blob: 50cd9ef6de708451e647cb39218f19298a14fae8 [file] [log] [blame]
Ivan Kluchnikov487a1412011-12-21 13:17:53 +03001/* csn1.h
2 * Declarations and types for CSN1 dissection in wireshark.
3 * By Vincent Helfre, based on original code by Jari Sassi
4 * with the gracious authorization of STE
5 * Copyright (c) 2011 ST-Ericsson
6 *
7 * $Id: packet-csn1.h 36306 2011-03-24 09:20:14Z etxrab $
8 *
9 * Wireshark - Network traffic analyzer
10 * By Gerald Combs <gerald@wireshark.org>
11 * Copyright 1998 Gerald Combs
12 *
13 * This program is free software; you can redistribute it and/or
14 * modify it under the terms of the GNU General Public License
15 * as published by the Free Software Foundation; either version 2
16 * of the License, or (at your option) any later version.
17 *
18 * This program is distributed in the hope that it will be useful,
19 * but WITHOUT ANY WARRANTY; without even the implied warranty of
20 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21 * GNU General Public License for more details.
22 *
23 * You should have received a copy of the GNU General Public License
24 * along with this program; if not, write to the Free Software
25 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
26 */
27
Max910a3872018-01-30 13:29:38 +010028#ifndef _PACKET_CSN1_H_
29#define _PACKET_CSN1_H_
30
Alexander Couzensccde5c92017-02-04 03:10:08 +010031#include <osmocom/core/bitvec.h>
Ivan Kluchnikov487a1412011-12-21 13:17:53 +030032
33#define MIN(a,b) (((a)<(b))?(a):(b))
34//#define max(a,b) (((a)>(b))?(a):(b))
35
36/* Error codes */
37#define CSN_OK 0
38#define CSN_ERROR_GENERAL -1
39#define CSN_ERROR_DATA_NOT_VALID -2
40#define CSN_ERROR_IN_SCRIPT -3
41#define CSN_ERROR_INVALID_UNION_INDEX -4
42#define CSN_ERROR_NEED_MORE_BITS_TO_UNPACK -5
43#define CSN_ERROR_ILLEGAL_BIT_VALUE -6
44#define CSN_ERROR_INTERNAL -7
45#define CSN_ERROR_STREAM_NOT_SUPPORTED -8
46#define CSN_ERROR_MESSAGE_TOO_LONG -9
47#define CSN_ERROR_ -10
48
49#define FALSE (0)
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +040050#define TRUE (1)
Ivan Kluchnikov487a1412011-12-21 13:17:53 +030051typedef signed int gint32;
52typedef signed short gint16;
53typedef int gint;
Pascal Quantinc5155512020-01-24 17:33:06 +010054typedef unsigned int guint;
Ivan Kluchnikov487a1412011-12-21 13:17:53 +030055typedef gint gboolean;
56typedef unsigned char guint8;
57typedef unsigned short guint16;
58typedef unsigned int guint32;
59typedef unsigned long guint64;
60/* CallBack return status */
61typedef gint16 CSN_CallBackStatus_t;
62
63#define CSNCBS_OK 0
64#define CSNCBS_NOT_OK -10
65#define CSNCBS_NOT_TO_US -11
66#define CSNCBS_NOT_COMPLETE -12
67
68#define CSNCBS_REVISION_LIMIT_STOP -20 /* Stop packing/unpacking - revision limit */
69#define CSNCBS_NOT_SUPPORTED_IE -21 /* Handling of the unpacked IE is not supported by MS-software */
70
71
72
73#ifndef ElementsOf
74#define ElementsOf(array) (sizeof(array) / sizeof(array[0]))
75#endif
Pau Espin Pedrol5b716972020-01-24 17:24:01 +010076typedef void(*void_fn_t)(void);
Ivan Kluchnikov487a1412011-12-21 13:17:53 +030077
78/* Context holding CSN1 parameters */
79typedef struct
80{
81 gint remaining_bits_len; /* IN to an csn stream operation */
82 gint bit_offset; /* IN/OUT to an csn stream operation */
83 gint direction; /* 0 - decode; 1 - encode */
84} csnStream_t;
85
Vadim Yanitskiy39a65052020-01-25 01:24:59 +070086typedef gint16 (*StreamSerializeFcn_t)(csnStream_t* ar, struct bitvec *vector, unsigned *readIndex, void* data);
Ivan Kluchnikov487a1412011-12-21 13:17:53 +030087typedef enum
88{
89 CSN_END = 0,
90 CSN_BIT,
91 CSN_UINT,
92 CSN_TYPE,
93 CSN_CHOICE,
94 CSN_UNION,
95 CSN_UNION_LH,
96 CSN_UINT_ARRAY,
97 CSN_TYPE_ARRAY,
98 CSN_BITMAP, /* Bitmap with constant: <bitmap: bit(64)> */
99 CSN_VARIABLE_BITMAP, /* <N: bit (5)> <bitmap: bit(N + offset)> */
100 CSN_VARIABLE_BITMAP_1, /* <bitmap: bit**> i.e. to the end of message (R99) */
101 CSN_LEFT_ALIGNED_VAR_BMP, /* As variable bitmap but the result is left aligned (R99) */
102 CSN_LEFT_ALIGNED_VAR_BMP_1,/* As above only size is to the end of message (R99) */
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400103 CSN_PADDING_BITS, /* Padding bits fill to the end of the buffer */
