ASN compiled code for E2AP v1.1 in kpm e2sm
[sim/e2-interface.git] / e2sim / e2sm_examples / kpm_e2sm / src / ASN1c / UnsuccessfulOutcome.c
1 /*
2  * Generated by asn1c-0.9.29 (http://lionet.info/asn1c)
3  * From ASN.1 module "E2AP-PDU-Descriptions"
4  *      found in "e2ap-v01.01.00.asn"
5  *      `asn1c -pdu=auto -fincludes-quoted -fcompound-names -findirect-choice -fno-include-deps -gen-PER -no-gen-OER -no-gen-example`
6  */
7
8 #include "UnsuccessfulOutcome.h"
9
10 static const long asn_VAL_1_id_RICsubscription = 8;
11 static const long asn_VAL_1_reject = 0;
12 static const long asn_VAL_2_id_RICsubscriptionDelete = 9;
13 static const long asn_VAL_2_reject = 0;
14 static const long asn_VAL_3_id_RICserviceUpdate = 7;
15 static const long asn_VAL_3_reject = 0;
16 static const long asn_VAL_4_id_RICcontrol = 4;
17 static const long asn_VAL_4_reject = 0;
18 static const long asn_VAL_5_id_E2setup = 1;
19 static const long asn_VAL_5_reject = 0;
20 static const long asn_VAL_6_id_E2nodeConfigurationUpdate = 10;
21 static const long asn_VAL_6_reject = 0;
22 static const long asn_VAL_7_id_E2connectionUpdate = 11;
23 static const long asn_VAL_7_reject = 0;
24 static const long asn_VAL_8_id_Reset = 3;
25 static const long asn_VAL_8_reject = 0;
26 static const long asn_VAL_9_id_RICindication = 5;
27 static const long asn_VAL_9_ignore = 1;
28 static const long asn_VAL_10_id_RICserviceQuery = 6;
29 static const long asn_VAL_10_ignore = 1;
30 static const long asn_VAL_11_id_ErrorIndication = 2;
31 static const long asn_VAL_11_ignore = 1;
32 static const asn_ioc_cell_t asn_IOS_E2AP_ELEMENTARY_PROCEDURES_1_rows[] = {
33         { "&InitiatingMessage", aioc__type, &asn_DEF_RICsubscriptionRequest },
34         { "&SuccessfulOutcome", aioc__type, &asn_DEF_RICsubscriptionResponse },
35         { "&UnsuccessfulOutcome", aioc__type, &asn_DEF_RICsubscriptionFailure },
36         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_1_id_RICsubscription },
37         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_1_reject },
38         { "&InitiatingMessage", aioc__type, &asn_DEF_RICsubscriptionDeleteRequest },
39         { "&SuccessfulOutcome", aioc__type, &asn_DEF_RICsubscriptionDeleteResponse },
40         { "&UnsuccessfulOutcome", aioc__type, &asn_DEF_RICsubscriptionDeleteFailure },
41         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_2_id_RICsubscriptionDelete },
42         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_2_reject },
43         { "&InitiatingMessage", aioc__type, &asn_DEF_RICserviceUpdate },
44         { "&SuccessfulOutcome", aioc__type, &asn_DEF_RICserviceUpdateAcknowledge },
45         { "&UnsuccessfulOutcome", aioc__type, &asn_DEF_RICserviceUpdateFailure },
46         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_3_id_RICserviceUpdate },
47         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_3_reject },
48         { "&InitiatingMessage", aioc__type, &asn_DEF_RICcontrolRequest },
49         { "&SuccessfulOutcome", aioc__type, &asn_DEF_RICcontrolAcknowledge },
50         { "&UnsuccessfulOutcome", aioc__type, &asn_DEF_RICcontrolFailure },
51         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_4_id_RICcontrol },
52         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_4_reject },
53         { "&InitiatingMessage", aioc__type, &asn_DEF_E2setupRequest },
54         { "&SuccessfulOutcome", aioc__type, &asn_DEF_E2setupResponse },
55         { "&UnsuccessfulOutcome", aioc__type, &asn_DEF_E2setupFailure },
56         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_5_id_E2setup },
57         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_5_reject },
58         { "&InitiatingMessage", aioc__type, &asn_DEF_E2nodeConfigurationUpdate },
59         { "&SuccessfulOutcome", aioc__type, &asn_DEF_E2nodeConfigurationUpdateAcknowledge },
60         { "&UnsuccessfulOutcome", aioc__type, &asn_DEF_E2nodeConfigurationUpdateFailure },
61         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_6_id_E2nodeConfigurationUpdate },
