Coverage Report

Created: 2023-09-25 06:45

/src/openssl/crypto/x509/v3_asid.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 2006-2021 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License").  You may not use
5
 * this file except in compliance with the License.  You can obtain a copy
6
 * in the file LICENSE in the source distribution or at
7
 * https://www.openssl.org/source/license.html
8
 */
9
10
/*
11
 * Implementation of RFC 3779 section 3.2.
12
 */
13
14
#include <assert.h>
15
#include <stdio.h>
16
#include <string.h>
17
#include "internal/cryptlib.h"
18
#include <openssl/conf.h>
19
#include <openssl/asn1.h>
20
#include <openssl/asn1t.h>
21
#include <openssl/x509v3.h>
22
#include <openssl/x509.h>
23
#include "crypto/x509.h"
24
#include <openssl/bn.h>
25
#include "ext_dat.h"
26
#include "x509_local.h"
27
28
#ifndef OPENSSL_NO_RFC3779
29
30
/*
31
 * OpenSSL ASN.1 template translation of RFC 3779 3.2.3.
32
 */
33
34
ASN1_SEQUENCE(ASRange) = {
35
  ASN1_SIMPLE(ASRange, min, ASN1_INTEGER),
36
  ASN1_SIMPLE(ASRange, max, ASN1_INTEGER)
37
} ASN1_SEQUENCE_END(ASRange)
38
39
ASN1_CHOICE(ASIdOrRange) = {
40
  ASN1_SIMPLE(ASIdOrRange, u.id,    ASN1_INTEGER),
41
  ASN1_SIMPLE(ASIdOrRange, u.range, ASRange)
42
} ASN1_CHOICE_END(ASIdOrRange)
43
44
ASN1_CHOICE(ASIdentifierChoice) = {
45
  ASN1_SIMPLE(ASIdentifierChoice,      u.inherit,       ASN1_NULL),
46
  ASN1_SEQUENCE_OF(ASIdentifierChoice, u.asIdsOrRanges, ASIdOrRange)
47
} ASN1_CHOICE_END(ASIdentifierChoice)
48
49
ASN1_SEQUENCE(ASIdentifiers) = {
50
  ASN1_EXP_OPT(ASIdentifiers, asnum, ASIdentifierChoice, 0),
51
  ASN1_EXP_OPT(ASIdentifiers, rdi,   ASIdentifierChoice, 1)
52
} ASN1_SEQUENCE_END(ASIdentifiers)
53
54
IMPLEMENT_ASN1_FUNCTIONS(ASRange)
55
IMPLEMENT_ASN1_FUNCTIONS(ASIdOrRange)
56
IMPLEMENT_ASN1_FUNCTIONS(ASIdentifierChoice)
57
IMPLEMENT_ASN1_FUNCTIONS(ASIdentifiers)
58
59
/*
60
 * i2r method for an ASIdentifierChoice.
61
 */
62
static int i2r_ASIdentifierChoice(BIO *out,
63
                                  ASIdentifierChoice *choice,
64
                                  int indent, const char *msg)
65
0
{
66
0
    int i;
67
0
    char *s;
68
0
    if (choice == NULL)
69
0
        return 1;
70
0
    BIO_printf(out, "%*s%s:\n", indent, "", msg);
71
0
    switch (choice->type) {
72
0
    case ASIdentifierChoice_inherit:
73
0
        BIO_printf(out, "%*sinherit\n", indent + 2, "");
74
0
        break;
75
0
    case ASIdentifierChoice_asIdsOrRanges:
76
0
        for (i = 0; i < sk_ASIdOrRange_num(choice->u.asIdsOrRanges); i++) {
77
0
            ASIdOrRange *aor =
78
0
                sk_ASIdOrRange_value(choice->u.asIdsOrRanges, i);
79
0
            switch (aor->type) {
80
0
            case ASIdOrRange_id:
81
0
                if ((s = i2s_ASN1_INTEGER(NULL, aor->u.id)) == NULL)
82
0
                    return 0;
83
0
                BIO_printf(out, "%*s%s\n", indent + 2, "", s);
84
0
                OPENSSL_free(s);
85
0
                break;
86
0
            case ASIdOrRange_range:
87
0
                if ((s = i2s_ASN1_INTEGER(NULL, aor->u.range->min)) == NULL)
88
0
                    return 0;
89
0
                BIO_printf(out, "%*s%s-", indent + 2, "", s);
90
0
                OPENSSL_free(s);
91
0
                if ((s = i2s_ASN1_INTEGER(NULL, aor->u.range->max)) == NULL)
92
0
                    return 0;
93
0
                BIO_printf(out, "%s\n", s);
94
0
                OPENSSL_free(s);
95
0
                break;
96
0
            default:
97
0
                return 0;
98
0
            }
99
0
        }
100
0
        break;
101
0
    default:
102
0
        return 0;
103
0
    }
104
0
    return 1;
105
0
}
106
107
/*
108
 * i2r method for an ASIdentifier extension.
