Coverage Report

Created: 2025-12-31 06:58

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl36/crypto/x509/x509_vfy.c
Line
Count
Source
1
/*
2
 * Copyright 1995-2025 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
#include "internal/deprecated.h"
11
12
#include <stdio.h>
13
#include <time.h>
14
#include <errno.h>
15
#include <limits.h>
16
17
#include "crypto/ctype.h"
18
#include "internal/cryptlib.h"
19
#include <openssl/crypto.h>
20
#include <openssl/buffer.h>
21
#include <openssl/evp.h>
22
#include <openssl/asn1.h>
23
#include <openssl/x509.h>
24
#include <openssl/x509v3.h>
25
#include <openssl/ocsp.h>
26
#include <openssl/objects.h>
27
#include <openssl/core_names.h>
28
#include "internal/dane.h"
29
#include "crypto/x509.h"
30
#include "x509_local.h"
31
32
/* CRL score values */
33
34
8.71k
#define CRL_SCORE_NOCRITICAL 0x100 /* No unhandled critical extensions */
35
12.5k
#define CRL_SCORE_SCOPE 0x080 /* certificate is within CRL scope */
36
12.9k
#define CRL_SCORE_TIME 0x040 /* CRL times valid */
37
15.8k
#define CRL_SCORE_ISSUER_NAME 0x020 /* Issuer name matches certificate */
38
#define CRL_SCORE_VALID /* If this score or above CRL is probably valid */ \
39
5.10k
    (CRL_SCORE_NOCRITICAL | CRL_SCORE_TIME | CRL_SCORE_SCOPE)
40
5.28k
#define CRL_SCORE_ISSUER_CERT 0x018 /* CRL issuer is certificate issuer */
41
2.34k
#define CRL_SCORE_SAME_PATH 0x008 /* CRL issuer is on certificate path */
42
10.5k
#define CRL_SCORE_AKID 0x004 /* CRL issuer matches CRL AKID */
43
0
#define CRL_SCORE_TIME_DELTA 0x002 /* Have a delta CRL with valid times */
44
45
static int x509_verify_x509(X509_STORE_CTX *ctx);
46
static int x509_verify_rpk(X509_STORE_CTX *ctx);
47
static int build_chain(X509_STORE_CTX *ctx);
48
static int verify_chain(X509_STORE_CTX *ctx);
49
static int verify_rpk(X509_STORE_CTX *ctx);
50
static int dane_verify(X509_STORE_CTX *ctx);
51
static int dane_verify_rpk(X509_STORE_CTX *ctx);
52
static int null_callback(int ok, X509_STORE_CTX *e);
53
static int check_issued(X509_STORE_CTX *ctx, X509 *x, X509 *issuer);
54
static int check_extensions(X509_STORE_CTX *ctx);
55
static int check_name_constraints(X509_STORE_CTX *ctx);
56
static int check_id(X509_STORE_CTX *ctx);
57
static int check_trust(X509_STORE_CTX *ctx, int num_untrusted);
58
static int check_revocation(X509_STORE_CTX *ctx);
59
#ifndef OPENSSL_NO_OCSP
60
static int check_cert_ocsp_resp(X509_STORE_CTX *ctx);
61
#endif
62
static int check_cert_crl(X509_STORE_CTX *ctx);
63
static int check_policy(X509_STORE_CTX *ctx);
64
static int check_dane_issuer(X509_STORE_CTX *ctx, int depth);
65
static int check_cert_key_level(X509_STORE_CTX *ctx, X509 *cert);
66
static int check_key_level(X509_STORE_CTX *ctx, EVP_PKEY *pkey);
67
static int check_sig_level(X509_STORE_CTX *ctx, X509 *cert);
68
static int check_curve(X509 *cert);
69
70
static int get_crl_score(X509_STORE_CTX *ctx, X509 **pissuer,
71
    unsigned int *preasons, X509_CRL *crl, X509 *x);
72
static int get_crl_delta(X509_STORE_CTX *ctx,
73
    X509_CRL **pcrl, X509_CRL **pdcrl, X509 *x);
74
static void get_delta_sk(X509_STORE_CTX *ctx, X509_CRL **dcrl,
75
    int *pcrl_score, X509_CRL *base,
76
    STACK_OF(X509_CRL) *crls);
77
static void crl_akid_check(X509_STORE_CTX *ctx, X509_CRL *crl, X509 **pissuer,
78
    int *pcrl_score);
79
static int crl_crldp_check(X509 *x, X509_CRL *crl, int crl_score,
80
    unsigned int *preasons);
81
static int check_crl_path(X509_STORE_CTX *ctx, X509 *x);
82
static int check_crl_chain(X509_STORE_CTX *ctx,
83
    STACK_OF(X509) *cert_path,
84
    STACK_OF(X509) *crl_path);
85
86
static int internal_verify(X509_STORE_CTX *ctx);
87
88
static int null_callback(int ok, X509_STORE_CTX *e)
89
59.5k
{
90
59.5k
    return ok;
91
59.5k
}
92
93
/*-
94
 * Return 1 if given cert is considered self-signed, 0 if not, or -1 on error.
95
 * This actually verifies self-signedness only if requested.
96
 * It calls ossl_x509v3_cache_extensions()
97
 * to match issuer and subject names (i.e., the cert being self-issued) and any
98
 * present authority key identifier to match the subject key identifier, etc.
99
 */
100
int X509_self_signed(X509 *cert, int verify_signature)
101
102k
{
102
102k
    EVP_PKEY *pkey;
103
104
102k
    if ((pkey = X509_get0_pubkey(cert)) == NULL) { /* handles cert == NULL */
105
4.68k
        ERR_raise(ERR_LIB_X509, X509_R_UNABLE_TO_GET_CERTS_PUBLIC_KEY);
106
4.68k
        return -1;
107
4.68k
    }
108
97.9k
    if (!ossl_x509v3_cache_extensions(cert))
109
32.8k
        return -1;
110
65.0k
    if ((cert->ex_flags & EXFLAG_SS) == 0)
111
36.2k
        return 0;
112
28.7k
    if (!verify_signature)
113
28.7k
        return 1;
114
0
    return X509_verify(cert, pkey);
115
28.7k
}
116
117
/*
118
 * Given a certificate, try and find an exact match in the store.
119
 * Returns 1 on success, 0 on not found, -1 on internal error.
120
 */
121
static int lookup_cert_match(X509 **result, X509_STORE_CTX *ctx, X509 *x)
122
6.33k
{
123
6.33k
    STACK_OF(X509) *certs;
124
6.33k
    X509 *xtmp = NULL;
125
6.33k
    int i, ret;
126
127
6.33k
    *result = NULL;
128
    /* Lookup all certs with matching subject name */
129
6.33k
    ERR_set_mark();
130
6.33k
    certs = ctx->lookup_certs(ctx, X509_get_subject_name(x));
131
6.33k
    ERR_pop_to_mark();
132
6.33k
    if (certs == NULL)
133
553
        return -1;
134
135
    /* Look for exact match */
136
8.00k
    for (i = 0; i < sk_X509_num(certs); i++) {
137
2.24k
        xtmp = sk_X509_value(certs, i);
138
2.24k
        if (X509_cmp(xtmp, x) == 0)
139
14
            break;
140
2.22k
        xtmp = NULL;
141
2.22k
    }
142
5.78k
    ret = xtmp != NULL;
143
5.78k
    if (ret) {
144
14
        if (!X509_up_ref(xtmp))
145
0
            ret = -1;
146
14
        else
147
14
            *result = xtmp;
148
14
    }
149
5.78k
    OSSL_STACK_OF_X509_free(certs);
150
5.78k
    return ret;
151
6.33k
}
152
153
/*-
154
 * Inform the verify callback of an error.
155
 * The error code is set to |err| if |err| is not X509_V_OK, else
156
 * |ctx->error| is left unchanged (under the assumption it is set elsewhere).
157
 * The error depth is |depth| if >= 0, else it defaults to |ctx->error_depth|.
158
 * The error cert is |x| if not NULL, else the cert in |ctx->chain| at |depth|.
159
 *
160
 * Returns 0 to abort verification with an error, non-zero to continue.
161
 */
162
static int verify_cb_cert(X509_STORE_CTX *ctx, X509 *x, int depth, int err)
163
80.1k
{
164
80.1k
    if (depth < 0)
165
0
        depth = ctx->error_depth;
166
80.1k
    else
167
80.1k
        ctx->error_depth = depth;
168
80.1k
    ctx->current_cert = x != NULL ? x : sk_X509_value(ctx->chain, depth);
169
80.1k
    if (err != X509_V_OK)
170
80.1k
        ctx->error = err;
171
80.1k
    return ctx->verify_cb(0, ctx);
172
80.1k
}
173
174
#define CB_FAIL_IF(cond, ctx, cert, depth, err)               \
175
257k
    if ((cond) && verify_cb_cert(ctx, cert, depth, err) == 0) \
176
257k
    return 0
177
178
/*-
179
 * Inform the verify callback of an error, CRL-specific variant.  Here, the
180
 * error depth and certificate are already set, we just specify the error
181
 * number.
182
 *
183
 * Returns 0 to abort verification with an error, non-zero to continue.
184
 */
185
static int verify_cb_crl(X509_STORE_CTX *ctx, int err)
186
8.87k
{
187
8.87k
    ctx->error = err;
188
8.87k
    return ctx->verify_cb(0, ctx);
189
8.87k
}
190
191
#ifndef OPENSSL_NO_OCSP
192
/*
193
 * Inform the verify callback of an error, OCSP-specific variant.
194
 * It is called also on OCSP response errors, if the
195
 * X509_V_FLAG_OCSP_RESP_CHECK flag is set.
196
 * Here, the error depth and certificate are already set, we just specify
197
 * the error number.
198
 *
199
 * Returns 0 to abort verification with an error, non-zero to continue.
200
 */
201
static int verify_cb_ocsp(X509_STORE_CTX *ctx, int err)
202
0
{
203
0
    ctx->error = err;
204
0
    return ctx->verify_cb(0, ctx);
205
0
}
206
#endif
207
208
/* Sadly, returns 0 also on internal error in ctx->verify_cb(). */
209
static int check_auth_level(X509_STORE_CTX *ctx)
210
8.71k
{
211
8.71k
    int i;
212
8.71k
    int num = sk_X509_num(ctx->chain);
213
214
8.71k
    if (ctx->param->auth_level <= 0)
215
8.71k
        return 1;
216
217
0
    for (i = 0; i < num; ++i) {
218
0
        X509 *cert = sk_X509_value(ctx->chain, i);
219
220
        /*
221
         * We've already checked the security of the leaf key, so here we only
222
         * check the security of issuer keys.
223
         */
224
0
        CB_FAIL_IF(i > 0 && !check_cert_key_level(ctx, cert),
225
0
            ctx, cert, i, X509_V_ERR_CA_KEY_TOO_SMALL);
226
        /*
227
         * We also check the signature algorithm security of all certificates
228
         * except those of the trust anchor at index num-1.
229
         */
230
0
        CB_FAIL_IF(i < num - 1 && !check_sig_level(ctx, cert),
231
0
            ctx, cert, i, X509_V_ERR_CA_MD_TOO_WEAK);
232
0
    }
233
0
    return 1;
234
0
}
235
236
/*-
237
 * Returns -1 on internal error.
238
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
239
 */
240
static int verify_rpk(X509_STORE_CTX *ctx)
241
0
{
242
    /* Not much to verify on a RPK */
243
0
    if (ctx->verify != NULL)
244
0
        return ctx->verify(ctx);
245
246
0
    return !!ctx->verify_cb(ctx->error == X509_V_OK, ctx);
247
0
}
248
249
/*-
250
 * Returns -1 on internal error.
251
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
252
 */
253
static int verify_chain(X509_STORE_CTX *ctx)
254
67.3k
{
255
67.3k
    int err;
256
67.3k
    int ok;
257
258
67.3k
    if ((ok = build_chain(ctx)) <= 0
259
8.71k
        || (ok = check_extensions(ctx)) <= 0
260
8.71k
        || (ok = check_auth_level(ctx)) <= 0
261
8.71k
        || (ok = check_id(ctx)) <= 0
262
8.71k
        || (ok = X509_get_pubkey_parameters(NULL, ctx->chain) ? 1 : -1) <= 0
263
6.84k
        || (ok = ctx->check_revocation(ctx)) <= 0)
264
60.4k
        return ok;
265
266
6.84k
    err = X509_chain_check_suiteb(&ctx->error_depth, NULL, ctx->chain,
267
6.84k
        ctx->param->flags);
268
6.84k
    CB_FAIL_IF(err != X509_V_OK, ctx, NULL, ctx->error_depth, err);
269
270
    /* Verify chain signatures and expiration times */
271
6.84k
    ok = ctx->verify != NULL ? ctx->verify(ctx) : internal_verify(ctx);
272
6.84k
    if (ok <= 0)
273
0
        return ok;
274
275
6.84k
    if ((ok = check_name_constraints(ctx)) <= 0)
276
9
        return ok;
277
278
6.83k
#ifndef OPENSSL_NO_RFC3779
279
    /* RFC 3779 path validation, now that CRL check has been done */
280
6.83k
    if ((ok = X509v3_asid_validate_path(ctx)) <= 0)
281
0
        return ok;
282
6.83k
    if ((ok = X509v3_addr_validate_path(ctx)) <= 0)
283
37
        return ok;
284
6.79k
#endif
285
286
    /* If we get this far evaluate policies */
287
6.79k
    if ((ctx->param->flags & X509_V_FLAG_POLICY_CHECK) != 0)
288
0
        ok = ctx->check_policy(ctx);
289
6.79k
    return ok;
290
6.83k
}
291
292
int X509_STORE_CTX_verify(X509_STORE_CTX *ctx)
293
0
{
294
0
    if (ctx == NULL) {
295
0
        ERR_raise(ERR_LIB_X509, ERR_R_PASSED_NULL_PARAMETER);
296
0
        return -1;
297
0
    }
298
0
    if (ctx->rpk != NULL)
299
0
        return x509_verify_rpk(ctx);
300
0
    if (ctx->cert == NULL && sk_X509_num(ctx->untrusted) >= 1)
301
0
        ctx->cert = sk_X509_value(ctx->untrusted, 0);
302
0
    return x509_verify_x509(ctx);
303
0
}
304
305
int X509_verify_cert(X509_STORE_CTX *ctx)
306
62.4k
{
307
62.4k
    if (ctx == NULL) {
308
0
        ERR_raise(ERR_LIB_X509, ERR_R_PASSED_NULL_PARAMETER);
309
0
        return -1;
310
0
    }
311
62.4k
    return (ctx->rpk != NULL) ? x509_verify_rpk(ctx) : x509_verify_x509(ctx);
312
62.4k
}
313
314
/*-
315
 * Returns -1 on internal error.
316
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
317
 */
318
static int x509_verify_rpk(X509_STORE_CTX *ctx)
319
0
{
320
0
    int ret;
321
322
    /* If the peer's public key is too weak, we can stop early. */
323
0
    if (!check_key_level(ctx, ctx->rpk)
324
0
        && verify_cb_cert(ctx, NULL, 0, X509_V_ERR_EE_KEY_TOO_SMALL) == 0)
325
0
        return 0;
326
327
    /* Barring any data to verify the RPK, simply report it as untrusted */
328
0
    ctx->error = X509_V_ERR_RPK_UNTRUSTED;
329
330
0
    ret = DANETLS_ENABLED(ctx->dane) ? dane_verify_rpk(ctx) : verify_rpk(ctx);
331
332
    /*
333
     * Safety-net.  If we are returning an error, we must also set ctx->error,
334
     * so that the chain is not considered verified should the error be ignored
335
     * (e.g. TLS with SSL_VERIFY_NONE).
336
     */
337
0
    if (ret <= 0 && ctx->error == X509_V_OK)
338
0
        ctx->error = X509_V_ERR_UNSPECIFIED;
339
0
    return ret;
340
0
}
341
342
/*-
343
 * Returns -1 on internal error.
344
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
345
 */
346
static int x509_verify_x509(X509_STORE_CTX *ctx)
347
62.4k
{
348
62.4k
    int ret;
349
350
62.4k
    if (ctx->cert == NULL) {
351
0
        ERR_raise(ERR_LIB_X509, X509_R_NO_CERT_SET_FOR_US_TO_VERIFY);
352
0
        ctx->error = X509_V_ERR_INVALID_CALL;
353
0
        return -1;
354
0
    }
355
356
62.4k
    if (ctx->chain != NULL) {
357
        /*
358
         * This X509_STORE_CTX has already been used to verify a cert. We
359
         * cannot do another one.
360
         */
361
0
        ERR_raise(ERR_LIB_X509, ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED);
362
0
        ctx->error = X509_V_ERR_INVALID_CALL;
363
0
        return -1;
364
0
    }
365
366
62.4k
    if (!ossl_x509_add_cert_new(&ctx->chain, ctx->cert, X509_ADD_FLAG_UP_REF)) {
367
0
        ctx->error = X509_V_ERR_OUT_OF_MEM;
368
0
        return -1;
369
0
    }
370
62.4k
    ctx->num_untrusted = 1;
371
372
    /* If the peer's public key is too weak, we can stop early. */
373
62.4k
    CB_FAIL_IF(!check_cert_key_level(ctx, ctx->cert),
374
62.4k
        ctx, ctx->cert, 0, X509_V_ERR_EE_KEY_TOO_SMALL);
375
376
61.3k
    ret = DANETLS_ENABLED(ctx->dane) ? dane_verify(ctx) : verify_chain(ctx);
377
378
    /*
379
     * Safety-net.  If we are returning an error, we must also set ctx->error,
380
     * so that the chain is not considered verified should the error be ignored
381
     * (e.g. TLS with SSL_VERIFY_NONE).
382
     */
383
61.3k
    if (ret <= 0 && ctx->error == X509_V_OK)
384
7
        ctx->error = X509_V_ERR_UNSPECIFIED;
385
61.3k
    return ret;
386
62.4k
}
387
388
static int sk_X509_contains(STACK_OF(X509) *sk, X509 *cert)
389
21.9k
{
390
21.9k
    int i, n = sk_X509_num(sk);
391
392
27.2k
    for (i = 0; i < n; i++)
393
22.5k
        if (X509_cmp(sk_X509_value(sk, i), cert) == 0)
394
17.2k
            return 1;
395
4.73k
    return 0;
396
21.9k
}
397
398
/*-
399
 * Find in |sk| an issuer cert of cert |x| accepted by |ctx->check_issued|.
400
 * If no_dup, the issuer must not yet be in |ctx->chain|, yet allowing the
401
 *     exception that |x| is self-issued and |ctx->chain| has just one element.
