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vlmfa67ddc2004-06-03 03:38:44 +00001/*-
vlm31feaf32005-03-10 11:50:24 +00002 * Copyright (c) 2003, 2004, 2005 Lev Walkin <vlm@lionet.info>.
3 * All rights reserved.
vlmfa67ddc2004-06-03 03:38:44 +00004 * Redistribution and modifications are permitted subject to BSD license.
5 */
vlm39ba4c42004-09-22 16:06:28 +00006#include <asn_internal.h>
vlmfa67ddc2004-06-03 03:38:44 +00007#include <RELATIVE-OID.h>
vlm86380d32006-10-09 12:07:58 +00008#include <OCTET_STRING.h>
vlm3b6e1122004-10-21 11:22:12 +00009#include <asn_codecs_prim.h> /* Encoder and decoder of a primitive type */
vlm12557712004-06-17 23:43:39 +000010#include <limits.h> /* for CHAR_BIT */
vlmfa67ddc2004-06-03 03:38:44 +000011#include <errno.h>
12
13/*
14 * RELATIVE-OID basic type description.
15 */
vlmef6355b2004-09-29 13:26:15 +000016static ber_tlv_tag_t asn_DEF_RELATIVE_OID_tags[] = {
vlmfa67ddc2004-06-03 03:38:44 +000017 (ASN_TAG_CLASS_UNIVERSAL | (13 << 2))
18};
vlmef6355b2004-09-29 13:26:15 +000019asn_TYPE_descriptor_t asn_DEF_RELATIVE_OID = {
vlmfa67ddc2004-06-03 03:38:44 +000020 "RELATIVE-OID",
vlm9de248e2004-10-20 15:50:55 +000021 "RELATIVE_OID",
vlm6678cb12004-09-26 13:10:40 +000022 ASN__PRIMITIVE_TYPE_free,
vlm39ba4c42004-09-22 16:06:28 +000023 RELATIVE_OID_print,
vlmfa67ddc2004-06-03 03:38:44 +000024 asn_generic_no_constraint,
vlm6678cb12004-09-26 13:10:40 +000025 ber_decode_primitive,
26 der_encode_primitive,
vlm1f73df22004-10-23 10:16:51 +000027 RELATIVE_OID_decode_xer,
vlm39ba4c42004-09-22 16:06:28 +000028 RELATIVE_OID_encode_xer,
vlm86380d32006-10-09 12:07:58 +000029 OCTET_STRING_decode_uper,
30 OCTET_STRING_encode_uper,
vlmfa67ddc2004-06-03 03:38:44 +000031 0, /* Use generic outmost tag fetcher */
vlmef6355b2004-09-29 13:26:15 +000032 asn_DEF_RELATIVE_OID_tags,
33 sizeof(asn_DEF_RELATIVE_OID_tags)
34 / sizeof(asn_DEF_RELATIVE_OID_tags[0]),
35 asn_DEF_RELATIVE_OID_tags, /* Same as above */
36 sizeof(asn_DEF_RELATIVE_OID_tags)
37 / sizeof(asn_DEF_RELATIVE_OID_tags[0]),
vlm337167e2005-11-26 11:25:14 +000038 0, /* No PER visible constraints */
vlme413c122004-08-20 13:23:42 +000039 0, 0, /* No members */
vlmb42843a2004-06-05 08:17:50 +000040 0 /* No specifics */
vlmfa67ddc2004-06-03 03:38:44 +000041};
42
vlm39ba4c42004-09-22 16:06:28 +000043static ssize_t
44RELATIVE_OID__dump_body(const RELATIVE_OID_t *st, asn_app_consume_bytes_f *cb, void *app_key) {
45 ssize_t wrote = 0;
46 ssize_t ret;
47 int startn;
48 int i;
49
50 for(i = 0, startn = 0; i < st->size; i++) {
51 uint8_t b = st->buf[i];
52 if((b & 0x80)) /* Continuation expected */
53 continue;
54 if(startn) {
55 /* Separate arcs */
56 if(cb(".", 1, app_key) < 0)
57 return -1;
58 wrote++;
59 }
60
61 ret = OBJECT_IDENTIFIER__dump_arc(&st->buf[startn],
62 i - startn + 1, 0, cb, app_key);
63 if(ret < 0) return -1;
64 wrote += ret;
