t nLabel,
1153 uint8_t uTagRequirement,
1154 int64_t nMantissa,
1155 int64_t nBase10Exponent);
1156
1157
1158static void
1159QCBOREncode_AddDecimalFraction(QCBOREncodeContext *pCtx,
1160 int64_t nMantissa,
1161 int64_t nBase10Exponent);
1162
1163static void
1164QCBOREncode_AddDecimalFractionToMap(QCBOREncodeContext *pCtx,
1165 const char *szLabel,
1166 int64_t nMantissa,
1167 int64_t nBase10Exponent);
1168
1169static void
1170QCBOREncode_AddDecimalFractionToMapN(QCBOREncodeContext *pCtx,
1171 int64_t nLabel,
1172 int64_t nMantissa,
1173 int64_t nBase10Exponent);
1174
1175
1176/**
1177 * @brief Add a decimal fraction with a big number mantissa to the encoded output.
1178 *
1179 * @param[in] pCtx Encoding context to add the decimal fraction to.
1180 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1181 * @ref QCBOR_ENCODE_AS_BORROWED.
1182 * @param[in] Mantissa The mantissa.
1183 * @param[in] bIsNegative false if mantissa is positive, true if negative.
1184 * @param[in] nBase10Exponent The exponent.
1185 *
1186 * This is the same as QCBOREncode_AddDecimalFraction() except the
1187 * mantissa is a big number (See QCBOREncode_AddPositiveBignum())
1188 * allowing for arbitrarily large precision.
1189 *
1190 * See @ref expAndMantissa for decoded representation.
1191 */
1192static void
1193QCBOREncode_AddTDecimalFractionBigNum(QCBOREncodeContext *pCtx,
1194 uint8_t uTagRequirement,
1195 UsefulBufC Mantissa,
1196 bool bIsNegative,
1197 int64_t nBase10Exponent);
1198
1199static void
1200QCBOREncode_AddTDecimalFractionBigNumToMapSZ(QCBOREncodeContext *pCtx,
1201 const char *szLabel,
1202 uint8_t uTagRequirement,
1203 UsefulBufC Mantissa,
1204 bool bIsNegative,
1205 int64_t nBase10Exponent);
1206
1207static void
1208QCBOREncode_AddTDecimalFractionBigNumToMapN(QCBOREncodeContext *pCtx,
1209 int64_t nLabel,
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001210 uint8_t uTagRequirement,
Laurence Lundblade3eead482023-12-16 20:53:22 -07001211 UsefulBufC Mantissa,
1212 bool bIsNegative,
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001213 int64_t nBase10Exponent);
1214
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001215
Laurence Lundblade3eead482023-12-16 20:53:22 -07001216static void
1217QCBOREncode_AddDecimalFractionBigNum(QCBOREncodeContext *pCtx,
1218 UsefulBufC Mantissa,
1219 bool bIsNegative,
1220 int64_t nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001221
Laurence Lundblade3eead482023-12-16 20:53:22 -07001222static void
1223QCBOREncode_AddDecimalFractionBigNumToMapSZ(QCBOREncodeContext *pCtx,
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07001224 const char *szLabel,
Laurence Lundblade3eead482023-12-16 20:53:22 -07001225 UsefulBufC Mantissa,
1226 bool bIsNegative,
1227 int64_t nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001228
Laurence Lundblade3eead482023-12-16 20:53:22 -07001229static void
1230QCBOREncode_AddDecimalFractionBigNumToMapN(QCBOREncodeContext *pCtx,
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001231 int64_t nLabel,
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001232 UsefulBufC Mantissa,
1233 bool bIsNegative,
Laurence Lundblade3eead482023-12-16 20:53:22 -07001234 int64_t nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001235
Laurence Lundblade3eead482023-12-16 20:53:22 -07001236/**
1237 * @brief Add a big floating-point number to the encoded output.
1238 *
1239 * @param[in] pCtx The encoding context to add the bigfloat to.
1240 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1241 * @ref QCBOR_ENCODE_AS_BORROWED.
1242 * @param[in] nMantissa The mantissa.
1243 * @param[in] nBase2Exponent The exponent.
1244 *
1245 * The value is nMantissa * 2 ^ nBase2Exponent.
1246 *
1247 * "Bigfloats", as CBOR terms them, are similar to IEEE floating-point
1248 * numbers in having a mantissa and base-2 exponent, but they are not
1249 * supported by hardware or encoded the same. They explicitly use two
1250 * CBOR-encoded integers to convey the mantissa and exponent, each of
1251 * which can be 8, 16, 32 or 64 bits. With both the mantissa and
1252 * exponent 64 bits they can express more precision and a larger range
1253 * than an IEEE double floating-point number. See
1254 * QCBOREncode_AddBigFloatBigNum() for even more precision.
1255 *
1256 * For example, 1.5 would be represented by a mantissa of 3 and an
1257 * exponent of -1.
1258 *
1259 * The exponent and mantissa have the range from @c INT64_MIN to
1260 * @c INT64_MAX for both encoding and decoding (CBOR allows @c
1261 * -UINT64_MAX to @c UINT64_MAX, but this implementation doesn't
1262 * support this range to reduce code size and interface complexity a
1263 * little).
1264 *
1265 * CBOR preferred serialization of the integers is used, thus they will
1266 * be encoded in the smallest number of bytes possible.
1267 *
1268 * This can also be used to represent floating-point numbers in
1269 * environments that don't support IEEE 754.
1270 *
1271 * See @ref expAndMantissa for decoded representation.
1272 */
1273static void
1274QCBOREncode_AddTBigFloat(QCBOREncodeContext *pCtx,
1275 uint8_t uTagRequirement,
1276 int64_t nMantissa,
1277 int64_t nBase2Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001278
Laurence Lundblade3eead482023-12-16 20:53:22 -07001279static void
1280QCBOREncode_AddTBigFloatToMapSZ(QCBOREncodeContext *pCtx,
1281 const char *szLabel,
1282 uint8_t uTagRequirement,
1283 int64_t nMantissa,
1284 int64_t nBase2Exponent);
1285
1286static void
1287QCBOREncode_AddTBigFloatToMapN(QCBOREncodeContext *pCtx,
1288 int64_t nLabel,
1289 uint8_t uTagRequirement,
1290 int64_t nMantissa,
1291 int64_t nBase2Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001292
1293
Laurence Lundblade3eead482023-12-16 20:53:22 -07001294static void
1295QCBOREncode_AddBigFloat(QCBOREncodeContext *pCtx,
1296 int64_t nMantissa,
1297 int64_t nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01001298
Laurence Lundblade3eead482023-12-16 20:53:22 -07001299static void
1300QCBOREncode_AddBigFloatToMap(QCBOREncodeContext *pCtx,
1301 const char *szLabel,
1302 int64_t nMantissa,
1303 int64_t nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01001304
Laurence Lundblade3eead482023-12-16 20:53:22 -07001305static void
1306QCBOREncode_AddBigFloatToMapN(QCBOREncodeContext *pCtx,
1307 int64_t nLabel,
1308 int64_t nMantissa,
1309 int64_t nBase2Exponent);
1310
1311/**
1312 * @brief Add a big floating-point number with a big number mantissa to
1313 * the encoded output.
1314 *
1315 * @param[in] pCtx The encoding context to add the bigfloat to.
1316 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1317 * @ref QCBOR_ENCODE_AS_BORROWED.
1318 * @param[in] Mantissa The mantissa.
1319 * @param[in] bIsNegative false if mantissa is positive, true if negative.
1320 * @param[in] nBase2Exponent The exponent.
1321 *
1322 * This is the same as QCBOREncode_AddBigFloat() except the mantissa
1323 * is a big number (See QCBOREncode_AddPositiveBignum()) allowing for
1324 * arbitrary precision.
1325 *
1326 * See @ref expAndMantissa for decoded representation.
1327 */
1328static void
1329QCBOREncode_AddTBigFloatBigNum(QCBOREncodeContext *pCtx,
1330 uint8_t uTagRequirement,
1331 UsefulBufC Mantissa,
1332 bool bIsNegative,
1333 int64_t nBase2Exponent);
1334
1335static void
1336QCBOREncode_AddTBigFloatBigNumToMapSZ(QCBOREncodeContext *pCtx,
1337 const char *szLabel,
1338 uint8_t uTagRequirement,
1339 UsefulBufC Mantissa,
1340 bool bIsNegative,
1341 int64_t nBase2Exponent);
1342
1343static void
1344QCBOREncode_AddTBigFloatBigNumToMapN(QCBOREncodeContext *pCtx,
1345 int64_t nLabel,
1346 uint8_t uTagRequirement,
1347 UsefulBufC Mantissa,
1348 bool bIsNegative,
1349 int64_t nBase2Exponent);
1350
1351
1352static void
1353QCBOREncode_AddBigFloatBigNum(QCBOREncodeContext *pCtx,
1354 UsefulBufC Mantissa,
1355 bool bIsNegative,
1356 int64_t nBase2Exponent);
1357
1358static void
1359QCBOREncode_AddBigFloatBigNumToMap(QCBOREncodeContext *pCtx,
1360 const char *szLabel,
1361 UsefulBufC Mantissa,
1362 bool bIsNegative,
1363 int64_t nBase2Exponent);
1364
1365static void
1366QCBOREncode_AddBigFloatBigNumToMapN(QCBOREncodeContext *pCtx,
1367 int64_t nLabel,
1368 UsefulBufC Mantissa,
1369 bool bIsNegative,
1370 int64_t nBase2Exponent);
Laurence Lundbladedd6e76e2021-03-10 01:54:01 -07001371#endif /* QCBOR_DISABLE_EXP_AND_MANTISSA */
Michael Eckel5c531332020-03-02 01:35:30 +01001372
1373
1374/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001375 * @brief Add a text URI to the encoded output.
1376 *
1377 * @param[in] pCtx The encoding context to add the URI to.
1378 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1379 * @ref QCBOR_ENCODE_AS_BORROWED.
1380 * @param[in] URI Pointer and length of the URI.
1381 *
1382 * The format of URI must be per [RFC 3986]
1383 * (https://tools.ietf.org/html/rfc3986).
1384 *
1385 * It is output as CBOR major type 3, a text string, with tag @ref
1386 * CBOR_TAG_URI indicating the text string is a URI.
1387 *
1388 * A URI in a NULL-terminated string, @c szURI, can be easily added with
1389 * this code:
1390 *
1391 * QCBOREncode_AddURI(pCtx, UsefulBuf_FromSZ(szURI));
Michael Eckel5c531332020-03-02 01:35:30 +01001392 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001393static void
1394QCBOREncode_AddTURI(QCBOREncodeContext *pCtx,
1395 uint8_t uTagRequirement,
1396 UsefulBufC URI);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001397
Laurence Lundblade3eead482023-12-16 20:53:22 -07001398static void
1399QCBOREncode_AddTURIToMapSZ(QCBOREncodeContext *pCtx,
1400 const char *szLabel,
1401 uint8_t uTagRequirement,
1402 UsefulBufC URI);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001403
Laurence Lundblade3eead482023-12-16 20:53:22 -07001404static void
1405QCBOREncode_AddTURIToMapN(QCBOREncodeContext *pCtx,
1406 int64_t nLabel,
1407 uint8_t uTagRequirement,
1408 UsefulBufC URI);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001409
1410
Laurence Lundblade3eead482023-12-16 20:53:22 -07001411static void
1412QCBOREncode_AddURI(QCBOREncodeContext *pCtx,
1413 UsefulBufC URI);
Michael Eckel5c531332020-03-02 01:35:30 +01001414
Laurence Lundblade3eead482023-12-16 20:53:22 -07001415static void
1416QCBOREncode_AddURIToMap(QCBOREncodeContext *pCtx,
1417 const char *szLabel,
1418 UsefulBufC URI);
Michael Eckel5c531332020-03-02 01:35:30 +01001419
Laurence Lundblade3eead482023-12-16 20:53:22 -07001420static void
1421QCBOREncode_AddURIToMapN(QCBOREncodeContext *pCtx,
1422 int64_t nLabel,
1423 UsefulBufC URI);
Michael Eckel5c531332020-03-02 01:35:30 +01001424
1425
1426/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001427 * @brief Add Base64-encoded text to encoded output.
1428 *
1429 * @param[in] pCtx The encoding context to add the base-64 text to.
1430 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1431 * @ref QCBOR_ENCODE_AS_BORROWED.
1432 * @param[in] B64Text Pointer and length of the base-64 encoded text.
1433 *
1434 * The text content is Base64 encoded data per [RFC 4648]
1435 * (https://tools.ietf.org/html/rfc4648).
1436 *
1437 * It is output as CBOR major type 3, a text string, with tag @ref
1438 * CBOR_TAG_B64 indicating the text string is Base64 encoded.
Michael Eckel5c531332020-03-02 01:35:30 +01001439 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001440static void
1441QCBOREncode_AddTB64Text(QCBOREncodeContext *pCtx,
1442 uint8_t uTagRequirement,
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001443 UsefulBufC B64Text);
1444
Laurence Lundblade3eead482023-12-16 20:53:22 -07001445static void
1446QCBOREncode_AddTB64TextToMapSZ(QCBOREncodeContext *pCtx,
1447 const char *szLabel,
1448 uint8_t uTagRequirement,
1449 UsefulBufC B64Text);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001450
Laurence Lundblade3eead482023-12-16 20:53:22 -07001451static void
1452QCBOREncode_AddTB64TextToMapN(QCBOREncodeContext *pCtx,
1453 int64_t nLabel,
1454 uint8_t uTagRequirement,
1455 UsefulBufC B64Text);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001456
1457
Laurence Lundblade3eead482023-12-16 20:53:22 -07001458static void
1459QCBOREncode_AddB64Text(QCBOREncodeContext *pCtx,
1460 UsefulBufC B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01001461
Laurence Lundblade3eead482023-12-16 20:53:22 -07001462static void
1463QCBOREncode_AddB64TextToMap(QCBOREncodeContext *pCtx,
1464 const char *szLabel,
1465 UsefulBufC B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01001466
Laurence Lundblade3eead482023-12-16 20:53:22 -07001467static void
1468QCBOREncode_AddB64TextToMapN(QCBOREncodeContext *pCtx,
1469 int64_t nLabel,
1470 UsefulBufC B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01001471
1472
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001473
Michael Eckel5c531332020-03-02 01:35:30 +01001474/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001475 * @brief Add base64url encoded data to encoded output.
1476 *
1477 * @param[in] pCtx The encoding context to add the base64url to.
1478 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1479 * @ref QCBOR_ENCODE_AS_BORROWED.
1480 * @param[in] B64Text Pointer and length of the base64url encoded text.
1481 *
1482 * The text content is base64URL encoded text as per [RFC 4648]
1483 * (https://tools.ietf.org/html/rfc4648).
1484 *
1485 * It is output as CBOR major type 3, a text string, with tag
1486 * @ref CBOR_TAG_B64URL indicating the text string is a Base64url
1487 * encoded.
Michael Eckel5c531332020-03-02 01:35:30 +01001488 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001489static void
1490QCBOREncode_AddTB64URLText(QCBOREncodeContext *pCtx,
1491 uint8_t uTagRequirement,
1492 UsefulBufC B64Text);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001493
Laurence Lundblade3eead482023-12-16 20:53:22 -07001494static void
1495QCBOREncode_AddTB64URLTextToMapSZ(QCBOREncodeContext *pCtx,
1496 const char *szLabel,
1497 uint8_t uTagRequirement,
1498 UsefulBufC B64Text);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001499
Laurence Lundblade3eead482023-12-16 20:53:22 -07001500static void
1501QCBOREncode_AddTB64URLTextToMapN(QCBOREncodeContext *pCtx,
1502 int64_t nLabel,
1503 uint8_t uTagRequirement,
1504 UsefulBufC B64Text);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001505
1506
Laurence Lundblade3eead482023-12-16 20:53:22 -07001507static void
1508QCBOREncode_AddB64URLText(QCBOREncodeContext *pCtx,
1509 UsefulBufC B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01001510
Laurence Lundblade3eead482023-12-16 20:53:22 -07001511static void
1512QCBOREncode_AddB64URLTextToMap(QCBOREncodeContext *pCtx,
1513 const char *szLabel,
1514 UsefulBufC B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01001515
Laurence Lundblade3eead482023-12-16 20:53:22 -07001516static void
1517QCBOREncode_AddB64URLTextToMapN(QCBOREncodeContext *pCtx,
1518 int64_t nLabel,
1519 UsefulBufC B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01001520
1521
1522/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001523 * @brief Add Perl Compatible Regular Expression.