402
 * Prefer the first match with suitable validity period or latest expiration.
403
 */
404
/*
405
 * Note: so far, we do not check during chain building
406
 * whether any key usage extension stands against a candidate issuer cert.
407
 * Likely it would be good if build_chain() sets |check_signing_allowed|.
408
 * Yet if |sk| is a list of trusted certs, as with X509_STORE_CTX_set0_trusted_stack(),
409
 * better not set |check_signing_allowed|.
410
 * Maybe not touch X509_STORE_CTX_get1_issuer(), for API backward compatibility.
411
 */
412
static X509 *get0_best_issuer_sk(X509_STORE_CTX *ctx, int check_signing_allowed,
413
    int no_dup, STACK_OF(X509) *sk, X509 *x)
414
20.5k
{
415
20.5k
    int i;
416
20.5k
    X509 *candidate, *issuer = NULL;
417
418
45.0k
    for (i = 0; i < sk_X509_num(sk); i++) {
419
24.5k
        candidate = sk_X509_value(sk, i);
420
24.5k
        if (no_dup
421
22.6k
            && !((x->ex_flags & EXFLAG_SI) != 0 && sk_X509_num(ctx->chain) == 1)
422
21.2k
            && sk_X509_contains(ctx->chain, candidate))
423
17.2k
            continue;
424
7.32k
        if (ctx->check_issued(ctx, x, candidate)) {
425
660
            if (check_signing_allowed
426
                /* yet better not check key usage for trust anchors */
427
0
                && ossl_x509_signing_allowed(candidate, x) != X509_V_OK)
428
0
                continue;
429
660
            if (ossl_x509_check_cert_time(ctx, candidate, -1))
430
66
                return candidate;
431
            /*
432
             * Leave in *issuer the first match that has the latest expiration
433
             * date so we return nearest match if no certificate time is OK.
434
             */
435
594
            if (issuer == NULL
436
185
                || ASN1_TIME_compare(X509_get0_notAfter(candidate),
437
185
                       X509_get0_notAfter(issuer))
438
185
                    > 0)
439
432
                issuer = candidate;
440
594
        }
441
7.32k
    }
442
20.4k
    return issuer;
443
20.5k
}
444
445
/*-
446
 * Try to get issuer cert from |ctx->store| accepted by |ctx->check_issued|.
447
 * Prefer the first match with suitable validity period or latest expiration.
448
 *
449
 * Return values are:
450
 *  1 lookup successful.
451
 *  0 certificate not found.
452
 * -1 some other error.
453
 */
454
int X509_STORE_CTX_get1_issuer(X509 **issuer, X509_STORE_CTX *ctx, X509 *x)
455
56.2k
{
456
56.2k
    const X509_NAME *xn = X509_get_issuer_name(x);
457
56.2k
    X509_OBJECT *obj = X509_OBJECT_new();
458
56.2k
    STACK_OF(X509) *certs;
459
56.2k
    int ret;
460
461
56.2k
    *issuer = NULL;
462
56.2k
    if (obj == NULL)
463
0
        return -1;
464
56.2k
    ret = ossl_x509_store_ctx_get_by_subject(ctx, X509_LU_X509, xn, obj);
465
56.2k
    if (ret != 1)
466
53.0k
        goto end;
467
468
    /* quick happy path: certificate matches and is currently valid */
469
3.16k
    if (ctx->check_issued(ctx, x, obj->data.x509)) {
470
1.27k
        if (ossl_x509_check_cert_time(ctx, obj->data.x509, -1)) {
471
1.27k
            *issuer = obj->data.x509;
472
            /* |*issuer| has taken over the cert reference from |obj| */
473
1.27k
            obj->type = X509_LU_NONE;
474
1.27k
            goto end;
475
1.27k
        }
476
1.27k
    }
477
478
1.88k
    ret = -1;
479
1.88k
    if ((certs = X509_STORE_CTX_get1_certs(ctx, xn)) == NULL)
480
0
        goto end;
481
1.88k
    *issuer = get0_best_issuer_sk(ctx, 0, 0 /* allow duplicates */, certs, x);
482
1.88k
    ret = 0;
483
1.88k
    if (*issuer != NULL)
484
0
        ret = X509_up_ref(*issuer) ? 1 : -1;
485
1.88k
    OSSL_STACK_OF_X509_free(certs);
486
56.2k
end:
487
56.2k
    X509_OBJECT_free(obj);
488
56.2k
    return ret;
489
1.88k
}
490
491
/* Check that the given certificate |x| is issued by the certificate |issuer| */
492
static int check_issued(ossl_unused X509_STORE_CTX *ctx, X509 *x, X509 *issuer)
493
32.7k
{
494
32.7k
    int err = ossl_x509_likely_issued(issuer, x);
495
496
32.7k
    if (err == X509_V_OK)
497
3.90k
        return 1;
498
    /*
499
     * SUBJECT_ISSUER_MISMATCH just means 'x' is clearly not issued by 'issuer'.
500
     * Every other error code likely indicates a real error.
501
     */
502
28.8k
    return 0;
503
32.7k
}
504
505
/*-
506
 * Alternative get_issuer method: look up from a STACK_OF(X509) in other_ctx.
507
 * Returns -1 on internal error.
508
 */
509
static int get1_best_issuer_other_sk(X509 **issuer, X509_STORE_CTX *ctx, X509 *x)
510
0
{
511
0
    *issuer = get0_best_issuer_sk(ctx, 0, 1 /* no_dup */, ctx->other_ctx, x);
512
0
    if (*issuer == NULL)
513
0
        return 0;
514
0
    return X509_up_ref(*issuer) ? 1 : -1;
515
0
}
516
517
/*-
518
 * Alternative lookup method: look from a STACK stored in other_ctx.
519
 * Returns NULL on internal/fatal error, empty stack if not found.
520
 */
521
static STACK_OF(X509) *lookup_certs_sk(X509_STORE_CTX *ctx, const X509_NAME *nm)
522
0
{
523
0
    STACK_OF(X509) *sk = sk_X509_new_null();
524
0
    X509 *x;
525
0
    int i;
526
527
0
    if (sk == NULL)
528
0
        return NULL;
529
0
    for (i = 0; i < sk_X509_num(ctx->other_ctx); i++) {
530
0
        x = sk_X509_value(ctx->other_ctx, i);
531
0
        if (X509_NAME_cmp(nm, X509_get_subject_name(x)) == 0) {
532
0
            if (!X509_add_cert(sk, x, X509_ADD_FLAG_UP_REF)) {
533
0
                OSSL_STACK_OF_X509_free(sk);
534
0
                ctx->error = X509_V_ERR_OUT_OF_MEM;
535
0
                return NULL;
536
0
            }
537
0
        }
538
0
    }
539
0
    return sk;
540
0
}
541
542
/*
543
 * Check EE or CA certificate purpose.  For trusted certificates explicit local
544
 * auxiliary trust can be used to override EKU-restrictions.
545
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
546
 */
547
static int check_purpose(X509_STORE_CTX *ctx, X509 *x, int purpose, int depth,
548
    int must_be_ca)
549
553
{
550
553
    int tr_ok = X509_TRUST_UNTRUSTED;
551
552
    /*
553
     * For trusted certificates we want to see whether any auxiliary trust
554
     * settings trump the purpose constraints.
555
     *
556
     * This is complicated by the fact that the trust ordinals in
557
     * ctx->param->trust are entirely independent of the purpose ordinals in
558
     * ctx->param->purpose!
559
     *
560
     * What connects them is their mutual initialization via calls from
561
     * X509_STORE_CTX_set_default() into X509_VERIFY_PARAM_lookup() which sets
562
     * related values of both param->trust and param->purpose.  It is however
563
     * typically possible to infer associated trust values from a purpose value
564
     * via the X509_PURPOSE API.
565
     *
566
     * Therefore, we can only check for trust overrides when the purpose we're
567
     * checking is the same as ctx->param->purpose and ctx->param->trust is
568
     * also set.
569
     */
570
553
    if (depth >= ctx->num_untrusted && purpose == ctx->param->purpose)
571
155
        tr_ok = X509_check_trust(x, ctx->param->trust, X509_TRUST_NO_SS_COMPAT);
572
573
553
    switch (tr_ok) {
574
0
    case X509_TRUST_TRUSTED:
575
0
        return 1;
576
0
    case X509_TRUST_REJECTED:
577
0
        break;
578
553
    default: /* can only be X509_TRUST_UNTRUSTED */
579
553
        switch (X509_check_purpose(x, purpose, must_be_ca > 0)) {
580
320
        case 1:
581
320
            return 1;
582
176
        case 0:
583
176
            break;
584
57
        default:
585
57
            if ((ctx->param->flags & X509_V_FLAG_X509_STRICT) == 0)
586
0
                return 1;
587
553
        }
588
233
        break;
589
553
    }
590
591
233
    return verify_cb_cert(ctx, x, depth, X509_V_ERR_INVALID_PURPOSE);
592
553
}
593
594
/*-
595
 * Check extensions of a cert chain for consistency with the supplied purpose.
596
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
597
 */
598
static int check_extensions(X509_STORE_CTX *ctx)
599
4.10k
{
600
4.10k
    int i, must_be_ca, plen = 0;
601
4.10k
    X509 *x;
602
4.10k
    int ret, proxy_path_length = 0;
603
4.10k
    int purpose, allow_proxy_certs, num = sk_X509_num(ctx->chain);
604
605
    /*-
606
     *  must_be_ca can have 1 of 3 values:
607
     * -1: we accept both CA and non-CA certificates, to allow direct
608
     *     use of self-signed certificates (which are marked as CA).
609
     * 0:  we only accept non-CA certificates.  This is currently not
610
     *     used, but the possibility is present for future extensions.
611
     * 1:  we only accept CA certificates.  This is currently used for
612
     *     all certificates in the chain except the leaf certificate.
613
     */
614
4.10k
    must_be_ca = -1;
615
616
    /* CRL path validation */
617
4.10k
    if (ctx->parent != NULL) {
618
0
        allow_proxy_certs = 0;
619
0
        purpose = X509_PURPOSE_CRL_SIGN;
620
4.10k
    } else {
621
4.10k
        allow_proxy_certs = (ctx->param->flags & X509_V_FLAG_ALLOW_PROXY_CERTS) != 0;
622
4.10k
        purpose = ctx->param->purpose;
623
4.10k
    }
624
625
9.45k
    for (i = 0; i < num; i++) {
626
5.34k
        x = sk_X509_value(ctx->chain, i);
627
5.34k
        CB_FAIL_IF((ctx->param->flags & X509_V_FLAG_IGNORE_CRITICAL) == 0
628
5.34k
                && (x->ex_flags & EXFLAG_CRITICAL) != 0,
629
5.34k
            ctx, x, i, X509_V_ERR_UNHANDLED_CRITICAL_EXTENSION);
630
5.34k
        CB_FAIL_IF(!allow_proxy_certs && (x->ex_flags & EXFLAG_PROXY) != 0,
631
5.34k
            ctx, x, i, X509_V_ERR_PROXY_CERTIFICATES_NOT_ALLOWED);
632
5.34k
        ret = X509_check_ca(x);
633
5.34k
        switch (must_be_ca) {
634
4.10k
        case -1:
635
4.10k
            CB_FAIL_IF((ctx->param->flags & X509_V_FLAG_X509_STRICT) != 0
636
4.10k
                    && ret != 1 && ret != 0,
637
4.10k
                ctx, x, i, X509_V_ERR_INVALID_CA);
638
4.10k
            break;
639
4.10k
        case 0:
640
0
            CB_FAIL_IF(ret != 0, ctx, x, i, X509_V_ERR_INVALID_NON_CA);
641
0
            break;
642
1.24k
        default:
643
            /* X509_V_FLAG_X509_STRICT is implicit for intermediate CAs */
644
1.24k
            CB_FAIL_IF(ret == 0
645
1.24k
                    || ((i + 1 < num
646
1.24k
                            || (ctx->param->flags & X509_V_FLAG_X509_STRICT) != 0)
647
1.24k
                        && ret != 1),
648
1.24k
                ctx, x, i, X509_V_ERR_INVALID_CA);
649
1.24k
            break;
650
5.34k
        }
651
5.34k
        if (num > 1) {
652
            /* Check for presence of explicit elliptic curve parameters */
653
2.48k
            ret = check_curve(x);
654
2.48k
            CB_FAIL_IF(ret < 0, ctx, x, i, X509_V_ERR_UNSPECIFIED);
655
2.48k
            CB_FAIL_IF(ret == 0, ctx, x, i, X509_V_ERR_EC_KEY_EXPLICIT_PARAMS);
656
2.48k
        }
657
        /*
658
         * Do the following set of checks only if strict checking is requested
659
         * and not for self-issued (including self-signed) EE (non-CA) certs
660
         * because RFC 5280 does not apply to them according RFC 6818 section 2.
661
         */
662
5.34k
        if ((ctx->param->flags & X509_V_FLAG_X509_STRICT) != 0
663
5.34k
            && num > 1) { /*
664
                           * this should imply
665
                           * !(i == 0 && (x->ex_flags & EXFLAG_CA) == 0
666
                           *          && (x->ex_flags & EXFLAG_SI) != 0)
667
                           */
668
            /* Check Basic Constraints according to RFC 5280 section 4.2.1.9 */
669
2.48k
            if (x->ex_pathlen != -1) {
670
30
                CB_FAIL_IF((x->ex_flags & EXFLAG_CA) == 0,
671
30
                    ctx, x, i, X509_V_ERR_PATHLEN_INVALID_FOR_NON_CA);
672
30
                CB_FAIL_IF((x->ex_kusage & KU_KEY_CERT_SIGN) == 0, ctx,
673
30
                    x, i, X509_V_ERR_PATHLEN_WITHOUT_KU_KEY_CERT_SIGN);
674
30
            }
675
2.48k
            CB_FAIL_IF((x->ex_flags & EXFLAG_CA) != 0
676
2.48k
                    && (x->ex_flags & EXFLAG_BCONS) != 0
677
2.48k
                    && (x->ex_flags & EXFLAG_BCONS_CRITICAL) == 0,
678
2.48k
                ctx, x, i, X509_V_ERR_CA_BCONS_NOT_CRITICAL);
679
            /* Check Key Usage according to RFC 5280 section 4.2.1.3 */
680
2.48k
            if ((x->ex_flags & EXFLAG_CA) != 0) {
681
444
                CB_FAIL_IF((x->ex_flags & EXFLAG_KUSAGE) == 0,
682
444
                    ctx, x, i, X509_V_ERR_CA_CERT_MISSING_KEY_USAGE);
683
2.03k
            } else {
684
2.03k
                CB_FAIL_IF((x->ex_kusage & KU_KEY_CERT_SIGN) != 0, ctx, x, i,
685
2.03k
                    X509_V_ERR_KU_KEY_CERT_SIGN_INVALID_FOR_NON_CA);
686
2.03k
            }
687
            /* Check issuer is non-empty acc. to RFC 5280 section 4.1.2.4 */
688
2.48k
            CB_FAIL_IF(X509_NAME_entry_count(X509_get_issuer_name(x)) == 0,
689
2.48k
                ctx, x, i, X509_V_ERR_ISSUER_NAME_EMPTY);
690
            /* Check subject is non-empty acc. to RFC 5280 section 4.1.2.6 */
691
2.48k
            CB_FAIL_IF(((x->ex_flags & EXFLAG_CA) != 0
692
2.48k
                           || (x->ex_kusage & KU_CRL_SIGN) != 0
693
2.48k
                           || x->altname == NULL)
694
2.48k
                    && X509_NAME_entry_count(X509_get_subject_name(x)) == 0,
695
2.48k
                ctx, x, i, X509_V_ERR_SUBJECT_NAME_EMPTY);
696
2.48k
            CB_FAIL_IF(X509_NAME_entry_count(X509_get_subject_name(x)) == 0
697
2.48k
                    && x->altname != NULL
698
2.48k
                    && (x->ex_flags & EXFLAG_SAN_CRITICAL) == 0,
699
2.48k
                ctx, x, i, X509_V_ERR_EMPTY_SUBJECT_SAN_NOT_CRITICAL);
700
            /* Check SAN is non-empty according to RFC 5280 section 4.2.1.6 */
701
2.48k
            CB_FAIL_IF(x->altname != NULL
702
2.48k
                    && sk_GENERAL_NAME_num(x->altname) <= 0,
703
2.48k
                ctx, x, i, X509_V_ERR_EMPTY_SUBJECT_ALT_NAME);
704
            /* Check sig alg consistency acc. to RFC 5280 section 4.1.1.2 */
705
2.48k
            CB_FAIL_IF(X509_ALGOR_cmp(&x->sig_alg, &x->cert_info.signature) != 0,
706
2.48k
                ctx, x, i, X509_V_ERR_SIGNATURE_ALGORITHM_INCONSISTENCY);
707
2.48k
            CB_FAIL_IF(x->akid != NULL
708
2.48k
                    && (x->ex_flags & EXFLAG_AKID_CRITICAL) != 0,
709
2.48k
                ctx, x, i, X509_V_ERR_AUTHORITY_KEY_IDENTIFIER_CRITICAL);
710
2.48k
            CB_FAIL_IF(x->skid != NULL
711
2.48k
                    && (x->ex_flags & EXFLAG_SKID_CRITICAL) != 0,
712
2.48k
                ctx, x, i, X509_V_ERR_SUBJECT_KEY_IDENTIFIER_CRITICAL);
713
2.48k
            if (X509_get_version(x) >= X509_VERSION_3) {
714
                /* Check AKID presence acc. to RFC 5280 section 4.2.1.1 */
715
2.15k
                CB_FAIL_IF(i + 1 < num /*
716
                                        * this means not last cert in chain,
717
                                        * taken as "generated by conforming CAs"
718
                                        */
719
2.15k
                        && (x->akid == NULL || x->akid->keyid == NULL),
720
2.15k
                    ctx,
721
2.15k
                    x, i, X509_V_ERR_MISSING_AUTHORITY_KEY_IDENTIFIER);
722
                /* Check SKID presence acc. to RFC 5280 section 4.2.1.2 */
723
2.15k
                CB_FAIL_IF((x->ex_flags & EXFLAG_CA) != 0 && x->skid == NULL,
724
2.15k
                    ctx, x, i, X509_V_ERR_MISSING_SUBJECT_KEY_IDENTIFIER);
725
2.15k
            } else {
726
330
                CB_FAIL_IF(sk_X509_EXTENSION_num(X509_get0_extensions(x)) > 0,
727
330
                    ctx, x, i, X509_V_ERR_EXTENSIONS_REQUIRE_VERSION_3);
728
330
            }
729
2.48k
        }
730
731
        /* check_purpose() makes the callback as needed */
732
5.34k
        if (purpose >= X509_PURPOSE_MIN && !check_purpose(ctx, x, purpose, i, must_be_ca))
733
0
            return 0;
734
        /* Check path length */
735
5.34k
        CB_FAIL_IF(i > 1 && x->ex_pathlen != -1
736
5.34k
                && plen > x->ex_pathlen + proxy_path_length,
737
5.34k
            ctx, x, i, X509_V_ERR_PATH_LENGTH_EXCEEDED);
738
        /* Increment path length if not a self-issued intermediate CA */
739
5.34k
        if (i > 0 && (x->ex_flags & EXFLAG_SI) == 0)
740
389
            plen++;
741
        /*
742
         * If this certificate is a proxy certificate, the next certificate
743
         * must be another proxy certificate or a EE certificate.  If not,
744
         * the next certificate must be a CA certificate.