65
66 startn = i + 1;
67 }
68
69 return wrote;
70}
71
vlmfa67ddc2004-06-03 03:38:44 +000072int
vlmef6355b2004-09-29 13:26:15 +000073RELATIVE_OID_print(asn_TYPE_descriptor_t *td, const void *sptr, int ilevel,
vlmfa67ddc2004-06-03 03:38:44 +000074 asn_app_consume_bytes_f *cb, void *app_key) {
vlmda674682004-08-11 09:07:36 +000075 const RELATIVE_OID_t *st = (const RELATIVE_OID_t *)sptr;
vlmfa67ddc2004-06-03 03:38:44 +000076
vlmb42843a2004-06-05 08:17:50 +000077 (void)td; /* Unused argument */
78 (void)ilevel; /* Unused argument */
79
vlmfa67ddc2004-06-03 03:38:44 +000080 if(!st || !st->buf)
vlm6678cb12004-09-26 13:10:40 +000081 return (cb("<absent>", 8, app_key) < 0) ? -1 : 0;
vlmfa67ddc2004-06-03 03:38:44 +000082
83 /* Dump preamble */
vlm6678cb12004-09-26 13:10:40 +000084 if(cb("{ ", 2, app_key) < 0)
vlmfa67ddc2004-06-03 03:38:44 +000085 return -1;
86
vlm39ba4c42004-09-22 16:06:28 +000087 if(RELATIVE_OID__dump_body(st, cb, app_key) < 0)
88 return -1;
vlmfa67ddc2004-06-03 03:38:44 +000089
vlm6678cb12004-09-26 13:10:40 +000090 return (cb(" }", 2, app_key) < 0) ? -1 : 0;
vlmfa67ddc2004-06-03 03:38:44 +000091}
92
vlm4df9cc12005-03-09 22:19:25 +000093static enum xer_pbd_rval
94RELATIVE_OID__xer_body_decode(asn_TYPE_descriptor_t *td, void *sptr, const void *chunk_buf, size_t chunk_size) {
vlm1f73df22004-10-23 10:16:51 +000095 RELATIVE_OID_t *st = (RELATIVE_OID_t *)sptr;
vlm31feaf32005-03-10 11:50:24 +000096 const char *chunk_end = (const char *)chunk_buf + chunk_size;
97 const char *endptr;
vlm1f73df22004-10-23 10:16:51 +000098 long s_arcs[6];
99 long *arcs = s_arcs;
100 int arcs_count;
101 int ret;
102
vlm80a48592005-02-25 12:10:27 +0000103 (void)td;
104
vlm1f73df22004-10-23 10:16:51 +0000105 arcs_count = OBJECT_IDENTIFIER_parse_arcs(
106 (const char *)chunk_buf, chunk_size,
vlm4df9cc12005-03-09 22:19:25 +0000107 arcs, sizeof(s_arcs)/sizeof(s_arcs[0]), &endptr);
108 if(arcs_count < 0) {
109 /* Expecting at least zero arcs */
110 return XPBD_BROKEN_ENCODING;
111 }
vlm31feaf32005-03-10 11:50:24 +0000112 if(endptr < chunk_end) {
113 /* We have a tail of unrecognized data. Check its safety. */
114 if(!xer_is_whitespace(endptr, chunk_end - endptr))
115 return XPBD_BROKEN_ENCODING;
116 }
vlm4df9cc12005-03-09 22:19:25 +0000117
118 if((size_t)arcs_count > sizeof(s_arcs)/sizeof(s_arcs[0])) {
vlm1f73df22004-10-23 10:16:51 +0000119 arcs = (long *)MALLOC(arcs_count * sizeof(long));
vlm4df9cc12005-03-09 22:19:25 +0000120 if(!arcs) return XPBD_SYSTEM_FAILURE;
vlm1f73df22004-10-23 10:16:51 +0000121 ret = OBJECT_IDENTIFIER_parse_arcs(
122 (const char *)chunk_buf, chunk_size,
123 arcs, arcs_count, &endptr);
124 if(ret != arcs_count)
vlm4df9cc12005-03-09 22:19:25 +0000125 return XPBD_SYSTEM_FAILURE; /* assert?.. */
vlm1f73df22004-10-23 10:16:51 +0000126 }
127
128 /*
129 * Convert arcs into BER representation.