109
 */
110
static int i2r_ASIdentifiers(const X509V3_EXT_METHOD *method,
111
                             void *ext, BIO *out, int indent)
112
0
{
113
0
    ASIdentifiers *asid = ext;
114
0
    return (i2r_ASIdentifierChoice(out, asid->asnum, indent,
115
0
                                   "Autonomous System Numbers") &&
116
0
            i2r_ASIdentifierChoice(out, asid->rdi, indent,
117
0
                                   "Routing Domain Identifiers"));
118
0
}
119
120
/*
121
 * Sort comparison function for a sequence of ASIdOrRange elements.
122
 */
123
static int ASIdOrRange_cmp(const ASIdOrRange *const *a_,
124
                           const ASIdOrRange *const *b_)
125
0
{
126
0
    const ASIdOrRange *a = *a_, *b = *b_;
127
128
0
    assert((a->type == ASIdOrRange_id && a->u.id != NULL) ||
129
0
           (a->type == ASIdOrRange_range && a->u.range != NULL &&
130
0
            a->u.range->min != NULL && a->u.range->max != NULL));
131
132
0
    assert((b->type == ASIdOrRange_id && b->u.id != NULL) ||
133
0
           (b->type == ASIdOrRange_range && b->u.range != NULL &&
134
0
            b->u.range->min != NULL && b->u.range->max != NULL));
135
136
0
    if (a->type == ASIdOrRange_id && b->type == ASIdOrRange_id)
137
0
        return ASN1_INTEGER_cmp(a->u.id, b->u.id);
138
139
0
    if (a->type == ASIdOrRange_range && b->type == ASIdOrRange_range) {
140
0
        int r = ASN1_INTEGER_cmp(a->u.range->min, b->u.range->min);
141
0
        return r != 0 ? r : ASN1_INTEGER_cmp(a->u.range->max,
142
0
                                             b->u.range->max);
143
0
    }
144
145
0
    if (a->type == ASIdOrRange_id)
146
0
        return ASN1_INTEGER_cmp(a->u.id, b->u.range->min);
147
0
    else
148
0
        return ASN1_INTEGER_cmp(a->u.range->min, b->u.id);
149
0
}
150
151
/*
152
 * Add an inherit element.
153
 */
154
int X509v3_asid_add_inherit(ASIdentifiers *asid, int which)
155
0
{
156
0
    ASIdentifierChoice **choice;
157
0
    if (asid == NULL)
158
0
        return 0;
159
0
    switch (which) {
160
0
    case V3_ASID_ASNUM:
161
0
        choice = &asid->asnum;
162
0
        break;
163
0
    case V3_ASID_RDI:
164
0
        choice = &asid->rdi;
165
0
        break;
166
0
    default:
167
0
        return 0;
168
0
    }
169
0
    if (*choice == NULL) {
170
0
        if ((*choice = ASIdentifierChoice_new()) == NULL)
171
0
            return 0;
172
0
        if (((*choice)->u.inherit = ASN1_NULL_new()) == NULL)
173
0
            return 0;
174
0
        (*choice)->type = ASIdentifierChoice_inherit;
175
0
    }
176
0
    return (*choice)->type == ASIdentifierChoice_inherit;
177
0
}
178
179
/*
180
 * Add an ID or range to an ASIdentifierChoice.
181
 */
182
int X509v3_asid_add_id_or_range(ASIdentifiers *asid,
183
                                int which, ASN1_INTEGER *min, ASN1_INTEGER *max)
184
0
{
185
0
    ASIdentifierChoice **choice;
186
0
    ASIdOrRange *aor;
187
0
    if (asid == NULL)
188
0
        return 0;
189
0
    switch (which) {
190
0
    case V3_ASID_ASNUM:
191
0
        choice = &asid->asnum;
192
0
        break;
193
0
    case V3_ASID_RDI:
194
0
        choice = &asid->rdi;
195
0
        break;
196
0
    default:
197
0
        return 0;
198
0
    }
199
0
    if (*choice != NULL && (*choice)->type == ASIdentifierChoice_inherit)
200
0
        return 0;
201
0
    if (*choice == NULL) {
202
0
        if ((*choice = ASIdentifierChoice_new()) == NULL)
203
0
            return 0;
204
0
        (*choice)->u.asIdsOrRanges = sk_ASIdOrRange_new(ASIdOrRange_cmp);
205
0
        if ((*choice)->u.asIdsOrRanges == NULL)
206
0
            return 0;
207
0
        (*choice)->type = ASIdentifierChoice_asIdsOrRanges;
208
0
    }
209
0
    if ((aor = ASIdOrRange_new()) == NULL)
210
0
        return 0;
211
0
    if (max == NULL) {
212
0
        aor->type = ASIdOrRange_id;
213
0
        aor->u.id = min;
214
0
    } else {
215
0
        aor->type = ASIdOrRange_range;
216
0
        if ((aor->u.range = ASRange_new()) == NULL)
217
0
            goto err;
218
0
        ASN1_INTEGER_free(aor->u.range->min);
219
0
        aor->u.range->min = min;
220
0
        ASN1_INTEGER_free(aor->u.range->max);
221
0
        aor->u.range->max = max;
222
0
    }
223
0
    if (!(sk_ASIdOrRange_push((*choice)->u.asIdsOrRanges, aor)))
224
0
        goto err;
225
0
    return 1;
226
227
0
 err:
228
0
    ASIdOrRange_free(aor);
229
0
    return 0;
230
0
}
231
232
/*
233
 * Extract min and max values from an ASIdOrRange.
