1 /*
2 * ASN.1 buffer writing functionality
3 *
4 * Copyright The Mbed TLS Contributors
5 * SPDX-License-Identifier: Apache-2.0 OR GPL-2.0-or-later
6 */
7
8 #include "common.h"
9
10 #if defined(MBEDTLS_ASN1_WRITE_C)
11
12 #include "mbedtls/asn1write.h"
13 #include "mbedtls/error.h"
14
15 #include <string.h>
16
17 #include "mbedtls/platform.h"
18
mbedtls_asn1_write_len(unsigned char ** p,unsigned char * start,size_t len)19 int mbedtls_asn1_write_len(unsigned char **p, unsigned char *start, size_t len)
20 {
21 if (len < 0x80) {
22 if (*p - start < 1) {
23 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
24 }
25
26 *--(*p) = (unsigned char) len;
27 return 1;
28 }
29
30 if (len <= 0xFF) {
31 if (*p - start < 2) {
32 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
33 }
34
35 *--(*p) = (unsigned char) len;
36 *--(*p) = 0x81;
37 return 2;
38 }
39
40 if (len <= 0xFFFF) {
41 if (*p - start < 3) {
42 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
43 }
44
45 *--(*p) = MBEDTLS_BYTE_0(len);
46 *--(*p) = MBEDTLS_BYTE_1(len);
47 *--(*p) = 0x82;
48 return 3;
49 }
50
51 if (len <= 0xFFFFFF) {
52 if (*p - start < 4) {
53 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
54 }
55
56 *--(*p) = MBEDTLS_BYTE_0(len);
57 *--(*p) = MBEDTLS_BYTE_1(len);
58 *--(*p) = MBEDTLS_BYTE_2(len);
59 *--(*p) = 0x83;
60 return 4;
61 }
62
63 int len_is_valid = 1;
64 #if SIZE_MAX > 0xFFFFFFFF
65 len_is_valid = (len <= 0xFFFFFFFF);
66 #endif
67 if (len_is_valid) {
68 if (*p - start < 5) {
69 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
70 }
71
72 *--(*p) = MBEDTLS_BYTE_0(len);
73 *--(*p) = MBEDTLS_BYTE_1(len);
74 *--(*p) = MBEDTLS_BYTE_2(len);
75 *--(*p) = MBEDTLS_BYTE_3(len);
76 *--(*p) = 0x84;
77 return 5;
78 }
79
80 return MBEDTLS_ERR_ASN1_INVALID_LENGTH;
81 }
82
mbedtls_asn1_write_tag(unsigned char ** p,unsigned char * start,unsigned char tag)83 int mbedtls_asn1_write_tag(unsigned char **p, unsigned char *start, unsigned char tag)
84 {
85 if (*p - start < 1) {
86 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
87 }
88
89 *--(*p) = tag;
90
91 return 1;
92 }
93
mbedtls_asn1_write_raw_buffer(unsigned char ** p,unsigned char * start,const unsigned char * buf,size_t size)94 int mbedtls_asn1_write_raw_buffer(unsigned char **p, unsigned char *start,
95 const unsigned char *buf, size_t size)
96 {
97 size_t len = 0;
98
99 if (*p < start || (size_t) (*p - start) < size) {
100 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
101 }
102
103 len = size;
104 (*p) -= len;
105 memcpy(*p, buf, len);
106
107 return (int) len;
108 }
109
110 #if defined(MBEDTLS_BIGNUM_C)
mbedtls_asn1_write_mpi(unsigned char ** p,unsigned char * start,const mbedtls_mpi * X)111 int mbedtls_asn1_write_mpi(unsigned char **p, unsigned char *start, const mbedtls_mpi *X)
112 {
113 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
114 size_t len = 0;
115
116 // Write the MPI
117 //
118 len = mbedtls_mpi_size(X);
119
120 /* DER represents 0 with a sign bit (0=nonnegative) and 7 value bits, not
121 * as 0 digits. We need to end up with 020100, not with 0200. */
122 if (len == 0) {
123 len = 1;
124 }
125
126 if (*p < start || (size_t) (*p - start) < len) {
127 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
128 }
129
130 (*p) -= len;
131 MBEDTLS_MPI_CHK(mbedtls_mpi_write_binary(X, *p, len));
132
133 // DER format assumes 2s complement for numbers, so the leftmost bit
134 // should be 0 for positive numbers and 1 for negative numbers.