745
         */
746
5.34k
        if (x->ex_flags & EXFLAG_PROXY) {
747
            /*
748
             * RFC3820, 4.1.3 (b)(1) stipulates that if pCPathLengthConstraint
749
             * is less than max_path_length, the former should be copied to
750
             * the latter, and 4.1.4 (a) stipulates that max_path_length
751
             * should be verified to be larger than zero and decrement it.
752
             *
753
             * Because we're checking the certs in the reverse order, we start
754
             * with verifying that proxy_path_length isn't larger than pcPLC,
755
             * and copy the latter to the former if it is, and finally,
756
             * increment proxy_path_length.
757
             */
758
22
            if (x->ex_pcpathlen != -1) {
759
20
                CB_FAIL_IF(proxy_path_length > x->ex_pcpathlen,
760
20
                    ctx, x, i, X509_V_ERR_PROXY_PATH_LENGTH_EXCEEDED);
761
20
                proxy_path_length = x->ex_pcpathlen;
762
20
            }
763
22
            proxy_path_length++;
764
22
            must_be_ca = 0;
765
5.32k
        } else {
766
5.32k
            must_be_ca = 1;
767
5.32k
        }
768
5.34k
    }
769
4.10k
    return 1;
770
4.10k
}
771
772
static int has_san_id(X509 *x, int gtype)
773
305
{
774
305
    int i;
775
305
    int ret = 0;
776
305
    GENERAL_NAMES *gs = X509_get_ext_d2i(x, NID_subject_alt_name, NULL, NULL);
777
778
305
    if (gs == NULL)
779
270
        return 0;
780
781
42
    for (i = 0; i < sk_GENERAL_NAME_num(gs); i++) {
782
10
        GENERAL_NAME *g = sk_GENERAL_NAME_value(gs, i);
783
784
10
        if (g->type == gtype) {
785
3
            ret = 1;
786
3
            break;
787
3
        }
788
10
    }
789
35
    GENERAL_NAMES_free(gs);
790
35
    return ret;
791
305
}
792
793
/*-
794
 * Returns -1 on internal error.
795
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
796
 */
797
static int check_name_constraints(X509_STORE_CTX *ctx)
798
6.84k
{
799
6.84k
    int i;
800
801
    /* Check name constraints for all certificates */
802
16.1k
    for (i = sk_X509_num(ctx->chain) - 1; i >= 0; i--) {
803
9.29k
        X509 *x = sk_X509_value(ctx->chain, i);
804
9.29k
        int j;
805
806
        /* Ignore self-issued certs unless last in chain */
807
9.29k
        if (i != 0 && (x->ex_flags & EXFLAG_SI) != 0)
808
1.49k
            continue;
809
810
        /*
811
         * Proxy certificates policy has an extra constraint, where the
812
         * certificate subject MUST be the issuer with a single CN entry
813
         * added.
814
         * (RFC 3820: 3.4, 4.1.3 (a)(4))
815
         */
816
7.79k
        if ((x->ex_flags & EXFLAG_PROXY) != 0) {
817
20
            X509_NAME *tmpsubject = X509_get_subject_name(x);
818
20
            X509_NAME *tmpissuer = X509_get_issuer_name(x);
819
20
            X509_NAME_ENTRY *tmpentry = NULL;
820
20
            int last_nid = 0;
821
20
            int err = X509_V_OK;
822
20
            int last_loc = X509_NAME_entry_count(tmpsubject) - 1;
823
824
            /* Check that there are at least two RDNs */
825
20
            if (last_loc < 1) {
826
18
                err = X509_V_ERR_PROXY_SUBJECT_NAME_VIOLATION;
827
18
                goto proxy_name_done;
828
18
            }
829
830
            /*
831
             * Check that there is exactly one more RDN in subject as
832
             * there is in issuer.
833
             */
834
2
            if (X509_NAME_entry_count(tmpsubject)
835
2
                != X509_NAME_entry_count(tmpissuer) + 1) {
836
2
                err = X509_V_ERR_PROXY_SUBJECT_NAME_VIOLATION;
837
2
                goto proxy_name_done;
838
2
            }
839
840
            /*
841
             * Check that the last subject component isn't part of a
842
             * multi-valued RDN
843
             */
844
0
            if (X509_NAME_ENTRY_set(X509_NAME_get_entry(tmpsubject, last_loc))
845
0
                == X509_NAME_ENTRY_set(X509_NAME_get_entry(tmpsubject,
846
0
                    last_loc - 1))) {
847
0
                err = X509_V_ERR_PROXY_SUBJECT_NAME_VIOLATION;
848
0
                goto proxy_name_done;
849
0
            }
850
851
            /*
852
             * Check that the last subject RDN is a commonName, and that
853
             * all the previous RDNs match the issuer exactly
854
             */
855
0
            tmpsubject = X509_NAME_dup(tmpsubject);
856
0
            if (tmpsubject == NULL) {
857
0
                ERR_raise(ERR_LIB_X509, ERR_R_ASN1_LIB);
858
0
                ctx->error = X509_V_ERR_OUT_OF_MEM;
859
0
                return -1;
860
0
            }
861
862
0
            tmpentry = X509_NAME_delete_entry(tmpsubject, last_loc);
863
0
            last_nid = OBJ_obj2nid(X509_NAME_ENTRY_get_object(tmpentry));
864
865
0
            if (last_nid != NID_commonName
866
0
                || X509_NAME_cmp(tmpsubject, tmpissuer) != 0) {
867
0
                err = X509_V_ERR_PROXY_SUBJECT_NAME_VIOLATION;
868
0
            }
869
870
0
            X509_NAME_ENTRY_free(tmpentry);
871
0
            X509_NAME_free(tmpsubject);
872
873
20
        proxy_name_done:
874
20
            CB_FAIL_IF(err != X509_V_OK, ctx, x, i, err);
875
20
        }
876
877
        /*
878
         * Check against constraints for all certificates higher in chain
879
         * including trust anchor. Trust anchor not strictly speaking needed
880
         * but if it includes constraints it is to be assumed it expects them
881
         * to be obeyed.
882
         */
883
10.2k
        for (j = sk_X509_num(ctx->chain) - 1; j > i; j--) {
884
2.46k
            NAME_CONSTRAINTS *nc = sk_X509_value(ctx->chain, j)->nc;
885
886
2.46k
            if (nc) {
887
305
                int rv = NAME_CONSTRAINTS_check(x, nc);
888
305
                int ret = 1;
889
890
                /* If EE certificate check commonName too */
891
305
                if (rv == X509_V_OK && i == 0
892
305
                    && (ctx->param->hostflags
893
305
                           & X509_CHECK_FLAG_NEVER_CHECK_SUBJECT)
894
305
                        == 0
895
305
                    && ((ctx->param->hostflags
896
305
                            & X509_CHECK_FLAG_ALWAYS_CHECK_SUBJECT)
897
305
                            != 0
898
305
                        || (ret = has_san_id(x, GEN_DNS)) == 0))
899
302
                    rv = NAME_CONSTRAINTS_check_CN(x, nc);
900
305
                if (ret < 0)
901
0
                    return ret;
902
903
305
                switch (rv) {
904
286
                case X509_V_OK:
905
286
                    break;
906
9
                case X509_V_ERR_OUT_OF_MEM:
907
9
                    return -1;
908
10
                default:
909
10
                    CB_FAIL_IF(1, ctx, x, i, rv);
910
10
                    break;
911
305
                }
912
305
            }
913
2.46k
        }
914
7.79k
    }
915
6.83k
    return 1;
916
6.84k
}
917
918
static int check_id_error(X509_STORE_CTX *ctx, int errcode)
919
0
{
920
0
    return verify_cb_cert(ctx, ctx->cert, 0, errcode);
921
0
}
922
923
static int check_hosts(X509 *x, X509_VERIFY_PARAM *vpm)
924
0
{
925
0
    int i;
926
0
    int n = sk_OPENSSL_STRING_num(vpm->hosts);
927
0
    char *name;
928
929
0
    if (vpm->peername != NULL) {
930
0
        OPENSSL_free(vpm->peername);
931
0
        vpm->peername = NULL;
932
0
    }
933
0
    for (i = 0; i < n; ++i) {
934
0
        name = sk_OPENSSL_STRING_value(vpm->hosts, i);
935
0
        if (X509_check_host(x, name, 0, vpm->hostflags, &vpm->peername) > 0)
936
0
            return 1;
937
0
    }
938
0
    return n == 0;
939
0
}
940
941
static int check_id(X509_STORE_CTX *ctx)
942
8.71k
{
943
8.71k
    X509_VERIFY_PARAM *vpm = ctx->param;
944
8.71k
    X509 *x = ctx->cert;
945
946
8.71k
    if (vpm->hosts != NULL && check_hosts(x, vpm) <= 0) {
947
0
        if (!check_id_error(ctx, X509_V_ERR_HOSTNAME_MISMATCH))
948
0
            return 0;
949
0
    }
950
8.71k
    if (vpm->email != NULL
951
0
        && X509_check_email(x, vpm->email, vpm->emaillen, 0) <= 0) {
952
0
        if (!check_id_error(ctx, X509_V_ERR_EMAIL_MISMATCH))
953
0
            return 0;
954
0
    }
955
8.71k
    if (vpm->ip != NULL && X509_check_ip(x, vpm->ip, vpm->iplen, 0) <= 0) {
956
0
        if (!check_id_error(ctx, X509_V_ERR_IP_ADDRESS_MISMATCH))
957
0
            return 0;
958
0
    }
959
8.71k
    return 1;
960
8.71k
}
961
962
/* Returns -1 on internal error */
963
static int check_trust(X509_STORE_CTX *ctx, int num_untrusted)
964
67.2k
{
965
67.2k
    int i, res;
966
67.2k
    X509 *x = NULL;
967
67.2k
    X509 *mx;
968
67.2k
    SSL_DANE *dane = ctx->dane;
969
67.2k
    int num = sk_X509_num(ctx->chain);
970
67.2k
    int trust;
971
972
    /*
973
     * Check for a DANE issuer at depth 1 or greater, if it is a DANE-TA(2)
974
     * match, we're done, otherwise we'll merely record the match depth.
975
     */
976
67.2k
    if (DANETLS_HAS_TA(dane) && num_untrusted > 0 && num_untrusted < num) {
977
0
        trust = check_dane_issuer(ctx, num_untrusted);
978
0
        if (trust != X509_TRUST_UNTRUSTED)
979
0
            return trust;
980
0
    }
981
982
    /*
983
     * Check trusted certificates in chain at depth num_untrusted and up.
984
     * Note, that depths 0..num_untrusted-1 may also contain trusted
985
     * certificates, but the caller is expected to have already checked those,
986
     * and wants to incrementally check just any added since.
987
     */
988
68.9k
    for (i = num_untrusted; i < num; i++) {
989
2.38k
        x = sk_X509_value(ctx->chain, i);
990
2.38k
        trust = X509_check_trust(x, ctx->param->trust, 0);
991
        /* If explicitly trusted (so not neutral nor rejected) return trusted */
992
2.38k
        if (trust == X509_TRUST_TRUSTED)
993
642
            goto trusted;
994
1.73k
        if (trust == X509_TRUST_REJECTED)
995
0
            goto rejected;
996
1.73k
    }
997
998
    /*
999
     * If we are looking at a trusted certificate, and accept partial chains,
1000
     * the chain is PKIX trusted.
1001
     */
1002
66.5k
    if (num_untrusted < num) {
1003
1.73k
        if ((ctx->param->flags & X509_V_FLAG_PARTIAL_CHAIN) != 0)
1004
1.73k
            goto trusted;
1005
0
        return X509_TRUST_UNTRUSTED;
1006
1.73k
    }
1007
1008
64.8k
    if (num_untrusted == num
1009
64.8k
        && (ctx->param->flags & X509_V_FLAG_PARTIAL_CHAIN) != 0) {
1010
        /*
1011
         * Last-resort call with no new trusted certificates, check the leaf
1012
         * for a direct trust store match.
1013
         */
1014
6.33k
        i = 0;
1015
6.33k
        x = sk_X509_value(ctx->chain, i);
1016
6.33k
        res = lookup_cert_match(&mx, ctx, x);
1017
6.33k
        if (res < 0)
1018
553
            return res;
1019
5.78k
        if (res == 0)
1020
5.76k
            return X509_TRUST_UNTRUSTED;
1021
1022
        /*
1023
         * Check explicit auxiliary trust/reject settings.  If none are set,
1024
         * we'll accept X509_TRUST_UNTRUSTED when not self-signed.
1025
         */
1026
14
        trust = X509_check_trust(mx, ctx->param->trust, 0);
1027
14
        if (trust == X509_TRUST_REJECTED) {
1028
0
            X509_free(mx);
1029
0
            goto rejected;
1030
0
        }
1031
1032
        /* Replace leaf with trusted match */
1033
14
        (void)sk_X509_set(ctx->chain, 0, mx);
1034
14
        X509_free(x);
1035
14
        ctx->num_untrusted = 0;
1036
14
        goto trusted;
1037
14
    }
1038
1039
    /*
1040
     * If no trusted certs in chain at all return untrusted and allow
1041
     * standard (no issuer cert) etc errors to be indicated.
1042
     */
1043
58.5k
    return X509_TRUST_UNTRUSTED;
1044
1045
0
rejected:
1046
0
    return verify_cb_cert(ctx, x, i, X509_V_ERR_CERT_REJECTED) == 0
1047
0
        ? X509_TRUST_REJECTED
1048
0
        : X509_TRUST_UNTRUSTED;
1049
1050
2.39k
trusted:
1051
2.39k
    if (!DANETLS_ENABLED(dane))
1052
2.39k
        return X509_TRUST_TRUSTED;
1053
0
    if (dane->pdpth < 0)
1054
0
        dane->pdpth = num_untrusted;
1055
    /* With DANE, PKIX alone is not trusted until we have both */
1056
0
    if (dane->mdpth >= 0)
1057
0
        return X509_TRUST_TRUSTED;
1058
0
    return X509_TRUST_UNTRUSTED;
1059
0
}
1060
1061
/* Sadly, returns 0 also on internal error. */
1062
static int check_revocation(X509_STORE_CTX *ctx)
1063
2.20k
{
1064
2.20k
    int i = 0, last = 0, ok = 0;
1065
2.20k
    int crl_check_enabled = (ctx->param->flags & X509_V_FLAG_CRL_CHECK) != 0;
1066
2.20k
    int crl_check_all_enabled = crl_check_enabled && (ctx->param->flags & X509_V_FLAG_CRL_CHECK_ALL) != 0;
1067
2.20k
    int ocsp_check_enabled = (ctx->param->flags & X509_V_FLAG_OCSP_RESP_CHECK) != 0;
1068
2.20k
    int ocsp_check_all_enabled = ocsp_check_enabled && (ctx->param->flags & X509_V_FLAG_OCSP_RESP_CHECK_ALL) != 0;
1069
1070
2.20k
    if (!crl_check_enabled && !ocsp_check_enabled)
1071
0
        return 1;
1072
1073
2.20k
    if (ocsp_check_enabled) {
1074
0
#ifndef OPENSSL_NO_OCSP
1075
        /*
1076
         * certificate status checking with OCSP
1077
         */
1078
0
        if (ocsp_check_all_enabled)
1079
0
            last = sk_X509_num(ctx->chain) - 1;
1080
0
        else if (!crl_check_all_enabled && ctx->parent != NULL)
1081
0
            return 1; /* If checking CRL paths this isn't the EE certificate */
1082
1083
0
        for (i = 0; i <= last; i++) {
1084
0
            ctx->error_depth = i;
1085
0
            ctx->current_cert = sk_X509_value(ctx->chain, i);
1086
1087
            /* skip if cert is apparently self-signed */
1088
0
            if (ctx->current_cert->ex_flags & EXFLAG_SS)
1089
0
                continue;
1090
1091
            /* the issuer certificate is the next in the chain */
1092
0
            ctx->current_issuer = sk_X509_value(ctx->chain, i + 1);
1093
1094
0
            ok = check_cert_ocsp_resp(ctx);
1095
1096
            /*
1097
             * In the case the certificate status is REVOKED, the verification
1098
             * can stop here.
1099
             */
1100
0
            if (ok == V_OCSP_CERTSTATUS_REVOKED) {
1101
0
                return verify_cb_ocsp(ctx, ctx->error != 0 ? ctx->error : X509_V_ERR_OCSP_VERIFY_FAILED);
1102
0
            }
1103
1104
            /*
1105
             * In the case the certificate status is GOOD, continue with the next
1106
             * certificate.