234
 */
235
static int extract_min_max(ASIdOrRange *aor,
236
                           ASN1_INTEGER **min, ASN1_INTEGER **max)
237
0
{
238
0
    if (!ossl_assert(aor != NULL))
239
0
        return 0;
240
0
    switch (aor->type) {
241
0
    case ASIdOrRange_id:
242
0
        *min = aor->u.id;
243
0
        *max = aor->u.id;
244
0
        return 1;
245
0
    case ASIdOrRange_range:
246
0
        *min = aor->u.range->min;
247
0
        *max = aor->u.range->max;
248
0
        return 1;
249
0
    }
250
251
0
    return 0;
252
0
}
253
254
/*
255
 * Check whether an ASIdentifierChoice is in canonical form.
256
 */
257
static int ASIdentifierChoice_is_canonical(ASIdentifierChoice *choice)
258
0
{
259
0
    ASN1_INTEGER *a_max_plus_one = NULL;
260
0
    ASN1_INTEGER *orig;
261
0
    BIGNUM *bn = NULL;
262
0
    int i, ret = 0;
263
264
    /*
265
     * Empty element or inheritance is canonical.
266
     */
267
0
    if (choice == NULL || choice->type == ASIdentifierChoice_inherit)
268
0
        return 1;
269
270
    /*
271
     * If not a list, or if empty list, it's broken.
272
     */
273
0
    if (choice->type != ASIdentifierChoice_asIdsOrRanges ||
274
0
        sk_ASIdOrRange_num(choice->u.asIdsOrRanges) == 0)
275
0
        return 0;
276
277
    /*
278
     * It's a list, check it.
279
     */
280
0
    for (i = 0; i < sk_ASIdOrRange_num(choice->u.asIdsOrRanges) - 1; i++) {
281
0
        ASIdOrRange *a = sk_ASIdOrRange_value(choice->u.asIdsOrRanges, i);
282
0
        ASIdOrRange *b = sk_ASIdOrRange_value(choice->u.asIdsOrRanges, i + 1);
283
0
        ASN1_INTEGER *a_min = NULL, *a_max = NULL, *b_min = NULL, *b_max =
284
0
            NULL;
285
286
0
        if (!extract_min_max(a, &a_min, &a_max)
287
0
                || !extract_min_max(b, &b_min, &b_max))
288
0
            goto done;
289
290
        /*
291
         * Punt misordered list, overlapping start, or inverted range.
292
         */
293
0
        if (ASN1_INTEGER_cmp(a_min, b_min) >= 0 ||
294
0
            ASN1_INTEGER_cmp(a_min, a_max) > 0 ||
295
0
            ASN1_INTEGER_cmp(b_min, b_max) > 0)
296
0
            goto done;
297
298
        /*
299
         * Calculate a_max + 1 to check for adjacency.
300
         */
301
0
        if ((bn == NULL && (bn = BN_new()) == NULL) ||
302
0
            ASN1_INTEGER_to_BN(a_max, bn) == NULL ||
303
0
            !BN_add_word(bn, 1)) {
304
0
            ERR_raise(ERR_LIB_X509V3, ERR_R_BN_LIB);
305
0
            goto done;
306
0
        }
307
308
0
        if ((a_max_plus_one =
309
0
                BN_to_ASN1_INTEGER(bn, orig = a_max_plus_one)) == NULL) {
310
0
            a_max_plus_one = orig;
311
0
            ERR_raise(ERR_LIB_X509V3, ERR_R_ASN1_LIB);
312
0
            goto done;
313
0
        }
314
315
        /*
316
         * Punt if adjacent or overlapping.
317
         */
318
0
        if (ASN1_INTEGER_cmp(a_max_plus_one, b_min) >= 0)
319
0
            goto done;
320
0
    }
321
322
    /*
323
     * Check for inverted range.