62         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_6_reject },
63         { "&InitiatingMessage", aioc__type, &asn_DEF_E2connectionUpdate },
64         { "&SuccessfulOutcome", aioc__type, &asn_DEF_E2connectionUpdateAcknowledge },
65         { "&UnsuccessfulOutcome", aioc__type, &asn_DEF_E2connectionUpdateFailure },
66         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_7_id_E2connectionUpdate },
67         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_7_reject },
68         { "&InitiatingMessage", aioc__type, &asn_DEF_ResetRequest },
69         { "&SuccessfulOutcome", aioc__type, &asn_DEF_ResetResponse },
70         { "&UnsuccessfulOutcome",  },
71         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_8_id_Reset },
72         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_8_reject },
73         { "&InitiatingMessage", aioc__type, &asn_DEF_RICindication },
74         { "&SuccessfulOutcome",  },
75         { "&UnsuccessfulOutcome",  },
76         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_9_id_RICindication },
77         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_9_ignore },
78         { "&InitiatingMessage", aioc__type, &asn_DEF_RICserviceQuery },
79         { "&SuccessfulOutcome",  },
80         { "&UnsuccessfulOutcome",  },
81         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_10_id_RICserviceQuery },
82         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_10_ignore },
83         { "&InitiatingMessage", aioc__type, &asn_DEF_ErrorIndication },
84         { "&SuccessfulOutcome",  },
85         { "&UnsuccessfulOutcome",  },
86         { "&procedureCode", aioc__value, &asn_DEF_ProcedureCode, &asn_VAL_11_id_ErrorIndication },
87         { "&criticality", aioc__value, &asn_DEF_Criticality, &asn_VAL_11_ignore }
88 };
89 static const asn_ioc_set_t asn_IOS_E2AP_ELEMENTARY_PROCEDURES_1[] = {
90         { 11, 5, asn_IOS_E2AP_ELEMENTARY_PROCEDURES_1_rows }
91 };
92 static int
93 memb_procedureCode_constraint_1(const asn_TYPE_descriptor_t *td, const void *sptr,
94                         asn_app_constraint_failed_f *ctfailcb, void *app_key) {
95         long value;
96         
97         if(!sptr) {
98                 ASN__CTFAIL(app_key, td, sptr,
99                         "%s: value not given (%s:%d)",
100                         td->name, __FILE__, __LINE__);
101                 return -1;
102         }
103         
104         value = *(const long *)sptr;
105         
106         if((value >= 0 && value <= 255)) {
107                 /* Constraint check succeeded */
108                 return 0;
109         } else {
110                 ASN__CTFAIL(app_key, td, sptr,
111                         "%s: constraint failed (%s:%d)",
112                         td->name, __FILE__, __LINE__);
113                 return -1;
114         }
115 }
116
117 static asn_type_selector_result_t
118 select_UnsuccessfulOutcome_criticality_type(const asn_TYPE_descriptor_t *parent_type, const void *parent_sptr) {
119         asn_type_selector_result_t result = {0, 0};
120         const asn_ioc_set_t *itable = asn_IOS_E2AP_ELEMENTARY_PROCEDURES_1;
121         size_t constraining_column = 3; /* &procedureCode */
122         size_t for_column = 4; /* &criticality */
123         size_t row, presence_index = 0;
124         const long *constraining_value = (const long *)((const char *)parent_sptr + offsetof(struct UnsuccessfulOutcome, procedureCode));
125         
126         for(row=0; row < itable->rows_count; row++) {
127             const asn_ioc_cell_t *constraining_cell = &itable->rows[row * itable->columns_count + constraining_column];
128             const asn_ioc_cell_t *type_cell = &itable->rows[row * itable->columns_count + for_column];
129         
130             if(type_cell->cell_kind == aioc__undefined)
131                 continue;
132         
133             presence_index++;
134             if(constraining_cell->type_descriptor->op->compare_struct(constraining_cell->type_descriptor, constraining_value, constraining_cell->value_sptr) == 0) {