1107
             */
1108
0
            if (ok == V_OCSP_CERTSTATUS_GOOD)
1109
0
                continue;
1110
1111
            /*
1112
             * As stated in RFC 6961 section 2.2:
1113
             * If OCSP is not enabled or the client receives a "ocsp_response_list"
1114
             * that does not contain a response for one or more of the certificates
1115
             * in the completed certificate chain, the client SHOULD attempt to
1116
             * validate the certificate using an alternative retrieval method,
1117
             * such as downloading the relevant CRL;
1118
             */
1119
0
            if (crl_check_all_enabled || (crl_check_enabled && i == 0)) {
1120
0
                ok = check_cert_crl(ctx);
1121
0
                if (!ok)
1122
0
                    return ok;
1123
0
            } else {
1124
0
                ok = verify_cb_ocsp(ctx, X509_V_ERR_OCSP_VERIFY_FAILED);
1125
0
                if (!ok)
1126
0
                    return ok;
1127
0
            }
1128
0
        }
1129
0
#endif
1130
0
    }
1131
1132
2.20k
    if (crl_check_enabled && !ocsp_check_all_enabled) {
1133
        /* certificate status check with CRLs */
1134
2.20k
        if (crl_check_all_enabled) {
1135
0
            last = sk_X509_num(ctx->chain) - 1;
1136
2.20k
        } else {
1137
            /* If checking CRL paths this isn't the EE certificate */
1138
2.20k
            if (ctx->parent != NULL)
1139
0
                return 1;
1140
2.20k
            last = 0;
1141
2.20k
        }
1142
1143
        /*
1144
         * in the case that OCSP is only enabled for the server certificate
1145
         * and CRL for the complete chain, the rest of the chain has to be
1146
         * checked here
1147
         */
1148
2.20k
        if (ocsp_check_enabled && crl_check_all_enabled)
1149
0
            i = 1;
1150
2.20k
        else
1151
2.20k
            i = 0;
1152
4.41k
        for (; i <= last; i++) {
1153
2.20k
            ctx->error_depth = i;
1154
2.20k
            ok = check_cert_crl(ctx);
1155
2.20k
            if (!ok)
1156
0
                return ok;
1157
2.20k
        }
1158
2.20k
    }
1159
1160
2.20k
    return 1;
1161
2.20k
}
1162
1163
#ifndef OPENSSL_NO_OCSP
1164
static int check_cert_ocsp_resp(X509_STORE_CTX *ctx)
1165
0
{
1166
0
    int cert_status, crl_reason;
1167
0
    int i;
1168
0
    OCSP_RESPONSE *resp = NULL;
1169
0
    OCSP_BASICRESP *bs = NULL;
1170
0
    OCSP_SINGLERESP *sr = NULL;
1171
0
    OCSP_CERTID *sr_cert_id = NULL;
1172
0
    ASN1_GENERALIZEDTIME *rev, *thisupd, *nextupd;
1173
0
    ASN1_OBJECT *cert_id_md_oid;
1174
0
    EVP_MD *cert_id_md;
1175
0
    OCSP_CERTID *cert_id = NULL;
1176
0
    int ret = V_OCSP_CERTSTATUS_UNKNOWN;
1177
0
    int num;
1178
1179
0
    num = sk_OCSP_RESPONSE_num(ctx->ocsp_resp);
1180
1181
0
    if (num < 0 || num <= ctx->error_depth)
1182
0
        return X509_V_ERR_OCSP_NO_RESPONSE;
1183
1184
0
    if ((resp = sk_OCSP_RESPONSE_value(ctx->ocsp_resp, ctx->error_depth)) == NULL
1185
0
        || (bs = OCSP_response_get1_basic(resp)) == NULL
1186
0
        || (num = OCSP_resp_count(bs)) < 1)
1187
0
        return X509_V_ERR_OCSP_NO_RESPONSE;
1188
1189
0
    if (OCSP_response_status(resp) != OCSP_RESPONSE_STATUS_SUCCESSFUL) {
1190
0
        OCSP_BASICRESP_free(bs);
1191
0
        ret = X509_V_ERR_OCSP_RESP_INVALID;
1192
0
        goto end;
1193
0
    }
1194
1195
0
    if (OCSP_basic_verify(bs, ctx->chain, ctx->store, OCSP_TRUSTOTHER) <= 0) {
1196
0
        ret = X509_V_ERR_OCSP_SIGNATURE_FAILURE;
1197
0
        goto end;
1198
0
    }
1199
1200
    /* find the right single response in the OCSP response */
1201
0
    for (i = 0; i < num; i++) {
1202
0
        sr = OCSP_resp_get0(bs, i);
1203
1204
        /* determine the md algorithm which was used to create cert id */
1205
0
        sr_cert_id = (OCSP_CERTID *)OCSP_SINGLERESP_get0_id(sr);
1206
0
        OCSP_id_get0_info(NULL, &cert_id_md_oid, NULL, NULL, sr_cert_id);
1207
0
        if (cert_id_md_oid != NULL)
1208
0
            cert_id_md = (EVP_MD *)EVP_get_digestbyobj(cert_id_md_oid);
1209
0
        else
1210
0
            cert_id_md = NULL;
1211
1212
        /* search the stack for the requested OCSP response */
1213
0
        cert_id = OCSP_cert_to_id(cert_id_md, ctx->current_cert, ctx->current_issuer);
1214
0
        if (cert_id == NULL) {
1215
0
            ret = X509_V_ERR_OCSP_RESP_INVALID;
1216
0
            goto end;
1217
0
        }
1218
1219
0
        if (!OCSP_id_cmp(cert_id, sr_cert_id))
1220
0
            break;
1221
1222
0
        OCSP_CERTID_free(cert_id);
1223
0
        cert_id = NULL;
1224
0
    }
1225
1226
0
    if (cert_id == NULL) {
1227
0
        ret = X509_V_ERR_OCSP_NO_RESPONSE;
1228
0
        goto end;
1229
0
    }
1230
1231
0
    if (OCSP_resp_find_status(bs, cert_id, &cert_status, &crl_reason, &rev,
1232
0
            &thisupd, &nextupd)
1233
0
        <= 0) {
1234
0
        ret = X509_V_ERR_OCSP_RESP_INVALID;
1235
0
        goto end;
1236
0
    }
1237
1238
0
    if (cert_status == V_OCSP_CERTSTATUS_GOOD) {
1239
        /*
1240
         * Note:
1241
         * A OCSP stapling result will be accepted up to 5 minutes
1242
         * after it expired!
1243
         */
1244
0
        if (!OCSP_check_validity(thisupd, nextupd, 300L, -1L))
1245
0
            ret = X509_V_ERR_OCSP_HAS_EXPIRED;
1246
0
        else
1247
0
            ret = V_OCSP_CERTSTATUS_GOOD;
1248
0
    } else {
1249
0
        ret = cert_status;
1250
0
    }
1251
1252
0
end:
1253
0
    OCSP_CERTID_free(cert_id);
1254
0
    OCSP_BASICRESP_free(bs);
1255
0
    return ret;
1256
0
}
1257
#endif
1258
1259
/* Sadly, returns 0 also on internal error. */
1260
static int check_cert_crl(X509_STORE_CTX *ctx)
1261
2.20k
{
1262
2.20k
    X509_CRL *crl = NULL, *dcrl = NULL;
1263
2.20k
    int ok = 0;
1264
2.20k
    int cnum = ctx->error_depth;
1265
2.20k
    X509 *x = sk_X509_value(ctx->chain, cnum);
1266
1267
2.20k
    ctx->current_cert = x;
1268
2.20k
    ctx->current_issuer = NULL;
1269
2.20k
    ctx->current_crl_score = 0;
1270
2.20k
    ctx->current_reasons = 0;
1271
1272
    /* skip if cert is apparently self-signed */
1273
2.20k
    if (ctx->current_cert->ex_flags & EXFLAG_SS)
1274
26
        return 1;
1275
2.17k
    if ((x->ex_flags & EXFLAG_PROXY) != 0)
1276
2
        return 1;
1277
1278
3.78k
    while (ctx->current_reasons != CRLDP_ALL_REASONS) {
1279
2.17k
        unsigned int last_reasons = ctx->current_reasons;
1280
1281
        /* Try to retrieve relevant CRL */
1282
2.17k
        if (ctx->get_crl != NULL) {
1283
0
            X509 *crl_issuer = NULL;
1284
0
            unsigned int reasons = 0;
1285
1286
0
            ok = ctx->get_crl(ctx, &crl, x);
1287
0
            if (crl != NULL) {
1288
0
                ctx->current_crl_score = get_crl_score(ctx, &crl_issuer,
1289
0
                    &reasons, crl, x);
1290
0
                ctx->current_issuer = crl_issuer;
1291
0
                ctx->current_reasons = reasons;
1292
0
            }
1293
2.17k
        } else {
1294
2.17k
            ok = get_crl_delta(ctx, &crl, &dcrl, x);
1295
2.17k
        }
1296
        /* If error looking up CRL, nothing we can do except notify callback */
1297
2.17k
        if (!ok) {
1298
496
            ok = verify_cb_crl(ctx, X509_V_ERR_UNABLE_TO_GET_CRL);
1299
496
            goto done;
1300
496
        }
1301
1.68k
        ctx->current_crl = crl;
1302
1.68k
        ok = ctx->check_crl(ctx, crl);
1303
1.68k
        if (!ok)
1304
0
            goto done;
1305
1306
1.68k
        if (dcrl != NULL) {
1307
0
            ok = ctx->check_crl(ctx, dcrl);
1308
0
            if (!ok)
1309
0
                goto done;
1310
0
            ok = ctx->cert_crl(ctx, dcrl, x);
1311
0
            if (!ok)
1312
0
                goto done;
1313
1.68k
        } else {
1314
1.68k
            ok = 1;
1315
1.68k
        }
1316
1317
        /* Don't look in full CRL if delta reason is removefromCRL */
1318
1.68k
        if (ok != 2) {
1319
1.68k
            ok = ctx->cert_crl(ctx, crl, x);
1320
1.68k
            if (!ok)
1321
0
                goto done;
1322
1.68k
        }
1323
1324
1.68k
        X509_CRL_free(crl);
1325
1.68k
        X509_CRL_free(dcrl);
1326
1.68k
        crl = NULL;
1327
1.68k
        dcrl = NULL;
1328
        /*
1329
         * If reasons not updated we won't get anywhere by another iteration,
1330
         * so exit loop.
1331
         */
1332
1.68k
        if (last_reasons == ctx->current_reasons) {
1333
70
            ok = verify_cb_crl(ctx, X509_V_ERR_UNABLE_TO_GET_CRL);
1334
70
            goto done;
1335
70
        }
1336
1.68k
    }
1337
2.17k
done:
1338
2.17k
    X509_CRL_free(crl);
1339
2.17k
    X509_CRL_free(dcrl);
1340
1341
2.17k
    ctx->current_crl = NULL;
1342
2.17k
    return ok;
1343
2.17k
}
1344
1345
/* Check CRL times against values in X509_STORE_CTX */
1346
static int check_crl_time(X509_STORE_CTX *ctx, X509_CRL *crl, int notify)
1347
4.35k
{
1348
4.35k
    time_t *ptime;
1349
4.35k
    int i;
1350
1351
4.35k
    if ((ctx->param->flags & X509_V_FLAG_USE_CHECK_TIME) != 0)
1352
0
        ptime = &ctx->param->check_time;
1353
4.35k
    else if ((ctx->param->flags & X509_V_FLAG_NO_CHECK_TIME) != 0)
1354
4.35k
        return 1;
1355
0
    else
1356
0
        ptime = NULL;
1357
0
    if (notify)
1358
0
        ctx->current_crl = crl;
1359
1360
0
    i = X509_cmp_time(X509_CRL_get0_lastUpdate(crl), ptime);
1361
0
    if (i == 0) {
1362
0
        if (!notify)
1363
0
            return 0;
1364
0
        if (!verify_cb_crl(ctx, X509_V_ERR_ERROR_IN_CRL_LAST_UPDATE_FIELD))
1365
0
            return 0;
1366
0
    }
1367
1368
0
    if (i > 0) {
1369
0
        if (!notify)
1370
0
            return 0;
1371
0
        if (!verify_cb_crl(ctx, X509_V_ERR_CRL_NOT_YET_VALID))
1372
0
            return 0;
1373
0
    }
1374
1375
0
    if (X509_CRL_get0_nextUpdate(crl)) {
1376
0
        i = X509_cmp_time(X509_CRL_get0_nextUpdate(crl), ptime);
1377
1378
0
        if (i == 0) {
1379
0
            if (!notify)
1380
0
                return 0;
1381
0
            if (!verify_cb_crl(ctx, X509_V_ERR_ERROR_IN_CRL_NEXT_UPDATE_FIELD))
1382
0
                return 0;
1383
0
        }
1384
        /* Ignore expiration of base CRL is delta is valid */
1385
0
        if (i < 0 && (ctx->current_crl_score & CRL_SCORE_TIME_DELTA) == 0) {
1386
0
            if (!notify || !verify_cb_crl(ctx, X509_V_ERR_CRL_HAS_EXPIRED))
1387
0
                return 0;
1388
0
        }
1389
0
    }
1390
1391
0
    if (notify)
1392
0
        ctx->current_crl = NULL;
1393
1394
0
    return 1;
1395
0
}
1396
1397
static int get_crl_sk(X509_STORE_CTX *ctx, X509_CRL **pcrl, X509_CRL **pdcrl,
1398
    X509 **pissuer, int *pscore, unsigned int *preasons,
1399
    STACK_OF(X509_CRL) *crls)
1400
5.10k
{
1401
5.10k
    int i, crl_score, best_score = *pscore;
1402
5.10k
    unsigned int reasons, best_reasons = 0;
1403
5.10k
    X509 *x = ctx->current_cert;
1404
5.10k
    X509_CRL *crl, *best_crl = NULL;
1405
5.10k
    X509 *crl_issuer = NULL, *best_crl_issuer = NULL;
1406
1407
8.23k
    for (i = 0; i < sk_X509_CRL_num(crls); i++) {
1408
3.13k
        crl = sk_X509_CRL_value(crls, i);
1409
3.13k
        reasons = *preasons;
1410
3.13k
        crl_score = get_crl_score(ctx, &crl_issuer, &reasons, crl, x);
1411
3.13k
        if (crl_score < best_score || crl_score == 0)
1412
552
            continue;
1413
        /* If current CRL is equivalent use it if it is newer */
1414
2.57k
        if (crl_score == best_score && best_crl != NULL) {
1415
0
            int day, sec;
1416
1417
0
            if (ASN1_TIME_diff(&day, &sec, X509_CRL_get0_lastUpdate(best_crl),
1418
0
                    X509_CRL_get0_lastUpdate(crl))
1419
0
                == 0)
1420
0
                continue;
1421
            /*
1422
             * ASN1_TIME_diff never returns inconsistent signs for |day|
1423
             * and |sec|.
1424
             */
1425
0
            if (day <= 0 && sec <= 0)
1426
0
                continue;
1427
0
        }
1428
2.57k
        best_crl = crl;
1429
2.57k
        best_crl_issuer = crl_issuer;
1430
2.57k
        best_score = crl_score;
1431
2.57k
        best_reasons = reasons;
1432
2.57k
    }
1433
1434
5.10k
    if (best_crl != NULL) {
1435
2.57k
        if (!X509_CRL_up_ref(best_crl))
1436
0
            return 0;
1437
2.57k
        X509_CRL_free(*pcrl);
1438
2.57k
        *pcrl = best_crl;
1439
2.57k
        *pissuer = best_crl_issuer;
1440
2.57k
        *pscore = best_score;
1441
2.57k
        *preasons = best_reasons;
1442
2.57k
        X509_CRL_free(*pdcrl);
1443
2.57k
        *pdcrl = NULL;
1444
2.57k
        get_delta_sk(ctx, pdcrl, pscore, best_crl, crls);
1445
2.57k
    }
1446
1447
5.10k
    if (best_score >= CRL_SCORE_VALID)
1448
1.47k
        return 1;
1449
1450
3.62k
    return 0;
1451
5.10k
}
1452
1453
/*
1454
 * Compare two CRL extensions for delta checking purposes. They should be
1455
 * both present or both absent. If both present all fields must be identical.
1456
 */
1457
static int crl_extension_match(X509_CRL *a, X509_CRL *b, int nid)
1458
0
{
1459
0
    ASN1_OCTET_STRING *exta = NULL, *extb = NULL;
1460
0
    int i = X509_CRL_get_ext_by_NID(a, nid, -1);
1461
1462
0
    if (i >= 0) {
1463
        /* Can't have multiple occurrences */
1464
0
        if (X509_CRL_get_ext_by_NID(a, nid, i) != -1)
1465
0
            return 0;
1466
0
        exta = X509_EXTENSION_get_data(X509_CRL_get_ext(a, i));
1467
0
    }
1468
1469
0
    i = X509_CRL_get_ext_by_NID(b, nid, -1);
1470
0
    if (i >= 0) {
1471
0
        if (X509_CRL_get_ext_by_NID(b, nid, i) != -1)
1472
0
            return 0;
1473
0
        extb = X509_EXTENSION_get_data(X509_CRL_get_ext(b, i));
1474
0
    }
1475
1476
0
    if (exta == NULL && extb == NULL)
1477
0
        return 1;
1478
1479
0
    if (exta == NULL || extb == NULL)
1480
0
        return 0;
1481
1482
0
    return ASN1_OCTET_STRING_cmp(exta, extb) == 0;
1483
0
}
1484
1485
/* See if a base and delta are compatible */
1486
static int check_delta_base(X509_CRL *delta, X509_CRL *base)
1487
0
{
1488
    /* Delta CRL must be a delta */
1489
0
    if (delta->base_crl_number == NULL)
1490
0
        return 0;
1491
    /* Base must have a CRL number */
1492
0
    if (base->crl_number == NULL)
1493
0
        return 0;
1494
    /* Issuer names must match */
1495
0
    if (X509_NAME_cmp(X509_CRL_get_issuer(base),
1496
0
            X509_CRL_get_issuer(delta))
1497
0
        != 0)
1498
0
        return 0;
1499
    /* AKID and IDP must match */
1500
0
    if (!crl_extension_match(delta, base, NID_authority_key_identifier))
1501
0
        return 0;
1502
0
    if (!crl_extension_match(delta, base, NID_issuing_distribution_point))
1503
0
        return 0;
1504
    /* Delta CRL base number must not exceed Full CRL number. */
1505
0
    if (ASN1_INTEGER_cmp(delta->base_crl_number, base->crl_number) > 0)
1506
0
        return 0;
1507
    /* Delta CRL number must exceed full CRL number */
1508
0
    return ASN1_INTEGER_cmp(delta->crl_number, base->crl_number) > 0;
1509
0
}
1510
1511
/*
1512
 * For a given base CRL find a delta... maybe extend to delta scoring or
1513
 * retrieve a chain of deltas...
1514
 */
1515
static void get_delta_sk(X509_STORE_CTX *ctx, X509_CRL **dcrl, int *pscore,
1516
    X509_CRL *base, STACK_OF(X509_CRL) *crls)
1517
2.57k
{
1518
2.57k
    X509_CRL *delta;
1519
2.57k
    int i;
1520
1521
2.57k
    if ((ctx->param->flags & X509_V_FLAG_USE_DELTAS) == 0)
1522
2.57k
        return;
1523
0
    if (((ctx->current_cert->ex_flags | base->flags) & EXFLAG_FRESHEST) == 0)
1524
0
        return;
1525
0
    for (i = 0; i < sk_X509_CRL_num(crls); i++) {
1526
0
        delta = sk_X509_CRL_value(crls, i);
1527
0
        if (check_delta_base(delta, base)) {
1528
0
            if (!X509_CRL_up_ref(delta)) {
1529
0
                *dcrl = NULL;
1530
0
                return;
1531
0
            }
1532
1533
0
            *dcrl = delta;
1534
1535
0
            if (check_crl_time(ctx, delta, 0))
1536
0
                *pscore |= CRL_SCORE_TIME_DELTA;
1537
1538
0
            return;
1539
0
        }
1540
0
    }
1541
0
    *dcrl = NULL;
1542
0
}
1543
1544
/*
1545
 * For a given CRL return how suitable it is for the supplied certificate
1546
 * 'x'. The return value is a mask of several criteria. If the issuer is not
1547
 * the certificate issuer this is returned in *pissuer. The reasons mask is
1548
 * also used to determine if the CRL is suitable: if no new reasons the CRL
1549
 * is rejected, otherwise reasons is updated.