324
     */
325
0
    i = sk_ASIdOrRange_num(choice->u.asIdsOrRanges) - 1;
326
0
    {
327
0
        ASIdOrRange *a = sk_ASIdOrRange_value(choice->u.asIdsOrRanges, i);
328
0
        ASN1_INTEGER *a_min, *a_max;
329
0
        if (a != NULL && a->type == ASIdOrRange_range) {
330
0
            if (!extract_min_max(a, &a_min, &a_max)
331
0
                    || ASN1_INTEGER_cmp(a_min, a_max) > 0)
332
0
                goto done;
333
0
        }
334
0
    }
335
336
0
    ret = 1;
337
338
0
 done:
339
0
    ASN1_INTEGER_free(a_max_plus_one);
340
0
    BN_free(bn);
341
0
    return ret;
342
0
}
343
344
/*
345
 * Check whether an ASIdentifier extension is in canonical form.
346
 */
347
int X509v3_asid_is_canonical(ASIdentifiers *asid)
348
0
{
349
0
    return (asid == NULL ||
350
0
            (ASIdentifierChoice_is_canonical(asid->asnum) &&
351
0
             ASIdentifierChoice_is_canonical(asid->rdi)));
352
0
}
353
354
/*
355
 * Whack an ASIdentifierChoice into canonical form.
356
 */
357
static int ASIdentifierChoice_canonize(ASIdentifierChoice *choice)
358
0
{
359
0
    ASN1_INTEGER *a_max_plus_one = NULL;
360
0
    ASN1_INTEGER *orig;
361
0
    BIGNUM *bn = NULL;
362
0
    int i, ret = 0;
363
364
    /*
365
     * Nothing to do for empty element or inheritance.
366
     */
367
0
    if (choice == NULL || choice->type == ASIdentifierChoice_inherit)
368
0
        return 1;
369
370
    /*
371
     * If not a list, or if empty list, it's broken.
372
     */
373
0
    if (choice->type != ASIdentifierChoice_asIdsOrRanges ||
374
0
        sk_ASIdOrRange_num(choice->u.asIdsOrRanges) == 0) {
375
0
        ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_VALUE_ERROR);
376
0
        return 0;
377
0
    }
378
379
    /*
380
     * We have a non-empty list.  Sort it.
381
     */
382
0
    sk_ASIdOrRange_sort(choice->u.asIdsOrRanges);
383
384
    /*
385
     * Now check for errors and suboptimal encoding, rejecting the
386
     * former and fixing the latter.
387
     */
388
0
    for (i = 0; i < sk_ASIdOrRange_num(choice->u.asIdsOrRanges) - 1; i++) {
389
0
        ASIdOrRange *a = sk_ASIdOrRange_value(choice->u.asIdsOrRanges, i);
390
0
        ASIdOrRange *b = sk_ASIdOrRange_value(choice->u.asIdsOrRanges, i + 1);
391
0
        ASN1_INTEGER *a_min = NULL, *a_max = NULL, *b_min = NULL, *b_max =
392
0
            NULL;
393
394
0
        if (!extract_min_max(a, &a_min, &a_max)
395
0
                || !extract_min_max(b, &b_min, &b_max))
396
0
            goto done;
397
398
        /*
399
         * Make sure we're properly sorted (paranoia).
400
         */
401
0
        if (!ossl_assert(ASN1_INTEGER_cmp(a_min, b_min) <= 0))
402
0
            goto done;
403
404
        /*
405
         * Punt inverted ranges.
406
         */
407
0
        if (ASN1_INTEGER_cmp(a_min, a_max) > 0 ||
408
0
            ASN1_INTEGER_cmp(b_min, b_max) > 0)
409
0
            goto done;
410
411
        /*
412
         * Check for overlaps.
413
         */
414
0
        if (ASN1_INTEGER_cmp(a_max, b_min) >= 0) {
415
0
            ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_VALUE_ERROR);
416
0
            goto done;
417
0
        }
418
419
        /*
420
         * Calculate a_max + 1 to check for adjacency.
421
         */
422
0
        if ((bn == NULL && (bn = BN_new()) == NULL) ||
423
0
            ASN1_INTEGER_to_BN(a_max, bn) == NULL ||
424
0
            !BN_add_word(bn, 1)) {
425
0
            ERR_raise(ERR_LIB_X509V3, ERR_R_BN_LIB);
426
0
            goto done;
427
0
        }
428
429
0
        if ((a_max_plus_one =
430
0
                 BN_to_ASN1_INTEGER(bn, orig = a_max_plus_one)) == NULL) {
431
0
            a_max_plus_one = orig;
432
0
            ERR_raise(ERR_LIB_X509V3, ERR_R_ASN1_LIB);
433
0
            goto done;
434
0
        }
435
436
        /*
437
         * If a and b are adjacent, merge them.