135                 result.type_descriptor = type_cell->type_descriptor;
136                 result.presence_index = presence_index;
137                 break;
138             }
139         }
140         
141         return result;
142 }
143
144 static int
145 memb_criticality_constraint_1(const asn_TYPE_descriptor_t *td, const void *sptr,
146                         asn_app_constraint_failed_f *ctfailcb, void *app_key) {
147         
148         if(!sptr) {
149                 ASN__CTFAIL(app_key, td, sptr,
150                         "%s: value not given (%s:%d)",
151                         td->name, __FILE__, __LINE__);
152                 return -1;
153         }
154         
155         
156         if(1 /* No applicable constraints whatsoever */) {
157                 /* Nothing is here. See below */
158         }
159         
160         return td->encoding_constraints.general_constraints(td, sptr, ctfailcb, app_key);
161 }
162
163 static asn_type_selector_result_t
164 select_UnsuccessfulOutcome_value_type(const asn_TYPE_descriptor_t *parent_type, const void *parent_sptr) {
165         asn_type_selector_result_t result = {0, 0};
166         const asn_ioc_set_t *itable = asn_IOS_E2AP_ELEMENTARY_PROCEDURES_1;
167         size_t constraining_column = 3; /* &procedureCode */
168         size_t for_column = 2; /* &UnsuccessfulOutcome */
169         size_t row, presence_index = 0;
170         const long *constraining_value = (const long *)((const char *)parent_sptr + offsetof(struct UnsuccessfulOutcome, procedureCode));
171         
172         for(row=0; row < itable->rows_count; row++) {
173             const asn_ioc_cell_t *constraining_cell = &itable->rows[row * itable->columns_count + constraining_column];
174             const asn_ioc_cell_t *type_cell = &itable->rows[row * itable->columns_count + for_column];
175         
176             if(type_cell->cell_kind == aioc__undefined)
177                 continue;
178         
179             presence_index++;
180             if(constraining_cell->type_descriptor->op->compare_struct(constraining_cell->type_descriptor, constraining_value, constraining_cell->value_sptr) == 0) {
181                 result.type_descriptor = type_cell->type_descriptor;
182                 result.presence_index = presence_index;
183                 break;
184             }
185         }
186         
187         return result;
188 }
189
190 static int
191 memb_value_constraint_1(const asn_TYPE_descriptor_t *td, const void *sptr,
192                         asn_app_constraint_failed_f *ctfailcb, void *app_key) {
193         
194         if(!sptr) {
195                 ASN__CTFAIL(app_key, td, sptr,
196                         "%s: value not given (%s:%d)",
197                         td->name, __FILE__, __LINE__);
198                 return -1;
199         }
200         
201         
202         if(1 /* No applicable constraints whatsoever */) {
203                 /* Nothing is here. See below */
204         }
205         
206         return td->encoding_constraints.general_constraints(td, sptr, ctfailcb, app_key);
207 }
208
209 static asn_per_constraints_t asn_PER_memb_procedureCode_constr_2 CC_NOTUSED = {
210         { APC_CONSTRAINED,       8,  8,  0,  255 }      /* (0..255) */,
211         { APC_UNCONSTRAINED,    -1, -1,  0,  0 },
212         0, 0    /* No PER value map */
213 };
214 static asn_per_constraints_t asn_PER_memb_criticality_constr_3 CC_NOTUSED = {
215         { APC_CONSTRAINED,       2,  2,  0,  2 }        /* (0..2) */,
216         { APC_UNCONSTRAINED,    -1, -1,  0,  0 },
217         0, 0    /* No PER value map */
218 };
219 static asn_per_constraints_t asn_PER_memb_value_constr_4 CC_NOTUSED = {
220         { APC_UNCONSTRAINED,    -1, -1,  0,  0 },
221         { APC_UNCONSTRAINED,    -1, -1,  0,  0 },
222         0, 0    /* No PER value map */
223 };
224 static asn_TYPE_member_t asn_MBR_value_4[] = {