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300104 CSN_VARIABLE_ARRAY, /* Array with length specified in parameter: <N: bit(4)> <list: octet(N + offset)> */
105 CSN_VARIABLE_TARRAY, /* Type Array with length specified in parameter: <N: bit(x)> <Type>*N */
106 CSN_VARIABLE_TARRAY_OFFSET,/* As above but with offset. The offset is stored as third parameter of CSN_DESCR (descr.value) */
107 CSN_RECURSIVE_ARRAY, /* Recursive way to specify an array of uint: <list> ::= {1 <number: bit(4) <list>|0}; */
108 CSN_RECURSIVE_TARRAY, /* Recursive way to specify an array of type: <list> ::= {1 <type>} ** 0 ; */
109 CSN_RECURSIVE_TARRAY_1, /* same as above but first element always exist:<list> ::= <type> {1 <type>} ** 0 ; */
110 CSN_RECURSIVE_TARRAY_2, /* same as above but with reversed separators :<lists> ::= <type> { 0 <type> } ** 1 ; */
111 CSN_EXIST,
112 CSN_EXIST_LH,
113 CSN_NEXT_EXIST,
114 CSN_NEXT_EXIST_LH,
115 CSN_NULL,
116 CSN_FIXED,
117 CSN_CALLBACK,
118 CSN_UINT_OFFSET, /* unpack will add offset, inverse pack will subtract offset */
119 CSN_UINT_LH, /* Low High extraction of int */
120 CSN_SERIALIZE,
121 CSN_TRAP_ERROR
122} csn_type_t;
123
124/******************************************************************************************
125 * CSN_DESCR structure:
126 *
127 * type:
128 * This is the CSN type. All existing types are specified in the section above.
129 *
130 * i:
131 * Depending on the contents of the type parameter, the parameter "i" may have following meaning:
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400132 * - specifies the number of bits for the CSN_UINT or CSN_UINT_OR_NULL types
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300133 * - the offset for an array size by which the size is incremented
134 * for the CSN_VAR_ARRAY type
135 * - the length of each element of an array for the CSN_REC_ARRAY type
136 * - the number of the elements in an array for the CSN_TYPE_ARRAY type
137 * - the offset to the variable keeping the number of elements of an array for in the CSN_VAR_TARRAY type
138 * - the number of different data types in a union for the CSN_UNION, CSN_UNION_LH, and for the CSN_CHOICE types
139 * - the length in bits of the fixed number defined for the CSN_FIXED type
140 * - the number of lines to skip in the CSN_DESCR type specified for the CSN_NEXT_EXIST, CSN_NEXT_EXIST_LH,
141 * CSN_NEXT_EXIST_OR_NULL, and CSN_NEXT_EXIST_OR_NULL_LH types
142 * - the number of bits in a bitmap for the CSN_BITMAP type
143 * - the value by which the number of bits in a bitmap has to be incremented or decremented for the
144 * CSN_VAR_BITMAP, CSN_LEFT_VAR_BMP, and CSN_LEFT_BMP_1 types
145 * - the offset to param1 for the CSN_CALLBACK type
146 * - ERRORCODE used by the CSN_ERROR type
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400147 * - the bit-length of the LENGTH field in a CSN_SERIALISE type
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300148 *
149 * descr
150 * This parameter has different meaning depending on the value of the type parameter:
151 * - the offset for the CSN_UINT_OFFSET type
152 * - the number of the elements in an array of the CSN_UINT_ARRAY type
153 * - the offset to the parameter where the size of the array has to be stored for the CSN_REC_ARRAY type
154 * - the address of the internal structure, describing the member type (by means of the CSN_DESCR type) in the
155 * CSN_TYPE_ARRAY, CSN_VAR_TARRAY, and CSN_TYPE types
156 * - the address of the variable of type CSN_ChoiceElement_t describing all elements in the CSN_CHOICE type union
157 * - the offset to the variable where the number of bits has to be or is stored for the CSN_VAR_BITMAP,
158 * CSN_LEFT_VAR_BMP, and CSN_LEFT_BMP_1 types
159 * - the function number (case number) for the CSN_CALLBACK and CSN_CALLBACK_NO_ARGS types
160 * - the free text used by the CSN_TRAP_ERROR
161 *
162 * offset
163 * This is an offset to the _MEMBER parameter counting from the beginning of struct
164 * where the unpacked or packed value shall be stored or fetched. The meaning of the _MEMBER parameter
165 * varies depending on the type which is specified and so is the meaning of the offset parameter.