1524 *
1525 * @param[in] pCtx Encoding context to add the regular expression to.
1526 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1527 * @ref QCBOR_ENCODE_AS_BORROWED.
1528 * @param[in] Regex Pointer and length of the regular expression.
1529 *
1530 * The text content is Perl Compatible Regular
1531 * Expressions (PCRE) / JavaScript syntax [ECMA262].
1532 *
1533 * It is output as CBOR major type 3, a text string, with tag @ref
1534 * CBOR_TAG_REGEX indicating the text string is a regular expression.
Michael Eckel5c531332020-03-02 01:35:30 +01001535 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001536static void
1537QCBOREncode_AddTRegex(QCBOREncodeContext *pCtx,
1538 uint8_t uTagRequirement,
1539 UsefulBufC Regex);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001540
Laurence Lundblade3eead482023-12-16 20:53:22 -07001541static void
1542QCBOREncode_AddTRegexToMapSZ(QCBOREncodeContext *pCtx,
1543 const char *szLabel,
1544 uint8_t uTagRequirement,
1545 UsefulBufC Regex);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001546
Laurence Lundblade3eead482023-12-16 20:53:22 -07001547static void
1548QCBOREncode_AddTRegexToMapN(QCBOREncodeContext *pCtx,
1549 int64_t nLabel,
1550 uint8_t uTagRequirement,
1551 UsefulBufC Regex);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001552
1553
Laurence Lundblade3eead482023-12-16 20:53:22 -07001554static void
1555QCBOREncode_AddRegex(QCBOREncodeContext *pCtx,
1556 UsefulBufC Regex);
Michael Eckel5c531332020-03-02 01:35:30 +01001557
Laurence Lundblade3eead482023-12-16 20:53:22 -07001558static void
1559QCBOREncode_AddRegexToMap(QCBOREncodeContext *pCtx,
1560 const char *szLabel,
1561 UsefulBufC Regex);
Michael Eckel5c531332020-03-02 01:35:30 +01001562
Laurence Lundblade3eead482023-12-16 20:53:22 -07001563static void
1564QCBOREncode_AddRegexToMapN(QCBOREncodeContext *pCtx,
1565 int64_t nLabel,
1566 UsefulBufC Regex);
Michael Eckel5c531332020-03-02 01:35:30 +01001567
1568
1569/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001570 * @brief MIME encoded data to the encoded output.
1571 *
1572 * @param[in] pCtx The encoding context to add the MIME data to.
1573 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1574 * @ref QCBOR_ENCODE_AS_BORROWED.
1575 * @param[in] MIMEData Pointer and length of the MIME data.
1576 *
1577 * The text content is in MIME format per [RFC 2045]
1578 * (https://tools.ietf.org/html/rfc2045) including the headers.
1579 *
1580 * It is output as CBOR major type 2, a binary string, with tag
1581 * @ref CBOR_TAG_BINARY_MIME indicating the string is MIME data. This
1582 * outputs tag 257, not tag 36, as it can carry any type of MIME
1583 * binary, 7-bit, 8-bit, quoted-printable and base64 where tag 36
1584 * cannot.
1585 *
1586 * Previous versions of QCBOR, those before spiffy decode, output tag
1587 * 36. Decoding supports both tag 36 and 257. (if the old behavior
1588 * with tag 36 is needed, copy the inline functions below and change
1589 * the tag number).
1590 *
1591 * See also QCBORDecode_GetMIMEMessage() and
1592 * @ref QCBOR_TYPE_BINARY_MIME.
1593 *
1594 * This does no translation of line endings. See QCBOREncode_AddText()
1595 * for a discussion of line endings in CBOR.
Michael Eckel5c531332020-03-02 01:35:30 +01001596 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001597static void
1598QCBOREncode_AddTMIMEData(QCBOREncodeContext *pCtx,
1599 uint8_t uTagRequirement,
1600 UsefulBufC MIMEData);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001601
Laurence Lundblade3eead482023-12-16 20:53:22 -07001602static void
1603QCBOREncode_AddTMIMEDataToMapSZ(QCBOREncodeContext *pCtx,
1604 const char *szLabel,
1605 uint8_t uTagRequirement,
1606 UsefulBufC MIMEData);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001607
Laurence Lundblade3eead482023-12-16 20:53:22 -07001608static void
1609QCBOREncode_AddTMIMEDataToMapN(QCBOREncodeContext *pCtx,
1610 int64_t nLabel,
1611 uint8_t uTagRequirement,
1612 UsefulBufC MIMEData);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001613
1614
Laurence Lundblade3eead482023-12-16 20:53:22 -07001615static void
1616QCBOREncode_AddMIMEData(QCBOREncodeContext *pCtx,
1617 UsefulBufC MIMEData);
Michael Eckel5c531332020-03-02 01:35:30 +01001618
Laurence Lundblade3eead482023-12-16 20:53:22 -07001619static void
1620QCBOREncode_AddMIMEDataToMap(QCBOREncodeContext *pCtx,
1621 const char *szLabel,
1622 UsefulBufC MIMEData);
Michael Eckel5c531332020-03-02 01:35:30 +01001623
Laurence Lundblade3eead482023-12-16 20:53:22 -07001624static void
1625QCBOREncode_AddMIMEDataToMapN(QCBOREncodeContext *pCtx,
1626 int64_t nLabel,
1627 UsefulBufC MIMEData);
Michael Eckel5c531332020-03-02 01:35:30 +01001628
1629
1630/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001631 * @brief Add an RFC 3339 date string
1632 *
1633 * @param[in] pCtx The encoding context to add the date to.
1634 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1635 * @ref QCBOR_ENCODE_AS_BORROWED.
1636 * @param[in] szDate Null-terminated string with date to add.
1637 *
1638 * The string szDate should be in the form of [RFC 3339]
1639 * (https://tools.ietf.org/html/rfc3339) as defined by section 3.3 in
1640 * [RFC 4287] (https://tools.ietf.org/html/rfc4287). This is as
1641 * described in section 3.4.1 in [RFC 8949]
1642 * (https://tools.ietf.org/html/rfc8949).
1643 *
1644 * Note that this function doesn't validate the format of the date
1645 * string at all. If you add an incorrect format date string, the
1646 * generated CBOR will be incorrect and the receiver may not be able
1647 * to handle it.
1648 *
1649 * Error handling is the same as QCBOREncode_AddInt64().
1650 *
1651 * See also QCBOREncode_AddTDayString().
Michael Eckel5c531332020-03-02 01:35:30 +01001652 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001653static void
1654QCBOREncode_AddTDateString(QCBOREncodeContext *pCtx,
1655 uint8_t uTagRequirement,
1656 const char *szDate);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001657
Laurence Lundblade3eead482023-12-16 20:53:22 -07001658static void
1659QCBOREncode_AddTDateStringToMapSZ(QCBOREncodeContext *pCtx,
1660 const char *szLabel,
1661 uint8_t uTagRequirement,
1662 const char *szDate);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001663
Laurence Lundblade3eead482023-12-16 20:53:22 -07001664static void
1665QCBOREncode_AddTDateStringToMapN(QCBOREncodeContext *pCtx,
1666 int64_t nLabel,
1667 uint8_t uTagRequirement,
1668 const char *szDate);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07001669
1670
Laurence Lundblade3eead482023-12-16 20:53:22 -07001671static void
1672QCBOREncode_AddDateString(QCBOREncodeContext *pCtx,
1673 const char *szDate);
Michael Eckel5c531332020-03-02 01:35:30 +01001674
Laurence Lundblade3eead482023-12-16 20:53:22 -07001675static void
1676QCBOREncode_AddDateStringToMap(QCBOREncodeContext *pCtx,
1677 const char *szLabel,
1678 const char *szDate);
Michael Eckel5c531332020-03-02 01:35:30 +01001679
Laurence Lundblade3eead482023-12-16 20:53:22 -07001680static void
1681QCBOREncode_AddDateStringToMapN(QCBOREncodeContext *pCtx,
1682 int64_t nLabel,
1683 const char *szDate);
Michael Eckel5c531332020-03-02 01:35:30 +01001684
Laurence Lundblade46d63e92021-05-13 11:37:10 -07001685
1686/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001687 * @brief Add a date-only string.
1688 *
1689 * @param[in] pCtx The encoding context to add the date to.
1690 * @param[in] uTagRequirement Either @ref QCBOR_ENCODE_AS_TAG or
1691 * @ref QCBOR_ENCODE_AS_BORROWED.
1692 * @param[in] szDate Null-terminated string with date to add.
1693 *
1694 * This date format is described in
1695 * [RFC 8943] (https://tools.ietf.org/html/rfc8943), but that mainly
1696 * references RFC 3339. The string szDate must be in the forrm
1697 * specified the ABNF for a full-date in
1698 * [RFC 3339] (https://tools.ietf.org/html/rfc3339). Examples of this
1699 * are "1985-04-12" and "1937-01-01". The time and the time zone are
1700 * never included.
1701 *
1702 * Note that this function doesn't validate the format of the date
1703 * string at all. If you add an incorrect format date string, the
1704 * generated CBOR will be incorrect and the receiver may not be able
1705 * to handle it.
1706 *
1707 * Error handling is the same as QCBOREncode_AddInt64().
1708 *
1709 * See also QCBOREncode_AddTDateString().
Laurence Lundblade46d63e92021-05-13 11:37:10 -07001710 */
1711static void
1712QCBOREncode_AddTDaysString(QCBOREncodeContext *pCtx,
1713 uint8_t uTagRequirement,
1714 const char *szDate);
1715
1716static void
1717QCBOREncode_AddTDaysStringToMapSZ(QCBOREncodeContext *pCtx,
1718 const char *szLabel,
1719 uint8_t uTagRequirement,
1720 const char *szDate);
1721
1722static void
1723QCBOREncode_AddTDaysStringToMapN(QCBOREncodeContext *pCtx,
1724 int64_t nLabel,
1725 uint8_t uTagRequirement,
1726 const char *szDate);
1727
1728
Michael Eckel5c531332020-03-02 01:35:30 +01001729/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001730 * @brief Add a standard Boolean.
1731 *
1732 * @param[in] pCtx The encoding context to add the Boolean to.
1733 * @param[in] b true or false from @c <stdbool.h>.
1734 *
1735 * Adds a Boolean value as CBOR major type 7.
1736 *
1737 * Error handling is the same as QCBOREncode_AddInt64().
Michael Eckel5c531332020-03-02 01:35:30 +01001738 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001739static void
1740QCBOREncode_AddBool(QCBOREncodeContext *pCtx, bool b);
Michael Eckel5c531332020-03-02 01:35:30 +01001741
Laurence Lundblade3eead482023-12-16 20:53:22 -07001742static void
1743QCBOREncode_AddBoolToMap(QCBOREncodeContext *pCtx, const char *szLabel, bool b);
Michael Eckel5c531332020-03-02 01:35:30 +01001744
Laurence Lundblade3eead482023-12-16 20:53:22 -07001745static void
1746QCBOREncode_AddBoolToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, bool b);
Michael Eckel5c531332020-03-02 01:35:30 +01001747
1748
1749
1750/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001751 * @brief Add a NULL to the encoded output.
1752 *
1753 * @param[in] pCtx The encoding context to add the NULL to.
1754 *
1755 * Adds the NULL value as CBOR major type 7.
1756 *
1757 * This NULL doesn't have any special meaning in CBOR such as a
1758 * terminating value for a string or an empty value.
1759 *
1760 * Error handling is the same as QCBOREncode_AddInt64().
Michael Eckel5c531332020-03-02 01:35:30 +01001761 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001762static void
1763QCBOREncode_AddNULL(QCBOREncodeContext *pCtx);
Michael Eckel5c531332020-03-02 01:35:30 +01001764
Laurence Lundblade3eead482023-12-16 20:53:22 -07001765static void
1766QCBOREncode_AddNULLToMap(QCBOREncodeContext *pCtx, const char *szLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001767
Laurence Lundblade3eead482023-12-16 20:53:22 -07001768static void
1769QCBOREncode_AddNULLToMapN(QCBOREncodeContext *pCtx, int64_t nLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001770
1771
1772/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001773 * @brief Add an "undef" to the encoded output.
1774 *
1775 * @param[in] pCtx The encoding context to add the "undef" to.
1776 *
1777 * Adds the undef value as CBOR major type 7.
1778 *
1779 * Note that this value will not translate to JSON.
1780 *
1781 * This Undef doesn't have any special meaning in CBOR such as a
1782 * terminating value for a string or an empty value.
1783 *
1784 * Error handling is the same as QCBOREncode_AddInt64().
Michael Eckel5c531332020-03-02 01:35:30 +01001785 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001786static void
1787QCBOREncode_AddUndef(QCBOREncodeContext *pCtx);
Michael Eckel5c531332020-03-02 01:35:30 +01001788
Laurence Lundblade3eead482023-12-16 20:53:22 -07001789static void
1790QCBOREncode_AddUndefToMap(QCBOREncodeContext *pCtx, const char *szLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001791
Laurence Lundblade3eead482023-12-16 20:53:22 -07001792static void
1793QCBOREncode_AddUndefToMapN(QCBOREncodeContext *pCtx, int64_t nLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001794
1795
1796/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001797 * @brief Indicates that the next items added are in an array.
1798 *
1799 * @param[in] pCtx The encoding context to open the array in.
1800 *
1801 * Arrays are the basic CBOR aggregate or structure type. Call this
1802 * function to start or open an array. Then call the various
1803 * @c QCBOREncode_AddXxx() functions to add the items that go into the
1804 * array. Then call QCBOREncode_CloseArray() when all items have been
1805 * added. The data items in the array can be of any type and can be of
1806 * mixed types.
1807 *
1808 * Nesting of arrays and maps is allowed and supported just by calling
1809 * QCBOREncode_OpenArray() again before calling
1810 * QCBOREncode_CloseArray(). While CBOR has no limit on nesting, this
1811 * implementation does in order to keep it smaller and simpler. The
1812 * limit is @ref QCBOR_MAX_ARRAY_NESTING. This is the max number of
1813 * times this can be called without calling
1814 * QCBOREncode_CloseArray(). QCBOREncode_Finish() will return
1815 * @ref QCBOR_ERR_ARRAY_NESTING_TOO_DEEP when it is called as this
1816 * function just sets an error state and returns no value when this
1817 * occurs.
1818 *
1819 * If you try to add more than @ref QCBOR_MAX_ITEMS_IN_ARRAY items to
1820 * a single array or map, @ref QCBOR_ERR_ARRAY_TOO_LONG will be
1821 * returned when QCBOREncode_Finish() is called.
1822 *
1823 * An array itself must have a label if it is being added to a map.
1824 * Note that array elements do not have labels (but map elements do).
1825 *
1826 * An array itself may be tagged by calling QCBOREncode_AddTag()
1827 * before this call.
Michael Eckel5c531332020-03-02 01:35:30 +01001828 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001829static void
1830QCBOREncode_OpenArray(QCBOREncodeContext *pCtx);
Michael Eckel5c531332020-03-02 01:35:30 +01001831
Laurence Lundblade3eead482023-12-16 20:53:22 -07001832static void
1833QCBOREncode_OpenArrayInMap(QCBOREncodeContext *pCtx, const char *szLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001834
Laurence Lundblade3eead482023-12-16 20:53:22 -07001835static void
1836QCBOREncode_OpenArrayInMapN(QCBOREncodeContext *pCtx, int64_t nLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001837
1838
1839/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001840 * @brief Close an open array.
1841 *
1842 * @param[in] pCtx The encoding context to close the array in.