225         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome__value, choice.RICsubscriptionFailure),
226                 (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)),
227                 0,
228                 &asn_DEF_RICsubscriptionFailure,
229                 0,
230                 { 0, 0, 0 },
231                 0, 0, /* No default value */
232                 "RICsubscriptionFailure"
233                 },
234         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome__value, choice.RICsubscriptionDeleteFailure),
235                 (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)),
236                 0,
237                 &asn_DEF_RICsubscriptionDeleteFailure,
238                 0,
239                 { 0, 0, 0 },
240                 0, 0, /* No default value */
241                 "RICsubscriptionDeleteFailure"
242                 },
243         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome__value, choice.RICserviceUpdateFailure),
244                 (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)),
245                 0,
246                 &asn_DEF_RICserviceUpdateFailure,
247                 0,
248                 { 0, 0, 0 },
249                 0, 0, /* No default value */
250                 "RICserviceUpdateFailure"
251                 },
252         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome__value, choice.RICcontrolFailure),
253                 (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)),
254                 0,
255                 &asn_DEF_RICcontrolFailure,
256                 0,
257                 { 0, 0, 0 },
258                 0, 0, /* No default value */
259                 "RICcontrolFailure"
260                 },
261         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome__value, choice.E2setupFailure),
262                 (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)),
263                 0,
264                 &asn_DEF_E2setupFailure,
265                 0,
266                 { 0, 0, 0 },
267                 0, 0, /* No default value */
268                 "E2setupFailure"
269                 },
270         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome__value, choice.E2nodeConfigurationUpdateFailure),
271                 (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)),
272                 0,
273                 &asn_DEF_E2nodeConfigurationUpdateFailure,
274                 0,
275                 { 0, 0, 0 },
276                 0, 0, /* No default value */
277                 "E2nodeConfigurationUpdateFailure"
278                 },
279         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome__value, choice.E2connectionUpdateFailure),
280                 (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)),
281                 0,
282                 &asn_DEF_E2connectionUpdateFailure,
283                 0,
284                 { 0, 0, 0 },
285                 0, 0, /* No default value */
286                 "E2connectionUpdateFailure"
287                 },
288 };
289 static const asn_TYPE_tag2member_t asn_MAP_value_tag2el_4[] = {
290     { (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)), 0, 0, 6 }, /* RICsubscriptionFailure */
291     { (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)), 1, -1, 5 }, /* RICsubscriptionDeleteFailure */
292     { (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)), 2, -2, 4 }, /* RICserviceUpdateFailure */
293     { (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)), 3, -3, 3 }, /* RICcontrolFailure */
294     { (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)), 4, -4, 2 }, /* E2setupFailure */
295     { (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)), 5, -5, 1 }, /* E2nodeConfigurationUpdateFailure */
296     { (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)), 6, -6, 0 } /* E2connectionUpdateFailure */
297 };
298 static asn_CHOICE_specifics_t asn_SPC_value_specs_4 = {
299         sizeof(struct UnsuccessfulOutcome__value),