166 * Some types (and corresponding macros) do not have the _MEMBER parameter and then the offset parameter
167 * is not used or is different from the offset to the _MEMBER.
168 * - the fixed value for the CSN_FIXED type
169 * - an offset to the variable UnionType for CSN_UNION and CSN_UNION_LH types
170 * - an offset to the variable Exist for CSN_NEXT_EXIST and CSN_NEXT_EXIST_LH types
171 * - an offset to param2 in the CSN_CALLBACK type
172 *
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400173 * may_be_null
174 * TRUE: if dissection may be attempted at an offset beyond the length of existing data bits
175 * FALSE: othewise
176 *
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300177 * sz
178 * - is the name of the parameter within the descr where their unpacked or packed value shall be stored or fetched.
179 * This paramater is pointed out by the offset parameter in the same CSN_DESCR variable as the sz.
180 * - the free text used by the CSN_TRAP_ERROR (the same as parameter "i")
181 *
182 * serialize
183 * - stores the size of _MEMBER type in case of the M_TYPE_ARRAY and M_VAR_TARRAY,
184 * - the address of the function which is provided by the M_SERIALIZE type.
185 ******************************************************************************************/
186
187
188typedef struct
189{
190 gint16 type;
191 gint16 i;
192 union
193 {
Pau Espin Pedrol5b716972020-01-24 17:24:01 +0100194 const void* ptr;
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300195 guint32 value;
196 } descr;
Ivan Kluchnikov9b06ff02012-06-15 10:13:30 +0400197 unsigned offset;
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400198 gboolean may_be_null;
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300199 const char* sz;
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100200 guint32 value;
Pau Espin Pedrol5b716972020-01-24 17:24:01 +0100201 void_fn_t aux_fn;
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300202} CSN_DESCR;
203
204typedef struct
205{
206 guint8 bits;
207 guint8 value;
Pau Espin Pedrol7cce8252020-01-24 16:41:14 +0100208 gboolean keep_bits;
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300209 CSN_DESCR descr;
210} CSN_ChoiceElement_t;
211
212void csnStreamInit(csnStream_t* ar,gint BitOffset,gint BitCount);
213
214/******************************************************************************
215* FUNCTION: csnStreamDecoder
216* DESCRIPTION:
217* UnPacks data from bit stream. According to CSN description.
218* ARGS:
219* ar stream will hold the parameters to the pack function
220* ar->remaining_bits_len [IN] Number of bits to unpack [OUT] number of bits left to unpack.
221* ar->bit_offset [IN/OUT] is the current bit where to proceed with the next bit to unpack.
222
223* pDescr CSN description.
224* tvb buffer containing the bit stream to unpack.
225* data unpacked data.