438
         */
439
0
        if (ASN1_INTEGER_cmp(a_max_plus_one, b_min) == 0) {
440
0
            ASRange *r;
441
0
            switch (a->type) {
442
0
            case ASIdOrRange_id:
443
0
                if ((r = OPENSSL_malloc(sizeof(*r))) == NULL)
444
0
                    goto done;
445
0
                r->min = a_min;
446
0
                r->max = b_max;
447
0
                a->type = ASIdOrRange_range;
448
0
                a->u.range = r;
449
0
                break;
450
0
            case ASIdOrRange_range:
451
0
                ASN1_INTEGER_free(a->u.range->max);
452
0
                a->u.range->max = b_max;
453
0
                break;
454
0
            }
455
0
            switch (b->type) {
456
0
            case ASIdOrRange_id:
457
0
                b->u.id = NULL;
458
0
                break;
459
0
            case ASIdOrRange_range:
460
0
                b->u.range->max = NULL;
461
0
                break;
462
0
            }
463
0
            ASIdOrRange_free(b);
464
0
            (void)sk_ASIdOrRange_delete(choice->u.asIdsOrRanges, i + 1);
465
0
            i--;
466
0
            continue;
467
0
        }
468
0
    }
469
470
    /*
471
     * Check for final inverted range.
472
     */
473
0
    i = sk_ASIdOrRange_num(choice->u.asIdsOrRanges) - 1;
474
0
    {
475
0
        ASIdOrRange *a = sk_ASIdOrRange_value(choice->u.asIdsOrRanges, i);
476
0
        ASN1_INTEGER *a_min, *a_max;
477
0
        if (a != NULL && a->type == ASIdOrRange_range) {
478
0
            if (!extract_min_max(a, &a_min, &a_max)
479
0
                    || ASN1_INTEGER_cmp(a_min, a_max) > 0)
480
0
                goto done;
481
0
        }
482
0
    }
483
484
    /* Paranoia */
485
0
    if (!ossl_assert(ASIdentifierChoice_is_canonical(choice)))
486
0
        goto done;
487
488
0
    ret = 1;
489
490
0
 done:
491
0
    ASN1_INTEGER_free(a_max_plus_one);
492
0
    BN_free(bn);
493
0
    return ret;
494
0
}
495
496
/*
497
 * Whack an ASIdentifier extension into canonical form.
498
 */
499
int X509v3_asid_canonize(ASIdentifiers *asid)
500
0
{
501
0
    return (asid == NULL ||
502
0
            (ASIdentifierChoice_canonize(asid->asnum) &&
503
0
             ASIdentifierChoice_canonize(asid->rdi)));
504
0
}
505
506
/*
507
 * v2i method for an ASIdentifier extension.
508
 */
509
static void *v2i_ASIdentifiers(const struct v3_ext_method *method,
510
                               struct v3_ext_ctx *ctx,
511
                               STACK_OF(CONF_VALUE) *values)
512
0
{
513
0
    ASN1_INTEGER *min = NULL, *max = NULL;
514
0
    ASIdentifiers *asid = NULL;
515
0
    int i;
516
517
0
    if ((asid = ASIdentifiers_new()) == NULL) {
518
0
        ERR_raise(ERR_LIB_X509V3, ERR_R_X509V3_LIB);
519
0
        return NULL;
520
0
    }
521
522
0
    for (i = 0; i < sk_CONF_VALUE_num(values); i++) {
523
0
        CONF_VALUE *val = sk_CONF_VALUE_value(values, i);
524
0
        int i1 = 0, i2 = 0, i3 = 0, is_range = 0, which = 0;
525
526
        /*
527
         * Figure out whether this is an AS or an RDI.
528
         */
529
0
        if (!ossl_v3_name_cmp(val->name, "AS")) {
530
0
            which = V3_ASID_ASNUM;
531
0
        } else if (!ossl_v3_name_cmp(val->name, "RDI")) {
532
0
            which = V3_ASID_RDI;
533
0
        } else {
534
0
            ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_NAME_ERROR);
535
0
            X509V3_conf_add_error_name_value(val);
536
0
            goto err;
537
0
        }
538
539
        /*
540
         * Handle inheritance.
541
         */
542
0
        if (strcmp(val->value, "inherit") == 0) {
543
0
            if (X509v3_asid_add_inherit(asid, which))
544
0
                continue;
545
0
            ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_INHERITANCE);
546
0
            X509V3_conf_add_error_name_value(val);
547
0
            goto err;
548
0
        }
549
550
        /*
551
         * Number, range, or mistake, pick it apart and figure out which.