130 */
131 ret = RELATIVE_OID_set_arcs(st, arcs, sizeof(*arcs), arcs_count);
vlm1f73df22004-10-23 10:16:51 +0000132 if(arcs != s_arcs) FREEMEM(arcs);
133
vlm31feaf32005-03-10 11:50:24 +0000134 return ret ? XPBD_SYSTEM_FAILURE : XPBD_BODY_CONSUMED;
vlm1f73df22004-10-23 10:16:51 +0000135}
136
137asn_dec_rval_t
138RELATIVE_OID_decode_xer(asn_codec_ctx_t *opt_codec_ctx,
139 asn_TYPE_descriptor_t *td, void **sptr, const char *opt_mname,
vlmb02dcc62005-03-10 18:52:02 +0000140 const void *buf_ptr, size_t size) {
vlm1f73df22004-10-23 10:16:51 +0000141
142 return xer_decode_primitive(opt_codec_ctx, td,
143 sptr, sizeof(RELATIVE_OID_t), opt_mname,
144 buf_ptr, size, RELATIVE_OID__xer_body_decode);
145}
146
vlm39ba4c42004-09-22 16:06:28 +0000147asn_enc_rval_t
vlmef6355b2004-09-29 13:26:15 +0000148RELATIVE_OID_encode_xer(asn_TYPE_descriptor_t *td, void *sptr,
vlm39ba4c42004-09-22 16:06:28 +0000149 int ilevel, enum xer_encoder_flags_e flags,
150 asn_app_consume_bytes_f *cb, void *app_key) {
151 RELATIVE_OID_t *st = (RELATIVE_OID_t *)sptr;
152 asn_enc_rval_t er;
153
154 (void)ilevel; /* Unused argument */
155 (void)flags; /* Unused argument */
156
157 if(!st || !st->buf)
158 _ASN_ENCODE_FAILED;
159
160 er.encoded = RELATIVE_OID__dump_body(st, cb, app_key);
161 if(er.encoded < 0) _ASN_ENCODE_FAILED;
162
vlm337167e2005-11-26 11:25:14 +0000163 _ASN_ENCODED_OK(er);
vlm39ba4c42004-09-22 16:06:28 +0000164}
vlmfa67ddc2004-06-03 03:38:44 +0000165
166int
vlm2e3dd3b2004-06-14 07:24:36 +0000167RELATIVE_OID_get_arcs(RELATIVE_OID_t *roid,
168 void *arcs, unsigned int arc_type_size, unsigned int arc_slots) {
vlm1ff928d2004-08-11 08:10:13 +0000169 void *arcs_end = (char *)arcs + (arc_slots * arc_type_size);
vlm2e3dd3b2004-06-14 07:24:36 +0000170 int num_arcs = 0;
vlmfa67ddc2004-06-03 03:38:44 +0000171 int startn = 0;
172 int i;
173
174 if(!roid || !roid->buf) {
175 errno = EINVAL;
176 return -1;
177 }
178
179 for(i = 0; i < roid->size; i++) {
180 uint8_t b = roid->buf[i];
181 if((b & 0x80)) /* Continuation expected */
182 continue;
183
vlm2e3dd3b2004-06-14 07:24:36 +0000184 if(arcs < arcs_end) {
185 if(OBJECT_IDENTIFIER_get_single_arc(
186 &roid->buf[startn],
187 i - startn + 1, 0,
188 arcs, arc_type_size))
vlmfa67ddc2004-06-03 03:38:44 +0000189 return -1;
vlmd86c9252004-08-25 01:34:11 +0000190 arcs = ((char *)arcs) + arc_type_size;
vlm2e3dd3b2004-06-14 07:24:36 +0000191 num_arcs++;
vlmfa67ddc2004-06-03 03:38:44 +0000192 }
193
194 startn = i + 1;
195 }
196
vlm2e3dd3b2004-06-14 07:24:36 +0000197 return num_arcs;
vlmfa67ddc2004-06-03 03:38:44 +0000198}
199
200int
vlm12557712004-06-17 23:43:39 +0000201RELATIVE_OID_set_arcs(RELATIVE_OID_t *roid, void *arcs, unsigned int arc_type_size, unsigned int arcs_slots) {
vlmfa67ddc2004-06-03 03:38:44 +0000202 uint8_t *buf;
203 uint8_t *bp;
vlma63e0292004-06-17 23:46:45 +0000204 unsigned int size;
205 unsigned int i;
vlmfa67ddc2004-06-03 03:38:44 +0000206
vlm12557712004-06-17 23:43:39 +0000207 if(roid == NULL || arcs == NULL || arc_type_size < 1) {
vlmfa67ddc2004-06-03 03:38:44 +0000208 errno = EINVAL;
209 return -1;
210 }
211
212 /*
213 * Roughly estimate the maximum size necessary to encode these arcs.
214 */
vlm12557712004-06-17 23:43:39 +0000215 size = ((arc_type_size * CHAR_BIT + 6) / 7) * arcs_slots;
vlmda674682004-08-11 09:07:36 +0000216 bp = buf = (uint8_t *)MALLOC(size + 1);
vlmfa67ddc2004-06-03 03:38:44 +0000217 if(!buf) {
218 /* ENOMEM */
219 return -1;
220 }
221
222 /*
vlm12557712004-06-17 23:43:39 +0000223 * Encode the arcs.
vlmfa67ddc2004-06-03 03:38:44 +0000224 */
vlmd86c9252004-08-25 01:34:11 +0000225 for(i = 0; i < arcs_slots; i++, arcs = ((char *)arcs) + arc_type_size) {
vlm12557712004-06-17 23:43:39 +0000226 bp += OBJECT_IDENTIFIER_set_single_arc(bp,
227 arcs, arc_type_size, 0);
vlmfa67ddc2004-06-03 03:38:44 +0000228 }
229
vlma63e0292004-06-17 23:46:45 +0000230 assert((unsigned)(bp - buf) <= size);
vlm12557712004-06-17 23:43:39 +0000231
vlmfa67ddc2004-06-03 03:38:44 +0000232 /*
233 * Replace buffer.
234 */
vlm8a09e0f2005-02-25 14:20:30 +0000235 roid->size = (int)(bp - buf);
vlmfa67ddc2004-06-03 03:38:44 +0000236 bp = roid->buf;
237 roid->buf = buf;
238 if(bp) FREEMEM(bp);
239
240 return 0;
241}
vlm12557712004-06-17 23:43:39 +0000242