226* ett_csn1 tree
227*
228* RETURNS: int Number of bits left to be unpacked. Negative Error code if failed to unpack all bits
229******************************************************************************/
230
Vadim Yanitskiy39a65052020-01-25 01:24:59 +0700231gint16 csnStreamDecoder(csnStream_t* ar, const CSN_DESCR* pDescr, struct bitvec *vector, unsigned *readIndex, void* data);
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300232
Vadim Yanitskiy39a65052020-01-25 01:24:59 +0700233gint16 csnStreamEncoder(csnStream_t* ar, const CSN_DESCR* pDescr, struct bitvec *vector, unsigned *writeIndex, void* data);
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300234
235/* CSN struct macro's */
236#define CSN_DESCR_BEGIN(_STRUCT)\
237 CSN_DESCR CSNDESCR_##_STRUCT[] = {
238
239#define CSN_DESCR_END(_STRUCT)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100240 {CSN_END, 0, {0}, 0, FALSE, "", 0, NULL} };
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300241
242/******************************************************************************
243 * CSN_ERROR(Par1, Par2, Par3)
244 * May be called at any time when an abort of packing or unpacking of a message
245 * is desired
246 * Par1: C structure name
247 * Par2: free text which will appear in the error handler
248 * Par3: Error code
249 *****************************************************************************/
250#define CSN_ERROR(_STRUCT, _Text, _ERRCODE)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100251 {CSN_TRAP_ERROR, _ERRCODE, {_Text}, 0, FALSE, _Text, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300252
253/******************************************************************************
254 * M_BIT(Par1, Par2)
255 * Defines one bit element in the CSN1 syntax.
256 * Par1: C structure name
257 * Par2: C structure element name
258 *****************************************************************************/
259#define M_BIT(_STRUCT, _MEMBER)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100260 {CSN_BIT, 0, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400261
262/******************************************************************************
263 * M_BIT_OR_NULL(Par1, Par2)
264 * Similar to the M_BIT except that not only bit 0 or 1 but also the
265 * end of the message may be encountered when looking for the next element in
266 * the message.
267 * Covers the case {null | 0 | 1}
268 *****************************************************************************/
269 #define M_BIT_OR_NULL(_STRUCT, _MEMBER)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100270 {CSN_BIT, 0, {0}, offsetof(_STRUCT, _MEMBER), TRUE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300271
272/******************************************************************************
273 * M_NEXT_EXIST(Par1, Par2, Par3)
Pau Espin Pedrol5b716972020-01-24 17:24:01 +0100274 * Indicates whether the next element or a group of elements defined in the
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300275 * structure is present or not.
276 * Par1: C structure name
277 * Par2: C structure element name
278 * Par3: number of lines to skip in the CSN_DESCR type specified if the
279 * element(s) does not exist
280 *****************************************************************************/
281#define M_NEXT_EXIST(_STRUCT, _MEMBER, _NoOfExisting)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100282 {CSN_NEXT_EXIST, _NoOfExisting, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300283
284/******************************************************************************
285 * M_NEXT_EXIST_LH(Par1, Par2, Par3)
286 * similar to the M_NEXT_EXIST except that instead of bit 0/1 which is fetched
287 * from the message in order to find out whether the next element/elements are
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100288 * present in the message, the logical operation XOR with the background
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300289 * pattern 0x2B is performed on the read bit before the decision is made.
290 *****************************************************************************/
291#define M_NEXT_EXIST_LH(_STRUCT, _MEMBER, _NoOfExisting)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100292 {CSN_NEXT_EXIST_LH, _NoOfExisting, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300293
294/******************************************************************************
295 * M_NEXT_EXIST_OR_NULL(Par1, Par2, Par3)
296 * Similar to the M_NEXT_EXIST except that not only bit 0 or 1 but also the end
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100297 * of the message may be encountered when looking for the next element in the
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300298 * message.
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100299 * Covers the case {null | 0 | 1 < IE >}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300300 *****************************************************************************/
301#define M_NEXT_EXIST_OR_NULL(_STRUCT, _MEMBER, _NoOfExisting)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100302 {CSN_NEXT_EXIST, _NoOfExisting, {0}, offsetof(_STRUCT, _MEMBER), TRUE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300303
304/******************************************************************************
305 * M_NEXT_EXIST_OR_NULL_LH(Par1, Par2, Par3)
306 * Similar to the M_NEXT_EXIST_LH except that not only bit 0 or 1 but also the
307 * end of the message may be encountered when looking for the next element in
308 * the message.
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100309 * Covers the case {null | L | H < IE >}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300310 *****************************************************************************/
311#define M_NEXT_EXIST_OR_NULL_LH(_STRUCT, _MEMBER, _NoOfExisting)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100312 {CSN_NEXT_EXIST_LH, _NoOfExisting, {(void*)1}, offsetof(_STRUCT, _MEMBER), TRUE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300313
314/******************************************************************************
315 * M_UINT(Par1, Par2, Par3)
316 * Defines an integer number.