1843 *
1844 * The closes an array opened by QCBOREncode_OpenArray(). It reduces
1845 * nesting level by one. All arrays (and maps) must be closed before
1846 * calling QCBOREncode_Finish().
1847 *
1848 * When an error occurs as a result of this call, the encoder records
1849 * the error and enters the error state. The error will be returned
1850 * when QCBOREncode_Finish() is called.
1851 *
1852 * If this has been called more times than QCBOREncode_OpenArray(), then
1853 * @ref QCBOR_ERR_TOO_MANY_CLOSES will be returned when QCBOREncode_Finish()
1854 * is called.
1855 *
1856 * If this is called and it is not an array that is currently open,
1857 * @ref QCBOR_ERR_CLOSE_MISMATCH will be returned when
1858 * QCBOREncode_Finish() is called.
Michael Eckel5c531332020-03-02 01:35:30 +01001859 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001860static void
1861QCBOREncode_CloseArray(QCBOREncodeContext *pCtx);
Michael Eckel5c531332020-03-02 01:35:30 +01001862
1863
Laurence Lundblade85a18ca2023-11-27 21:25:10 -07001864
1865
Michael Eckel5c531332020-03-02 01:35:30 +01001866/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001867 * @brief Indicates that the next items added are in a map.
1868 *
1869 * @param[in] pCtx The encoding context to open the map in.
1870 *
1871 * See QCBOREncode_OpenArray() for more information, particularly
1872 * error handling.
1873 *
1874 * CBOR maps are an aggregate type where each item in the map consists
1875 * of a label and a value. They are similar to JSON objects.
1876 *
1877 * The value can be any CBOR type including another map.
1878 *
1879 * The label can also be any CBOR type, but in practice they are
1880 * typically, integers as this gives the most compact output. They
1881 * might also be text strings which gives readability and translation
1882 * to JSON.
1883 *
1884 * Every @c QCBOREncode_AddXxx() call has one version that ends with
1885 * @c InMap for adding items to maps with string labels and one that
1886 * ends with @c InMapN that is for adding with integer labels.
1887 *
1888 * RFC 8949 uses the term "key" instead of "label".
1889 *
1890 * If you wish to use map labels that are neither integer labels nor
1891 * text strings, then just call the QCBOREncode_AddXxx() function
1892 * explicitly to add the label. Then call it again to add the value.
1893 *
1894 * See the [RFC 8949] (https://tools.ietf.org/html/rfc8949) for a lot
1895 * more information on creating maps.
Michael Eckel5c531332020-03-02 01:35:30 +01001896 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001897static void
1898QCBOREncode_OpenMap(QCBOREncodeContext *pCtx);
Michael Eckel5c531332020-03-02 01:35:30 +01001899
Laurence Lundblade3eead482023-12-16 20:53:22 -07001900static void
1901QCBOREncode_OpenMapInMap(QCBOREncodeContext *pCtx, const char *szLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001902
Laurence Lundblade3eead482023-12-16 20:53:22 -07001903static void
1904QCBOREncode_OpenMapInMapN(QCBOREncodeContext *pCtx, int64_t nLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01001905
1906
Michael Eckel5c531332020-03-02 01:35:30 +01001907/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07001908 * @brief Close an open map.
1909 *
1910 * @param[in] pCtx The encoding context to close the map in.
1911 *
1912 * This closes a map opened by QCBOREncode_OpenMap(). It reduces
1913 * nesting level by one.
1914 *
1915 * When an error occurs as a result of this call, the encoder records
1916 * the error and enters the error state. The error will be returned
1917 * when QCBOREncode_Finish() is called.
1918 *
1919 * If this has been called more times than QCBOREncode_OpenMap(), then
1920 * @ref QCBOR_ERR_TOO_MANY_CLOSES will be returned when
1921 * QCBOREncode_Finish() is called.
1922 *
1923 * If this is called and it is not a map that is currently open,
1924 * @ref QCBOR_ERR_CLOSE_MISMATCH will be returned when
1925 * QCBOREncode_Finish() is called.
Michael Eckel5c531332020-03-02 01:35:30 +01001926 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001927static void
1928QCBOREncode_CloseMap(QCBOREncodeContext *pCtx);
Michael Eckel5c531332020-03-02 01:35:30 +01001929
1930
1931/**
Laurence Lundblade85a18ca2023-11-27 21:25:10 -07001932 * @brief Indicates that the next items added are in an indefinite length array.
1933 *
1934 * @param[in] pCtx The encoding context to open the array in.
1935 *
1936 * This is the same as QCBOREncode_OpenArray() except the array is
1937 * indefinite length.
1938 *
1939 * This must be closed with QCBOREncode_CloseArrayIndefiniteLength().
1940 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001941static void
1942QCBOREncode_OpenArrayIndefiniteLength(QCBOREncodeContext *pCtx);
Laurence Lundblade85a18ca2023-11-27 21:25:10 -07001943
Laurence Lundblade3eead482023-12-16 20:53:22 -07001944static void
1945QCBOREncode_OpenArrayIndefiniteLengthInMap(QCBOREncodeContext *pCtx,
1946 const char *szLabel);
Laurence Lundblade85a18ca2023-11-27 21:25:10 -07001947
1948static void
1949QCBOREncode_OpenArrayIndefiniteLengthInMapN(QCBOREncodeContext *pCtx,
1950 int64_t nLabel);
1951
1952
1953/**
1954 * @brief Close an open indefinite length array.
1955 *
1956 * @param[in] pCtx The encoding context to close the array in.
1957 *
1958 * This is the same as QCBOREncode_CloseArray(), but the open array
1959 * that is being close must be of indefinite length.
1960 */
1961static void
1962QCBOREncode_CloseArrayIndefiniteLength(QCBOREncodeContext *pCtx);
1963
1964
1965/**
1966 * @brief Indicates that the next items added are in an indefinite length map.
1967 *
1968 * @param[in] pCtx The encoding context to open the map in.
1969 *
1970 * This is the same as QCBOREncode_OpenMap() except the array is
1971 * indefinite length.
1972 *
1973 * This must be closed with QCBOREncode_CloseMapIndefiniteLength().
1974 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07001975static void
1976QCBOREncode_OpenMapIndefiniteLength(QCBOREncodeContext *pCtx);
Laurence Lundblade85a18ca2023-11-27 21:25:10 -07001977
Laurence Lundblade3eead482023-12-16 20:53:22 -07001978static void
1979QCBOREncode_OpenMapIndefiniteLengthInMap(QCBOREncodeContext *pCtx,
1980 const char *szLabel);
Laurence Lundblade85a18ca2023-11-27 21:25:10 -07001981
1982static void
1983QCBOREncode_OpenMapIndefiniteLengthInMapN(QCBOREncodeContext *pCtx,
1984 int64_t nLabel);
1985
1986
1987/**
1988 * @brief Close an open indefinite length map.
1989 *
1990 * @param[in] pCtx The encoding context to close the map in.
1991 *
1992 * This is the same as QCBOREncode_CloseMap(), but the open map that
1993 * is being close must be of indefinite length.
1994 */
1995static void
1996QCBOREncode_CloseMapIndefiniteLength(QCBOREncodeContext *pCtx);
1997
1998
1999
2000
2001/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002002 * @brief Indicate start of encoded CBOR to be wrapped in a bstr.
2003 *
2004 * @param[in] pCtx The encoding context to open the bstr-wrapped CBOR in.
2005 *
2006 * All added encoded items between this call and a call to
2007 * QCBOREncode_CloseBstrWrap2() will be wrapped in a bstr. They will
2008 * appear in the final output as a byte string. That byte string will
2009 * contain encoded CBOR. This increases nesting level by one.
2010 *
2011 * The typical use case is for encoded CBOR that is to be
2012 * cryptographically hashed, as part of a [RFC 8152, COSE]
2013 * (https://tools.ietf.org/html/rfc8152) implementation. The wrapping
2014 * byte string is taken as input by the hash function (which is why it
2015 * is returned by QCBOREncode_CloseBstrWrap2()). It is also easy to
2016 * recover on decoding with standard CBOR decoders.
2017 *
2018 * Using QCBOREncode_BstrWrap() and QCBOREncode_CloseBstrWrap2()
2019 * avoids having to encode the items first in one buffer (e.g., the
2020 * COSE payload) and then add that buffer as a bstr to another
2021 * encoding (e.g. the COSE to-be-signed bytes, the @c Sig_structure)
2022 * potentially halving the memory needed.
2023 *
2024 * CBOR by nature must be decoded item by item in order from the
2025 * start. By wrapping some CBOR in a byte string, the decoding of
2026 * that wrapped CBOR can be skipped. This is another use of wrapping,
2027 * perhaps because the CBOR is large and deeply nested. Perhaps APIs
2028 * for handling one defined CBOR message that is being embedded in
2029 * another only take input as a byte string. Perhaps the desire is to
2030 * be able to decode the out layer even in the wrapped has errors.
Michael Eckel5c531332020-03-02 01:35:30 +01002031 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002032static void
2033QCBOREncode_BstrWrap(QCBOREncodeContext *pCtx);
Michael Eckel5c531332020-03-02 01:35:30 +01002034
Laurence Lundblade3eead482023-12-16 20:53:22 -07002035static void
2036QCBOREncode_BstrWrapInMap(QCBOREncodeContext *pCtx, const char *szLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01002037
Laurence Lundblade3eead482023-12-16 20:53:22 -07002038static void
2039QCBOREncode_BstrWrapInMapN(QCBOREncodeContext *pCtx, int64_t nLabel);
Michael Eckel5c531332020-03-02 01:35:30 +01002040
2041
2042/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002043 * @brief Close a wrapping bstr.
2044 *
2045 * @param[in] pCtx The encoding context to close of bstr wrapping in.
2046 * @param[in] bIncludeCBORHead Include the encoded CBOR head of the bstr
2047 * as well as the bytes in @c pWrappedCBOR.
2048 * @param[out] pWrappedCBOR A @ref UsefulBufC containing wrapped bytes.
2049 *
2050 * The closes a wrapping bstr opened by QCBOREncode_BstrWrap(). It reduces
2051 * nesting level by one.
2052 *
2053 * A pointer and length of the enclosed encoded CBOR is returned in @c
2054 * *pWrappedCBOR if it is not @c NULL. The main purpose of this is so
2055 * this data can be hashed (e.g., with SHA-256) as part of a [RFC
2056 * 8152, COSE] (https://tools.ietf.org/html/rfc8152)
2057 * implementation. **WARNING**, this pointer and length should be used
2058 * right away before any other calls to @c QCBOREncode_CloseXxx() as
2059 * they will move data around and the pointer and length will no
2060 * longer be to the correct encoded CBOR.
2061 *
2062 * When an error occurs as a result of this call, the encoder records
2063 * the error and enters the error state. The error will be returned
2064 * when QCBOREncode_Finish() is called.
2065 *
2066 * If this has been called more times than QCBOREncode_BstrWrap(),
2067 * then @ref QCBOR_ERR_TOO_MANY_CLOSES will be returned when
2068 * QCBOREncode_Finish() is called.
2069 *
2070 * If this is called and it is not a wrapping bstr that is currently
2071 * open, @ref QCBOR_ERR_CLOSE_MISMATCH will be returned when
2072 * QCBOREncode_Finish() is called.
2073 *
2074 * QCBOREncode_CloseBstrWrap() is a deprecated version of this function
2075 * that is equivalent to the call with @c bIncludeCBORHead @c true.
Michael Eckel5c531332020-03-02 01:35:30 +01002076 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002077void
2078QCBOREncode_CloseBstrWrap2(QCBOREncodeContext *pCtx, bool bIncludeCBORHead, UsefulBufC *pWrappedCBOR);
Michael Eckel5c531332020-03-02 01:35:30 +01002079
Laurence Lundblade3eead482023-12-16 20:53:22 -07002080static void
2081QCBOREncode_CloseBstrWrap(QCBOREncodeContext *pCtx, UsefulBufC *pWrappedCBOR);
Michael Eckel5c531332020-03-02 01:35:30 +01002082
2083
2084/**
Laurence Lundblade8d3b8552021-06-10 11:11:54 -07002085 * @brief Cancel byte string wrapping.
2086 *
2087 * @param[in] pCtx The encoding context.
2088 *
2089 * This cancels QCBOREncode_BstrWrap() making tghe encoding as if it
2090 * were never called.
2091 *
2092 * WARNING: This does not work on QCBOREncode_BstrWrapInMap()
2093 * or QCBOREncode_BstrWrapInMapN() and there is no error detection
2094 * of an attempt at their use.
2095 *
2096 * This only works if nothing has been added into the wrapped byte
2097 * string. If something has been added, this sets the error
2098 * @ref QCBOR_ERR_CANNOT_CANCEL.
2099 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002100void
2101QCBOREncode_CancelBstrWrap(QCBOREncodeContext *pCtx);
Laurence Lundblade8d3b8552021-06-10 11:11:54 -07002102
2103
2104/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002105 * @brief Add some already-encoded CBOR bytes.
2106 *
2107 * @param[in] pCtx The encoding context to add the already-encode CBOR to.
2108 * @param[in] Encoded The already-encoded CBOR to add to the context.
2109 *
2110 * The encoded CBOR being added must be fully conforming CBOR. It must
2111 * be complete with no arrays or maps that are incomplete. While this
2112 * encoder doesn't ever produce indefinite lengths, it is OK for the
2113 * raw CBOR added here to have indefinite lengths.
2114 *
2115 * The raw CBOR added here is not checked in anyway. If it is not
2116 * conforming or has open arrays or such, the final encoded CBOR
2117 * will probably be wrong or not what was intended.
2118 *
2119 * If the encoded CBOR being added here contains multiple items, they
2120 * must be enclosed in a map or array. At the top level the raw
2121 * CBOR must be a single data item.
Michael Eckel5c531332020-03-02 01:35:30 +01002122 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002123static void
2124QCBOREncode_AddEncoded(QCBOREncodeContext *pCtx, UsefulBufC Encoded);
Michael Eckel5c531332020-03-02 01:35:30 +01002125
Laurence Lundblade3eead482023-12-16 20:53:22 -07002126static void
2127QCBOREncode_AddEncodedToMap(QCBOREncodeContext *pCtx, const char *szLabel, UsefulBufC Encoded);
Michael Eckel5c531332020-03-02 01:35:30 +01002128
Laurence Lundblade3eead482023-12-16 20:53:22 -07002129static void
2130QCBOREncode_AddEncodedToMapN(QCBOREncodeContext *pCtx, int64_t nLabel, UsefulBufC Encoded);
Michael Eckel5c531332020-03-02 01:35:30 +01002131
2132
2133/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002134 * @brief Get the encoded result.
2135 *
2136 * @param[in] pCtx The context to finish encoding with.
2137 * @param[out] pEncodedCBOR Structure in which the pointer and length of
2138 * the encoded CBOR is returned.
2139 *
2140 * @retval QCBOR_SUCCESS Encoded CBOR is returned.
2141 *
2142 * @retval QCBOR_ERR_TOO_MANY_CLOSES Nesting error
2143 *
2144 * @retval QCBOR_ERR_CLOSE_MISMATCH Nesting error
2145 *
2146 * @retval QCBOR_ERR_ARRAY_OR_MAP_STILL_OPEN Nesting error
2147 *
2148 * @retval QCBOR_ERR_BUFFER_TOO_LARGE Encoded output buffer size
2149 *
2150 * @retval QCBOR_ERR_BUFFER_TOO_SMALL Encoded output buffer size
2151 *
2152 * @retval QCBOR_ERR_ARRAY_NESTING_TOO_DEEP Implementation limit
2153 *
2154 * @retval QCBOR_ERR_ARRAY_TOO_LONG Implementation limit
2155 *
2156 * On success, the pointer and length of the encoded CBOR are returned
2157 * in @c *pEncodedCBOR. The pointer is the same pointer that was passed
2158 * in to QCBOREncode_Init(). Note that it is not const when passed to
2159 * QCBOREncode_Init(), but it is const when returned here. The length
2160 * will be smaller than or equal to the length passed in when
2161 * QCBOREncode_Init() as this is the length of the actual result, not
2162 * the size of the buffer it was written to.