135 //
136 if (X->s == 1 && **p & 0x80) {
137 if (*p - start < 1) {
138 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
139 }
140
141 *--(*p) = 0x00;
142 len += 1;
143 }
144
145 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
146 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, MBEDTLS_ASN1_INTEGER));
147
148 ret = (int) len;
149
150 cleanup:
151 return ret;
152 }
153 #endif /* MBEDTLS_BIGNUM_C */
154
mbedtls_asn1_write_null(unsigned char ** p,unsigned char * start)155 int mbedtls_asn1_write_null(unsigned char **p, unsigned char *start)
156 {
157 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
158 size_t len = 0;
159
160 // Write NULL
161 //
162 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, 0));
163 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, MBEDTLS_ASN1_NULL));
164
165 return (int) len;
166 }
167
mbedtls_asn1_write_oid(unsigned char ** p,unsigned char * start,const char * oid,size_t oid_len)168 int mbedtls_asn1_write_oid(unsigned char **p, unsigned char *start,
169 const char *oid, size_t oid_len)
170 {
171 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
172 size_t len = 0;
173
174 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_raw_buffer(p, start,
175 (const unsigned char *) oid, oid_len));
176 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
177 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, MBEDTLS_ASN1_OID));
178
179 return (int) len;
180 }
181
mbedtls_asn1_write_algorithm_identifier(unsigned char ** p,unsigned char * start,const char * oid,size_t oid_len,size_t par_len)182 int mbedtls_asn1_write_algorithm_identifier(unsigned char **p, unsigned char *start,
183 const char *oid, size_t oid_len,
184 size_t par_len)
185 {
186 return mbedtls_asn1_write_algorithm_identifier_ext(p, start, oid, oid_len, par_len, 1);
187 }
188
mbedtls_asn1_write_algorithm_identifier_ext(unsigned char ** p,unsigned char * start,const char * oid,size_t oid_len,size_t par_len,int has_par)189 int mbedtls_asn1_write_algorithm_identifier_ext(unsigned char **p, unsigned char *start,
190 const char *oid, size_t oid_len,
191 size_t par_len, int has_par)
192 {
193 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
194 size_t len = 0;
195
196 if (has_par) {
197 if (par_len == 0) {
198 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_null(p, start));
199 } else {
200 len += par_len;
201 }
202 }
203
204 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_oid(p, start, oid, oid_len));
205
206 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
207 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start,
208 MBEDTLS_ASN1_CONSTRUCTED |
209 MBEDTLS_ASN1_SEQUENCE));
210
211 return (int) len;
212 }
213
mbedtls_asn1_write_bool(unsigned char ** p,unsigned char * start,int boolean)214 int mbedtls_asn1_write_bool(unsigned char **p, unsigned char *start, int boolean)
215 {
216 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
217 size_t len = 0;
218
219 if (*p - start < 1) {
220 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
221 }
222
223 *--(*p) = (boolean) ? 255 : 0;
224 len++;
225
226 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
227 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, MBEDTLS_ASN1_BOOLEAN));
228
229 return (int) len;
230 }
231
asn1_write_tagged_int(unsigned char ** p,unsigned char * start,int val,int tag)232 static int asn1_write_tagged_int(unsigned char **p, unsigned char *start, int val, int tag)
233 {
234 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
235 size_t len = 0;
236
237 do {
238 if (*p - start < 1) {
239 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
240 }
241 len += 1;
242 *--(*p) = val & 0xff;
243 val >>= 8;
244 } while (val > 0);
245
246 if (**p & 0x80) {
247 if (*p - start < 1) {