317 * Par1: C structure name
318 * Par2: C structure element name
319 * Par3: number of bits used to code the element (between 1 and 32)
320 *****************************************************************************/
321#define M_UINT(_STRUCT, _MEMBER, _BITS)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100322 {CSN_UINT, _BITS, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400323
324 /******************************************************************************
325 * M_UINT_OR_NULL(Par1, Par2, Par3)
326 * Similar to the M_UINT except that not only the request set of bits but also the
327 * end of the message may be encountered when looking for the next element in
328 * the message.
329 * Covers the case {null | 0 | 1 < IE >}
330 *****************************************************************************/
331 #define M_UINT_OR_NULL(_STRUCT, _MEMBER, _BITS)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100332 {CSN_UINT, _BITS, {0}, offsetof(_STRUCT, _MEMBER), TRUE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300333
334/******************************************************************************
335 * M_UINT(Par1, Par2, Par3)
336 * This macro has the same functionality as M_UINT except that in addition the
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100337 * logical "exclusive or" operation with the background value "0x2B" is
338 * performed before the final value of the integer number is delivered from the
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300339 * received CSN.1 message
340 *****************************************************************************/
341#define M_UINT_LH(_STRUCT, _MEMBER, _BITS)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100342 {CSN_UINT_LH, _BITS, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300343
344/******************************************************************************
345 * M_UINT_OFFSET(Par1, Par2, Par3, Par4)
346 * Defines an integer number.
347 * Par1: C structure name
348 * Par2: C structure element name
349 * Par3: number of bits used to code the element (between 1 and 32)
350 * Par4: value added to the returned integer (offset)
351 *****************************************************************************/
352#define M_UINT_OFFSET(_STRUCT, _MEMBER, _BITS, _OFFSET)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100353 {CSN_UINT_OFFSET, _BITS, {(void*)_OFFSET}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300354
355/******************************************************************************
356 * M_UINT_ARRAY(Par1, Par2, Par3, Par4)
357 * Defines an array of integer numbers. The size of the array is fixed.
358 * Par1: C structure name
359 * Par2: C structure element name
360 * Par3: number of bits used to code the each integer element (between 1 and 32)
361 * Par4: number of elements in the array (fixed integer value)
362 *****************************************************************************/
363#define M_UINT_ARRAY(_STRUCT, _MEMBER, _BITS, _ElementCount)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100364 {CSN_UINT_ARRAY, _BITS, {(void*)_ElementCount}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300365
366/******************************************************************************
367 * M_VAR_UINT_ARRAY(Par1, Par2, Par3, Par4)
368 * Defines an array of integer numbers. The size of the array is variable.
369 * Par1: C structure name
370 * Par2: C structure element name
371 * Par3: number of bits used to code the each integer element (between 1 and 32)
372 * Par4: number of elements in the array supplied by reference to the
373 * structure member holding the length value
374 *****************************************************************************/
375#define M_VAR_UINT_ARRAY(_STRUCT, _MEMBER, _BITS, _ElementCountField)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100376 {CSN_UINT_ARRAY, _BITS, {(void*)offsetof(_STRUCT, _ElementCountField)}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 1, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300377
378/******************************************************************************
379 * M_VAR_ARRAY(Par1, Par2, Par3, Par4)
380 * Defines an array of 8 bit large integer numbers. The size of the array is variable.
381 * Par1: C structure name
382 * Par2: C structure element name
383 * Par3: name of the structure member holding the size of the array
384 * Par4: offset that is added to the Par3 to get the actual size of the array
385 *****************************************************************************/
386#define M_VAR_ARRAY(_STRUCT, _MEMBER, _ElementCountField, _OFFSET)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100387 {CSN_VARIABLE_ARRAY, _OFFSET, {(void*)offsetof(_STRUCT, _ElementCountField)}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300388
389/******************************************************************************
390 * M_VAR_TARRAY(Par1, Par2, Par3, Par4)
391 * Similar to M_TYPE_ARRAY except that the size of the array is variable.