1550
 */
1551
static int get_crl_score(X509_STORE_CTX *ctx, X509 **pissuer,
1552
    unsigned int *preasons, X509_CRL *crl, X509 *x)
1553
6.47k
{
1554
6.47k
    int crl_score = 0;
1555
6.47k
    unsigned int tmp_reasons = *preasons, crl_reasons;
1556
1557
    /* First see if we can reject CRL straight away */
1558
1559
    /* Invalid IDP cannot be processed */
1560
6.47k
    if ((crl->idp_flags & IDP_INVALID) != 0)
1561
5
        return 0;
1562
    /* Reason codes or indirect CRLs need extended CRL support */
1563
6.46k
    if ((ctx->param->flags & X509_V_FLAG_EXTENDED_CRL_SUPPORT) == 0) {
1564
6.46k
        if (crl->idp_flags & (IDP_INDIRECT | IDP_REASONS))
1565
29
            return 0;
1566
6.46k
    } else if ((crl->idp_flags & IDP_REASONS) != 0) {
1567
        /* If no new reasons reject */
1568
0
        if ((crl->idp_reasons & ~tmp_reasons) == 0)
1569
0
            return 0;
1570
0
    }
1571
    /* Don't process deltas at this stage */
1572
0
    else if (crl->base_crl_number != NULL)
1573
0
        return 0;
1574
    /* If issuer name doesn't match certificate need indirect CRL */
1575
6.43k
    if (X509_NAME_cmp(X509_get_issuer_name(x), X509_CRL_get_issuer(crl)) != 0) {
1576
1.14k
        if ((crl->idp_flags & IDP_INDIRECT) == 0)
1577
1.14k
            return 0;
1578
5.29k
    } else {
1579
5.29k
        crl_score |= CRL_SCORE_ISSUER_NAME;
1580
5.29k
    }
1581
1582
5.29k
    if ((crl->flags & EXFLAG_CRITICAL) == 0)
1583
3.61k
        crl_score |= CRL_SCORE_NOCRITICAL;
1584
1585
    /* Check expiration */
1586
5.29k
    if (check_crl_time(ctx, crl, 0))
1587
5.29k
        crl_score |= CRL_SCORE_TIME;
1588
1589
    /* Check authority key ID and locate certificate issuer */
1590
5.29k
    crl_akid_check(ctx, crl, pissuer, &crl_score);
1591
1592
    /* If we can't locate certificate issuer at this point forget it */
1593
5.29k
    if ((crl_score & CRL_SCORE_AKID) == 0)
1594
7
        return 0;
1595
1596
    /* Check cert for matching CRL distribution points */
1597
5.28k
    if (crl_crldp_check(x, crl, crl_score, &crl_reasons)) {
1598
        /* If no new reasons reject */
1599
5.09k
        if ((crl_reasons & ~tmp_reasons) == 0)
1600
12
            return 0;
1601
5.08k
        tmp_reasons |= crl_reasons;
1602
5.08k
        crl_score |= CRL_SCORE_SCOPE;
1603
5.08k
    }
1604
1605
5.27k
    *preasons = tmp_reasons;
1606
1607
5.27k
    return crl_score;
1608
5.28k
}
1609
1610
static void crl_akid_check(X509_STORE_CTX *ctx, X509_CRL *crl,
1611
    X509 **pissuer, int *pcrl_score)
1612
5.29k
{
1613
5.29k
    X509 *crl_issuer = NULL;
1614
5.29k
    const X509_NAME *cnm = X509_CRL_get_issuer(crl);
1615
5.29k
    int cidx = ctx->error_depth;
1616
5.29k
    int i;
1617
1618
5.29k
    if (cidx != sk_X509_num(ctx->chain) - 1)
1619
1.84k
        cidx++;
1620
1621
5.29k
    crl_issuer = sk_X509_value(ctx->chain, cidx);
1622
1623
5.29k
    if (X509_check_akid(crl_issuer, crl->akid) == X509_V_OK) {
1624
5.28k
        if (*pcrl_score & CRL_SCORE_ISSUER_NAME) {
1625
5.28k
            *pcrl_score |= CRL_SCORE_AKID | CRL_SCORE_ISSUER_CERT;
1626
5.28k
            *pissuer = crl_issuer;
1627
5.28k
            return;
1628
5.28k
        }
1629
5.28k
    }
1630
1631
7
    for (cidx++; cidx < sk_X509_num(ctx->chain); cidx++) {
1632
0
        crl_issuer = sk_X509_value(ctx->chain, cidx);
1633
0
        if (X509_NAME_cmp(X509_get_subject_name(crl_issuer), cnm))
1634
0
            continue;
1635
0
        if (X509_check_akid(crl_issuer, crl->akid) == X509_V_OK) {
1636
0
            *pcrl_score |= CRL_SCORE_AKID | CRL_SCORE_SAME_PATH;
1637
0
            *pissuer = crl_issuer;
1638
0
            return;
1639
0
        }
1640
0
    }
1641
1642
    /* Anything else needs extended CRL support */
1643
7
    if ((ctx->param->flags & X509_V_FLAG_EXTENDED_CRL_SUPPORT) == 0)
1644
7
        return;
1645
1646
    /*
1647
     * Otherwise the CRL issuer is not on the path. Look for it in the set of
1648
     * untrusted certificates.
1649
     */
1650
0
    for (i = 0; i < sk_X509_num(ctx->untrusted); i++) {
1651
0
        crl_issuer = sk_X509_value(ctx->untrusted, i);
1652
0
        if (X509_NAME_cmp(X509_get_subject_name(crl_issuer), cnm) != 0)
1653
0
            continue;
1654
0
        if (X509_check_akid(crl_issuer, crl->akid) == X509_V_OK) {
1655
0
            *pissuer = crl_issuer;
1656
0
            *pcrl_score |= CRL_SCORE_AKID;
1657
0
            return;
1658
0
        }
1659
0
    }
1660
0
}
1661
1662
/*
1663
 * Check the path of a CRL issuer certificate. This creates a new
1664
 * X509_STORE_CTX and populates it with most of the parameters from the
1665
 * parent. This could be optimised somewhat since a lot of path checking will
1666
 * be duplicated by the parent, but this will rarely be used in practice.
1667
 */
1668
static int check_crl_path(X509_STORE_CTX *ctx, X509 *x)
1669
0
{
1670
0
    X509_STORE_CTX crl_ctx = { 0 };
1671
0
    int ret;
1672
1673
    /* Don't allow recursive CRL path validation */
1674
0
    if (ctx->parent != NULL)
1675
0
        return 0;
1676
0
    if (!X509_STORE_CTX_init(&crl_ctx, ctx->store, x, ctx->untrusted))
1677
0
        return -1;
1678
1679
0
    crl_ctx.crls = ctx->crls;
1680
    /* Copy verify params across */
1681
0
    X509_STORE_CTX_set0_param(&crl_ctx, ctx->param);
1682
1683
0
    crl_ctx.parent = ctx;
1684
0
    crl_ctx.verify_cb = ctx->verify_cb;
1685
1686
    /* Verify CRL issuer */
1687
0
    ret = X509_verify_cert(&crl_ctx);
1688
0
    if (ret <= 0)
1689
0
        goto err;
1690
1691
    /* Check chain is acceptable */
1692
0
    ret = check_crl_chain(ctx, ctx->chain, crl_ctx.chain);
1693
0
err:
1694
0
    X509_STORE_CTX_cleanup(&crl_ctx);
1695
0
    return ret;
1696
0
}
1697
1698
/*
1699
 * RFC3280 says nothing about the relationship between CRL path and
1700
 * certificate path, which could lead to situations where a certificate could
1701
 * be revoked or validated by a CA not authorized to do so. RFC5280 is more
1702
 * strict and states that the two paths must end in the same trust anchor,
1703
 * though some discussions remain... until this is resolved we use the
1704
 * RFC5280 version
1705
 */
1706
static int check_crl_chain(X509_STORE_CTX *ctx,
1707
    STACK_OF(X509) *cert_path,
1708
    STACK_OF(X509) *crl_path)
1709
0
{
1710
0
    X509 *cert_ta = sk_X509_value(cert_path, sk_X509_num(cert_path) - 1);
1711
0
    X509 *crl_ta = sk_X509_value(crl_path, sk_X509_num(crl_path) - 1);
1712
1713
0
    return X509_cmp(cert_ta, crl_ta) == 0;
1714
0
}
1715
1716
/*-
1717
 * Check for match between two dist point names: three separate cases.
1718
 * 1. Both are relative names and compare X509_NAME types.
1719
 * 2. One full, one relative. Compare X509_NAME to GENERAL_NAMES.
1720
 * 3. Both are full names and compare two GENERAL_NAMES.
1721
 * 4. One is NULL: automatic match.
1722
 */
1723
static int idp_check_dp(DIST_POINT_NAME *a, DIST_POINT_NAME *b)
1724
177
{
1725
177
    X509_NAME *nm = NULL;
1726
177
    GENERAL_NAMES *gens = NULL;
1727
177
    GENERAL_NAME *gena, *genb;
1728
177
    int i, j;
1729
1730
177
    if (a == NULL || b == NULL)
1731
9
        return 1;
1732
168
    if (a->type == 1) {
1733
0
        if (a->dpname == NULL)
1734
0
            return 0;
1735
        /* Case 1: two X509_NAME */
1736
0
        if (b->type == 1) {
1737
0
            if (b->dpname == NULL)
1738
0
                return 0;
1739
0
            return X509_NAME_cmp(a->dpname, b->dpname) == 0;
1740
0
        }
1741
        /* Case 2: set name and GENERAL_NAMES appropriately */
1742
0
        nm = a->dpname;
1743
0
        gens = b->name.fullname;
1744
168
    } else if (b->type == 1) {
1745
1
        if (b->dpname == NULL)
1746
0
            return 0;
1747
        /* Case 2: set name and GENERAL_NAMES appropriately */
1748
1
        gens = a->name.fullname;
1749
1
        nm = b->dpname;
1750
1
    }
1751
1752
    /* Handle case 2 with one GENERAL_NAMES and one X509_NAME */
1753
168
    if (nm != NULL) {
1754
2
        for (i = 0; i < sk_GENERAL_NAME_num(gens); i++) {
1755
1
            gena = sk_GENERAL_NAME_value(gens, i);
1756
1
            if (gena->type != GEN_DIRNAME)
1757
1
                continue;
1758
0
            if (X509_NAME_cmp(nm, gena->d.directoryName) == 0)
1759
0
                return 1;
1760
0
        }
1761
1
        return 0;
1762
1
    }
1763
1764
    /* Else case 3: two GENERAL_NAMES */
1765
1766
310
    for (i = 0; i < sk_GENERAL_NAME_num(a->name.fullname); i++) {
1767
167
        gena = sk_GENERAL_NAME_value(a->name.fullname, i);
1768
309
        for (j = 0; j < sk_GENERAL_NAME_num(b->name.fullname); j++) {
1769
166
            genb = sk_GENERAL_NAME_value(b->name.fullname, j);
1770
166
            if (GENERAL_NAME_cmp(gena, genb) == 0)
1771
24
                return 1;
1772
166
        }
1773
167
    }
1774
1775
143
    return 0;
1776
167
}
1777
1778
static int crldp_check_crlissuer(DIST_POINT *dp, X509_CRL *crl, int crl_score)
1779
325
{
1780
325
    int i;
1781
325
    const X509_NAME *nm = X509_CRL_get_issuer(crl);
1782
1783
    /* If no CRLissuer return is successful iff don't need a match */
1784
325
    if (dp->CRLissuer == NULL)
1785
314
        return (crl_score & CRL_SCORE_ISSUER_NAME) != 0;
1786
22
    for (i = 0; i < sk_GENERAL_NAME_num(dp->CRLissuer); i++) {
1787
11
        GENERAL_NAME *gen = sk_GENERAL_NAME_value(dp->CRLissuer, i);
1788
1789
11
        if (gen->type != GEN_DIRNAME)
1790
11
            continue;
1791
0
        if (X509_NAME_cmp(gen->d.directoryName, nm) == 0)
1792
0
            return 1;
1793
0
    }
1794
11
    return 0;
1795
11
}
1796
1797
/* Check CRLDP and IDP */
1798
static int crl_crldp_check(X509 *x, X509_CRL *crl, int crl_score,
1799
    unsigned int *preasons)
1800
5.28k
{
1801
5.28k
    int i;
1802
1803
5.28k
    if ((crl->idp_flags & IDP_ONLYATTR) != 0)
1804
7
        return 0;
1805
5.28k
    if ((x->ex_flags & EXFLAG_CA) != 0) {
1806
51
        if ((crl->idp_flags & IDP_ONLYUSER) != 0)
1807
0
            return 0;
1808
5.23k
    } else {
1809
5.23k
        if ((crl->idp_flags & IDP_ONLYCA) != 0)
1810
6
            return 0;
1811
5.23k
    }
1812
5.27k
    *preasons = crl->idp_reasons;
1813
5.43k
    for (i = 0; i < sk_DIST_POINT_num(x->crldp); i++) {
1814
325
        DIST_POINT *dp = sk_DIST_POINT_value(x->crldp, i);
1815
1816
325
        if (crldp_check_crlissuer(dp, crl, crl_score)) {
1817
314
            if (crl->idp == NULL
1818
177
                || idp_check_dp(dp->distpoint, crl->idp->distpoint)) {
1819
170
                *preasons &= dp->dp_reasons;
1820
170
                return 1;
1821
170
            }
1822
314
        }
1823
325
    }
1824
5.10k
    return (crl->idp == NULL || crl->idp->distpoint == NULL)
1825
4.92k
        && (crl_score & CRL_SCORE_ISSUER_NAME) != 0;
1826
5.27k
}
1827
1828
/*
1829
 * Retrieve CRL corresponding to current certificate. If deltas enabled try
1830
 * to find a delta CRL too
1831
 */
1832
static int get_crl_delta(X509_STORE_CTX *ctx,
1833
    X509_CRL **pcrl, X509_CRL **pdcrl, X509 *x)
1834
6.79k
{
1835
6.79k
    int ok;
1836
6.79k
    X509 *issuer = NULL;
1837
6.79k
    int crl_score = 0;
1838
6.79k
    unsigned int reasons;
1839
6.79k
    X509_CRL *crl = NULL, *dcrl = NULL;
1840
6.79k
    STACK_OF(X509_CRL) *skcrl;
1841
6.79k
    const X509_NAME *nm = X509_get_issuer_name(x);
1842
1843
6.79k
    reasons = ctx->current_reasons;
1844
6.79k
    ok = get_crl_sk(ctx, &crl, &dcrl,
1845
6.79k
        &issuer, &crl_score, &reasons, ctx->crls);
1846
6.79k
    if (ok)
1847
3.40k
        goto done;
1848
1849
    /* Lookup CRLs from store */
1850
3.39k
    skcrl = ctx->lookup_crls(ctx, nm);
1851
1852
    /* If no CRLs found and a near match from get_crl_sk use that */
1853
3.39k
    if (skcrl == NULL && crl != NULL)
1854
149
        goto done;
1855
1856
3.24k
    get_crl_sk(ctx, &crl, &dcrl, &issuer, &crl_score, &reasons, skcrl);
1857
1858
3.24k
    sk_X509_CRL_pop_free(skcrl, X509_CRL_free);
1859
1860
6.79k
done:
1861
    /* If we got any kind of CRL use it and return success */
1862
6.79k
    if (crl != NULL) {
1863
5.27k
        ctx->current_issuer = issuer;
1864
5.27k
        ctx->current_crl_score = crl_score;
1865
5.27k
        ctx->current_reasons = reasons;
1866
5.27k
        *pcrl = crl;
1867
5.27k
        *pdcrl = dcrl;
1868
5.27k
        return 1;
1869
5.27k
    }
1870
1.51k
    return 0;
1871
6.79k
}
1872
1873
/* Check CRL validity */
1874
static int check_crl(X509_STORE_CTX *ctx, X509_CRL *crl)
1875
2.57k
{
1876
2.57k
    X509 *issuer = NULL;
1877
2.57k
    EVP_PKEY *ikey = NULL;
1878
2.57k
    int cnum = ctx->error_depth;
1879
2.57k
    int chnum = sk_X509_num(ctx->chain) - 1;
1880
1881
    /* If we have an alternative CRL issuer cert use that */
1882
2.57k
    if (ctx->current_issuer != NULL) {
1883
2.57k
        issuer = ctx->current_issuer;
1884
        /*
1885
         * Else find CRL issuer: if not last certificate then issuer is next
1886
         * certificate in chain.