2163 *
2164 * If a @c NULL was passed for @c Storage.ptr when QCBOREncode_Init()
2165 * was called, @c NULL will be returned here, but the length will be
2166 * that of the CBOR that would have been encoded.
2167 *
2168 * Encoding errors primarily manifest here as most other encoding function
2169 * do no return an error. They just set the error state in the encode
2170 * context after which no encoding function does anything.
2171 *
2172 * Three types of errors manifest here. The first type are nesting
2173 * errors where the number of @c QCBOREncode_OpenXxx() calls do not
2174 * match the number @c QCBOREncode_CloseXxx() calls. The solution is to
2175 * fix the calling code.
2176 *
2177 * The second type of error is because the buffer given is either too
2178 * small or too large. The remedy is to give a correctly sized buffer.
2179 *
2180 * The third type are due to limits in this implementation.
2181 * @ref QCBOR_ERR_ARRAY_NESTING_TOO_DEEP can be worked around by
2182 * encoding the CBOR in two (or more) phases and adding the CBOR from
2183 * the first phase to the second with @c QCBOREncode_AddEncoded().
2184 *
2185 * If an error is returned, the buffer may have partially encoded
2186 * incorrect CBOR in it and it should not be used. Likewise, the length
2187 * may be incorrect and should not be used.
2188 *
2189 * Note that the error could have occurred in one of the many
2190 * @c QCBOREncode_AddXxx() calls long before QCBOREncode_Finish() was
2191 * called. This error handling reduces the CBOR implementation size
2192 * but makes debugging harder.
2193 *
2194 * This may be called multiple times. It will always return the
2195 * same. It can also be interleaved with calls to
2196 * QCBOREncode_FinishGetSize().
2197 *
2198 * QCBOREncode_GetErrorState() can be called to get the current
2199 * error state in order to abort encoding early as an optimization, but
2200 * calling it is is never required.
Michael Eckel5c531332020-03-02 01:35:30 +01002201 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002202QCBORError
2203QCBOREncode_Finish(QCBOREncodeContext *pCtx, UsefulBufC *pEncodedCBOR);
Michael Eckel5c531332020-03-02 01:35:30 +01002204
2205
2206/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002207 * @brief Get the encoded CBOR and error status.
2208 *
2209 * @param[in] pCtx The context to finish encoding with.
2210 * @param[out] uEncodedLen The length of the encoded or potentially
2211 * encoded CBOR in bytes.
2212 *
2213 * @return The same errors as QCBOREncode_Finish().
2214 *
2215 * This functions the same as QCBOREncode_Finish(), but only returns the
2216 * size of the encoded output.
Michael Eckel5c531332020-03-02 01:35:30 +01002217 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002218QCBORError
2219QCBOREncode_FinishGetSize(QCBOREncodeContext *pCtx, size_t *uEncodedLen);
Michael Eckel5c531332020-03-02 01:35:30 +01002220
2221
2222/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002223 * @brief Indicate whether output buffer is NULL or not.
2224 *
2225 * @param[in] pCtx The encoding context.
2226 *
2227 * @return 1 if the output buffer is @c NULL.
2228 *
2229 * Sometimes a @c NULL input buffer is given to QCBOREncode_Init() so
2230 * that the size of the generated CBOR can be calculated without
2231 * allocating a buffer for it. This returns 1 when the output buffer
2232 * is @c NULL and 0 when it is not.
Michael Eckel5c531332020-03-02 01:35:30 +01002233 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002234static int
2235QCBOREncode_IsBufferNULL(QCBOREncodeContext *pCtx);
2236
2237
2238/**
2239 * @brief Get the encoding error state.
2240 *
2241 * @param[in] pCtx The encoding context.
2242 *
2243 * @return One of @ref QCBORError. See return values from
2244 * QCBOREncode_Finish()
2245 *
2246 * Normally encoding errors need only be handled at the end of
2247 * encoding when QCBOREncode_Finish() is called. This can be called to
2248 * get the error result before finish should there be a need to halt
2249 * encoding before QCBOREncode_Finish() is called.
2250 */
2251static QCBORError
2252QCBOREncode_GetErrorState(QCBOREncodeContext *pCtx);
2253
2254
2255/**
2256 * Encode the "head" of a CBOR data item.
2257 *
2258 * @param buffer Buffer to output the encoded head to; must be
2259 * @ref QCBOR_HEAD_BUFFER_SIZE bytes in size.
2260 * @param uMajorType One of CBOR_MAJOR_TYPE_XX.
2261 * @param uMinLen The minimum number of bytes to encode uNumber. Almost
2262 * always this is 0 to use preferred
2263 * serialization. If this is 4, then even the
2264 * values 0xffff and smaller will be encoded in 4
2265 * bytes. This is used primarily when encoding a
2266 * float or double put into uNumber as the leading
2267 * zero bytes for them must be encoded.
2268 * @param uNumber The numeric argument part of the CBOR head.
2269 * @return Pointer and length of the encoded head or
2270 * @ref NULLUsefulBufC if the output buffer is too small.
2271 *
2272 * Callers do not to need to call this for normal CBOR encoding. Note
2273 * that it doesn't even take a @ref QCBOREncodeContext argument.
2274 *
2275 * This encodes the major type and argument part of a data item. The
2276 * argument is an integer that is usually either the value or the length
2277 * of the data item.
2278 *
2279 * This is exposed in the public interface to allow hashing of some CBOR
2280 * data types, bstr in particular, a chunk at a time so the full CBOR
2281 * doesn't have to be encoded in a contiguous buffer.
2282 *
2283 * For example, if you have a 100,000 byte binary blob in a buffer that
2284 * needs to be a bstr encoded and then hashed. You could allocate a
2285 * 100,010 byte buffer and encode it normally. Alternatively, you can
2286 * encode the head in a 10 byte buffer with this function, hash that and
2287 * then hash the 100,000 bytes using the same hash context.
2288 *
2289 * See also QCBOREncode_AddBytesLenOnly();
2290 */
2291UsefulBufC
2292QCBOREncode_EncodeHead(UsefulBuf buffer,
2293 uint8_t uMajorType,
2294 uint8_t uMinLen,
2295 uint64_t uNumber);
Michael Eckel5c531332020-03-02 01:35:30 +01002296
2297
Michael Eckel5c531332020-03-02 01:35:30 +01002298
2299
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002300/* =========================================================================
2301 BEGINNING OF PRIVATE INLINE IMPLEMENTATION
2302 ========================================================================= */
Michael Eckel5c531332020-03-02 01:35:30 +01002303
2304/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002305 * @brief Semi-private method to add a buffer full of bytes to encoded output
2306 *
2307 * @param[in] pCtx The encoding context to add the integer to.
2308 * @param[in] uMajorType The CBOR major type of the bytes.
2309 * @param[in] Bytes The bytes to add.
2310 *
2311 * Use QCBOREncode_AddText() or QCBOREncode_AddBytes() or
2312 * QCBOREncode_AddEncoded() instead. They are inline functions that
2313 * call this and supply the correct major type. This function is
2314 * public to make the inline functions work to keep the overall code
2315 * size down and because the C language has no way to make it private.
2316 *
2317 * If this is called the major type should be @c CBOR_MAJOR_TYPE_TEXT_STRING,
2318 * @c CBOR_MAJOR_TYPE_BYTE_STRING or @c CBOR_MAJOR_NONE_TYPE_RAW. The
2319 * last one is special for adding already-encoded CBOR.
Michael Eckel5c531332020-03-02 01:35:30 +01002320 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002321void
2322QCBOREncode_AddBuffer(QCBOREncodeContext *pCtx,
2323 uint8_t uMajorType,
2324 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002325
2326
2327/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002328 * @brief Semi-private method to open a map, array or bstr-wrapped CBOR
2329 *
2330 * @param[in] pCtx The context to add to.
2331 * @param[in] uMajorType The major CBOR type to close
2332 *
2333 * Call QCBOREncode_OpenArray(), QCBOREncode_OpenMap() or
2334 * QCBOREncode_BstrWrap() instead of this.
Michael Eckel5c531332020-03-02 01:35:30 +01002335 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002336void
2337QCBOREncode_OpenMapOrArray(QCBOREncodeContext *pCtx, uint8_t uMajorType);
Michael Eckel5c531332020-03-02 01:35:30 +01002338
2339
2340/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002341 * @brief Semi-private method to open a map, array with indefinite length
2342 *
2343 * @param[in] pCtx The context to add to.
2344 * @param[in] uMajorType The major CBOR type to close
2345 *
2346 * Call QCBOREncode_OpenArrayIndefiniteLength() or
2347 * QCBOREncode_OpenMapIndefiniteLength() instead of this.
Michael Eckel5c531332020-03-02 01:35:30 +01002348 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002349void
2350QCBOREncode_OpenMapOrArrayIndefiniteLength(QCBOREncodeContext *pCtx,
2351 uint8_t uMajorType);
Michael Eckel5c531332020-03-02 01:35:30 +01002352
2353
2354/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002355 * @brief Semi-private method to close a map, array or bstr wrapped CBOR
2356 *
2357 * @param[in] pCtx The context to add to.
2358 * @param[in] uMajorType The major CBOR type to close.
2359 *
2360 * Call QCBOREncode_CloseArray() or QCBOREncode_CloseMap() instead of this.
Michael Eckel5c531332020-03-02 01:35:30 +01002361 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002362void
2363QCBOREncode_CloseMapOrArray(QCBOREncodeContext *pCtx, uint8_t uMajorType);
Michael Eckel5c531332020-03-02 01:35:30 +01002364
2365
2366/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002367 * @brief Semi-private method to close a map, array with indefinite length
2368 *
2369 * @param[in] pCtx The context to add to.
2370 * @param[in] uMajorType The major CBOR type to close.
2371 *
2372 * Call QCBOREncode_CloseArrayIndefiniteLength() or
2373 * QCBOREncode_CloseMapIndefiniteLength() instead of this.
Michael Eckel5c531332020-03-02 01:35:30 +01002374 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002375void
2376QCBOREncode_CloseMapOrArrayIndefiniteLength(QCBOREncodeContext *pCtx,
2377 uint8_t uMajorType);
Michael Eckel5c531332020-03-02 01:35:30 +01002378
2379
2380/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002381 * @brief Semi-private method to add simple types.
2382 *
2383 * @param[in] pCtx The encoding context to add the simple value to.
2384 * @param[in] uMinLen Minimum encoding size for uNum. Usually 0.
2385 * @param[in] uNum One of CBOR_SIMPLEV_FALSE through _UNDEF or other.
2386 *
2387 * This is used to add simple types like true and false.
2388 *
2389 * Call QCBOREncode_AddBool(), QCBOREncode_AddNULL(),
2390 * QCBOREncode_AddUndef() instead of this.
2391 *
2392 * This function can add simple values that are not defined by CBOR
2393 * yet. This expansion point in CBOR should not be used unless they are
2394 * standardized.
2395 *
2396 * Error handling is the same as QCBOREncode_AddInt64().
Michael Eckel5c531332020-03-02 01:35:30 +01002397 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002398void
2399QCBOREncode_AddType7(QCBOREncodeContext *pCtx,
2400 uint8_t uMinLen,
2401 uint64_t uNum);
Michael Eckel5c531332020-03-02 01:35:30 +01002402
2403
2404/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002405 * @brief Semi-private method to add bigfloats and decimal fractions.
2406 *
2407 * @param[in] pCtx The encoding context to add the value to.
2408 * @param[in] uTag The type 6 tag indicating what this is to be.
2409 * @param[in] BigNumMantissa Is @ref NULLUsefulBufC if mantissa is an
2410 * @c int64_t or the actual big number mantissa
2411 * if not.
2412 * @param[in] bBigNumIsNegative This is @c true if the big number is negative.
2413 * @param[in] nMantissa The @c int64_t mantissa if it is not a big number.
2414 * @param[in] nExponent The exponent.
2415 *
2416 * This outputs either the @ref CBOR_TAG_DECIMAL_FRACTION or
2417 * @ref CBOR_TAG_BIGFLOAT tag. if @c uTag is @ref CBOR_TAG_INVALID64,
2418 * then this outputs the "borrowed" content format.
2419 *
2420 * The tag content output by this is an array with two members, the
2421 * exponent and then the mantissa. The mantissa can be either a big
2422 * number or an @c int64_t.
2423 *
2424 * This implementation cannot output an exponent further from 0 than
2425 * @c INT64_MAX.
2426 *
2427 * To output a mantissa that is between INT64_MAX and UINT64_MAX from 0,
2428 * it must be as a big number.
2429 *
2430 * Typically, QCBOREncode_AddDecimalFraction(), QCBOREncode_AddBigFloat(),
2431 * QCBOREncode_AddDecimalFractionBigNum() or QCBOREncode_AddBigFloatBigNum()
2432 * is called instead of this.
Michael Eckel5c531332020-03-02 01:35:30 +01002433 */
Laurence Lundblade3eead482023-12-16 20:53:22 -07002434void
2435QCBOREncode_AddExponentAndMantissa(QCBOREncodeContext *pCtx,
2436 uint64_t uTag,
2437 UsefulBufC BigNumMantissa,
2438 bool bBigNumIsNegative,
2439 int64_t nMantissa,
2440 int64_t nExponent);
Michael Eckel5c531332020-03-02 01:35:30 +01002441
2442/**
Laurence Lundblade3eead482023-12-16 20:53:22 -07002443 * @brief Semi-private method to add only the type and length of a byte string.
2444 *
2445 * @param[in] pCtx The context to initialize.
2446 * @param[in] Bytes Pointer and length of the input data.
2447 *
2448 * This is the same as QCBOREncode_AddBytes() except it only adds the
2449 * CBOR encoding for the type and the length. It doesn't actually add
2450 * the bytes. You can't actually produce correct CBOR with this and
2451 * the rest of this API. It is only used for a special case where the
2452 * valid CBOR is created manually by putting this type and length in
2453 * and then adding the actual bytes. In particular, when only a hash
2454 * of the encoded CBOR is needed, where the type and header are hashed
2455 * separately and then the bytes is hashed. This makes it possible to
2456 * implement COSE Sign1 with only one copy of the payload in the
2457 * output buffer, rather than two, roughly cutting memory use in half.
2458 *
2459 * This is only used for this odd case, but this is a supported
2460 * tested function.
2461 *
2462 * See also QCBOREncode_EncodeHead().
