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[Samba.git] / source / libsmb / asn1.c
blobb7cfca41fbf19facfeadde3688cf38a493d09e21
1 /*
2 Unix SMB/CIFS implementation.
3 simple SPNEGO routines
4 Copyright (C) Andrew Tridgell 2001
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2 of the License, or
9 (at your option) any later version.
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21 #include "includes.h"
23 /* free an asn1 structure */
24 void asn1_free(ASN1_DATA *data)
26 SAFE_FREE(data->data);
29 /* write to the ASN1 buffer, advancing the buffer pointer */
30 BOOL asn1_write(ASN1_DATA *data, const void *p, int len)
32 if (data->has_error) return False;
33 if (data->length < data->ofs+len) {
34 uint8 *newp;
35 newp = Realloc(data->data, data->ofs+len);
36 if (!newp) {
37 SAFE_FREE(data->data);
38 data->has_error = True;
39 return False;
41 data->data = newp;
42 data->length = data->ofs+len;
44 memcpy(data->data + data->ofs, p, len);
45 data->ofs += len;
46 return True;
49 /* useful fn for writing a uint8 */
50 BOOL asn1_write_uint8(ASN1_DATA *data, uint8 v)
52 return asn1_write(data, &v, 1);
55 /* push a tag onto the asn1 data buffer. Used for nested structures */
56 BOOL asn1_push_tag(ASN1_DATA *data, uint8 tag)
58 struct nesting *nesting;
60 asn1_write_uint8(data, tag);
61 nesting = (struct nesting *)malloc(sizeof(struct nesting));
62 if (!nesting) {
63 data->has_error = True;
64 return False;
67 nesting->start = data->ofs;
68 nesting->next = data->nesting;
69 data->nesting = nesting;
70 return asn1_write_uint8(data, 0xff);
73 /* pop a tag */
74 BOOL asn1_pop_tag(ASN1_DATA *data)
76 struct nesting *nesting;
77 size_t len;
79 nesting = data->nesting;
81 if (!nesting) {
82 data->has_error = True;
83 return False;
85 len = data->ofs - (nesting->start+1);
86 /* yes, this is ugly. We don't know in advance how many bytes the length
87 of a tag will take, so we assumed 1 byte. If we were wrong then we
88 need to correct our mistake */
89 if (len > 255) {
90 data->data[nesting->start] = 0x82;
91 if (!asn1_write_uint8(data, 0)) return False;
92 if (!asn1_write_uint8(data, 0)) return False;
93 memmove(data->data+nesting->start+3, data->data+nesting->start+1, len);
94 data->data[nesting->start+1] = len>>8;
95 data->data[nesting->start+2] = len&0xff;
96 } else if (len > 127) {
97 data->data[nesting->start] = 0x81;
98 if (!asn1_write_uint8(data, 0)) return False;
99 memmove(data->data+nesting->start+2, data->data+nesting->start+1, len);
100 data->data[nesting->start+1] = len;
101 } else {
102 data->data[nesting->start] = len;
105 data->nesting = nesting->next;
106 free(nesting);
107 return True;
111 /* write an integer */
112 BOOL asn1_write_Integer(ASN1_DATA *data, int i)
114 if (!asn1_push_tag(data, ASN1_INTEGER)) return False;
115 do {
116 asn1_write_uint8(data, i);
117 i = i >> 8;
118 } while (i);
119 return asn1_pop_tag(data);
122 /* write an object ID to a ASN1 buffer */
123 BOOL asn1_write_OID(ASN1_DATA *data, const char *OID)
125 unsigned v, v2;
126 const char *p = (const char *)OID;
127 char *newp;
129 if (!asn1_push_tag(data, ASN1_OID))
130 return False;
131 v = strtol(p, &newp, 10);
132 p = newp;
133 v2 = strtol(p, &newp, 10);
134 p = newp;