1887
         */
1888
2.57k
    } else if (cnum < chnum) {
1889
0
        issuer = sk_X509_value(ctx->chain, cnum + 1);
1890
0
    } else {
1891
0
        issuer = sk_X509_value(ctx->chain, chnum);
1892
0
        if (!ossl_assert(issuer != NULL))
1893
0
            return 0;
1894
        /* If not self-issued, can't check signature */
1895
0
        if (!ctx->check_issued(ctx, issuer, issuer) && !verify_cb_crl(ctx, X509_V_ERR_UNABLE_TO_GET_CRL_ISSUER))
1896
0
            return 0;
1897
0
    }
1898
1899
2.57k
    if (issuer == NULL)
1900
0
        return 1;
1901
1902
    /*
1903
     * Skip most tests for deltas because they have already been done
1904
     */
1905
2.57k
    if (crl->base_crl_number == NULL) {
1906
        /* Check for cRLSign bit if keyUsage present */
1907
2.34k
        if ((issuer->ex_flags & EXFLAG_KUSAGE) != 0 && (issuer->ex_kusage & KU_CRL_SIGN) == 0 && !verify_cb_crl(ctx, X509_V_ERR_KEYUSAGE_NO_CRL_SIGN))
1908
0
            return 0;
1909
1910
2.34k
        if ((ctx->current_crl_score & CRL_SCORE_SCOPE) == 0 && !verify_cb_crl(ctx, X509_V_ERR_DIFFERENT_CRL_SCOPE))
1911
0
            return 0;
1912
1913
2.34k
        if ((ctx->current_crl_score & CRL_SCORE_SAME_PATH) == 0 && check_crl_path(ctx, ctx->current_issuer) <= 0 && !verify_cb_crl(ctx, X509_V_ERR_CRL_PATH_VALIDATION_ERROR))
1914
0
            return 0;
1915
1916
2.34k
        if ((crl->idp_flags & IDP_INVALID) != 0 && !verify_cb_crl(ctx, X509_V_ERR_INVALID_EXTENSION))
1917
0
            return 0;
1918
2.34k
    }
1919
1920
2.57k
    if ((ctx->current_crl_score & CRL_SCORE_TIME) == 0 && !check_crl_time(ctx, crl, 1))
1921
0
        return 0;
1922
1923
    /* Attempt to get issuer certificate public key */
1924
2.57k
    ikey = X509_get0_pubkey(issuer);
1925
2.57k
    if (ikey == NULL && !verify_cb_crl(ctx, X509_V_ERR_UNABLE_TO_DECODE_ISSUER_PUBLIC_KEY))
1926
0
        return 0;
1927
1928
2.57k
    if (ikey != NULL) {
1929
2.57k
        int rv = X509_CRL_check_suiteb(crl, ikey, ctx->param->flags);
1930
1931
2.57k
        if (rv != X509_V_OK && !verify_cb_crl(ctx, rv))
1932
0
            return 0;
1933
        /* Verify CRL signature */
1934
2.57k
        if (X509_CRL_verify(crl, ikey) <= 0 && !verify_cb_crl(ctx, X509_V_ERR_CRL_SIGNATURE_FAILURE))
1935
0
            return 0;
1936
2.57k
    }
1937
2.57k
    return 1;
1938
2.57k
}
1939
1940
/* Check certificate against CRL */
1941
static int cert_crl(X509_STORE_CTX *ctx, X509_CRL *crl, X509 *x)
1942
5.27k
{
1943
5.27k
    X509_REVOKED *rev;
1944
1945
    /*
1946
     * The rules changed for this... previously if a CRL contained unhandled
1947
     * critical extensions it could still be used to indicate a certificate
1948
     * was revoked. This has since been changed since critical extensions can
1949
     * change the meaning of CRL entries.
1950
     */
1951
5.27k
    if ((ctx->param->flags & X509_V_FLAG_IGNORE_CRITICAL) == 0
1952
5.27k
        && (crl->flags & EXFLAG_CRITICAL) != 0 && !verify_cb_crl(ctx, X509_V_ERR_UNHANDLED_CRITICAL_CRL_EXTENSION))
1953
0
        return 0;
1954
    /*
1955
     * Look for serial number of certificate in CRL.  If found, make sure
1956
     * reason is not removeFromCRL.
1957
     */
1958
5.27k
    if (X509_CRL_get0_by_cert(crl, &rev, x)) {
1959
16
        if (rev->reason == CRL_REASON_REMOVE_FROM_CRL)
1960
0
            return 2;
1961
16
        if (!verify_cb_crl(ctx, X509_V_ERR_CERT_REVOKED))
1962
0
            return 0;
1963
16
    }
1964
1965
5.27k
    return 1;
1966
5.27k
}
1967
1968
/* Sadly, returns 0 also on internal error in ctx->verify_cb(). */
1969
static int check_policy(X509_STORE_CTX *ctx)
1970
0
{
1971
0
    int ret;
1972
1973
0
    if (ctx->parent)
1974
0
        return 1;
1975
    /*
1976
     * With DANE, the trust anchor might be a bare public key, not a
1977
     * certificate!  In that case our chain does not have the trust anchor
1978
     * certificate as a top-most element.  This comports well with RFC5280
1979
     * chain verification, since there too, the trust anchor is not part of the
1980
     * chain to be verified.  In particular, X509_policy_check() does not look
1981
     * at the TA cert, but assumes that it is present as the top-most chain
1982
     * element.  We therefore temporarily push a NULL cert onto the chain if it
1983
     * was verified via a bare public key, and pop it off right after the
1984
     * X509_policy_check() call.
1985
     */
1986
0
    if (ctx->bare_ta_signed && !sk_X509_push(ctx->chain, NULL)) {
1987
0
        ERR_raise(ERR_LIB_X509, ERR_R_CRYPTO_LIB);
1988
0
        goto memerr;
1989
0
    }
1990
0
    ret = X509_policy_check(&ctx->tree, &ctx->explicit_policy, ctx->chain,
1991
0
        ctx->param->policies, ctx->param->flags);
1992
0
    if (ctx->bare_ta_signed)
1993
0
        (void)sk_X509_pop(ctx->chain);
1994
1995
0
    if (ret == X509_PCY_TREE_INTERNAL) {
1996
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
1997
0
        goto memerr;
1998
0
    }
1999
    /* Invalid or inconsistent extensions */
2000
0
    if (ret == X509_PCY_TREE_INVALID) {
2001
0
        int i, cbcalled = 0;
2002
2003
        /* Locate certificates with bad extensions and notify callback. */
2004
0
        for (i = 0; i < sk_X509_num(ctx->chain); i++) {
2005
0
            X509 *x = sk_X509_value(ctx->chain, i);
2006
2007
0
            if ((x->ex_flags & EXFLAG_INVALID_POLICY) != 0)
2008
0
                cbcalled = 1;
2009
0
            CB_FAIL_IF((x->ex_flags & EXFLAG_INVALID_POLICY) != 0,
2010
0
                ctx, x, i, X509_V_ERR_INVALID_POLICY_EXTENSION);
2011
0
        }
2012
0
        if (!cbcalled) {
2013
            /* Should not be able to get here */
2014
0
            ERR_raise(ERR_LIB_X509, ERR_R_INTERNAL_ERROR);
2015
0
            return 0;
2016
0
        }
2017
        /* The callback ignored the error so we return success */
2018
0
        return 1;
2019
0
    }
2020
0
    if (ret == X509_PCY_TREE_FAILURE) {
2021
0
        ctx->current_cert = NULL;
2022
0
        ctx->error = X509_V_ERR_NO_EXPLICIT_POLICY;
2023
0
        return ctx->verify_cb(0, ctx);
2024
0
    }
2025
0
    if (ret != X509_PCY_TREE_VALID) {
2026
0
        ERR_raise(ERR_LIB_X509, ERR_R_INTERNAL_ERROR);
2027
0
        return 0;
2028
0
    }
2029
2030
0
    if ((ctx->param->flags & X509_V_FLAG_NOTIFY_POLICY) != 0) {
2031
0
        ctx->current_cert = NULL;
2032
        /*
2033
         * Verification errors need to be "sticky", a callback may have allowed
2034
         * an SSL handshake to continue despite an error, and we must then
2035
         * remain in an error state.  Therefore, we MUST NOT clear earlier
2036
         * verification errors by setting the error to X509_V_OK.
2037
         */
2038
0
        if (!ctx->verify_cb(2, ctx))
2039
0
            return 0;
2040
0
    }
2041
2042
0
    return 1;
2043
2044
0
memerr:
2045
0
    ctx->error = X509_V_ERR_OUT_OF_MEM;
2046
0
    return -1;
2047
0
}
2048
2049
/*-
2050
 * Check certificate validity times.
2051
 * If depth >= 0, invoke verification callbacks on error, otherwise just return
2052
 * the validation status.
2053
 *
2054
 * Return 1 on success, 0 otherwise.
2055
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
2056
 */
2057
int ossl_x509_check_cert_time(X509_STORE_CTX *ctx, X509 *x, int depth)
2058
10.7k
{
2059
10.7k
    time_t *ptime;
2060
10.7k
    int i;
2061
2062
10.7k
    if ((ctx->param->flags & X509_V_FLAG_USE_CHECK_TIME) != 0)
2063
0
        ptime = &ctx->param->check_time;
2064
10.7k
    else if ((ctx->param->flags & X509_V_FLAG_NO_CHECK_TIME) != 0)
2065
9.59k
        return 1;
2066
1.12k
    else
2067
1.12k
        ptime = NULL;
2068
2069
1.12k
    i = X509_cmp_time(X509_get0_notBefore(x), ptime);
2070
1.12k
    if (i >= 0 && depth < 0)
2071
687
        return 0;
2072
437
    CB_FAIL_IF(i == 0, ctx, x, depth, X509_V_ERR_ERROR_IN_CERT_NOT_BEFORE_FIELD);
2073
437
    CB_FAIL_IF(i > 0, ctx, x, depth, X509_V_ERR_CERT_NOT_YET_VALID);
2074
2075
437
    i = X509_cmp_time(X509_get0_notAfter(x), ptime);
2076
437
    if (i <= 0 && depth < 0)
2077
380
        return 0;
2078
57
    CB_FAIL_IF(i == 0, ctx, x, depth, X509_V_ERR_ERROR_IN_CERT_NOT_AFTER_FIELD);
2079
57
    CB_FAIL_IF(i < 0, ctx, x, depth, X509_V_ERR_CERT_HAS_EXPIRED);
2080
57
    return 1;
2081
57
}
2082
2083
/*
2084
 * Verify the issuer signatures and cert times of ctx->chain.
2085
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
2086
 */
2087
static int internal_verify(X509_STORE_CTX *ctx)
2088
5.49k
{
2089
5.49k
    int n;
2090
5.49k
    X509 *xi;
2091
5.49k
    X509 *xs;
2092
2093
    /* For RPK: just do the verify callback */
2094
5.49k
    if (ctx->rpk != NULL) {
2095
0
        if (!ctx->verify_cb(ctx->error == X509_V_OK, ctx))
2096
0
            return 0;
2097
0
        return 1;
2098
0
    }
2099
5.49k
    n = sk_X509_num(ctx->chain) - 1;
2100
5.49k
    xi = sk_X509_value(ctx->chain, n);
2101
5.49k
    xs = xi;
2102
2103
5.49k
    ctx->error_depth = n;
2104
5.49k
    if (ctx->bare_ta_signed) {
2105
        /*
2106
         * With DANE-verified bare public key TA signatures,
2107
         * on the top certificate we check only the timestamps.
2108
         * We report the issuer as NULL because all we have is a bare key.
2109
         */
2110
0
        xi = NULL;
2111
5.49k
    } else if (ossl_x509_likely_issued(xi, xi) != X509_V_OK
2112
        /* exceptional case: last cert in the chain is not self-issued */
2113
4.90k
        && ((ctx->param->flags & X509_V_FLAG_PARTIAL_CHAIN) == 0)) {
2114
0
        if (n > 0) {
2115
0
            n--;
2116
0
            ctx->error_depth = n;
2117
0
            xs = sk_X509_value(ctx->chain, n);
2118
0
        } else {
2119
0
            CB_FAIL_IF(1, ctx, xi, 0,
2120
0
                X509_V_ERR_UNABLE_TO_VERIFY_LEAF_SIGNATURE);
2121
0
        }
2122
        /*
2123
         * The below code will certainly not do a
2124
         * self-signature check on xi because it is not self-issued.
2125
         */
2126
0
    }
2127
2128
    /*
2129
     * Do not clear error (by ctx->error = X509_V_OK), it must be "sticky",
2130
     * only the user's callback is allowed to reset errors (at its own peril).
2131
     */
2132
12.9k
    while (n >= 0) {
2133
        /*-
2134
         * For each iteration of this loop:
2135
         * n is the subject depth
2136
         * xs is the subject cert, for which the signature is to be checked
2137
         * xi is NULL for DANE-verified bare public key TA signatures
2138
         *       else the supposed issuer cert containing the public key to use
2139
         * Initially xs == xi if the last cert in the chain is self-issued.
2140
         */
2141
        /*
2142
         * Do signature check for self-signed certificates only if explicitly
2143
         * asked for because it does not add any security and just wastes time.
2144
         */
2145
7.50k
        if (xi != NULL
2146
7.50k
            && (xs != xi
2147
5.49k
                || ((ctx->param->flags & X509_V_FLAG_CHECK_SS_SIGNATURE) != 0
2148
2.01k
                    && (xi->ex_flags & EXFLAG_SS) != 0))) {
2149
2.01k
            EVP_PKEY *pkey;
2150
            /*
2151
             * If the issuer's public key is not available or its key usage
2152
             * does not support issuing the subject cert, report the issuer
2153
             * cert and its depth (rather than n, the depth of the subject).
2154
             */
2155
2.01k
            int issuer_depth = n + (xs == xi ? 0 : 1);
2156
            /*
2157
             * According to https://tools.ietf.org/html/rfc5280#section-6.1.4
2158
             * step (n) we must check any given key usage extension in a CA cert
2159
             * when preparing the verification of a certificate issued by it.
2160
             * According to https://tools.ietf.org/html/rfc5280#section-4.2.1.3
2161
             * we must not verify a certificate signature if the key usage of
2162
             * the CA certificate that issued the certificate prohibits signing.
2163
             * In case the 'issuing' certificate is the last in the chain and is
2164
             * not a CA certificate but a 'self-issued' end-entity cert (i.e.,
2165
             * xs == xi && !(xi->ex_flags & EXFLAG_CA)) RFC 5280 does not apply
2166
             * (see https://tools.ietf.org/html/rfc6818#section-2) and thus
2167
             * we are free to ignore any key usage restrictions on such certs.
2168
             */
2169
2.01k
            int ret = xs == xi && (xi->ex_flags & EXFLAG_CA) == 0
2170
2.01k
                ? X509_V_OK
2171
2.01k
                : ossl_x509_signing_allowed(xi, xs);
2172
2173
2.01k
            CB_FAIL_IF(ret != X509_V_OK, ctx, xi, issuer_depth, ret);
2174
2.01k
            if ((pkey = X509_get0_pubkey(xi)) == NULL) {
2175
0
                CB_FAIL_IF(1, ctx, xi, issuer_depth,
2176
0
                    X509_V_ERR_UNABLE_TO_DECODE_ISSUER_PUBLIC_KEY);
2177
2.01k
            } else {
2178
2.01k
                CB_FAIL_IF(X509_verify(xs, pkey) <= 0,
2179
2.01k
                    ctx, xs, n, X509_V_ERR_CERT_SIGNATURE_FAILURE);
2180
2.01k
            }
2181
2.01k
        }
2182
2183
        /* In addition to RFC 5280 requirements do also for trust anchor cert */
2184
        /* Calls verify callback as needed */
2185
7.50k
        if (!ossl_x509_check_cert_time(ctx, xs, n))
2186
0
            return 0;
2187
2188
        /*
2189
         * Signal success at this depth.  However, the previous error (if any)
2190
         * is retained.
2191
         */
2192
7.50k
        ctx->current_issuer = xi;
2193
7.50k
        ctx->current_cert = xs;
2194
7.50k
        ctx->error_depth = n;
2195
7.50k
        if (!ctx->verify_cb(1, ctx))
2196
0
            return 0;
2197
2198
7.50k
        if (--n >= 0) {
2199
2.01k
            xi = xs;
2200
2.01k
            xs = sk_X509_value(ctx->chain, n);
2201
2.01k
        }
2202
7.50k
    }
2203
5.49k
    return 1;
2204
5.49k
}
2205
2206
int X509_cmp_current_time(const ASN1_TIME *ctm)
2207
7.87k
{
2208
7.87k
    return X509_cmp_time(ctm, NULL);
2209
7.87k
}
2210
2211
/* returns 0 on error, otherwise 1 if ctm > cmp_time, else -1 */
2212
int X509_cmp_time(const ASN1_TIME *ctm, time_t *cmp_time)
2213
32.7k
{
2214
32.7k
    static const size_t utctime_length = sizeof("YYMMDDHHMMSSZ") - 1;
2215
32.7k
    static const size_t generalizedtime_length = sizeof("YYYYMMDDHHMMSSZ") - 1;
2216
32.7k
    ASN1_TIME *asn1_cmp_time = NULL;
2217
32.7k
    int i, day, sec, ret = 0;
2218
#ifdef CHARSET_EBCDIC
2219
    const char upper_z = 0x5A;
2220
#else
2221
32.7k
    const char upper_z = 'Z';
2222
32.7k
#endif
2223
2224
    /*-
2225
     * Note that ASN.1 allows much more slack in the time format than RFC5280.
2226
     * In RFC5280, the representation is fixed:
2227
     * UTCTime: YYMMDDHHMMSSZ
2228
     * GeneralizedTime: YYYYMMDDHHMMSSZ
2229
     *
2230
     * We do NOT currently enforce the following RFC 5280 requirement:
2231
     * "CAs conforming to this profile MUST always encode certificate
2232
     *  validity dates through the year 2049 as UTCTime; certificate validity
2233
     *  dates in 2050 or later MUST be encoded as GeneralizedTime."
2234
     */
2235
32.7k
    switch (ctm->type) {
2236
32.6k
    case V_ASN1_UTCTIME:
2237
32.6k
        if (ctm->length != (int)(utctime_length))
2238
6
            return 0;
2239
32.6k
        break;
2240
32.6k
    case V_ASN1_GENERALIZEDTIME:
2241
145
        if (ctm->length != (int)(generalizedtime_length))
2242
145
            return 0;
2243
0
        break;
2244
0
    default:
2245
0
        return 0;
2246
32.7k
    }
2247
2248
    /**
2249
     * Verify the format: the ASN.1 functions we use below allow a more
2250
     * flexible format than what's mandated by RFC 5280.
2251
     * Digit and date ranges will be verified in the conversion methods.
2252
     */
2253
355k
    for (i = 0; i < ctm->length - 1; i++) {
2254
332k
        if (!ossl_ascii_isdigit(ctm->data[i]))
2255
9.92k
            return 0;
2256
332k
    }
2257
22.7k
    if (ctm->data[ctm->length - 1] != upper_z)
2258
1.09k
        return 0;
2259
2260
    /*
2261
     * There is ASN1_UTCTIME_cmp_time_t but no
2262
     * ASN1_GENERALIZEDTIME_cmp_time_t or ASN1_TIME_cmp_time_t,
2263
     * so we go through ASN.1
2264
     */
2265
21.6k
    asn1_cmp_time = X509_time_adj(NULL, 0, cmp_time);
2266
21.6k
    if (asn1_cmp_time == NULL)
2267
0
        goto err;
2268
21.6k
    if (ASN1_TIME_diff(&day, &sec, ctm, asn1_cmp_time) == 0)
2269
4.24k
        goto err;
2270
2271
    /*
2272
     * X509_cmp_time comparison is <=.
2273
     * The return value 0 is reserved for errors.