552
         */
553
0
        i1 = strspn(val->value, "0123456789");
554
0
        if (val->value[i1] == '\0') {
555
0
            is_range = 0;
556
0
        } else {
557
0
            is_range = 1;
558
0
            i2 = i1 + strspn(val->value + i1, " \t");
559
0
            if (val->value[i2] != '-') {
560
0
                ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_ASNUMBER);
561
0
                X509V3_conf_add_error_name_value(val);
562
0
                goto err;
563
0
            }
564
0
            i2++;
565
0
            i2 = i2 + strspn(val->value + i2, " \t");
566
0
            i3 = i2 + strspn(val->value + i2, "0123456789");
567
0
            if (val->value[i3] != '\0') {
568
0
                ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_ASRANGE);
569
0
                X509V3_conf_add_error_name_value(val);
570
0
                goto err;
571
0
            }
572
0
        }
573
574
        /*
575
         * Syntax is ok, read and add it.
576
         */
577
0
        if (!is_range) {
578
0
            if (!X509V3_get_value_int(val, &min)) {
579
0
                ERR_raise(ERR_LIB_X509V3, ERR_R_X509V3_LIB);
580
0
                goto err;
581
0
            }
582
0
        } else {
583
0
            char *s = OPENSSL_strdup(val->value);
584
0
            if (s == NULL)
585
0
                goto err;
586
0
            s[i1] = '\0';
587
0
            min = s2i_ASN1_INTEGER(NULL, s);
588
0
            max = s2i_ASN1_INTEGER(NULL, s + i2);
589
0
            OPENSSL_free(s);
590
0
            if (min == NULL || max == NULL) {
591
0
                ERR_raise(ERR_LIB_X509V3, ERR_R_X509V3_LIB);
592
0
                goto err;
593
0
            }
594
0
            if (ASN1_INTEGER_cmp(min, max) > 0) {
595
0
                ERR_raise(ERR_LIB_X509V3, X509V3_R_EXTENSION_VALUE_ERROR);
596
0
                goto err;
597
0
            }
598
0
        }
599
0
        if (!X509v3_asid_add_id_or_range(asid, which, min, max)) {
600
0
            ERR_raise(ERR_LIB_X509V3, ERR_R_X509V3_LIB);
601
0
            goto err;
602
0
        }
603
0
        min = max = NULL;
604
0
    }
605
606
    /*
607
     * Canonize the result, then we're done.
608
     */
609
0
    if (!X509v3_asid_canonize(asid))
610
0
        goto err;
611
0
    return asid;
612
613
0
 err:
614
0
    ASIdentifiers_free(asid);
615
0
    ASN1_INTEGER_free(min);
616
0
    ASN1_INTEGER_free(max);
617
0
    return NULL;
618
0
}
619
620
/*
621
 * OpenSSL dispatch.
622
 */
623
const X509V3_EXT_METHOD ossl_v3_asid = {
624
    NID_sbgp_autonomousSysNum,  /* nid */
625
    0,                          /* flags */
626
    ASN1_ITEM_ref(ASIdentifiers), /* template */
627
    0, 0, 0, 0,                 /* old functions, ignored */
628
    0,                          /* i2s */
629
    0,                          /* s2i */
630
    0,                          /* i2v */
631
    v2i_ASIdentifiers,          /* v2i */
632
    i2r_ASIdentifiers,          /* i2r */
633
    0,                          /* r2i */
634
    NULL                        /* extension-specific data */
635
};
636
637
/*
638
 * Figure out whether extension uses inheritance.
639
 */
640
int X509v3_asid_inherits(ASIdentifiers *asid)
641
0
{
642
0
    return (asid != NULL &&
643
0
            ((asid->asnum != NULL &&
644
0
              asid->asnum->type == ASIdentifierChoice_inherit) ||
645
0
             (asid->rdi != NULL &&
646
0
              asid->rdi->type == ASIdentifierChoice_inherit)));
647
0
}
648
649
/*
650
 * Figure out whether parent contains child.
651
 */
652
static int asid_contains(ASIdOrRanges *parent, ASIdOrRanges *child)
653
0
{
654
0
    ASN1_INTEGER *p_min = NULL, *p_max = NULL, *c_min = NULL, *c_max = NULL;
655
0
    int p, c;
656
657
0
    if (child == NULL || parent == child)
658
0
        return 1;
659
0
    if (parent == NULL)
660
0
        return 0;
661
662
0
    p = 0;
663
0
    for (c = 0; c < sk_ASIdOrRange_num(child); c++) {
664
0
        if (!extract_min_max(sk_ASIdOrRange_value(child, c), &c_min, &c_max))
665
0
            return 0;
666
0
        for (;; p++) {
667
0
            if (p >= sk_ASIdOrRange_num(parent))
668
0
                return 0;
669
0
            if (!extract_min_max(sk_ASIdOrRange_value(parent, p), &p_min,
670
0
                                 &p_max))
671
0
                return 0;
672
0
            if (ASN1_INTEGER_cmp(p_max, c_max) < 0)
673
0
                continue;
674
0
            if (ASN1_INTEGER_cmp(p_min, c_min) > 0)
675
0
                return 0;
676
0
            break;
677
0
        }
678
0
    }
679
680
0
    return 1;
681
0
}
682
683
/*
684
 * Test whether a is a subset of b.