248 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
249 }
250 *--(*p) = 0x00;
251 len += 1;
252 }
253
254 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
255 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, tag));
256
257 return (int) len;
258 }
259
mbedtls_asn1_write_int(unsigned char ** p,unsigned char * start,int val)260 int mbedtls_asn1_write_int(unsigned char **p, unsigned char *start, int val)
261 {
262 return asn1_write_tagged_int(p, start, val, MBEDTLS_ASN1_INTEGER);
263 }
264
mbedtls_asn1_write_enum(unsigned char ** p,unsigned char * start,int val)265 int mbedtls_asn1_write_enum(unsigned char **p, unsigned char *start, int val)
266 {
267 return asn1_write_tagged_int(p, start, val, MBEDTLS_ASN1_ENUMERATED);
268 }
269
mbedtls_asn1_write_tagged_string(unsigned char ** p,unsigned char * start,int tag,const char * text,size_t text_len)270 int mbedtls_asn1_write_tagged_string(unsigned char **p, unsigned char *start, int tag,
271 const char *text, size_t text_len)
272 {
273 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
274 size_t len = 0;
275
276 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_raw_buffer(p, start,
277 (const unsigned char *) text,
278 text_len));
279
280 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
281 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, tag));
282
283 return (int) len;
284 }
285
mbedtls_asn1_write_utf8_string(unsigned char ** p,unsigned char * start,const char * text,size_t text_len)286 int mbedtls_asn1_write_utf8_string(unsigned char **p, unsigned char *start,
287 const char *text, size_t text_len)
288 {
289 return mbedtls_asn1_write_tagged_string(p, start, MBEDTLS_ASN1_UTF8_STRING, text, text_len);
290 }
291
mbedtls_asn1_write_printable_string(unsigned char ** p,unsigned char * start,const char * text,size_t text_len)292 int mbedtls_asn1_write_printable_string(unsigned char **p, unsigned char *start,
293 const char *text, size_t text_len)
294 {
295 return mbedtls_asn1_write_tagged_string(p, start, MBEDTLS_ASN1_PRINTABLE_STRING, text,
296 text_len);
297 }
298
mbedtls_asn1_write_ia5_string(unsigned char ** p,unsigned char * start,const char * text,size_t text_len)299 int mbedtls_asn1_write_ia5_string(unsigned char **p, unsigned char *start,
300 const char *text, size_t text_len)
301 {
302 return mbedtls_asn1_write_tagged_string(p, start, MBEDTLS_ASN1_IA5_STRING, text, text_len);
303 }
304
mbedtls_asn1_write_named_bitstring(unsigned char ** p,unsigned char * start,const unsigned char * buf,size_t bits)305 int mbedtls_asn1_write_named_bitstring(unsigned char **p,
306 unsigned char *start,
307 const unsigned char *buf,
308 size_t bits)
309 {
310 size_t unused_bits, byte_len;
311 const unsigned char *cur_byte;
312 unsigned char cur_byte_shifted;
313 unsigned char bit;
314
315 byte_len = (bits + 7) / 8;
316 unused_bits = (byte_len * 8) - bits;
317
318 /*
319 * Named bitstrings require that trailing 0s are excluded in the encoding
320 * of the bitstring. Trailing 0s are considered part of the 'unused' bits
321 * when encoding this value in the first content octet
322 */
323 if (bits != 0) {
324 cur_byte = buf + byte_len - 1;
325 cur_byte_shifted = *cur_byte >> unused_bits;
326
327 for (;;) {
328 bit = cur_byte_shifted & 0x1;
329 cur_byte_shifted >>= 1;
330
331 if (bit != 0) {
332 break;
333 }
334
335 bits--;
336 if (bits == 0) {
337 break;
338 }
339
340 if (bits % 8 == 0) {
341 cur_byte_shifted = *--cur_byte;
342 }
343 }
344 }
345
346 return mbedtls_asn1_write_bitstring(p, start, buf, bits);
347 }
348
mbedtls_asn1_write_bitstring(unsigned char ** p,unsigned char * start,const unsigned char * buf,size_t bits)349 int mbedtls_asn1_write_bitstring(unsigned char **p, unsigned char *start,