392 * Par1: C structure name
393 * Par2: C structure element name
394 * Par3: the type of each element of the array
395 * Par4: name of the structure member holding the size of the array
396 *****************************************************************************/
397#define M_VAR_TARRAY(_STRUCT, _MEMBER, _MEMBER_TYPE, _ElementCountField)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100398 {CSN_VARIABLE_TARRAY, offsetof(_STRUCT, _ElementCountField), {(const void*)CSNDESCR_##_MEMBER_TYPE}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, sizeof(_MEMBER_TYPE), NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300399
400/******************************************************************************
401 * M_VAR_TARRAY_OFFSET(Par1, Par2, Par3, Par4)
402 * Same as M_VAR_TARRAY with offset
403 *****************************************************************************/
404#define M_VAR_TARRAY_OFFSET(_STRUCT, _MEMBER, _MEMBER_TYPE, _ElementCountField)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100405 {CSN_VARIABLE_TARRAY_OFFSET, offsetof(_STRUCT, _ElementCountField), {(const void*)CSNDESCR_##_MEMBER_TYPE}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, sizeof(_MEMBER_TYPE), NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300406
407/******************************************************************************
408 * M_REC_ARRAY(Par1, Par2, Par3, Par4)
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100409 * similar to the M_VAR_ARRAY. The difference is that the size of the array is
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300410 * not known in advance and it has to be calculated during unpacking. Its value
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100411 * is stored in a variable which belongs to the same structure as the array.
412 * A zero element terminates the array. The CSN.1 syntax describes it
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300413 * recursively as:
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100414 * <array> ::={1 <element> <array>| 0}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300415 *
416 * Par1: C structure name
417 * Par2: C structure element name
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100418 * Par3: name of the structure member where the calculated the size of the
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300419 * array will be stored
420 * Par4: length of each element in bits
421 *****************************************************************************/
422#define M_REC_ARRAY(_STRUCT, _MEMBER, _ElementCountField, _BITS)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100423 {CSN_RECURSIVE_ARRAY, _BITS, {(const void*)offsetof(_STRUCT, _ElementCountField)}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300424
425/******************************************************************************
426 * M_VAR_TYPE_ARRAY(Par1, Par2, Par3, Par4)
427 * Defines an array of structures. The size of the array is variable.
428 * Par1: C structure name
429 * Par2: C structure element name
430 * Par3: name of the structure
431 * Par4: number of elements in the array (fixed integer value)
432 *****************************************************************************/
433#define M_TYPE_ARRAY(_STRUCT, _MEMBER, _MEMBER_TYPE, _ElementCount)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100434 {CSN_TYPE_ARRAY, _ElementCount, {(const void*)CSNDESCR_##_MEMBER_TYPE}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, sizeof(_MEMBER_TYPE), NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300435
436/******************************************************************************
437 * M_REC_TARRAY(Par1, Par2, Par3, Par4)
438 * Defines an recursive array of structures. The size of the array is variable.
439 * <list> ::= {1 <type>} ** 0 ;
440 * Par1: C structure name
441 * Par2: C structure element name
442 * Par3: name of the structure
443 * Par4: will hold the number of element in the array after unpacking
444 *****************************************************************************/
445#define M_REC_TARRAY(_STRUCT, _MEMBER, _MEMBER_TYPE, _ElementCountField)\
Pau Espin Pedrolefad80b2020-03-23 14:35:26 +0100446 {CSN_RECURSIVE_TARRAY, offsetof(_STRUCT, _ElementCountField), {(const void*)CSNDESCR_##_MEMBER_TYPE}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, sizeof(_MEMBER_TYPE), (void_fn_t)ElementsOf(((_STRUCT*)0)->_MEMBER)}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300447
448/******************************************************************************
449 * M_REC_TARRAY1(Par1, Par2, Par3, Par4)
450 * Same as M_REC_TARRAY but first element always exist:
451 * <list> ::= <type> {1 <type>} ** 0 ;
452 *****************************************************************************/
453#define M_REC_TARRAY_1(_STRUCT, _MEMBER, _MEMBER_TYPE, _ElementCountField)\
Pau Espin Pedrolefad80b2020-03-23 14:35:26 +0100454 {CSN_RECURSIVE_TARRAY_1, offsetof(_STRUCT, _ElementCountField), {(const void*)CSNDESCR_##_MEMBER_TYPE}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, sizeof(_MEMBER_TYPE), (void_fn_t)ElementsOf(((_STRUCT*)0)->_MEMBER)}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300455
456/******************************************************************************
457 * M_REC_TARRAY2(Par1, Par2, Par3, Par4)
458 * Same as M_REC_TARRAY but with reversed separators :
459 * <lists> ::= <type> { 0 <type> } ** 1 ;
460 *****************************************************************************/
461#define M_REC_TARRAY_2(_STRUCT, _MEMBER, _MEMBER_TYPE, _ElementCountField)\
Pau Espin Pedrolefad80b2020-03-23 14:35:26 +0100462 {CSN_RECURSIVE_TARRAY_2, offsetof(_STRUCT, _ElementCountField), {(const void*)CSNDESCR_##_MEMBER_TYPE}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, sizeof(_MEMBER_TYPE), (void_fn_t)ElementsOf(((_STRUCT*)0)->_MEMBER)}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300463
464/******************************************************************************
465 * M_TYPE(Par1, Par2, Par3)
466 * Defines a reference to a structure which is described elsewhere
467 * <list> ::= {1 <type>} ** 0 ;
468 * Par1: C structure name
469 * Par2: C structure element name
470 * Par3: type of member
471 *****************************************************************************/
472#define M_TYPE(_STRUCT, _MEMBER, _MEMBER_TYPE)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100473 {CSN_TYPE, 0, {(const void*)CSNDESCR_##_MEMBER_TYPE}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300474
475/******************************************************************************
476 * M_UNION(Par1, Par2)
477 * Informs the CSN.1 library that a union follows and how many possible choices
478 * there are in the union. The actual value of the choice, which points out the
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100479 * chosen element of the union is stored in the uint8 variable and is usually
480 * called UnionType. The elements of the union have to be listed directly after
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300481 * the M_UNION statement.