300         offsetof(struct UnsuccessfulOutcome__value, _asn_ctx),
301         offsetof(struct UnsuccessfulOutcome__value, present),
302         sizeof(((struct UnsuccessfulOutcome__value *)0)->present),
303         asn_MAP_value_tag2el_4,
304         7,      /* Count of tags in the map */
305         0, 0,
306         -1      /* Extensions start */
307 };
308 static /* Use -fall-defs-global to expose */
309 asn_TYPE_descriptor_t asn_DEF_value_4 = {
310         "value",
311         "value",
312         &asn_OP_OPEN_TYPE,
313         0,      /* No effective tags (pointer) */
314         0,      /* No effective tags (count) */
315         0,      /* No tags (pointer) */
316         0,      /* No tags (count) */
317         { 0, 0, OPEN_TYPE_constraint },
318         asn_MBR_value_4,
319         7,      /* Elements count */
320         &asn_SPC_value_specs_4  /* Additional specs */
321 };
322
323 asn_TYPE_member_t asn_MBR_UnsuccessfulOutcome_1[] = {
324         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome, procedureCode),
325                 (ASN_TAG_CLASS_CONTEXT | (0 << 2)),
326                 -1,     /* IMPLICIT tag at current level */
327                 &asn_DEF_ProcedureCode,
328                 0,
329                 { 0, &asn_PER_memb_procedureCode_constr_2,  memb_procedureCode_constraint_1 },
330                 0, 0, /* No default value */
331                 "procedureCode"
332                 },
333         { ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome, criticality),
334                 (ASN_TAG_CLASS_CONTEXT | (1 << 2)),
335                 -1,     /* IMPLICIT tag at current level */
336                 &asn_DEF_Criticality,
337                 select_UnsuccessfulOutcome_criticality_type,
338                 { 0, &asn_PER_memb_criticality_constr_3,  memb_criticality_constraint_1 },
339                 0, 0, /* No default value */
340                 "criticality"
341                 },
342         { ATF_OPEN_TYPE | ATF_NOFLAGS, 0, offsetof(struct UnsuccessfulOutcome, value),
343                 (ASN_TAG_CLASS_CONTEXT | (2 << 2)),
344                 +1,     /* EXPLICIT tag at current level */
345                 &asn_DEF_value_4,
346                 select_UnsuccessfulOutcome_value_type,
347                 { 0, &asn_PER_memb_value_constr_4,  memb_value_constraint_1 },
348                 0, 0, /* No default value */
349                 "value"
350                 },
351 };
352 static const ber_tlv_tag_t asn_DEF_UnsuccessfulOutcome_tags_1[] = {
353         (ASN_TAG_CLASS_UNIVERSAL | (16 << 2))
354 };
355 static const asn_TYPE_tag2member_t asn_MAP_UnsuccessfulOutcome_tag2el_1[] = {
356     { (ASN_TAG_CLASS_CONTEXT | (0 << 2)), 0, 0, 0 }, /* procedureCode */
357     { (ASN_TAG_CLASS_CONTEXT | (1 << 2)), 1, 0, 0 }, /* criticality */
358     { (ASN_TAG_CLASS_CONTEXT | (2 << 2)), 2, 0, 0 } /* value */
359 };
360 asn_SEQUENCE_specifics_t asn_SPC_UnsuccessfulOutcome_specs_1 = {
361         sizeof(struct UnsuccessfulOutcome),
362         offsetof(struct UnsuccessfulOutcome, _asn_ctx),
363         asn_MAP_UnsuccessfulOutcome_tag2el_1,
364         3,      /* Count of tags in the map */
365         0, 0, 0,        /* Optional elements (not needed) */
366         -1,     /* First extension addition */
367 };
368 asn_TYPE_descriptor_t asn_DEF_UnsuccessfulOutcome = {
369         "UnsuccessfulOutcome",
370         "UnsuccessfulOutcome",
371         &asn_OP_SEQUENCE,
372         asn_DEF_UnsuccessfulOutcome_tags_1,
373         sizeof(asn_DEF_UnsuccessfulOutcome_tags_1)
374                 /sizeof(asn_DEF_UnsuccessfulOutcome_tags_1[0]), /* 1 */
375         asn_DEF_UnsuccessfulOutcome_tags_1,     /* Same as above */
376         sizeof(asn_DEF_UnsuccessfulOutcome_tags_1)
377                 /sizeof(asn_DEF_UnsuccessfulOutcome_tags_1[0]), /* 1 */
378         { 0, 0, SEQUENCE_constraint },
379         asn_MBR_UnsuccessfulOutcome_1,
380         3,      /* Elements count */
381         &asn_SPC_UnsuccessfulOutcome_specs_1    /* Additional specs */
382 };
383