Michael Eckel5c531332020-03-02 01:35:30 +01002463*/
Laurence Lundblade3eead482023-12-16 20:53:22 -07002464static inline void
2465QCBOREncode_AddBytesLenOnly(QCBOREncodeContext *pCtx,
2466 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002467
Laurence Lundblade3eead482023-12-16 20:53:22 -07002468static inline void
2469QCBOREncode_AddBytesLenOnlyToMap(QCBOREncodeContext *pCtx,
2470 const char *szLabel,
2471 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002472
Laurence Lundblade3eead482023-12-16 20:53:22 -07002473static inline void
2474QCBOREncode_AddBytesLenOnlyToMapN(QCBOREncodeContext *pCtx,
2475 int64_t nLabel,
2476 UsefulBufC Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002477
2478
2479
2480
2481
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002482static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002483QCBOREncode_AddInt64ToMap(QCBOREncodeContext *pMe,
2484 const char *szLabel,
2485 int64_t uNum)
Michael Eckel5c531332020-03-02 01:35:30 +01002486{
Laurence Lundblade3eead482023-12-16 20:53:22 -07002487 /* Use _AddBuffer() because _AddSZString() is defined below, not above */
2488 QCBOREncode_AddBuffer(pMe,
2489 CBOR_MAJOR_TYPE_TEXT_STRING,
2490 UsefulBuf_FromSZ(szLabel));
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002491 QCBOREncode_AddInt64(pMe, uNum);
Michael Eckel5c531332020-03-02 01:35:30 +01002492}
2493
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002494static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002495QCBOREncode_AddInt64ToMapN(QCBOREncodeContext *pMe,
2496 int64_t nLabel,
2497 int64_t uNum)
Michael Eckel5c531332020-03-02 01:35:30 +01002498{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002499 QCBOREncode_AddInt64(pMe, nLabel);
2500 QCBOREncode_AddInt64(pMe, uNum);
Michael Eckel5c531332020-03-02 01:35:30 +01002501}
2502
2503
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002504static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002505QCBOREncode_AddUInt64ToMap(QCBOREncodeContext *pMe,
2506 const char *szLabel,
2507 uint64_t uNum)
Michael Eckel5c531332020-03-02 01:35:30 +01002508{
Laurence Lundblade3eead482023-12-16 20:53:22 -07002509 /* Use _AddBuffer() because _AddSZString() is defined below, not above */
2510 QCBOREncode_AddBuffer(pMe,
2511 CBOR_MAJOR_TYPE_TEXT_STRING,
2512 UsefulBuf_FromSZ(szLabel));
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002513 QCBOREncode_AddUInt64(pMe, uNum);
Michael Eckel5c531332020-03-02 01:35:30 +01002514}
2515
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002516static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002517QCBOREncode_AddUInt64ToMapN(QCBOREncodeContext *pMe,
2518 int64_t nLabel,
2519 uint64_t uNum)
Michael Eckel5c531332020-03-02 01:35:30 +01002520{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002521 QCBOREncode_AddInt64(pMe, nLabel);
2522 QCBOREncode_AddUInt64(pMe, uNum);
Michael Eckel5c531332020-03-02 01:35:30 +01002523}
2524
2525
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002526static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002527QCBOREncode_AddText(QCBOREncodeContext *pMe, UsefulBufC Text)
Michael Eckel5c531332020-03-02 01:35:30 +01002528{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002529 QCBOREncode_AddBuffer(pMe, CBOR_MAJOR_TYPE_TEXT_STRING, Text);
Michael Eckel5c531332020-03-02 01:35:30 +01002530}
2531
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002532static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002533QCBOREncode_AddTextToMap(QCBOREncodeContext *pMe,
2534 const char *szLabel,
2535 UsefulBufC Text)
Michael Eckel5c531332020-03-02 01:35:30 +01002536{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002537 QCBOREncode_AddText(pMe, UsefulBuf_FromSZ(szLabel));
2538 QCBOREncode_AddText(pMe, Text);
Michael Eckel5c531332020-03-02 01:35:30 +01002539}
2540
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002541static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002542QCBOREncode_AddTextToMapN(QCBOREncodeContext *pMe,
2543 int64_t nLabel,
2544 UsefulBufC Text)
Michael Eckel5c531332020-03-02 01:35:30 +01002545{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002546 QCBOREncode_AddInt64(pMe, nLabel);
2547 QCBOREncode_AddText(pMe, Text);
Michael Eckel5c531332020-03-02 01:35:30 +01002548}
2549
2550
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002551inline static void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002552QCBOREncode_AddSZString(QCBOREncodeContext *pMe, const char *szString)
Michael Eckel5c531332020-03-02 01:35:30 +01002553{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002554 QCBOREncode_AddText(pMe, UsefulBuf_FromSZ(szString));
Michael Eckel5c531332020-03-02 01:35:30 +01002555}
2556
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002557static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002558QCBOREncode_AddSZStringToMap(QCBOREncodeContext *pMe,
2559 const char *szLabel,
2560 const char *szString)
Michael Eckel5c531332020-03-02 01:35:30 +01002561{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002562 QCBOREncode_AddSZString(pMe, szLabel);
2563 QCBOREncode_AddSZString(pMe, szString);
Michael Eckel5c531332020-03-02 01:35:30 +01002564}
2565
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002566static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002567QCBOREncode_AddSZStringToMapN(QCBOREncodeContext *pMe,
2568 int64_t nLabel,
2569 const char *szString)
Michael Eckel5c531332020-03-02 01:35:30 +01002570{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002571 QCBOREncode_AddInt64(pMe, nLabel);
2572 QCBOREncode_AddSZString(pMe, szString);
Michael Eckel5c531332020-03-02 01:35:30 +01002573}
2574
2575
Máté Tóth-Pálef5f07a2021-09-17 19:31:37 +02002576#ifndef USEFULBUF_DISABLE_ALL_FLOAT
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002577static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002578QCBOREncode_AddDoubleToMap(QCBOREncodeContext *pMe,
2579 const char *szLabel,
2580 double dNum)
Michael Eckel5c531332020-03-02 01:35:30 +01002581{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002582 QCBOREncode_AddSZString(pMe, szLabel);
2583 QCBOREncode_AddDouble(pMe, dNum);
Michael Eckel5c531332020-03-02 01:35:30 +01002584}
2585
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002586static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002587QCBOREncode_AddDoubleToMapN(QCBOREncodeContext *pMe,
2588 int64_t nLabel,
2589 double dNum)
Michael Eckel5c531332020-03-02 01:35:30 +01002590{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002591 QCBOREncode_AddInt64(pMe, nLabel);
2592 QCBOREncode_AddDouble(pMe, dNum);
Michael Eckel5c531332020-03-02 01:35:30 +01002593}
2594
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002595static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002596QCBOREncode_AddFloatToMap(QCBOREncodeContext *pMe,
2597 const char *szLabel,
2598 float dNum)
Laurence Lundbladeb275cdc2020-07-12 12:34:38 -07002599{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002600 QCBOREncode_AddSZString(pMe, szLabel);
2601 QCBOREncode_AddFloat(pMe, dNum);
Laurence Lundbladeb275cdc2020-07-12 12:34:38 -07002602}
2603
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002604static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002605QCBOREncode_AddFloatToMapN(QCBOREncodeContext *pMe, int64_t nLabel, float fNum)
Laurence Lundbladeb275cdc2020-07-12 12:34:38 -07002606{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002607 QCBOREncode_AddInt64(pMe, nLabel);
2608 QCBOREncode_AddFloat(pMe, fNum);
Laurence Lundbladeb275cdc2020-07-12 12:34:38 -07002609}
2610
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002611static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002612QCBOREncode_AddDoubleNoPreferredToMap(QCBOREncodeContext *pMe,
2613 const char *szLabel,
2614 double dNum)
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002615{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002616 QCBOREncode_AddSZString(pMe, szLabel);
2617 QCBOREncode_AddDoubleNoPreferred(pMe, dNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002618}
2619
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002620static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002621QCBOREncode_AddDoubleNoPreferredToMapN(QCBOREncodeContext *pMe,
2622 int64_t nLabel,
2623 double dNum)
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002624{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002625 QCBOREncode_AddInt64(pMe, nLabel);
2626 QCBOREncode_AddDoubleNoPreferred(pMe, dNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002627}
2628
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002629static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002630QCBOREncode_AddFloatNoPreferredToMap(QCBOREncodeContext *pMe,
2631 const char *szLabel,
2632 float dNum)
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002633{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002634 QCBOREncode_AddSZString(pMe, szLabel);
2635 QCBOREncode_AddFloatNoPreferred(pMe, dNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002636}
2637
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002638static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002639QCBOREncode_AddFloatNoPreferredToMapN(QCBOREncodeContext *pMe,
2640 int64_t nLabel,
2641 float dNum)
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002642{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07002643 QCBOREncode_AddInt64(pMe, nLabel);
2644 QCBOREncode_AddFloatNoPreferred(pMe, dNum);
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002645}
Máté Tóth-Pálef5f07a2021-09-17 19:31:37 +02002646#endif /* USEFULBUF_DISABLE_ALL_FLOAT */
Laurence Lundblade32f3e622020-07-13 20:35:11 -07002647
Michael Eckel5c531332020-03-02 01:35:30 +01002648
Laurence Lundblade9b334962020-08-27 10:55:53 -07002649
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002650static inline void
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002651QCBOREncode_AddTDateEpoch(QCBOREncodeContext *pMe, uint8_t uTag, int64_t nDate)
Laurence Lundblade9b334962020-08-27 10:55:53 -07002652{
2653 if(uTag == QCBOR_ENCODE_AS_TAG) {
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002654 QCBOREncode_AddTag(pMe, CBOR_TAG_DATE_EPOCH);
Laurence Lundblade9b334962020-08-27 10:55:53 -07002655 }
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002656 QCBOREncode_AddInt64(pMe, nDate);
Laurence Lundblade9b334962020-08-27 10:55:53 -07002657}
2658
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002659static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002660QCBOREncode_AddTDateEpochToMapSZ(QCBOREncodeContext *pMe,
2661 const char *szLabel,
2662 uint8_t uTag,
2663 int64_t nDate)
Laurence Lundblade9b334962020-08-27 10:55:53 -07002664{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002665 QCBOREncode_AddSZString(pMe, szLabel);
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002666 QCBOREncode_AddTDateEpoch(pMe, uTag, nDate);
Laurence Lundblade9b334962020-08-27 10:55:53 -07002667}
2668
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002669static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002670QCBOREncode_AddTDateEpochToMapN(QCBOREncodeContext *pMe,
2671 int64_t nLabel,
2672 uint8_t uTag,
2673 int64_t nDate)
Laurence Lundblade9b334962020-08-27 10:55:53 -07002674{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002675 QCBOREncode_AddInt64(pMe, nLabel);
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002676 QCBOREncode_AddTDateEpoch(pMe, uTag, nDate);
Laurence Lundblade9b334962020-08-27 10:55:53 -07002677}
2678
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002679static inline void
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002680QCBOREncode_AddDateEpoch(QCBOREncodeContext *pMe, int64_t nDate)
Michael Eckel5c531332020-03-02 01:35:30 +01002681{
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002682 QCBOREncode_AddTDateEpoch(pMe, QCBOR_ENCODE_AS_TAG, nDate);
Michael Eckel5c531332020-03-02 01:35:30 +01002683}
2684
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002685static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002686QCBOREncode_AddDateEpochToMap(QCBOREncodeContext *pMe,
2687 const char *szLabel,
2688 int64_t nDate)
Michael Eckel5c531332020-03-02 01:35:30 +01002689{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002690 QCBOREncode_AddSZString(pMe, szLabel);
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002691 QCBOREncode_AddDateEpoch(pMe, nDate);
Michael Eckel5c531332020-03-02 01:35:30 +01002692}
2693
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002694static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002695QCBOREncode_AddDateEpochToMapN(QCBOREncodeContext *pMe,
2696 int64_t nLabel,
2697 int64_t nDate)
Michael Eckel5c531332020-03-02 01:35:30 +01002698{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002699 QCBOREncode_AddInt64(pMe, nLabel);
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002700 QCBOREncode_AddDateEpoch(pMe, nDate);
Michael Eckel5c531332020-03-02 01:35:30 +01002701}
2702
2703
Laurence Lundblade46d63e92021-05-13 11:37:10 -07002704static inline void
2705QCBOREncode_AddTDaysEpoch(QCBOREncodeContext *pMe, uint8_t uTag, int64_t nDays)
2706{
2707 if(uTag == QCBOR_ENCODE_AS_TAG) {
2708 QCBOREncode_AddTag(pMe, CBOR_TAG_DAYS_EPOCH);
2709 }
2710 QCBOREncode_AddInt64(pMe, nDays);
2711}
2712
2713static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002714QCBOREncode_AddTDaysEpochToMapSZ(QCBOREncodeContext *pMe,
2715 const char *szLabel,
2716 uint8_t uTag,
2717 int64_t nDays)
Laurence Lundblade46d63e92021-05-13 11:37:10 -07002718{
2719 QCBOREncode_AddSZString(pMe, szLabel);
2720 QCBOREncode_AddTDaysEpoch(pMe, uTag, nDays);
2721}
2722
2723static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002724QCBOREncode_AddTDaysEpochToMapN(QCBOREncodeContext *pMe,
2725 int64_t nLabel,
2726 uint8_t uTag,
2727 int64_t nDays)
Laurence Lundblade46d63e92021-05-13 11:37:10 -07002728{
2729 QCBOREncode_AddInt64(pMe, nLabel);
2730 QCBOREncode_AddTDaysEpoch(pMe, uTag, nDays);
2731}
2732
Laurence Lundblade9b334962020-08-27 10:55:53 -07002733
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002734static inline void
2735QCBOREncode_AddBytes(QCBOREncodeContext *pMe, UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002736{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002737 QCBOREncode_AddBuffer(pMe, CBOR_MAJOR_TYPE_BYTE_STRING, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002738}
2739
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002740static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002741QCBOREncode_AddBytesToMap(QCBOREncodeContext *pMe,
2742 const char *szLabel,
2743 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002744{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002745 QCBOREncode_AddSZString(pMe, szLabel);
2746 QCBOREncode_AddBytes(pMe, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002747}
2748
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002749static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002750QCBOREncode_AddBytesToMapN(QCBOREncodeContext *pMe,
2751 int64_t nLabel,
2752 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002753{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002754 QCBOREncode_AddInt64(pMe, nLabel);
2755 QCBOREncode_AddBytes(pMe, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002756}
2757
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002758static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002759QCBOREncode_OpenBytesInMapSZ(QCBOREncodeContext *pMe,
2760 const char *szLabel,
2761 UsefulBuf *pPlace)
Laurence Lundbladeb24faef2022-04-26 11:03:08 -06002762{
2763 QCBOREncode_AddSZString(pMe, szLabel);
2764 QCBOREncode_OpenBytes(pMe, pPlace);
2765}
2766
2767static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002768QCBOREncode_OpenBytesInMapN(QCBOREncodeContext *pMe,
2769 int64_t nLabel,
2770 UsefulBuf *pPlace)
Laurence Lundbladeb24faef2022-04-26 11:03:08 -06002771{
2772 QCBOREncode_AddInt64(pMe, nLabel);
2773 QCBOREncode_OpenBytes(pMe, pPlace);
2774}
2775
2776static inline void
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002777QCBOREncode_AddBytesLenOnly(QCBOREncodeContext *pMe, UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002778{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002779 QCBOREncode_AddBuffer(pMe, CBOR_MAJOR_NONE_TYPE_BSTR_LEN_ONLY, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002780}
2781
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002782static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002783QCBOREncode_AddBytesLenOnlyToMap(QCBOREncodeContext *pMe,
2784 const char *szLabel,
2785 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002786{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002787 QCBOREncode_AddSZString(pMe, szLabel);
2788 QCBOREncode_AddBytesLenOnly(pMe, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002789}
2790
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002791static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002792QCBOREncode_AddBytesLenOnlyToMapN(QCBOREncodeContext *pMe,
2793 int64_t nLabel,
2794 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002795{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002796 QCBOREncode_AddInt64(pMe, nLabel);
2797 QCBOREncode_AddBytesLenOnly(pMe, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002798}
2799
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002800
2801static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002802QCBOREncode_AddTBinaryUUID(QCBOREncodeContext *pMe,
2803 uint8_t uTagRequirement,
2804 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002805{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002806 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