482 * Par1: C structure name
483 * Par2: number of possible choice in the union
484 *****************************************************************************/
485#define M_UNION(_STRUCT, _COUNT)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100486 {CSN_UNION, _COUNT, {0}, offsetof(_STRUCT, UnionType), FALSE, "UnionType", 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300487
488/******************************************************************************
489 * M_UNION_LH(Par1, Par2)
490 * Same as M_UNION but masked with background value 0x2B
491 *****************************************************************************/
492#define M_UNION_LH(_STRUCT, _COUNT)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100493 {CSN_UNION_LH, _COUNT, {0}, offsetof(_STRUCT, UnionType), FALSE, "UnionType", 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300494
495/******************************************************************************
496 * M_CHOICE(Par1, Par2, Par3, Par4)
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100497 * Similar to the M_UNION. In the M_UNION the selected element of all possible
498 * choices in the union is referred as a sequential numbers, i.e., the first
499 * choice is addressed as choice 0 the second as choice 1, the third as choice
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300500 * 2 and so on, both in the encoded message and in the variable UnionType which
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100501 * is the part of the message. In the CSN_CHOICE case, this rule does not
502 * apply. There is free but predefined mapping of the element of the union and
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300503 * the value which addresses this element.
504 * The value of the address is called a selector.
505 * After unpacking, this value is then converted to the sequential number of the
506 * element in the union and stored in the UnionType variable.
507 * Par1: C structure name
508 * Par2: C structure element name
509 * Par3: address of an array of type CSN_ChoiceElement_t where all possible
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100510 * values of the selector are provided, together with the selector
511 * length expressed in bits and the address of the CSN_DESCR type
512 * where the element is defined. For every element in the union
513 * there is one line in the Choice variable. These lines have to
514 * appear in the _CHOICE in the same order as the elements in the
515 * union. The element of the union selected in the message through
516 * the _CHOICE parameter is after unpacking translated to the
517 * corresponding sequential number of this element and stored in
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300518 * the variable pointed out by the _MEMBER
519 * Par4: number of possible choices in the union
520 *****************************************************************************/
521#define M_CHOICE(_STRUCT, _MEMBER, _CHOICE, _ElementCount)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100522 {CSN_CHOICE, _ElementCount, {(const void*)_CHOICE}, offsetof(_STRUCT, _MEMBER), FALSE, #_CHOICE, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300523
524/******************************************************************************
525 * M_FIXED(Par1, Par2, Par3)
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100526 * Defines a fixed value of type integer which should be fetched from or stored
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300527 * in the message
528 * Par1: C structure name
529 * Par2: gives the length of the fixed number in bits.
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100530 * Par3: the value of the number. If the expected value is not present in
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300531* the message the unpacking procedure is aborted
532 *****************************************************************************/
533#define M_FIXED(_STRUCT, _BITS, _BITVALUE)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100534 {CSN_FIXED, _BITS, {0}, _BITVALUE, FALSE, #_BITVALUE, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300535
536/******************************************************************************
537 * M_SERIALIZE(Par1, Par2, Par3)
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100538 * Allows using a complete free format of data being encoded or decoded.
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400539 * When the M_SERIALIZE is encounted during encoding or decoding of a message
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100540 * the CSNstream program passes the control over to the specified function
541 * together with all necessary parameters about the current position within
542 * the message being unpacked or packed. When transferring of "serialized"
543 * data to or from the message is finished by the function the CSNstream gets
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300544 * back control over the data stream and continues to work with the message.