135 if (!asn1_write_uint8(data, 40*v + v2))
136 return False;
138 while (*p) {
139 v = strtol(p, &newp, 10);
140 p = newp;
141 if (v >= (1<<28)) asn1_write_uint8(data, 0x80 | ((v>>28)&0xff));
142 if (v >= (1<<21)) asn1_write_uint8(data, 0x80 | ((v>>21)&0xff));
143 if (v >= (1<<14)) asn1_write_uint8(data, 0x80 | ((v>>14)&0xff));
144 if (v >= (1<<7)) asn1_write_uint8(data, 0x80 | ((v>>7)&0xff));
145 if (!asn1_write_uint8(data, v&0x7f))
146 return False;
148 return asn1_pop_tag(data);
151 /* write an octet string */
152 BOOL asn1_write_OctetString(ASN1_DATA *data, const void *p, size_t length)
154 asn1_push_tag(data, ASN1_OCTET_STRING);
155 asn1_write(data, p, length);
156 asn1_pop_tag(data);
157 return !data->has_error;
160 /* write a general string */
161 BOOL asn1_write_GeneralString(ASN1_DATA *data, const char *s)
163 asn1_push_tag(data, ASN1_GENERAL_STRING);
164 asn1_write(data, s, strlen(s));
165 asn1_pop_tag(data);
166 return !data->has_error;
169 /* write a BOOLEAN */
170 BOOL asn1_write_BOOLEAN(ASN1_DATA *data, BOOL v)
172 asn1_write_uint8(data, ASN1_BOOLEAN);
173 asn1_write_uint8(data, v);
174 return !data->has_error;
177 /* write a BOOLEAN - hmm, I suspect this one is the correct one, and the
178 above boolean is bogus. Need to check */
179 BOOL asn1_write_BOOLEAN2(ASN1_DATA *data, BOOL v)
181 asn1_push_tag(data, ASN1_BOOLEAN);
182 asn1_write_uint8(data, v);
183 asn1_pop_tag(data);
184 return !data->has_error;
187 /* check a BOOLEAN */
188 BOOL asn1_check_BOOLEAN(ASN1_DATA *data, BOOL v)
190 uint8 b = 0;
192 asn1_read_uint8(data, &b);
193 if (b != ASN1_BOOLEAN) {
194 data->has_error = True;
195 return False;
197 asn1_read_uint8(data, &b);
198 if (b != v) {
199 data->has_error = True;
200 return False;
202 return !data->has_error;
206 /* load a ASN1_DATA structure with a lump of data, ready to be parsed */
207 BOOL asn1_load(ASN1_DATA *data, DATA_BLOB blob)
209 ZERO_STRUCTP(data);
210 data->data = memdup(blob.data, blob.length);
211 if (!data->data) {
212 data->has_error = True;
213 return False;
215 data->length = blob.length;
216 return True;
219 /* read from a ASN1 buffer, advancing the buffer pointer */
220 BOOL asn1_read(ASN1_DATA *data, void *p, int len)
222 if (data->ofs + len > data->length) {
223 data->has_error = True;
224 return False;
226 memcpy(p, data->data + data->ofs, len);
227 data->ofs += len;
228 return True;
231 /* read a uint8 from a ASN1 buffer */
232 BOOL asn1_read_uint8(ASN1_DATA *data, uint8 *v)
234 return asn1_read(data, v, 1);
237 /* start reading a nested asn1 structure */
238 BOOL asn1_start_tag(ASN1_DATA *data, uint8 tag)
240 uint8 b;
241 struct nesting *nesting;
243 asn1_read_uint8(data, &b);
244 if (b != tag) {
245 data->has_error = True;
246 return False;
248 nesting = (struct nesting *)malloc(sizeof(struct nesting));
249 if (!nesting) {
250 data->has_error = True;
251 return False;
254 asn1_read_uint8(data, &b);
255 if (b & 0x80) {
256 int n = b & 0x7f;
257 asn1_read_uint8(data, &b);
258 nesting->taglen = b;
259 while (n > 1) {
260 asn1_read_uint8(data, &b);
261 nesting->taglen = (nesting->taglen << 8) | b;
262 n--;
264 } else {
265 nesting->taglen = b;
267 nesting->start = data->ofs;
268 nesting->next = data->nesting;