2274
     */
2275
17.3k
    ret = (day >= 0 && sec >= 0) ? -1 : 1;
2276
2277
21.6k
err:
2278
21.6k
    ASN1_TIME_free(asn1_cmp_time);
2279
21.6k
    return ret;
2280
17.3k
}
2281
2282
/*
2283
 * Return 0 if time should not be checked or reference time is in range,
2284
 * or else 1 if it is past the end, or -1 if it is before the start
2285
 */
2286
int X509_cmp_timeframe(const X509_VERIFY_PARAM *vpm,
2287
    const ASN1_TIME *start, const ASN1_TIME *end)
2288
14.9k
{
2289
14.9k
    time_t ref_time;
2290
14.9k
    time_t *time = NULL;
2291
14.9k
    unsigned long flags = vpm == NULL ? 0 : X509_VERIFY_PARAM_get_flags(vpm);
2292
2293
14.9k
    if ((flags & X509_V_FLAG_USE_CHECK_TIME) != 0) {
2294
0
        ref_time = X509_VERIFY_PARAM_get_time(vpm);
2295
0
        time = &ref_time;
2296
14.9k
    } else if ((flags & X509_V_FLAG_NO_CHECK_TIME) != 0) {
2297
0
        return 0; /* this means ok */
2298
0
    } /* else reference time is the current time */
2299
2300
14.9k
    if (end != NULL && X509_cmp_time(end, time) < 0)
2301
6.53k
        return 1;
2302
8.41k
    if (start != NULL && X509_cmp_time(start, time) > 0)
2303
632
        return -1;
2304
7.77k
    return 0;
2305
8.41k
}
2306
2307
ASN1_TIME *X509_gmtime_adj(ASN1_TIME *s, long adj)
2308
0
{
2309
0
    return X509_time_adj(s, adj, NULL);
2310
0
}
2311
2312
ASN1_TIME *X509_time_adj(ASN1_TIME *s, long offset_sec, time_t *in_tm)
2313
21.6k
{
2314
21.6k
    return X509_time_adj_ex(s, 0, offset_sec, in_tm);
2315
21.6k
}
2316
2317
ASN1_TIME *X509_time_adj_ex(ASN1_TIME *s,
2318
    int offset_day, long offset_sec, time_t *in_tm)
2319
21.6k
{
2320
21.6k
    time_t t;
2321
2322
21.6k
    if (in_tm)
2323
0
        t = *in_tm;
2324
21.6k
    else
2325
21.6k
        time(&t);
2326
2327
21.6k
    if (s != NULL && (s->flags & ASN1_STRING_FLAG_MSTRING) == 0) {
2328
0
        if (s->type == V_ASN1_UTCTIME)
2329
0
            return ASN1_UTCTIME_adj(s, t, offset_day, offset_sec);
2330
0
        if (s->type == V_ASN1_GENERALIZEDTIME)
2331
0
            return ASN1_GENERALIZEDTIME_adj(s, t, offset_day, offset_sec);
2332
0
    }
2333
21.6k
    return ASN1_TIME_adj(s, t, offset_day, offset_sec);
2334
21.6k
}
2335
2336
/* Copy any missing public key parameters up the chain towards pkey */
2337
int X509_get_pubkey_parameters(EVP_PKEY *pkey, STACK_OF(X509) *chain)
2338
8.71k
{
2339
8.71k
    EVP_PKEY *ktmp = NULL, *ktmp2;
2340
8.71k
    int i, j;
2341
2342
8.71k
    if (pkey != NULL && !EVP_PKEY_missing_parameters(pkey))
2343
0
        return 1;
2344
2345
8.71k
    for (i = 0; i < sk_X509_num(chain); i++) {
2346
8.71k
        ktmp = X509_get0_pubkey(sk_X509_value(chain, i));
2347
8.71k
        if (ktmp == NULL) {
2348
1.87k
            ERR_raise(ERR_LIB_X509, X509_R_UNABLE_TO_GET_CERTS_PUBLIC_KEY);
2349
1.87k
            return 0;
2350
1.87k
        }
2351
6.84k
        if (!EVP_PKEY_missing_parameters(ktmp))
2352
6.84k
            break;
2353
0
        ktmp = NULL;
2354
0
    }
2355
6.84k
    if (ktmp == NULL) {
2356
0
        ERR_raise(ERR_LIB_X509, X509_R_UNABLE_TO_FIND_PARAMETERS_IN_CHAIN);
2357
0
        return 0;
2358
0
    }
2359
2360
    /* first, populate the other certs */
2361
6.84k
    for (j = i - 1; j >= 0; j--) {
2362
0
        ktmp2 = X509_get0_pubkey(sk_X509_value(chain, j));
2363
0
        if (!EVP_PKEY_copy_parameters(ktmp2, ktmp))
2364
0
            return 0;
2365
0
    }
2366
2367
6.84k
    if (pkey != NULL)
2368
0
        return EVP_PKEY_copy_parameters(pkey, ktmp);
2369
6.84k
    return 1;
2370
6.84k
}
2371
2372
/*
2373
 * Make a delta CRL as the difference between two full CRLs.
2374
 * Sadly, returns NULL also on internal error.
2375
 */
2376
X509_CRL *X509_CRL_diff(X509_CRL *base, X509_CRL *newer,
2377
    EVP_PKEY *skey, const EVP_MD *md, unsigned int flags)
2378
0
{
2379
0
    X509_CRL *crl = NULL;
2380
0
    int i;
2381
0
    STACK_OF(X509_REVOKED) *revs = NULL;
2382
2383
    /* CRLs can't be delta already */
2384
0
    if (base->base_crl_number != NULL || newer->base_crl_number != NULL) {
2385
0
        ERR_raise(ERR_LIB_X509, X509_R_CRL_ALREADY_DELTA);
2386
0
        return NULL;
2387
0
    }
2388
    /* Base and new CRL must have a CRL number */
2389
0
    if (base->crl_number == NULL || newer->crl_number == NULL) {
2390
0
        ERR_raise(ERR_LIB_X509, X509_R_NO_CRL_NUMBER);
2391
0
        return NULL;
2392
0
    }
2393
    /* Issuer names must match */
2394
0
    if (X509_NAME_cmp(X509_CRL_get_issuer(base),
2395
0
            X509_CRL_get_issuer(newer))
2396
0
        != 0) {
2397
0
        ERR_raise(ERR_LIB_X509, X509_R_ISSUER_MISMATCH);
2398
0
        return NULL;
2399
0
    }
2400
    /* AKID and IDP must match */
2401
0
    if (!crl_extension_match(base, newer, NID_authority_key_identifier)) {
2402
0
        ERR_raise(ERR_LIB_X509, X509_R_AKID_MISMATCH);
2403
0
        return NULL;
2404
0
    }
2405
0
    if (!crl_extension_match(base, newer, NID_issuing_distribution_point)) {
2406
0
        ERR_raise(ERR_LIB_X509, X509_R_IDP_MISMATCH);
2407
0
        return NULL;
2408
0
    }
2409
    /* Newer CRL number must exceed full CRL number */
2410
0
    if (ASN1_INTEGER_cmp(newer->crl_number, base->crl_number) <= 0) {
2411
0
        ERR_raise(ERR_LIB_X509, X509_R_NEWER_CRL_NOT_NEWER);
2412
0
        return NULL;
2413
0
    }
2414
    /* CRLs must verify */
2415
0
    if (skey != NULL && (X509_CRL_verify(base, skey) <= 0 || X509_CRL_verify(newer, skey) <= 0)) {
2416
0
        ERR_raise(ERR_LIB_X509, X509_R_CRL_VERIFY_FAILURE);
2417
0
        return NULL;
2418
0
    }
2419
    /* Create new CRL */
2420
0
    crl = X509_CRL_new_ex(base->libctx, base->propq);
2421
0
    if (crl == NULL || !X509_CRL_set_version(crl, X509_CRL_VERSION_2)) {
2422
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2423
0
        goto err;
2424
0
    }
2425
    /* Set issuer name */
2426
0
    if (!X509_CRL_set_issuer_name(crl, X509_CRL_get_issuer(newer))) {
2427
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2428
0
        goto err;
2429
0
    }
2430
2431
0
    if (!X509_CRL_set1_lastUpdate(crl, X509_CRL_get0_lastUpdate(newer))) {
2432
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2433
0
        goto err;
2434
0
    }
2435
0
    if (!X509_CRL_set1_nextUpdate(crl, X509_CRL_get0_nextUpdate(newer))) {
2436
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2437
0
        goto err;
2438
0
    }
2439
2440
    /* Set base CRL number: must be critical */
2441
0
    if (X509_CRL_add1_ext_i2d(crl, NID_delta_crl, base->crl_number, 1, 0) <= 0) {
2442
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2443
0
        goto err;
2444
0
    }
2445
2446
    /*
2447
     * Copy extensions across from newest CRL to delta: this will set CRL
2448
     * number to correct value too.
2449
     */
2450
0
    for (i = 0; i < X509_CRL_get_ext_count(newer); i++) {
2451
0
        X509_EXTENSION *ext = X509_CRL_get_ext(newer, i);
2452
2453
0
        if (!X509_CRL_add_ext(crl, ext, -1)) {
2454
0
            ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2455
0
            goto err;
2456
0
        }
2457
0
    }
2458
2459
    /* Go through revoked entries, copying as needed */
2460
0
    revs = X509_CRL_get_REVOKED(newer);
2461
2462
0
    for (i = 0; i < sk_X509_REVOKED_num(revs); i++) {
2463
0
        X509_REVOKED *rvn, *rvtmp;
2464
2465
0
        rvn = sk_X509_REVOKED_value(revs, i);
2466
        /*
2467
         * Add only if not also in base.
2468
         * Need something cleverer here for some more complex CRLs covering
2469
         * multiple CAs.
2470
         */
2471
0
        if (!X509_CRL_get0_by_serial(base, &rvtmp, &rvn->serialNumber)) {
2472
0
            rvtmp = X509_REVOKED_dup(rvn);
2473
0
            if (rvtmp == NULL) {
2474
0
                ERR_raise(ERR_LIB_X509, ERR_R_ASN1_LIB);
2475
0
                goto err;
2476
0
            }
2477
0
            if (!X509_CRL_add0_revoked(crl, rvtmp)) {
2478
0
                X509_REVOKED_free(rvtmp);
2479
0
                ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2480
0
                goto err;
2481
0
            }
2482
0
        }
2483
0
    }
2484
2485
0
    if (skey != NULL && md != NULL && !X509_CRL_sign(crl, skey, md)) {
2486
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
2487
0
        goto err;
2488
0
    }
2489
2490
0
    return crl;
2491
2492
0
err:
2493
0
    X509_CRL_free(crl);
2494
0
    return NULL;
2495
0
}
2496
2497
int X509_STORE_CTX_set_ex_data(X509_STORE_CTX *ctx, int idx, void *data)
2498
32.8k
{
2499
32.8k
    return CRYPTO_set_ex_data(&ctx->ex_data, idx, data);
2500
32.8k
}
2501
2502
void *X509_STORE_CTX_get_ex_data(const X509_STORE_CTX *ctx, int idx)
2503
0
{
2504
0
    return CRYPTO_get_ex_data(&ctx->ex_data, idx);
2505
0
}
2506
2507
int X509_STORE_CTX_get_error(const X509_STORE_CTX *ctx)
2508
32.8k
{
2509
32.8k
    return ctx->error;
2510
32.8k
}
2511
2512
void X509_STORE_CTX_set_error(X509_STORE_CTX *ctx, int err)
2513
0
{
2514
0
    ctx->error = err;
2515
0
}
2516
2517
int X509_STORE_CTX_get_error_depth(const X509_STORE_CTX *ctx)
2518
0
{
2519
0
    return ctx->error_depth;
2520
0
}
2521
2522
void X509_STORE_CTX_set_error_depth(X509_STORE_CTX *ctx, int depth)
2523
0
{
2524
0
    ctx->error_depth = depth;
2525
0
}
2526
2527
X509 *X509_STORE_CTX_get_current_cert(const X509_STORE_CTX *ctx)
2528
0
{
2529
0
    return ctx->current_cert;
2530
0
}
2531
2532
void X509_STORE_CTX_set_current_cert(X509_STORE_CTX *ctx, X509 *x)
2533
0
{
2534
0
    ctx->current_cert = x;
2535
0
}
2536
2537
STACK_OF(X509) *X509_STORE_CTX_get0_chain(const X509_STORE_CTX *ctx)
2538
59.5k
{
2539
59.5k
    return ctx->chain;
2540
59.5k
}
2541
2542
STACK_OF(X509) *X509_STORE_CTX_get1_chain(const X509_STORE_CTX *ctx)
2543
33.1k
{
2544
33.1k
    if (ctx->chain == NULL)
2545
0
        return NULL;
2546
33.1k
    return X509_chain_up_ref(ctx->chain);
2547
33.1k
}
2548
2549
X509 *X509_STORE_CTX_get0_current_issuer(const X509_STORE_CTX *ctx)
2550
0
{
2551
0
    return ctx->current_issuer;
2552
0
}
2553
2554
X509_CRL *X509_STORE_CTX_get0_current_crl(const X509_STORE_CTX *ctx)
2555
0
{
2556
0
    return ctx->current_crl;
2557
0
}
2558
2559
X509_STORE_CTX *X509_STORE_CTX_get0_parent_ctx(const X509_STORE_CTX *ctx)
2560
0
{
2561
0
    return ctx->parent;
2562
0
}
2563
2564
void X509_STORE_CTX_set_cert(X509_STORE_CTX *ctx, X509 *x)
2565
0
{
2566
0
    ctx->cert = x;
2567
0
}
2568
2569
void X509_STORE_CTX_set0_rpk(X509_STORE_CTX *ctx, EVP_PKEY *rpk)
2570
0
{
2571
0
    ctx->rpk = rpk;
2572
0
}
2573
2574
void X509_STORE_CTX_set0_crls(X509_STORE_CTX *ctx, STACK_OF(X509_CRL) *sk)
2575
8.46k
{
2576
8.46k
    ctx->crls = sk;
2577
8.46k
}
2578
2579
#ifndef OPENSSL_NO_OCSP
2580
void X509_STORE_CTX_set_ocsp_resp(X509_STORE_CTX *ctx, STACK_OF(OCSP_RESPONSE) *sk)
2581
0
{
2582
0
    ctx->ocsp_resp = sk;
2583
0
}
2584
#endif
2585
2586
int X509_STORE_CTX_set_purpose(X509_STORE_CTX *ctx, int purpose)
2587
327
{
2588
    /*
2589
     * XXX: Why isn't this function always used to set the associated trust?
2590
     * Should there even be a VPM->trust field at all?  Or should the trust
2591
     * always be inferred from the purpose by X509_STORE_CTX_init().
2592
     */
2593
327
    return X509_STORE_CTX_purpose_inherit(ctx, 0, purpose, 0);
2594
327
}
2595
2596
int X509_STORE_CTX_set_trust(X509_STORE_CTX *ctx, int trust)
2597
327
{
2598
    /*
2599
     * XXX: See above, this function would only be needed when the default
2600
     * trust for the purpose needs an override in a corner case.
2601
     */
2602
327
    return X509_STORE_CTX_purpose_inherit(ctx, 0, 0, trust);
2603
327
}
2604
2605
/*
2606
 * This function is used to set the X509_STORE_CTX purpose and trust values.
2607
 * This is intended to be used when another structure has its own trust and
2608
 * purpose values which (if set) will be inherited by the ctx. If they aren't
2609
 * set then we will usually have a default purpose in mind which should then
2610
 * be used to set the trust value. An example of this is SSL use: an SSL
2611
 * structure will have its own purpose and trust settings which the
2612
 * application can set: if they aren't set then we use the default of SSL
2613
 * client/server.