2807 QCBOREncode_AddTag(pMe, CBOR_TAG_BIN_UUID);
2808 }
2809 QCBOREncode_AddBytes(pMe, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002810}
2811
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002812static inline void
2813QCBOREncode_AddTBinaryUUIDToMapSZ(QCBOREncodeContext *pMe,
2814 const char *szLabel,
2815 uint8_t uTagRequirement,
2816 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002817{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002818 QCBOREncode_AddSZString(pMe, szLabel);
2819 QCBOREncode_AddTBinaryUUID(pMe, uTagRequirement, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002820}
2821
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002822static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002823QCBOREncode_AddTBinaryUUIDToMapN(QCBOREncodeContext *pMe,
2824 int64_t nLabel,
2825 uint8_t uTagRequirement,
2826 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002827{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002828 QCBOREncode_AddInt64(pMe, nLabel);
2829 QCBOREncode_AddTBinaryUUID(pMe, uTagRequirement, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002830}
2831
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002832static inline void
2833QCBOREncode_AddBinaryUUID(QCBOREncodeContext *pMe, UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002834{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002835 QCBOREncode_AddTBinaryUUID(pMe, QCBOR_ENCODE_AS_TAG, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002836}
2837
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002838static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002839QCBOREncode_AddBinaryUUIDToMap(QCBOREncodeContext *pMe,
2840 const char *szLabel,
2841 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002842{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002843 QCBOREncode_AddTBinaryUUIDToMapSZ(pMe, szLabel, QCBOR_ENCODE_AS_TAG, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002844}
2845
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002846static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002847QCBOREncode_AddBinaryUUIDToMapN(QCBOREncodeContext *pMe,
2848 int64_t nLabel,
2849 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002850{
Laurence Lundblade3eead482023-12-16 20:53:22 -07002851 QCBOREncode_AddTBinaryUUIDToMapN(pMe,
2852 nLabel,
2853 QCBOR_ENCODE_AS_TAG,
2854 Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002855}
2856
2857
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002858static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002859QCBOREncode_AddTPositiveBignum(QCBOREncodeContext *pMe,
2860 uint8_t uTagRequirement,
2861 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002862{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002863 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
2864 QCBOREncode_AddTag(pMe, CBOR_TAG_POS_BIGNUM);
2865 }
2866 QCBOREncode_AddBytes(pMe, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002867}
2868
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002869static inline void
2870QCBOREncode_AddTPositiveBignumToMapSZ(QCBOREncodeContext *pMe,
2871 const char *szLabel,
2872 uint8_t uTagRequirement,
2873 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002874{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002875 QCBOREncode_AddSZString(pMe, szLabel);
2876 QCBOREncode_AddTPositiveBignum(pMe, uTagRequirement, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002877}
2878
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002879static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002880QCBOREncode_AddTPositiveBignumToMapN(QCBOREncodeContext *pMe,
2881 int64_t nLabel,
2882 uint8_t uTagRequirement,
2883 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01002884{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002885 QCBOREncode_AddInt64(pMe, nLabel);
2886 QCBOREncode_AddTPositiveBignum(pMe, uTagRequirement, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01002887}
2888
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002889static inline void
2890QCBOREncode_AddPositiveBignum(QCBOREncodeContext *pMe, UsefulBufC Bytes)
2891{
2892 QCBOREncode_AddTPositiveBignum(pMe, QCBOR_ENCODE_AS_TAG, Bytes);
2893}
2894
2895static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002896QCBOREncode_AddPositiveBignumToMap(QCBOREncodeContext *pMe,
2897 const char *szLabel,
2898 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002899{
Laurence Lundblade3eead482023-12-16 20:53:22 -07002900 QCBOREncode_AddTPositiveBignumToMapSZ(pMe,
2901 szLabel,
2902 QCBOR_ENCODE_AS_TAG,
2903 Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002904}
2905
2906static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002907QCBOREncode_AddPositiveBignumToMapN(QCBOREncodeContext *pMe,
2908 int64_t nLabel,
2909 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002910{
Laurence Lundblade3eead482023-12-16 20:53:22 -07002911 QCBOREncode_AddTPositiveBignumToMapN(pMe,
2912 nLabel,
2913 QCBOR_ENCODE_AS_TAG,
2914 Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002915}
2916
2917
2918static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002919QCBOREncode_AddTNegativeBignum(QCBOREncodeContext *pMe,
2920 uint8_t uTagRequirement,
2921 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002922{
2923 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
2924 QCBOREncode_AddTag(pMe, CBOR_TAG_NEG_BIGNUM);
2925 }
2926 QCBOREncode_AddBytes(pMe, Bytes);
2927}
2928
2929static inline void
2930QCBOREncode_AddTNegativeBignumToMapSZ(QCBOREncodeContext *pMe,
2931 const char *szLabel,
2932 uint8_t uTagRequirement,
2933 UsefulBufC Bytes)
2934{
2935 QCBOREncode_AddSZString(pMe, szLabel);
2936 QCBOREncode_AddTNegativeBignum(pMe, uTagRequirement, Bytes);
2937}
2938
2939static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002940QCBOREncode_AddTNegativeBignumToMapN(QCBOREncodeContext *pMe,
2941 int64_t nLabel,
2942 uint8_t uTagRequirement,
2943 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002944{
2945 QCBOREncode_AddInt64(pMe, nLabel);
2946 QCBOREncode_AddTNegativeBignum(pMe, uTagRequirement, Bytes);
2947}
2948
2949static inline void
2950QCBOREncode_AddNegativeBignum(QCBOREncodeContext *pMe, UsefulBufC Bytes)
2951{
2952 QCBOREncode_AddTNegativeBignum(pMe, QCBOR_ENCODE_AS_TAG, Bytes);
2953}
2954
2955static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002956QCBOREncode_AddNegativeBignumToMap(QCBOREncodeContext *pMe,
2957 const char *szLabel,
2958 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002959{
Laurence Lundblade3eead482023-12-16 20:53:22 -07002960 QCBOREncode_AddTNegativeBignumToMapSZ(pMe,
2961 szLabel,
2962 QCBOR_ENCODE_AS_TAG,
2963 Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002964}
2965
2966static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07002967QCBOREncode_AddNegativeBignumToMapN(QCBOREncodeContext *pMe,
2968 int64_t nLabel,
2969 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002970{
Laurence Lundblade3eead482023-12-16 20:53:22 -07002971 QCBOREncode_AddTNegativeBignumToMapN(pMe,
2972 nLabel,
2973 QCBOR_ENCODE_AS_TAG,
2974 Bytes);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002975}
2976
2977
Michael Eckel5c531332020-03-02 01:35:30 +01002978
Laurence Lundbladedd6e76e2021-03-10 01:54:01 -07002979#ifndef QCBOR_DISABLE_EXP_AND_MANTISSA
Michael Eckel5c531332020-03-02 01:35:30 +01002980
Laurence Lundblade45d5e482020-09-15 21:15:15 -07002981static inline void
2982QCBOREncode_AddTDecimalFraction(QCBOREncodeContext *pMe,
2983 uint8_t uTagRequirement,
2984 int64_t nMantissa,
2985 int64_t nBase10Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01002986{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07002987 uint64_t uTag;
2988 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
2989 uTag = CBOR_TAG_DECIMAL_FRACTION;
2990 } else {
2991 uTag = CBOR_TAG_INVALID64;
2992 }
2993 QCBOREncode_AddExponentAndMantissa(pMe,
2994 uTag,
Michael Eckel5c531332020-03-02 01:35:30 +01002995 NULLUsefulBufC,
2996 false,
2997 nMantissa,
2998 nBase10Exponent);
2999}
3000
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003001static inline void
3002QCBOREncode_AddTDecimalFractionToMapSZ(QCBOREncodeContext *pMe,
3003 const char *szLabel,
3004 uint8_t uTagRequirement,
3005 int64_t nMantissa,
3006 int64_t nBase10Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003007{
3008 QCBOREncode_AddSZString(pMe, szLabel);
Laurence Lundblade3eead482023-12-16 20:53:22 -07003009 QCBOREncode_AddTDecimalFraction(pMe,
3010 uTagRequirement,
3011 nMantissa,
3012 nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003013}
3014
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003015static inline void
3016QCBOREncode_AddTDecimalFractionToMapN(QCBOREncodeContext *pMe,
3017 int64_t nLabel,
3018 uint8_t uTagRequirement,
3019 int64_t nMantissa,
3020 int64_t nBase10Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003021{
3022 QCBOREncode_AddInt64(pMe, nLabel);
Laurence Lundblade3eead482023-12-16 20:53:22 -07003023 QCBOREncode_AddTDecimalFraction(pMe,
3024 uTagRequirement,
3025 nMantissa,
3026 nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003027}
3028
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003029static inline void
3030QCBOREncode_AddDecimalFraction(QCBOREncodeContext *pMe,
3031 int64_t nMantissa,
3032 int64_t nBase10Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003033{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003034 QCBOREncode_AddTDecimalFraction(pMe,
3035 QCBOR_ENCODE_AS_TAG,
3036 nMantissa,
3037 nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003038}
3039
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003040static inline void
3041QCBOREncode_AddDecimalFractionToMap(QCBOREncodeContext *pMe,
3042 const char *szLabel,
3043 int64_t nMantissa,
3044 int64_t nBase10Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003045{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003046 QCBOREncode_AddTDecimalFractionToMapSZ(pMe,
3047 szLabel,
3048 QCBOR_ENCODE_AS_TAG,
3049 nMantissa,
3050 nBase10Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003051}
3052
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003053static inline void
3054QCBOREncode_AddDecimalFractionToMapN(QCBOREncodeContext *pMe,
3055 int64_t nLabel,
3056 int64_t nMantissa,
3057 int64_t nBase10Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003058{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003059 QCBOREncode_AddTDecimalFractionToMapN(pMe,
3060 nLabel,
3061 QCBOR_ENCODE_AS_TAG,
3062 nMantissa,
3063 nBase10Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003064}
3065
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003066
3067
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003068static inline void
3069QCBOREncode_AddTDecimalFractionBigNum(QCBOREncodeContext *pMe,
3070 uint8_t uTagRequirement,
3071 UsefulBufC Mantissa,
3072 bool bIsNegative,
3073 int64_t nBase10Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003074{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003075 uint64_t uTag;
3076 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3077 uTag = CBOR_TAG_DECIMAL_FRACTION;
3078 } else {
3079 uTag = CBOR_TAG_INVALID64;
3080 }
3081 QCBOREncode_AddExponentAndMantissa(pMe,
3082 uTag,
Michael Eckel5c531332020-03-02 01:35:30 +01003083 Mantissa, bIsNegative,
3084 0,
3085 nBase10Exponent);
3086}
3087
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003088static inline void
3089QCBOREncode_AddTDecimalFractionBigNumToMapSZ(QCBOREncodeContext *pMe,
3090 const char *szLabel,
3091 uint8_t uTagRequirement,
3092 UsefulBufC Mantissa,
3093 bool bIsNegative,
3094 int64_t nBase10Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003095{
3096 QCBOREncode_AddSZString(pMe, szLabel);
Laurence Lundblade3eead482023-12-16 20:53:22 -07003097 QCBOREncode_AddTDecimalFractionBigNum(pMe,
3098 uTagRequirement,
3099 Mantissa,
3100 bIsNegative,
3101 nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003102}
3103
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003104static inline void
3105QCBOREncode_AddTDecimalFractionBigNumToMapN(QCBOREncodeContext *pMe,
3106 int64_t nLabel,
3107 uint8_t uTagRequirement,
3108 UsefulBufC Mantissa,
3109 bool bIsNegative,
3110 int64_t nBase10Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003111{
3112 QCBOREncode_AddInt64(pMe, nLabel);
Laurence Lundblade3eead482023-12-16 20:53:22 -07003113 QCBOREncode_AddTDecimalFractionBigNum(pMe,
3114 uTagRequirement,
3115 Mantissa,
3116 bIsNegative,
3117 nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003118}
3119
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003120static inline void
3121QCBOREncode_AddDecimalFractionBigNum(QCBOREncodeContext *pMe,
3122 UsefulBufC Mantissa,
3123 bool bIsNegative,
3124 int64_t nBase10Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003125{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003126 QCBOREncode_AddTDecimalFractionBigNum(pMe,
3127 QCBOR_ENCODE_AS_TAG,
3128 Mantissa,
3129 bIsNegative,
3130 nBase10Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003131}
3132
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003133static inline void
3134QCBOREncode_AddDecimalFractionBigNumToMapSZ(QCBOREncodeContext *pMe,
3135 const char *szLabel,
3136 UsefulBufC Mantissa,
3137 bool bIsNegative,
3138 int64_t nBase10Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003139{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003140 QCBOREncode_AddTDecimalFractionBigNumToMapSZ(pMe,
3141 szLabel,
3142 QCBOR_ENCODE_AS_TAG,
3143 Mantissa,
3144 bIsNegative,
3145 nBase10Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003146}
3147
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003148static inline void
3149QCBOREncode_AddDecimalFractionBigNumToMapN(QCBOREncodeContext *pMe,
3150 int64_t nLabel,
3151 UsefulBufC Mantissa,
3152 bool bIsNegative,
3153 int64_t nBase2Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003154{
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003155 QCBOREncode_AddTDecimalFractionBigNumToMapN(pMe,
3156 nLabel,
3157 QCBOR_ENCODE_AS_TAG,
3158 Mantissa,
3159 bIsNegative,
3160 nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003161}
3162
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003163
3164
3165
3166
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003167static inline void
3168QCBOREncode_AddTBigFloat(QCBOREncodeContext *pMe,
3169 uint8_t uTagRequirement,
3170 int64_t nMantissa,
3171 int64_t nBase2Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003172{
3173 uint64_t uTag;
3174 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3175 uTag = CBOR_TAG_BIGFLOAT;
3176 } else {
3177 uTag = CBOR_TAG_INVALID64;
3178 }
Laurence Lundblade3eead482023-12-16 20:53:22 -07003179 QCBOREncode_AddExponentAndMantissa(pMe,
3180 uTag,
3181 NULLUsefulBufC,
3182 false,
3183 nMantissa,
3184 nBase2Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003185}
3186
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003187static inline void
3188QCBOREncode_AddTBigFloatToMapSZ(QCBOREncodeContext *pMe,
3189 const char *szLabel,
3190 uint8_t uTagRequirement,
3191 int64_t nMantissa,
3192 int64_t nBase2Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003193{
3194 QCBOREncode_AddSZString(pMe, szLabel);
3195 QCBOREncode_AddTBigFloat(pMe, uTagRequirement, nMantissa, nBase2Exponent);
3196}
3197
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003198static inline void
3199QCBOREncode_AddTBigFloatToMapN(QCBOREncodeContext *pMe,
3200 int64_t nLabel,
3201 uint8_t uTagRequirement,
3202 int64_t nMantissa,
3203 int64_t nBase2Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003204{
3205 QCBOREncode_AddInt64(pMe, nLabel);
3206 QCBOREncode_AddTBigFloat(pMe, uTagRequirement, nMantissa, nBase2Exponent);
3207}
3208
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003209static inline void
3210QCBOREncode_AddBigFloat(QCBOREncodeContext *pMe,
3211 int64_t nMantissa,
3212 int64_t nBase2Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003213{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003214 QCBOREncode_AddTBigFloat(pMe,
3215 QCBOR_ENCODE_AS_TAG,
3216 nMantissa,
3217 nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003218}
3219
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003220static inline void
3221QCBOREncode_AddBigFloatToMap(QCBOREncodeContext *pMe,
3222 const char *szLabel,
3223 int64_t nMantissa,
3224 int64_t nBase2Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003225{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003226 QCBOREncode_AddTBigFloatToMapSZ(pMe,
3227 szLabel,
3228 QCBOR_ENCODE_AS_TAG,
3229 nMantissa,
3230 nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003231}
3232
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003233static inline void
3234QCBOREncode_AddBigFloatToMapN(QCBOREncodeContext *pMe,
3235 int64_t nLabel,
3236 int64_t nMantissa,
3237 int64_t nBase2Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003238{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003239 QCBOREncode_AddTBigFloatToMapN(pMe,
3240 nLabel,
3241 QCBOR_ENCODE_AS_TAG,
3242 nMantissa,
3243 nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003244}
3245
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003246
3247
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003248static inline void
3249QCBOREncode_AddTBigFloatBigNum(QCBOREncodeContext *pMe,
3250 uint8_t uTagRequirement,
3251 UsefulBufC Mantissa,
3252 bool bIsNegative,
3253 int64_t nBase2Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003254{
3255 uint64_t uTag;
3256 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3257 uTag = CBOR_TAG_BIGFLOAT;
3258 } else {
3259 uTag = CBOR_TAG_INVALID64;
3260 }
Laurence Lundblade3eead482023-12-16 20:53:22 -07003261 QCBOREncode_AddExponentAndMantissa(pMe,