685
 */
686
int X509v3_asid_subset(ASIdentifiers *a, ASIdentifiers *b)
687
0
{
688
0
    int subset;
689
690
0
    if (a == NULL || a == b)
691
0
        return 1;
692
693
0
    if (b == NULL)
694
0
        return 0;
695
696
0
    if (X509v3_asid_inherits(a) || X509v3_asid_inherits(b))
697
0
        return 0;
698
699
0
    subset = a->asnum == NULL
700
0
             || (b->asnum != NULL
701
0
                 && asid_contains(b->asnum->u.asIdsOrRanges,
702
0
                                  a->asnum->u.asIdsOrRanges));
703
0
    if (!subset)
704
0
        return 0;
705
706
0
    return a->rdi == NULL
707
0
           || (b->rdi != NULL
708
0
               && asid_contains(b->rdi->u.asIdsOrRanges,
709
0
                                a->rdi->u.asIdsOrRanges));
710
0
}
711
712
/*
713
 * Validation error handling via callback.
714
 */
715
#define validation_err(_err_)           \
716
0
  do {                                  \
717
0
    if (ctx != NULL) {                  \
718
0
      ctx->error = _err_;               \
719
0
      ctx->error_depth = i;             \
720
0
      ctx->current_cert = x;            \
721
0
      ret = ctx->verify_cb(0, ctx);     \
722
0
    } else {                            \
723
0
      ret = 0;                          \
724
0
    }                                   \
725
0
    if (!ret)                           \
726
0
      goto done;                        \
727
0
  } while (0)
728
729
/*
730
 * Core code for RFC 3779 3.3 path validation.
731
 */
732
static int asid_validate_path_internal(X509_STORE_CTX *ctx,
733
                                       STACK_OF(X509) *chain,
734
                                       ASIdentifiers *ext)
735
0
{
736
0
    ASIdOrRanges *child_as = NULL, *child_rdi = NULL;
737
0
    int i, ret = 1, inherit_as = 0, inherit_rdi = 0;
738
0
    X509 *x;
739
740
0
    if (!ossl_assert(chain != NULL && sk_X509_num(chain) > 0)
741
0
            || !ossl_assert(ctx != NULL || ext != NULL)
742
0
            || !ossl_assert(ctx == NULL || ctx->verify_cb != NULL)) {
743
0
        if (ctx != NULL)
744
0
            ctx->error = X509_V_ERR_UNSPECIFIED;
745
0
        return 0;
746
0
    }
747
748
749
    /*
750
     * Figure out where to start.  If we don't have an extension to
751
     * check, we're done.  Otherwise, check canonical form and
752
     * set up for walking up the chain.
753
     */
754
0
    if (ext != NULL) {
755
0
        i = -1;
756
0
        x = NULL;
757
0
    } else {
758
0
        i = 0;
759
0
        x = sk_X509_value(chain, i);
760
0
        if ((ext = x->rfc3779_asid) == NULL)
761
0
            goto done;
762
0
    }
763
0
    if (!X509v3_asid_is_canonical(ext))
764
0
        validation_err(X509_V_ERR_INVALID_EXTENSION);
765
0
    if (ext->asnum != NULL) {
766
0
        switch (ext->asnum->type) {
767
0
        case ASIdentifierChoice_inherit:
768
0
            inherit_as = 1;
769
0
            break;
770
0
        case ASIdentifierChoice_asIdsOrRanges:
771
0
            child_as = ext->asnum->u.asIdsOrRanges;
772
0
            break;
773
0
        }
774
0
    }
775
0
    if (ext->rdi != NULL) {
776
0
        switch (ext->rdi->type) {
777
0
        case ASIdentifierChoice_inherit:
778
0
            inherit_rdi = 1;
779
0
            break;
780
0
        case ASIdentifierChoice_asIdsOrRanges:
781
0
            child_rdi = ext->rdi->u.asIdsOrRanges;
782
0
            break;
783
0
        }
784
0
    }
785
786
    /*
787
     * Now walk up the chain.  Extensions must be in canonical form, no
788
     * cert may list resources that its parent doesn't list.