269 data->nesting = nesting;
270 return !data->has_error;
274 /* stop reading a tag */
275 BOOL asn1_end_tag(ASN1_DATA *data)
277 struct nesting *nesting;
279 /* make sure we read it all */
280 if (asn1_tag_remaining(data) != 0) {
281 data->has_error = True;
282 return False;
285 nesting = data->nesting;
287 if (!nesting) {
288 data->has_error = True;
289 return False;
292 data->nesting = nesting->next;
293 free(nesting);
294 return True;
297 /* work out how many bytes are left in this nested tag */
298 int asn1_tag_remaining(ASN1_DATA *data)
300 if (!data->nesting) {
301 data->has_error = True;
302 return -1;
304 return data->nesting->taglen - (data->ofs - data->nesting->start);
307 /* read an object ID from a ASN1 buffer */
308 BOOL asn1_read_OID(ASN1_DATA *data, char **OID)
310 uint8 b;
311 pstring oid;
312 fstring el;
314 if (!asn1_start_tag(data, ASN1_OID)) return False;
315 asn1_read_uint8(data, &b);
317 oid[0] = 0;
318 snprintf(el, sizeof(el), "%u", b/40);
319 pstrcat(oid, el);
320 snprintf(el, sizeof(el), " %u", b%40);
321 pstrcat(oid, el);
323 while (asn1_tag_remaining(data) > 0) {
324 unsigned v = 0;
325 do {
326 asn1_read_uint8(data, &b);
327 v = (v<<7) | (b&0x7f);
328 } while (!data->has_error && b & 0x80);
329 snprintf(el, sizeof(el), " %u", v);
330 pstrcat(oid, el);
333 asn1_end_tag(data);
335 *OID = strdup(oid);
337 return !data->has_error;
340 /* check that the next object ID is correct */
341 BOOL asn1_check_OID(ASN1_DATA *data, char *OID)
343 char *id;
345 if (!asn1_read_OID(data, &id)) return False;
347 if (strcmp(id, OID) != 0) {
348 data->has_error = True;
349 return False;
351 free(id);
352 return True;
355 /* read a GeneralString from a ASN1 buffer */
356 BOOL asn1_read_GeneralString(ASN1_DATA *data, char **s)
358 int len;
359 if (!asn1_start_tag(data, ASN1_GENERAL_STRING)) return False;
360 len = asn1_tag_remaining(data);
361 *s = malloc(len+1);
362 if (! *s) {
363 data->has_error = True;
364 return False;
366 asn1_read(data, *s, len);
367 (*s)[len] = 0;
368 asn1_end_tag(data);
369 return !data->has_error;
372 /* read a octet string blob */
373 BOOL asn1_read_OctetString(ASN1_DATA *data, DATA_BLOB *blob)
375 int len;
376 ZERO_STRUCTP(blob);
377 if (!asn1_start_tag(data, ASN1_OCTET_STRING)) return False;
378 len = asn1_tag_remaining(data);
379 *blob = data_blob(NULL, len);
380 asn1_read(data, blob->data, len);
381 asn1_end_tag(data);
382 return !data->has_error;
385 /* read an interger */
386 BOOL asn1_read_Integer(ASN1_DATA *data, int *i)
388 uint8 b;
389 *i = 0;
391 if (!asn1_start_tag(data, ASN1_INTEGER)) return False;
392 while (asn1_tag_remaining(data)>0) {
393 asn1_read_uint8(data, &b);
394 *i = (*i << 8) + b;
396 return asn1_end_tag(data);
400 /* check a enumarted value is correct */
401 BOOL asn1_check_enumerated(ASN1_DATA *data, int v)
403 uint8 b;
404 if (!asn1_start_tag(data, ASN1_ENUMERATED)) return False;
405 asn1_read_uint8(data, &b);
406 asn1_end_tag(data);
407 return !data->has_error && (v == b);
410 /* check a enumarted value is correct */
411 BOOL asn1_write_enumerated(ASN1_DATA *data, uint8 v)
413 if (!asn1_push_tag(data, ASN1_ENUMERATED)) return False;
414 asn1_write_uint8(data, v);
415 asn1_pop_tag(data);
416 return !data->has_error;