350 const unsigned char *buf, size_t bits)
351 {
352 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
353 size_t len = 0;
354 size_t unused_bits, byte_len;
355
356 byte_len = (bits + 7) / 8;
357 unused_bits = (byte_len * 8) - bits;
358
359 if (*p < start || (size_t) (*p - start) < byte_len + 1) {
360 return MBEDTLS_ERR_ASN1_BUF_TOO_SMALL;
361 }
362
363 len = byte_len + 1;
364
365 /* Write the bitstring. Ensure the unused bits are zeroed */
366 if (byte_len > 0) {
367 byte_len--;
368 *--(*p) = buf[byte_len] & ~((0x1 << unused_bits) - 1);
369 (*p) -= byte_len;
370 memcpy(*p, buf, byte_len);
371 }
372
373 /* Write unused bits */
374 *--(*p) = (unsigned char) unused_bits;
375
376 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
377 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, MBEDTLS_ASN1_BIT_STRING));
378
379 return (int) len;
380 }
381
mbedtls_asn1_write_octet_string(unsigned char ** p,unsigned char * start,const unsigned char * buf,size_t size)382 int mbedtls_asn1_write_octet_string(unsigned char **p, unsigned char *start,
383 const unsigned char *buf, size_t size)
384 {
385 int ret = MBEDTLS_ERR_ERROR_CORRUPTION_DETECTED;
386 size_t len = 0;
387
388 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_raw_buffer(p, start, buf, size));
389
390 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_len(p, start, len));
391 MBEDTLS_ASN1_CHK_ADD(len, mbedtls_asn1_write_tag(p, start, MBEDTLS_ASN1_OCTET_STRING));
392
393 return (int) len;
394 }
395
396
397 /* This is a copy of the ASN.1 parsing function mbedtls_asn1_find_named_data(),
398 * which is replicated to avoid a dependency ASN1_WRITE_C on ASN1_PARSE_C. */
asn1_find_named_data(mbedtls_asn1_named_data * list,const char * oid,size_t len)399 static mbedtls_asn1_named_data *asn1_find_named_data(
400 mbedtls_asn1_named_data *list,
401 const char *oid, size_t len)
402 {
403 while (list != NULL) {
404 if (list->oid.len == len &&
405 memcmp(list->oid.p, oid, len) == 0) {
406 break;
407 }
408
409 list = list->next;
410 }
411
412 return list;
413 }
414
mbedtls_asn1_store_named_data(mbedtls_asn1_named_data ** head,const char * oid,size_t oid_len,const unsigned char * val,size_t val_len)415 mbedtls_asn1_named_data *mbedtls_asn1_store_named_data(
416 mbedtls_asn1_named_data **head,
417 const char *oid, size_t oid_len,
418 const unsigned char *val,
419 size_t val_len)
420 {
421 mbedtls_asn1_named_data *cur;
422
423 if ((cur = asn1_find_named_data(*head, oid, oid_len)) == NULL) {
424 // Add new entry if not present yet based on OID
425 //
426 cur = (mbedtls_asn1_named_data *) mbedtls_calloc(1,
427 sizeof(mbedtls_asn1_named_data));
428 if (cur == NULL) {
429 return NULL;
430 }
431
432 cur->oid.len = oid_len;
433 cur->oid.p = mbedtls_calloc(1, oid_len);
434 if (cur->oid.p == NULL) {
435 mbedtls_free(cur);
436 return NULL;
437 }
438
439 memcpy(cur->oid.p, oid, oid_len);
440
441 cur->val.len = val_len;
442 if (val_len != 0) {
443 cur->val.p = mbedtls_calloc(1, val_len);
444 if (cur->val.p == NULL) {
445 mbedtls_free(cur->oid.p);
446 mbedtls_free(cur);
447 return NULL;
448 }
449 }
450
451 cur->next = *head;
452 *head = cur;
453 } else if (val_len == 0) {
454 mbedtls_free(cur->val.p);
455 cur->val.p = NULL;
456 } else if (cur->val.len != val_len) {
457 /*
458 * Enlarge existing value buffer if needed
459 * Preserve old data until the allocation succeeded, to leave list in
460 * a consistent state in case allocation fails.
461 */
462 void *p = mbedtls_calloc(1, val_len);
463 if (p == NULL) {
464 return NULL;
465 }
466
467 mbedtls_free(cur->val.p);
468 cur->val.p = p;
469 cur->val.len = val_len;
470 }
471
472 if (val != NULL && val_len != 0) {
473 memcpy(cur->val.p, val, val_len);
474 }
475
476 return cur;
477 }
478 #endif /* MBEDTLS_ASN1_WRITE_C */
479