789
     */
790
0
    for (i++; i < sk_X509_num(chain); i++) {
791
0
        x = sk_X509_value(chain, i);
792
0
        if (!ossl_assert(x != NULL)) {
793
0
            if (ctx != NULL)
794
0
                ctx->error = X509_V_ERR_UNSPECIFIED;
795
0
            return 0;
796
0
        }
797
0
        if (x->rfc3779_asid == NULL) {
798
0
            if (child_as != NULL || child_rdi != NULL)
799
0
                validation_err(X509_V_ERR_UNNESTED_RESOURCE);
800
0
            continue;
801
0
        }
802
0
        if (!X509v3_asid_is_canonical(x->rfc3779_asid))
803
0
            validation_err(X509_V_ERR_INVALID_EXTENSION);
804
0
        if (x->rfc3779_asid->asnum == NULL && child_as != NULL) {
805
0
            validation_err(X509_V_ERR_UNNESTED_RESOURCE);
806
0
            child_as = NULL;
807
0
            inherit_as = 0;
808
0
        }
809
0
        if (x->rfc3779_asid->asnum != NULL &&
810
0
            x->rfc3779_asid->asnum->type ==
811
0
            ASIdentifierChoice_asIdsOrRanges) {
812
0
            if (inherit_as
813
0
                || asid_contains(x->rfc3779_asid->asnum->u.asIdsOrRanges,
814
0
                                 child_as)) {
815
0
                child_as = x->rfc3779_asid->asnum->u.asIdsOrRanges;
816
0
                inherit_as = 0;
817
0
            } else {
818
0
                validation_err(X509_V_ERR_UNNESTED_RESOURCE);
819
0
            }
820
0
        }
821
0
        if (x->rfc3779_asid->rdi == NULL && child_rdi != NULL) {
822
0
            validation_err(X509_V_ERR_UNNESTED_RESOURCE);
823
0
            child_rdi = NULL;
824
0
            inherit_rdi = 0;
825
0
        }
826
0
        if (x->rfc3779_asid->rdi != NULL &&
827
0
            x->rfc3779_asid->rdi->type == ASIdentifierChoice_asIdsOrRanges) {
828
0
            if (inherit_rdi ||
829
0
                asid_contains(x->rfc3779_asid->rdi->u.asIdsOrRanges,
830
0
                              child_rdi)) {
831
0
                child_rdi = x->rfc3779_asid->rdi->u.asIdsOrRanges;
832
0
                inherit_rdi = 0;
833
0
            } else {
834
0
                validation_err(X509_V_ERR_UNNESTED_RESOURCE);
835
0
            }
836
0
        }
837
0
    }
838
839
    /*
840
     * Trust anchor can't inherit.
841
     */
842
0
    if (!ossl_assert(x != NULL)) {
843
0
        if (ctx != NULL)
844
0
            ctx->error = X509_V_ERR_UNSPECIFIED;
845
0
        return 0;
846
0
    }
847
0
    if (x->rfc3779_asid != NULL) {
848
0
        if (x->rfc3779_asid->asnum != NULL &&
849
0
            x->rfc3779_asid->asnum->type == ASIdentifierChoice_inherit)
850
0
            validation_err(X509_V_ERR_UNNESTED_RESOURCE);
851
0
        if (x->rfc3779_asid->rdi != NULL &&
852
0
            x->rfc3779_asid->rdi->type == ASIdentifierChoice_inherit)
853
0
            validation_err(X509_V_ERR_UNNESTED_RESOURCE);
854
0
    }
855
856
0
 done:
857
0
    return ret;
858
0
}
859
860
#undef validation_err
861
862
/*
863
 * RFC 3779 3.3 path validation -- called from X509_verify_cert().
864
 */
865
int X509v3_asid_validate_path(X509_STORE_CTX *ctx)
866
0
{
867
0
    if (ctx->chain == NULL
868
0
            || sk_X509_num(ctx->chain) == 0
869
0
            || ctx->verify_cb == NULL) {
870
0
        ctx->error = X509_V_ERR_UNSPECIFIED;
871
0
        return 0;
872
0
    }
873
0
    return asid_validate_path_internal(ctx, ctx->chain, NULL);
874
0
}
875
876
/*
877
 * RFC 3779 3.3 path validation of an extension.
878
 * Test whether chain covers extension.
879
 */
880
int X509v3_asid_validate_resource_set(STACK_OF(X509) *chain,
881
                                      ASIdentifiers *ext, int allow_inheritance)
882
0
{
883
0
    if (ext == NULL)
884
0
        return 1;
885
0
    if (chain == NULL || sk_X509_num(chain) == 0)
886
0
        return 0;
887
0
    if (!allow_inheritance && X509v3_asid_inherits(ext))
888
0
        return 0;
889
0
    return asid_validate_path_internal(NULL, chain, ext);
890
0
}
891
892
#endif                          /* OPENSSL_NO_RFC3779 */