545 *****************************************************************************/
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400546#define M_SERIALIZE(_STRUCT, _MEMBER, _LENGTH_LEN, _SERIALIZEFCN)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100547 {CSN_SERIALIZE, _LENGTH_LEN, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, (void_fn_t)_SERIALIZEFCN}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300548
549#define M_CALLBACK(_STRUCT, _CSNCALLBACKFCN, _PARAM1, _PARAM2)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100550 {CSN_CALLBACK, offsetof(_STRUCT, _PARAM1), {0}, offsetof(_STRUCT, _PARAM2), FALSE, "CallBack_"#_CSNCALLBACKFCN, 0, (void_fn_t)_CSNCALLBACKFCN}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300551
552/******************************************************************************
553 * M_BITMAP(Par1, Par2, Par3)
Pau Espin Pedrole5e2f742020-03-26 15:14:17 +0100554 * Defines a type which consists of a bitmap. The size of the bitmap in bits
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300555 * is fixed and provided by the parameter Par3
556 * Par1: C structure name
557 * Par2: C structure element name
558 * Par3: length of the bitmap expressed in bits
559 *****************************************************************************/
560#define M_BITMAP(_STRUCT, _MEMBER, _BITS)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100561 {CSN_BITMAP, _BITS, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300562
563/* variable length, right aligned bitmap i.e. _ElementCountField = 11 => 00000111 11111111 */
564#define M_VAR_BITMAP(_STRUCT, _MEMBER, _ElementCountField, _OFFSET)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100565 {CSN_VARIABLE_BITMAP, _OFFSET, {(void*)offsetof(_STRUCT, _ElementCountField)}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300566
567/* variable length, right aligned bitmap filling the rest of message
568 * - when unpacking the _ElementCountField will be set in runtime
569 * - when packing _ElementCountField contains the size of bitmap
570 */
571#define M_VAR_BITMAP_1(_STRUCT, _MEMBER, _ElementCountField, _OFFSET)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100572 {CSN_VARIABLE_BITMAP_1, _OFFSET, {(void*)offsetof(_STRUCT, _ElementCountField)}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300573
574/* variable length, left aligned bitmap i.e. _ElementCountField = 11 => 11111111 11100000 */
575#define M_LEFT_VAR_BMP(_STRUCT, _MEMBER, _ElementCountField, _OFFSET)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100576 {CSN_LEFT_ALIGNED_VAR_BMP, _OFFSET, {(void*)offsetof(_STRUCT, _ElementCountField)}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300577
578/* variable length, left aligned bitmap filling the rest of message
579 *- when unpacking the _ElementCountField will be set in runtime
580 * - when packing _ElementCountField contains the size of bitmap
581 */
582#define M_LEFT_VAR_BMP_1(_STRUCT, _MEMBER, _ElementCountField, _OFFSET)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100583 {CSN_LEFT_ALIGNED_VAR_BMP_1, _OFFSET, {(void*)offsetof(_STRUCT, _ElementCountField)}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov701d9f82012-10-10 19:43:37 +0400584
585/* todo: dissect padding bits looking for unexpected extensions */
586#define M_PADDING_BITS(_STRUCT)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100587 {CSN_PADDING_BITS, 0, {0}, 0, TRUE, "Padding", 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300588
Anders Broman72c102a2020-01-24 14:31:15 +0100589#define M_NULL(_STRUCT, _MEMBER, _SKIP_BITS)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100590 {CSN_NULL, _SKIP_BITS, {0}, offsetof(_STRUCT, _MEMBER), FALSE, #_MEMBER, 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300591
592#define M_THIS_EXIST(_STRUCT)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100593 {CSN_EXIST, 0, {0}, offsetof(_STRUCT, Exist), FALSE, "Exist", 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300594
595#define M_THIS_EXIST_LH(_STRUCT)\
Pau Espin Pedrol900c2e22020-01-24 18:05:00 +0100596 {CSN_EXIST_LH, 0, {0}, offsetof(_STRUCT, Exist), FALSE, "Exist", 0, NULL}
Ivan Kluchnikov487a1412011-12-21 13:17:53 +0300597
598/* return value 0 if ok else discontionue the unpacking */
599typedef gint16 (*CsnCallBackFcn_t)(void* pv ,...);
600
601#define CSNDESCR(_FuncType) CSNDESCR_##_FuncType
602
603#endif /*_PACKET_CSN1_H_*/