3262 uTag,
3263 Mantissa,
3264 bIsNegative,
3265 0,
3266 nBase2Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003267}
3268
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003269static inline void
3270QCBOREncode_AddTBigFloatBigNumToMapSZ(QCBOREncodeContext *pMe,
3271 const char *szLabel,
3272 uint8_t uTagRequirement,
3273 UsefulBufC Mantissa,
3274 bool bIsNegative,
3275 int64_t nBase2Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003276{
3277 QCBOREncode_AddSZString(pMe, szLabel);
Laurence Lundblade3eead482023-12-16 20:53:22 -07003278 QCBOREncode_AddTBigFloatBigNum(pMe,
3279 uTagRequirement,
3280 Mantissa,
3281 bIsNegative,
3282 nBase2Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003283}
3284
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003285static inline void
3286QCBOREncode_AddTBigFloatBigNumToMapN(QCBOREncodeContext *pMe,
3287 int64_t nLabel,
3288 uint8_t uTagRequirement,
3289 UsefulBufC Mantissa,
3290 bool bIsNegative,
3291 int64_t nBase2Exponent)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003292{
3293 QCBOREncode_AddInt64(pMe, nLabel);
Laurence Lundblade3eead482023-12-16 20:53:22 -07003294 QCBOREncode_AddTBigFloatBigNum(pMe,
3295 uTagRequirement,
3296 Mantissa,
3297 bIsNegative,
3298 nBase2Exponent);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003299}
3300
3301
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003302static inline void
3303QCBOREncode_AddBigFloatBigNum(QCBOREncodeContext *pMe,
3304 UsefulBufC Mantissa,
3305 bool bIsNegative,
3306 int64_t nBase2Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003307{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003308 QCBOREncode_AddTBigFloatBigNum(pMe,
3309 QCBOR_ENCODE_AS_TAG,
3310 Mantissa, bIsNegative,
3311 nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003312}
3313
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003314static inline void
3315QCBOREncode_AddBigFloatBigNumToMap(QCBOREncodeContext *pMe,
3316 const char *szLabel,
3317 UsefulBufC Mantissa,
3318 bool bIsNegative,
3319 int64_t nBase2Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003320{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003321 QCBOREncode_AddTBigFloatBigNumToMapSZ(pMe,
3322 szLabel,
3323 QCBOR_ENCODE_AS_TAG,
3324 Mantissa,
3325 bIsNegative,
3326 nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003327}
3328
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003329static inline void
3330QCBOREncode_AddBigFloatBigNumToMapN(QCBOREncodeContext *pMe,
3331 int64_t nLabel,
3332 UsefulBufC Mantissa,
3333 bool bIsNegative,
3334 int64_t nBase2Exponent)
Michael Eckel5c531332020-03-02 01:35:30 +01003335{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003336 QCBOREncode_AddTBigFloatBigNumToMapN(pMe,
3337 nLabel,
3338 QCBOR_ENCODE_AS_TAG,
3339 Mantissa,
3340 bIsNegative,
3341 nBase2Exponent);
Michael Eckel5c531332020-03-02 01:35:30 +01003342}
Laurence Lundbladedd6e76e2021-03-10 01:54:01 -07003343#endif /* QCBOR_DISABLE_EXP_AND_MANTISSA */
Michael Eckel5c531332020-03-02 01:35:30 +01003344
3345
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003346static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003347QCBOREncode_AddTURI(QCBOREncodeContext *pMe,
3348 uint8_t uTagRequirement,
3349 UsefulBufC URI)
Michael Eckel5c531332020-03-02 01:35:30 +01003350{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003351 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3352 QCBOREncode_AddTag(pMe, CBOR_TAG_URI);
3353 }
3354 QCBOREncode_AddText(pMe, URI);
Michael Eckel5c531332020-03-02 01:35:30 +01003355}
3356
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003357static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003358QCBOREncode_AddTURIToMapSZ(QCBOREncodeContext *pMe,
3359 const char *szLabel,
3360 uint8_t uTagRequirement,
3361 UsefulBufC URI)
Michael Eckel5c531332020-03-02 01:35:30 +01003362{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003363 QCBOREncode_AddSZString(pMe, szLabel);
3364 QCBOREncode_AddTURI(pMe, uTagRequirement, URI);
Michael Eckel5c531332020-03-02 01:35:30 +01003365}
3366
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003367static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003368QCBOREncode_AddTURIToMapN(QCBOREncodeContext *pMe,
3369 int64_t nLabel,
3370 uint8_t uTagRequirement,
3371 UsefulBufC URI)
Michael Eckel5c531332020-03-02 01:35:30 +01003372{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003373 QCBOREncode_AddInt64(pMe, nLabel);
3374 QCBOREncode_AddTURI(pMe, uTagRequirement, URI);
3375}
3376
3377static inline void
3378QCBOREncode_AddURI(QCBOREncodeContext *pMe, UsefulBufC URI)
3379{
3380 QCBOREncode_AddTURI(pMe, QCBOR_ENCODE_AS_TAG, URI);
3381}
3382
3383static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003384QCBOREncode_AddURIToMap(QCBOREncodeContext *pMe,
3385 const char *szLabel,
3386 UsefulBufC URI)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003387{
3388 QCBOREncode_AddTURIToMapSZ(pMe, szLabel, QCBOR_ENCODE_AS_TAG, URI);
3389}
3390
3391static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003392QCBOREncode_AddURIToMapN(QCBOREncodeContext *pMe,
3393 int64_t nLabel,
3394 UsefulBufC URI)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003395{
3396 QCBOREncode_AddTURIToMapN(pMe, nLabel, QCBOR_ENCODE_AS_TAG, URI);
Michael Eckel5c531332020-03-02 01:35:30 +01003397}
3398
3399
3400
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003401static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003402QCBOREncode_AddTB64Text(QCBOREncodeContext *pMe,
3403 uint8_t uTagRequirement,
3404 UsefulBufC B64Text)
Michael Eckel5c531332020-03-02 01:35:30 +01003405{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003406 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3407 QCBOREncode_AddTag(pMe, CBOR_TAG_B64);
3408 }
3409 QCBOREncode_AddText(pMe, B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01003410}
3411
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003412static inline void
3413QCBOREncode_AddTB64TextToMapSZ(QCBOREncodeContext *pMe,
3414 const char *szLabel,
3415 uint8_t uTagRequirement,
3416 UsefulBufC B64Text)
Michael Eckel5c531332020-03-02 01:35:30 +01003417{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003418 QCBOREncode_AddSZString(pMe, szLabel);
3419 QCBOREncode_AddTB64Text(pMe, uTagRequirement, B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01003420}
3421
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003422static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003423QCBOREncode_AddTB64TextToMapN(QCBOREncodeContext *pMe,
3424 int64_t nLabel,
3425 uint8_t uTagRequirement,
3426 UsefulBufC B64Text)
Michael Eckel5c531332020-03-02 01:35:30 +01003427{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003428 QCBOREncode_AddInt64(pMe, nLabel);
3429 QCBOREncode_AddTB64Text(pMe, uTagRequirement, B64Text);
3430}
3431
3432static inline void
3433QCBOREncode_AddB64Text(QCBOREncodeContext *pMe, UsefulBufC B64Text)
3434{
3435 QCBOREncode_AddTB64Text(pMe, QCBOR_ENCODE_AS_TAG, B64Text);
3436}
3437
3438static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003439QCBOREncode_AddB64TextToMap(QCBOREncodeContext *pMe,
3440 const char *szLabel,
3441 UsefulBufC B64Text)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003442{
3443 QCBOREncode_AddTB64TextToMapSZ(pMe, szLabel, QCBOR_ENCODE_AS_TAG, B64Text);
3444}
3445
3446static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003447QCBOREncode_AddB64TextToMapN(QCBOREncodeContext *pMe,
3448 int64_t nLabel,
3449 UsefulBufC B64Text)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003450{
3451 QCBOREncode_AddTB64TextToMapN(pMe, nLabel, QCBOR_ENCODE_AS_TAG, B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01003452}
3453
3454
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003455
3456static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003457QCBOREncode_AddTB64URLText(QCBOREncodeContext *pMe,
3458 uint8_t uTagRequirement,
3459 UsefulBufC B64Text)
Michael Eckel5c531332020-03-02 01:35:30 +01003460{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003461 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3462 QCBOREncode_AddTag(pMe, CBOR_TAG_B64URL);
3463 }
3464 QCBOREncode_AddText(pMe, B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01003465}
3466
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003467static inline void
3468QCBOREncode_AddTB64URLTextToMapSZ(QCBOREncodeContext *pMe,
3469 const char *szLabel,
3470 uint8_t uTagRequirement,
3471 UsefulBufC B64Text)
Michael Eckel5c531332020-03-02 01:35:30 +01003472{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003473 QCBOREncode_AddSZString(pMe, szLabel);
3474 QCBOREncode_AddTB64URLText(pMe, uTagRequirement, B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01003475}
3476
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003477static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003478QCBOREncode_AddTB64URLTextToMapN(QCBOREncodeContext *pMe,
3479 int64_t nLabel,
3480 uint8_t uTagRequirement,
3481 UsefulBufC B64Text)
Michael Eckel5c531332020-03-02 01:35:30 +01003482{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003483 QCBOREncode_AddInt64(pMe, nLabel);
3484 QCBOREncode_AddTB64URLText(pMe, uTagRequirement, B64Text);
3485}
3486
3487static inline void
3488QCBOREncode_AddB64URLText(QCBOREncodeContext *pMe, UsefulBufC B64Text)
3489{
3490 QCBOREncode_AddTB64URLText(pMe, QCBOR_ENCODE_AS_TAG, B64Text);
3491}
3492
3493static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003494QCBOREncode_AddB64URLTextToMap(QCBOREncodeContext *pMe,
3495 const char *szLabel,
3496 UsefulBufC B64Text)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003497{
Laurence Lundblade3eead482023-12-16 20:53:22 -07003498 QCBOREncode_AddTB64URLTextToMapSZ(pMe,
3499 szLabel,
3500 QCBOR_ENCODE_AS_TAG,
3501 B64Text);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003502}
3503
3504static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003505QCBOREncode_AddB64URLTextToMapN(QCBOREncodeContext *pMe,
3506 int64_t nLabel,
3507 UsefulBufC B64Text)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003508{
3509 QCBOREncode_AddTB64URLTextToMapN(pMe, nLabel, QCBOR_ENCODE_AS_TAG, B64Text);
Michael Eckel5c531332020-03-02 01:35:30 +01003510}
3511
3512
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003513
3514static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003515QCBOREncode_AddTRegex(QCBOREncodeContext *pMe,
3516 uint8_t uTagRequirement,
3517 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01003518{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003519 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3520 QCBOREncode_AddTag(pMe, CBOR_TAG_REGEX);
3521 }
3522 QCBOREncode_AddText(pMe, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01003523}
3524
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003525static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003526QCBOREncode_AddTRegexToMapSZ(QCBOREncodeContext *pMe,
3527 const char *szLabel,
3528 uint8_t uTagRequirement,
3529 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01003530{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003531 QCBOREncode_AddSZString(pMe, szLabel);
3532 QCBOREncode_AddTRegex(pMe, uTagRequirement, Bytes);
Michael Eckel5c531332020-03-02 01:35:30 +01003533}
3534
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003535static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003536QCBOREncode_AddTRegexToMapN(QCBOREncodeContext *pMe,
3537 int64_t nLabel,
3538 uint8_t uTagRequirement,
3539 UsefulBufC Bytes)
Michael Eckel5c531332020-03-02 01:35:30 +01003540{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003541 QCBOREncode_AddInt64(pMe, nLabel);
3542 QCBOREncode_AddTRegex(pMe, uTagRequirement, Bytes);
3543}
3544
3545static inline void
3546QCBOREncode_AddRegex(QCBOREncodeContext *pMe, UsefulBufC Bytes)
3547{
3548 QCBOREncode_AddTRegex(pMe, QCBOR_ENCODE_AS_TAG, Bytes);
3549}
3550
3551static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003552QCBOREncode_AddRegexToMap(QCBOREncodeContext *pMe,
3553 const char *szLabel,
3554 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003555{
3556 QCBOREncode_AddTRegexToMapSZ(pMe, szLabel, QCBOR_ENCODE_AS_TAG, Bytes);
3557}
3558
3559static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003560QCBOREncode_AddRegexToMapN(QCBOREncodeContext *pMe,
3561 int64_t nLabel,
3562 UsefulBufC Bytes)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003563{
3564 QCBOREncode_AddTRegexToMapN(pMe, nLabel, QCBOR_ENCODE_AS_TAG, Bytes);
3565
Michael Eckel5c531332020-03-02 01:35:30 +01003566}
3567
3568
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003569static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003570QCBOREncode_AddTMIMEData(QCBOREncodeContext *pMe,
3571 uint8_t uTagRequirement,
3572 UsefulBufC MIMEData)
Michael Eckel5c531332020-03-02 01:35:30 +01003573{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003574 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
Laurence Lundblade4982f412020-09-18 23:02:18 -07003575 QCBOREncode_AddTag(pMe, CBOR_TAG_BINARY_MIME);
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003576 }
Laurence Lundblade4982f412020-09-18 23:02:18 -07003577 QCBOREncode_AddBytes(pMe, MIMEData);
Michael Eckel5c531332020-03-02 01:35:30 +01003578}
3579
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003580static inline void
3581QCBOREncode_AddTMIMEDataToMapSZ(QCBOREncodeContext *pMe,
3582 const char *szLabel,
3583 uint8_t uTagRequirement,
3584 UsefulBufC MIMEData)
Michael Eckel5c531332020-03-02 01:35:30 +01003585{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003586 QCBOREncode_AddSZString(pMe, szLabel);
3587 QCBOREncode_AddTMIMEData(pMe, uTagRequirement, MIMEData);
Michael Eckel5c531332020-03-02 01:35:30 +01003588}
3589
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003590static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003591QCBOREncode_AddTMIMEDataToMapN(QCBOREncodeContext *pMe,
3592 int64_t nLabel,
3593 uint8_t uTagRequirement,
3594 UsefulBufC MIMEData)
Michael Eckel5c531332020-03-02 01:35:30 +01003595{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003596 QCBOREncode_AddInt64(pMe, nLabel);
3597 QCBOREncode_AddTMIMEData(pMe, uTagRequirement, MIMEData);
3598}
3599
3600static inline void
3601QCBOREncode_AddMIMEData(QCBOREncodeContext *pMe, UsefulBufC MIMEData)
3602{
3603 QCBOREncode_AddTMIMEData(pMe, QCBOR_ENCODE_AS_TAG, MIMEData);
3604}
3605
3606static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003607QCBOREncode_AddMIMEDataToMap(QCBOREncodeContext *pMe,
3608 const char *szLabel,
3609 UsefulBufC MIMEData)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003610{
3611 QCBOREncode_AddTMIMEDataToMapSZ(pMe, szLabel, QCBOR_ENCODE_AS_TAG, MIMEData);
3612}
3613
3614static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003615QCBOREncode_AddMIMEDataToMapN(QCBOREncodeContext *pMe,
3616 int64_t nLabel,
3617 UsefulBufC MIMEData)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003618{
3619 QCBOREncode_AddTMIMEDataToMapN(pMe, nLabel, QCBOR_ENCODE_AS_TAG, MIMEData);
Michael Eckel5c531332020-03-02 01:35:30 +01003620}
3621
3622
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003623static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003624QCBOREncode_AddTDateString(QCBOREncodeContext *pMe,
3625 uint8_t uTagRequirement,
3626 const char *szDate)
Michael Eckel5c531332020-03-02 01:35:30 +01003627{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003628 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3629 QCBOREncode_AddTag(pMe, CBOR_TAG_DATE_STRING);
3630 }
3631 QCBOREncode_AddSZString(pMe, szDate);
Michael Eckel5c531332020-03-02 01:35:30 +01003632}
3633
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003634static inline void
3635QCBOREncode_AddTDateStringToMapSZ(QCBOREncodeContext *pMe,
3636 const char *szLabel,
3637 uint8_t uTagRequirement,
3638 const char *szDate)
Michael Eckel5c531332020-03-02 01:35:30 +01003639{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003640 QCBOREncode_AddSZString(pMe, szLabel);
3641 QCBOREncode_AddTDateString(pMe, uTagRequirement, szDate);
Michael Eckel5c531332020-03-02 01:35:30 +01003642}
3643
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003644static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003645QCBOREncode_AddTDateStringToMapN(QCBOREncodeContext *pMe,
3646 int64_t nLabel,
3647 uint8_t uTagRequirement,
3648 const char *szDate)
Michael Eckel5c531332020-03-02 01:35:30 +01003649{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003650 QCBOREncode_AddInt64(pMe, nLabel);
3651 QCBOREncode_AddTDateString(pMe, uTagRequirement, szDate);
3652}
3653
3654static inline void
3655QCBOREncode_AddDateString(QCBOREncodeContext *pMe, const char *szDate)
3656{
3657 QCBOREncode_AddTDateString(pMe, QCBOR_ENCODE_AS_TAG, szDate);
3658}
3659
3660static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003661QCBOREncode_AddDateStringToMap(QCBOREncodeContext *pMe,
3662 const char *szLabel,
3663 const char *szDate)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003664{
3665 QCBOREncode_AddTDateStringToMapSZ(pMe, szLabel, QCBOR_ENCODE_AS_TAG, szDate);
3666}
3667
3668static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003669QCBOREncode_AddDateStringToMapN(QCBOREncodeContext *pMe,
3670 int64_t nLabel,
3671 const char *szDate)
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003672{
3673 QCBOREncode_AddTDateStringToMapN(pMe, nLabel, QCBOR_ENCODE_AS_TAG, szDate);
Michael Eckel5c531332020-03-02 01:35:30 +01003674}
3675
3676
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003677static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003678QCBOREncode_AddTDaysString(QCBOREncodeContext *pMe,
3679 uint8_t uTagRequirement,
3680 const char *szDate)
Laurence Lundblade46d63e92021-05-13 11:37:10 -07003681{
3682 if(uTagRequirement == QCBOR_ENCODE_AS_TAG) {
3683 QCBOREncode_AddTag(pMe, CBOR_TAG_DAYS_STRING);
3684 }
3685 QCBOREncode_AddSZString(pMe, szDate);
3686}
3687
3688static inline void
3689QCBOREncode_AddTDaysStringToMapSZ(QCBOREncodeContext *pMe,
3690 const char *szLabel,
3691 uint8_t uTagRequirement,
3692 const char *szDate)
3693{
3694 QCBOREncode_AddSZString(pMe, szLabel);
3695 QCBOREncode_AddTDaysString(pMe, uTagRequirement, szDate);
3696}
3697
3698static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003699QCBOREncode_AddTDaysStringToMapN(QCBOREncodeContext *pMe,
3700 int64_t nLabel,
3701 uint8_t uTagRequirement,
3702 const char *szDate)
Laurence Lundblade46d63e92021-05-13 11:37:10 -07003703{
3704 QCBOREncode_AddInt64(pMe, nLabel);
3705 QCBOREncode_AddTDaysString(pMe, uTagRequirement, szDate);
3706}
3707
3708
3709
3710static inline void
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003711QCBOREncode_AddSimple(QCBOREncodeContext *pMe, uint64_t uNum)
Michael Eckel5c531332020-03-02 01:35:30 +01003712{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003713 QCBOREncode_AddType7(pMe, 0, uNum);
Michael Eckel5c531332020-03-02 01:35:30 +01003714}
3715
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003716static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003717QCBOREncode_AddSimpleToMap(QCBOREncodeContext *pMe,
3718 const char *szLabel,
3719 uint8_t uSimple)
Michael Eckel5c531332020-03-02 01:35:30 +01003720{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003721 QCBOREncode_AddSZString(pMe, szLabel);
3722 QCBOREncode_AddSimple(pMe, uSimple);
Michael Eckel5c531332020-03-02 01:35:30 +01003723}
3724
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003725static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003726QCBOREncode_AddSimpleToMapN(QCBOREncodeContext *pMe,
3727 int nLabel,
3728 uint8_t uSimple)
Michael Eckel5c531332020-03-02 01:35:30 +01003729{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003730 QCBOREncode_AddInt64(pMe, nLabel);
3731 QCBOREncode_AddSimple(pMe, uSimple);
Michael Eckel5c531332020-03-02 01:35:30 +01003732}
3733
3734
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003735static inline void
3736QCBOREncode_AddBool(QCBOREncodeContext *pMe, bool b)
Michael Eckel5c531332020-03-02 01:35:30 +01003737{
3738 uint8_t uSimple = CBOR_SIMPLEV_FALSE;
3739 if(b) {
3740 uSimple = CBOR_SIMPLEV_TRUE;
3741 }
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003742 QCBOREncode_AddSimple(pMe, uSimple);
Michael Eckel5c531332020-03-02 01:35:30 +01003743}
3744
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003745static inline void
3746QCBOREncode_AddBoolToMap(QCBOREncodeContext *pMe, const char *szLabel, bool b)
Michael Eckel5c531332020-03-02 01:35:30 +01003747{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003748 QCBOREncode_AddSZString(pMe, szLabel);
3749 QCBOREncode_AddBool(pMe, b);
Michael Eckel5c531332020-03-02 01:35:30 +01003750}
3751
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003752static inline void
3753QCBOREncode_AddBoolToMapN(QCBOREncodeContext *pMe, int64_t nLabel, bool b)
Michael Eckel5c531332020-03-02 01:35:30 +01003754{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003755 QCBOREncode_AddInt64(pMe, nLabel);
3756 QCBOREncode_AddBool(pMe, b);
Michael Eckel5c531332020-03-02 01:35:30 +01003757}
3758
3759
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003760static inline void
3761QCBOREncode_AddNULL(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003762{
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003763 QCBOREncode_AddSimple(pMe, CBOR_SIMPLEV_NULL);
Michael Eckel5c531332020-03-02 01:35:30 +01003764}
3765
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003766static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003767QCBOREncode_AddNULLToMap(QCBOREncodeContext *pMe, const char *szLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003768{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003769 QCBOREncode_AddSZString(pMe, szLabel);
3770 QCBOREncode_AddNULL(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003771}
3772
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003773static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003774QCBOREncode_AddNULLToMapN(QCBOREncodeContext *pMe, int64_t nLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003775{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003776 QCBOREncode_AddInt64(pMe, nLabel);
3777 QCBOREncode_AddNULL(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003778}
3779
3780
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003781static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003782QCBOREncode_AddUndef(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003783{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003784 QCBOREncode_AddSimple(pMe, CBOR_SIMPLEV_UNDEF);
Michael Eckel5c531332020-03-02 01:35:30 +01003785}
3786
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003787static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003788QCBOREncode_AddUndefToMap(QCBOREncodeContext *pMe, const char *szLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003789{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003790 QCBOREncode_AddSZString(pMe, szLabel);
3791 QCBOREncode_AddUndef(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003792}
3793
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003794static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003795QCBOREncode_AddUndefToMapN(QCBOREncodeContext *pMe, int64_t nLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003796{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003797 QCBOREncode_AddInt64(pMe, nLabel);
3798 QCBOREncode_AddUndef(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003799}
3800
3801
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003802static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003803QCBOREncode_OpenArray(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003804{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003805 QCBOREncode_OpenMapOrArray(pMe, CBOR_MAJOR_TYPE_ARRAY);
Michael Eckel5c531332020-03-02 01:35:30 +01003806}
3807
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003808static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003809QCBOREncode_OpenArrayInMap(QCBOREncodeContext *pMe, const char *szLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003810{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003811 QCBOREncode_AddSZString(pMe, szLabel);
3812 QCBOREncode_OpenArray(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003813}
3814
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003815static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003816QCBOREncode_OpenArrayInMapN(QCBOREncodeContext *pMe, int64_t nLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003817{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003818 QCBOREncode_AddInt64(pMe, nLabel);
3819 QCBOREncode_OpenArray(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003820}
3821
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003822static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003823QCBOREncode_CloseArray(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003824{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003825 QCBOREncode_CloseMapOrArray(pMe, CBOR_MAJOR_TYPE_ARRAY);
Michael Eckel5c531332020-03-02 01:35:30 +01003826}
3827
3828
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003829static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003830QCBOREncode_OpenMap(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003831{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003832 QCBOREncode_OpenMapOrArray(pMe, CBOR_MAJOR_TYPE_MAP);
Michael Eckel5c531332020-03-02 01:35:30 +01003833}
3834
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003835static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003836QCBOREncode_OpenMapInMap(QCBOREncodeContext *pMe, const char *szLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003837{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003838 QCBOREncode_AddSZString(pMe, szLabel);
3839 QCBOREncode_OpenMap(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003840}
3841
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003842static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003843QCBOREncode_OpenMapInMapN(QCBOREncodeContext *pMe, int64_t nLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003844{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003845 QCBOREncode_AddInt64(pMe, nLabel);
3846 QCBOREncode_OpenMap(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003847}
3848
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003849static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003850QCBOREncode_CloseMap(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003851{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003852 QCBOREncode_CloseMapOrArray(pMe, CBOR_MAJOR_TYPE_MAP);
Michael Eckel5c531332020-03-02 01:35:30 +01003853}
3854
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003855static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003856QCBOREncode_OpenArrayIndefiniteLength(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003857{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003858 QCBOREncode_OpenMapOrArrayIndefiniteLength(pMe, CBOR_MAJOR_NONE_TYPE_ARRAY_INDEFINITE_LEN);
Michael Eckel5c531332020-03-02 01:35:30 +01003859}
3860
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003861static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003862QCBOREncode_OpenArrayIndefiniteLengthInMap(QCBOREncodeContext *pMe,
3863 const char *szLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003864{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003865 QCBOREncode_AddSZString(pMe, szLabel);
3866 QCBOREncode_OpenArrayIndefiniteLength(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003867}
3868
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003869static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003870QCBOREncode_OpenArrayIndefiniteLengthInMapN(QCBOREncodeContext *pMe,
3871 int64_t nLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003872{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003873 QCBOREncode_AddInt64(pMe, nLabel);
3874 QCBOREncode_OpenArrayIndefiniteLength(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003875}
3876
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003877static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003878QCBOREncode_CloseArrayIndefiniteLength(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003879{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003880 QCBOREncode_CloseMapOrArrayIndefiniteLength(pMe, CBOR_MAJOR_NONE_TYPE_ARRAY_INDEFINITE_LEN);
Michael Eckel5c531332020-03-02 01:35:30 +01003881}
3882
3883
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003884static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003885QCBOREncode_OpenMapIndefiniteLength(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003886{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003887 QCBOREncode_OpenMapOrArrayIndefiniteLength(pMe, CBOR_MAJOR_NONE_TYPE_MAP_INDEFINITE_LEN);
Michael Eckel5c531332020-03-02 01:35:30 +01003888}
3889
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003890static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003891QCBOREncode_OpenMapIndefiniteLengthInMap(QCBOREncodeContext *pMe,
3892 const char *szLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003893{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003894 QCBOREncode_AddSZString(pMe, szLabel);
3895 QCBOREncode_OpenMapIndefiniteLength(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003896}
3897
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003898static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003899QCBOREncode_OpenMapIndefiniteLengthInMapN(QCBOREncodeContext *pMe,
3900 int64_t nLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003901{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003902 QCBOREncode_AddInt64(pMe, nLabel);
3903 QCBOREncode_OpenMapIndefiniteLength(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003904}
3905
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003906static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003907QCBOREncode_CloseMapIndefiniteLength(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003908{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003909 QCBOREncode_CloseMapOrArrayIndefiniteLength(pMe, CBOR_MAJOR_NONE_TYPE_MAP_INDEFINITE_LEN);
Michael Eckel5c531332020-03-02 01:35:30 +01003910}
3911
3912
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003913static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003914QCBOREncode_BstrWrap(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003915{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003916 QCBOREncode_OpenMapOrArray(pMe, CBOR_MAJOR_TYPE_BYTE_STRING);
Michael Eckel5c531332020-03-02 01:35:30 +01003917}
3918
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003919static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003920QCBOREncode_BstrWrapInMap(QCBOREncodeContext *pMe, const char *szLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003921{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003922 QCBOREncode_AddSZString(pMe, szLabel);
3923 QCBOREncode_BstrWrap(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003924}
3925
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003926static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003927QCBOREncode_BstrWrapInMapN(QCBOREncodeContext *pMe, int64_t nLabel)
Michael Eckel5c531332020-03-02 01:35:30 +01003928{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003929 QCBOREncode_AddInt64(pMe, nLabel);
3930 QCBOREncode_BstrWrap(pMe);
Michael Eckel5c531332020-03-02 01:35:30 +01003931}
3932
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003933static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003934QCBOREncode_CloseBstrWrap(QCBOREncodeContext *pMe, UsefulBufC *pWrappedCBOR)
Michael Eckel5c531332020-03-02 01:35:30 +01003935{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003936 QCBOREncode_CloseBstrWrap2(pMe, true, pWrappedCBOR);
Michael Eckel5c531332020-03-02 01:35:30 +01003937}
3938
3939
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003940static inline void
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003941QCBOREncode_AddEncoded(QCBOREncodeContext *pMe, UsefulBufC Encoded)
Michael Eckel5c531332020-03-02 01:35:30 +01003942{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003943 QCBOREncode_AddBuffer(pMe, CBOR_MAJOR_NONE_TYPE_RAW, Encoded);
Michael Eckel5c531332020-03-02 01:35:30 +01003944}
3945
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003946static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003947QCBOREncode_AddEncodedToMap(QCBOREncodeContext *pMe,
3948 const char *szLabel,
3949 UsefulBufC Encoded)
Michael Eckel5c531332020-03-02 01:35:30 +01003950{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003951 QCBOREncode_AddSZString(pMe, szLabel);
3952 QCBOREncode_AddEncoded(pMe, Encoded);
Michael Eckel5c531332020-03-02 01:35:30 +01003953}
3954
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003955static inline void
Laurence Lundblade3eead482023-12-16 20:53:22 -07003956QCBOREncode_AddEncodedToMapN(QCBOREncodeContext *pMe,
3957 int64_t nLabel,
3958 UsefulBufC Encoded)
Michael Eckel5c531332020-03-02 01:35:30 +01003959{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003960 QCBOREncode_AddInt64(pMe, nLabel);
3961 QCBOREncode_AddEncoded(pMe, Encoded);
Michael Eckel5c531332020-03-02 01:35:30 +01003962}
3963
3964
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003965static inline int
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003966QCBOREncode_IsBufferNULL(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003967{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003968 return UsefulOutBuf_IsBufferNULL(&(pMe->OutBuf));
Michael Eckel5c531332020-03-02 01:35:30 +01003969}
3970
Laurence Lundbladeae66d3f2020-09-14 18:12:08 -07003971static inline QCBORError
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003972QCBOREncode_GetErrorState(QCBOREncodeContext *pMe)
Michael Eckel5c531332020-03-02 01:35:30 +01003973{
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003974 if(UsefulOutBuf_GetError(&(pMe->OutBuf))) {
Michael Eckel5c531332020-03-02 01:35:30 +01003975 // Items didn't fit in the buffer.
3976 // This check catches this condition for all the appends and inserts
3977 // so checks aren't needed when the appends and inserts are performed.
3978 // And of course UsefulBuf will never overrun the input buffer given
3979 // to it. No complex analysis of the error handling in this file is
3980 // needed to know that is true. Just read the UsefulBuf code.
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003981 pMe->uError = QCBOR_ERR_BUFFER_TOO_SMALL;
Michael Eckel5c531332020-03-02 01:35:30 +01003982 // QCBOR_ERR_BUFFER_TOO_SMALL masks other errors, but that is
3983 // OK. Once the caller fixes this, they'll be unmasked.
3984 }
3985
Laurence Lundblade6416a0f2020-09-19 23:26:34 -07003986 return (QCBORError)pMe->uError;
Michael Eckel5c531332020-03-02 01:35:30 +01003987}
3988
3989
Laurence Lundblade45d5e482020-09-15 21:15:15 -07003990/* ========================================================================
3991 END OF PRIVATE INLINE IMPLEMENTATION
3992 ======================================================================== */
Michael Eckel5c531332020-03-02 01:35:30 +01003993
3994#ifdef __cplusplus
3995}
3996#endif
3997
Laurence Lundblade844bb5c2020-03-01 17:27:25 -08003998#endif /* qcbor_encode_h */