2614
 */
2615
int X509_STORE_CTX_purpose_inherit(X509_STORE_CTX *ctx, int def_purpose,
2616
    int purpose, int trust)
2617
654
{
2618
654
    int idx;
2619
2620
    /* If purpose not set use default */
2621
654
    if (purpose == 0)
2622
327
        purpose = def_purpose;
2623
    /*
2624
     * If purpose is set but we don't have a default then set the default to
2625
     * the current purpose
2626
     */
2627
327
    else if (def_purpose == 0)
2628
327
        def_purpose = purpose;
2629
    /* If we have a purpose then check it is valid */
2630
654
    if (purpose != 0) {
2631
327
        X509_PURPOSE *ptmp;
2632
2633
327
        idx = X509_PURPOSE_get_by_id(purpose);
2634
327
        if (idx == -1) {
2635
0
            ERR_raise(ERR_LIB_X509, X509_R_UNKNOWN_PURPOSE_ID);
2636
0
            return 0;
2637
0
        }
2638
327
        ptmp = X509_PURPOSE_get0(idx);
2639
327
        if (ptmp->trust == X509_TRUST_DEFAULT) {
2640
0
            idx = X509_PURPOSE_get_by_id(def_purpose);
2641
0
            if (idx == -1) {
2642
0
                ERR_raise(ERR_LIB_X509, X509_R_UNKNOWN_PURPOSE_ID);
2643
0
                return 0;
2644
0
            }
2645
0
            ptmp = X509_PURPOSE_get0(idx);
2646
0
        }
2647
        /* If trust not set then get from purpose default */
2648
327
        if (trust == 0)
2649
327
            trust = ptmp->trust;
2650
327
    }
2651
654
    if (trust != 0) {
2652
654
        idx = X509_TRUST_get_by_id(trust);
2653
654
        if (idx == -1) {
2654
0
            ERR_raise(ERR_LIB_X509, X509_R_UNKNOWN_TRUST_ID);
2655
0
            return 0;
2656
0
        }
2657
654
    }
2658
2659
654
    if (ctx->param->purpose == 0 && purpose != 0)
2660
327
        ctx->param->purpose = purpose;
2661
654
    if (ctx->param->trust == 0 && trust != 0)
2662
327
        ctx->param->trust = trust;
2663
654
    return 1;
2664
654
}
2665
2666
X509_STORE_CTX *X509_STORE_CTX_new_ex(OSSL_LIB_CTX *libctx, const char *propq)
2667
68.3k
{
2668
68.3k
    X509_STORE_CTX *ctx = OPENSSL_zalloc(sizeof(*ctx));
2669
2670
68.3k
    if (ctx == NULL)
2671
0
        return NULL;
2672
2673
68.3k
    ctx->libctx = libctx;
2674
68.3k
    if (propq != NULL) {
2675
0
        ctx->propq = OPENSSL_strdup(propq);
2676
0
        if (ctx->propq == NULL) {
2677
0
            OPENSSL_free(ctx);
2678
0
            return NULL;
2679
0
        }
2680
0
    }
2681
2682
68.3k
    return ctx;
2683
68.3k
}
2684
2685
X509_STORE_CTX *X509_STORE_CTX_new(void)
2686
8.79k
{
2687
8.79k
    return X509_STORE_CTX_new_ex(NULL, NULL);
2688
8.79k
}
2689
2690
void X509_STORE_CTX_free(X509_STORE_CTX *ctx)
2691
129k
{
2692
129k
    if (ctx == NULL)
2693
61.1k
        return;
2694
2695
68.3k
    X509_STORE_CTX_cleanup(ctx);
2696
2697
    /* libctx and propq survive X509_STORE_CTX_cleanup() */
2698
68.3k
    OPENSSL_free(ctx->propq);
2699
68.3k
    OPENSSL_free(ctx);
2700
68.3k
}
2701
2702
int X509_STORE_CTX_init_rpk(X509_STORE_CTX *ctx, X509_STORE *store, EVP_PKEY *rpk)
2703
0
{
2704
0
    if (!X509_STORE_CTX_init(ctx, store, NULL, NULL))
2705
0
        return 0;
2706
0
    ctx->rpk = rpk;
2707
0
    return 1;
2708
0
}
2709
2710
int X509_STORE_CTX_init(X509_STORE_CTX *ctx, X509_STORE *store, X509 *x509,
2711
    STACK_OF(X509) *chain)
2712
68.3k
{
2713
68.3k
    if (ctx == NULL) {
2714
0
        ERR_raise(ERR_LIB_X509, ERR_R_PASSED_NULL_PARAMETER);
2715
0
        return 0;
2716
0
    }
2717
68.3k
    X509_STORE_CTX_cleanup(ctx);
2718
2719
68.3k
    ctx->store = store;
2720
68.3k
    ctx->cert = x509;
2721
68.3k
    ctx->untrusted = chain;
2722
68.3k
    ctx->crls = NULL;
2723
68.3k
    ctx->num_untrusted = 0;
2724
68.3k
    ctx->other_ctx = NULL;
2725
68.3k
    ctx->valid = 0;
2726
68.3k
    ctx->chain = NULL;
2727
68.3k
    ctx->error = X509_V_OK;
2728
68.3k
    ctx->explicit_policy = 0;
2729
68.3k
    ctx->error_depth = 0;
2730
68.3k
    ctx->current_cert = NULL;
2731
68.3k
    ctx->current_issuer = NULL;
2732
68.3k
    ctx->current_crl = NULL;
2733
68.3k
    ctx->current_crl_score = 0;
2734
68.3k
    ctx->current_reasons = 0;
2735
68.3k
    ctx->tree = NULL;
2736
68.3k
    ctx->parent = NULL;
2737
68.3k
    ctx->dane = NULL;
2738
68.3k
    ctx->bare_ta_signed = 0;
2739
68.3k
    ctx->rpk = NULL;
2740
    /* Zero ex_data to make sure we're cleanup-safe */
2741
68.3k
    memset(&ctx->ex_data, 0, sizeof(ctx->ex_data));
2742
68.3k
    ctx->ocsp_resp = NULL;
2743
2744
    /* store->cleanup is always 0 in OpenSSL, if set must be idempotent */
2745
68.3k
    if (store != NULL)
2746
68.3k
        ctx->cleanup = store->cleanup;
2747
0
    else
2748
0
        ctx->cleanup = NULL;
2749
2750
68.3k
    if (store != NULL && store->check_issued != NULL)
2751
0
        ctx->check_issued = store->check_issued;
2752
68.3k
    else
2753
68.3k
        ctx->check_issued = check_issued;
2754
2755
68.3k
    if (store != NULL && store->get_issuer != NULL)
2756
0
        ctx->get_issuer = store->get_issuer;
2757
68.3k
    else
2758
68.3k
        ctx->get_issuer = X509_STORE_CTX_get1_issuer;
2759
2760
68.3k
    if (store != NULL && store->verify_cb != NULL)
2761
8.79k
        ctx->verify_cb = store->verify_cb;
2762
59.5k
    else
2763
59.5k
        ctx->verify_cb = null_callback;
2764
2765
68.3k
    if (store != NULL && store->verify != NULL)
2766
0
        ctx->verify = store->verify;
2767
68.3k
    else
2768
68.3k
        ctx->verify = internal_verify;
2769
2770
68.3k
    if (store != NULL && store->check_revocation != NULL)
2771
0
        ctx->check_revocation = store->check_revocation;
2772
68.3k
    else
2773
68.3k
        ctx->check_revocation = check_revocation;
2774
2775
68.3k
    if (store != NULL && store->get_crl != NULL)
2776
0
        ctx->get_crl = store->get_crl;
2777
68.3k
    else
2778
68.3k
        ctx->get_crl = NULL;
2779
2780
68.3k
    if (store != NULL && store->check_crl != NULL)
2781
0
        ctx->check_crl = store->check_crl;
2782
68.3k
    else
2783
68.3k
        ctx->check_crl = check_crl;
2784
2785
68.3k
    if (store != NULL && store->cert_crl != NULL)
2786
0
        ctx->cert_crl = store->cert_crl;
2787
68.3k
    else
2788
68.3k
        ctx->cert_crl = cert_crl;
2789
2790
68.3k
    if (store != NULL && store->check_policy != NULL)
2791
0
        ctx->check_policy = store->check_policy;
2792
68.3k
    else
2793
68.3k
        ctx->check_policy = check_policy;
2794
2795
68.3k
    if (store != NULL && store->lookup_certs != NULL)
2796
0
        ctx->lookup_certs = store->lookup_certs;
2797
68.3k
    else
2798
68.3k
        ctx->lookup_certs = X509_STORE_CTX_get1_certs;
2799
2800
68.3k
    if (store != NULL && store->lookup_crls != NULL)
2801
0
        ctx->lookup_crls = store->lookup_crls;
2802
68.3k
    else
2803
68.3k
        ctx->lookup_crls = X509_STORE_CTX_get1_crls;
2804
2805
68.3k
    ctx->param = X509_VERIFY_PARAM_new();
2806
68.3k
    if (ctx->param == NULL) {
2807
0
        ERR_raise(ERR_LIB_X509, ERR_R_ASN1_LIB);
2808
0
        goto err;
2809
0
    }
2810
2811
    /* Inherit callbacks and flags from X509_STORE if not set use defaults. */
2812
68.3k
    if (store == NULL)
2813
0
        ctx->param->inh_flags |= X509_VP_FLAG_DEFAULT | X509_VP_FLAG_ONCE;
2814
68.3k
    else if (X509_VERIFY_PARAM_inherit(ctx->param, store->param) == 0)
2815
0
        goto err;
2816
2817
68.3k
    if (!X509_STORE_CTX_set_default(ctx, "default"))
2818
0
        goto err;
2819
2820
    /*
2821
     * XXX: For now, continue to inherit trust from VPM, but infer from the
2822
     * purpose if this still yields the default value.
2823
     */
2824
68.3k
    if (ctx->param->trust == X509_TRUST_DEFAULT) {
2825
68.3k
        int idx = X509_PURPOSE_get_by_id(ctx->param->purpose);
2826
68.3k
        X509_PURPOSE *xp = X509_PURPOSE_get0(idx);
2827
2828
68.3k
        if (xp != NULL)
2829
0
            ctx->param->trust = X509_PURPOSE_get_trust(xp);
2830
68.3k
    }
2831
2832
68.3k
    if (CRYPTO_new_ex_data(CRYPTO_EX_INDEX_X509_STORE_CTX, ctx,
2833
68.3k
            &ctx->ex_data))
2834
68.3k
        return 1;
2835
68.3k
    ERR_raise(ERR_LIB_X509, ERR_R_CRYPTO_LIB);
2836
2837
0
err:
2838
    /*
2839
     * On error clean up allocated storage, if the store context was not
2840
     * allocated with X509_STORE_CTX_new() this is our last chance to do so.
2841
     */
2842
0
    X509_STORE_CTX_cleanup(ctx);
2843
0
    return 0;
2844
0
}
2845
2846
/*
2847
 * Set alternative get_issuer method: just from a STACK of trusted certificates.
2848
 * This avoids the complexity of X509_STORE where it is not needed.
2849
 */
2850
void X509_STORE_CTX_set0_trusted_stack(X509_STORE_CTX *ctx, STACK_OF(X509) *sk)
2851
0
{
2852
0
    ctx->other_ctx = sk;
2853
0
    ctx->get_issuer = get1_best_issuer_other_sk;
2854
0
    ctx->lookup_certs = lookup_certs_sk;
2855
0
}
2856
2857
void X509_STORE_CTX_cleanup(X509_STORE_CTX *ctx)
2858
136k
{
2859
    /*
2860
     * We need to be idempotent because, unfortunately, free() also calls
2861
     * cleanup(), so the natural call sequence new(), init(), cleanup(), free()
2862
     * calls cleanup() for the same object twice!  Thus we must zero the
2863
     * pointers below after they're freed!
2864
     */
2865
    /* Seems to always be NULL in OpenSSL, do this at most once. */
2866
136k
    if (ctx->cleanup != NULL) {
2867
0
        ctx->cleanup(ctx);
2868
0
        ctx->cleanup = NULL;
2869
0
    }
2870
136k
    if (ctx->param != NULL) {
2871
68.3k
        if (ctx->parent == NULL)
2872
68.3k
            X509_VERIFY_PARAM_free(ctx->param);
2873
68.3k
        ctx->param = NULL;
2874
68.3k
    }
2875
136k
    X509_policy_tree_free(ctx->tree);
2876
136k
    ctx->tree = NULL;
2877
136k
    OSSL_STACK_OF_X509_free(ctx->chain);
2878
136k
    ctx->chain = NULL;
2879
136k
    CRYPTO_free_ex_data(CRYPTO_EX_INDEX_X509_STORE_CTX, ctx, &(ctx->ex_data));
2880
136k
    memset(&ctx->ex_data, 0, sizeof(ctx->ex_data));
2881
136k
}
2882
2883
void X509_STORE_CTX_set_depth(X509_STORE_CTX *ctx, int depth)
2884
0
{
2885
0
    X509_VERIFY_PARAM_set_depth(ctx->param, depth);
2886
0
}
2887
2888
void X509_STORE_CTX_set_flags(X509_STORE_CTX *ctx, unsigned long flags)
2889
32.8k
{
2890
32.8k
    X509_VERIFY_PARAM_set_flags(ctx->param, flags);
2891
32.8k
}
2892
2893
void X509_STORE_CTX_set_time(X509_STORE_CTX *ctx, unsigned long flags,
2894
    time_t t)
2895
0
{
2896
0
    X509_VERIFY_PARAM_set_time(ctx->param, t);
2897
0
}
2898
2899
void X509_STORE_CTX_set_current_reasons(X509_STORE_CTX *ctx,
2900
    unsigned int current_reasons)
2901
0
{
2902
0
    ctx->current_reasons = current_reasons;
2903
0
}
2904
2905
X509 *X509_STORE_CTX_get0_cert(const X509_STORE_CTX *ctx)
2906
0
{
2907
0
    return ctx->cert;
2908
0
}
2909
2910
EVP_PKEY *X509_STORE_CTX_get0_rpk(const X509_STORE_CTX *ctx)
2911
0
{
2912
0
    return ctx->rpk;
2913
0
}
2914
2915
STACK_OF(X509) *X509_STORE_CTX_get0_untrusted(const X509_STORE_CTX *ctx)
2916
0
{
2917
0
    return ctx->untrusted;
2918
0
}
2919
2920
void X509_STORE_CTX_set0_untrusted(X509_STORE_CTX *ctx, STACK_OF(X509) *sk)
2921
0
{
2922
0
    ctx->untrusted = sk;
2923
0
}
2924
2925
void X509_STORE_CTX_set0_verified_chain(X509_STORE_CTX *ctx, STACK_OF(X509) *sk)
2926
0
{
2927
0
    OSSL_STACK_OF_X509_free(ctx->chain);
2928
0
    ctx->chain = sk;
2929
0
}
2930
2931
void X509_STORE_CTX_set_verify_cb(X509_STORE_CTX *ctx,
2932
    X509_STORE_CTX_verify_cb verify_cb)
2933
0
{
2934
0
    ctx->verify_cb = verify_cb;
2935
0
}
2936
2937
X509_STORE_CTX_verify_cb X509_STORE_CTX_get_verify_cb(const X509_STORE_CTX *ctx)
2938
0
{
2939
0
    return ctx->verify_cb;
2940
0
}
2941
2942
void X509_STORE_CTX_set_verify(X509_STORE_CTX *ctx,
2943
    X509_STORE_CTX_verify_fn verify)
2944
0
{
2945
0
    ctx->verify = verify;
2946
0
}
2947
2948
X509_STORE_CTX_verify_fn X509_STORE_CTX_get_verify(const X509_STORE_CTX *ctx)
2949
0
{
2950
0
    return ctx->verify;
2951
0
}
2952
2953
X509_STORE_CTX_get_issuer_fn
2954
X509_STORE_CTX_get_get_issuer(const X509_STORE_CTX *ctx)
2955
0
{
2956
0
    return ctx->get_issuer;
2957
0
}
2958
2959
X509_STORE_CTX_check_issued_fn
2960
X509_STORE_CTX_get_check_issued(const X509_STORE_CTX *ctx)
2961
0
{
2962
0
    return ctx->check_issued;
2963
0
}
2964
2965
X509_STORE_CTX_check_revocation_fn
2966
X509_STORE_CTX_get_check_revocation(const X509_STORE_CTX *ctx)
2967
0
{
2968
0
    return ctx->check_revocation;
2969
0
}
2970
2971
X509_STORE_CTX_get_crl_fn X509_STORE_CTX_get_get_crl(const X509_STORE_CTX *ctx)
2972
0
{
2973
0
    return ctx->get_crl;
2974
0
}
2975
2976
void X509_STORE_CTX_set_get_crl(X509_STORE_CTX *ctx,
2977
    X509_STORE_CTX_get_crl_fn get_crl)
2978
0
{
2979
0
    ctx->get_crl = get_crl;
2980
0
}
2981
2982
X509_STORE_CTX_check_crl_fn
2983
X509_STORE_CTX_get_check_crl(const X509_STORE_CTX *ctx)
2984
0
{
2985
0
    return ctx->check_crl;
2986
0
}
2987
2988
X509_STORE_CTX_cert_crl_fn
2989
X509_STORE_CTX_get_cert_crl(const X509_STORE_CTX *ctx)
2990
0
{
2991
0
    return ctx->cert_crl;
2992
0
}
2993
2994
X509_STORE_CTX_check_policy_fn
2995
X509_STORE_CTX_get_check_policy(const X509_STORE_CTX *ctx)
2996
0
{
2997
0
    return ctx->check_policy;
2998
0
}
2999
3000
X509_STORE_CTX_lookup_certs_fn
3001
X509_STORE_CTX_get_lookup_certs(const X509_STORE_CTX *ctx)
3002
0
{
3003
0
    return ctx->lookup_certs;
3004
0
}
3005
3006
X509_STORE_CTX_lookup_crls_fn
3007
X509_STORE_CTX_get_lookup_crls(const X509_STORE_CTX *ctx)
3008
0
{
3009
0
    return ctx->lookup_crls;
3010
0
}
3011
3012
X509_STORE_CTX_cleanup_fn X509_STORE_CTX_get_cleanup(const X509_STORE_CTX *ctx)
3013
0
{
3014
0
    return ctx->cleanup;
3015
0
}
3016
3017
X509_POLICY_TREE *X509_STORE_CTX_get0_policy_tree(const X509_STORE_CTX *ctx)
3018
0
{
3019
0
    return ctx->tree;
3020
0
}
3021
3022
int X509_STORE_CTX_get_explicit_policy(const X509_STORE_CTX *ctx)
3023
0
{
3024
0
    return ctx->explicit_policy;
3025
0
}
3026
3027
int X509_STORE_CTX_get_num_untrusted(const X509_STORE_CTX *ctx)
3028
0
{
3029
0
    return ctx->num_untrusted;
3030
0
}
3031
3032
int X509_STORE_CTX_set_default(X509_STORE_CTX *ctx, const char *name)
3033
101k
{
3034
101k
    const X509_VERIFY_PARAM *param;
3035
3036
101k
    param = X509_VERIFY_PARAM_lookup(name);
3037
101k
    if (param == NULL) {
3038
0
        ERR_raise_data(ERR_LIB_X509, X509_R_UNKNOWN_PURPOSE_ID, "name=%s", name);
3039
0
        return 0;
3040
0
    }
3041
101k
    return X509_VERIFY_PARAM_inherit(ctx->param, param);
3042
101k
}
3043
3044
X509_VERIFY_PARAM *X509_STORE_CTX_get0_param(const X509_STORE_CTX *ctx)
3045
33.1k
{
3046
33.1k
    return ctx->param;
3047
33.1k
}
3048
3049
void X509_STORE_CTX_set0_param(X509_STORE_CTX *ctx, X509_VERIFY_PARAM *param)
3050
0
{
3051
0
    X509_VERIFY_PARAM_free(ctx->param);
3052
0
    ctx->param = param;
3053
0
}
3054
3055
void X509_STORE_CTX_set0_dane(X509_STORE_CTX *ctx, SSL_DANE *dane)
3056
0
{
3057
0
    ctx->dane = dane;
3058
0
}
3059
3060
static unsigned char *dane_i2d(X509 *cert, uint8_t selector,
3061
    unsigned int *i2dlen)
3062
0
{
3063
0
    unsigned char *buf = NULL;
3064
0
    int len;
3065
3066
    /*
3067
     * Extract ASN.1 DER form of certificate or public key.
3068
     */
3069
0
    switch (selector) {
3070
0
    case DANETLS_SELECTOR_CERT:
3071
0
        len = i2d_X509(cert, &buf);
3072
0
        break;
3073
0
    case DANETLS_SELECTOR_SPKI:
3074
0
        len = i2d_X509_PUBKEY(X509_get_X509_PUBKEY(cert), &buf);
3075
0
        break;
3076
0
    default:
3077
0
        ERR_raise(ERR_LIB_X509, X509_R_BAD_SELECTOR);
3078
0
        return NULL;
3079
0
    }
3080
3081
0
    if (len < 0 || buf == NULL) {
3082
0
        ERR_raise(ERR_LIB_X509, ERR_R_ASN1_LIB);
3083
0
        return NULL;
3084
0
    }
3085
3086
0
    *i2dlen = (unsigned int)len;
3087
0
    return buf;
3088
0
}
3089
3090
0
#define DANETLS_NONE 256 /* impossible uint8_t */
3091
3092
/* Returns -1 on internal error */
3093
static int dane_match_cert(X509_STORE_CTX *ctx, X509 *cert, int depth)
3094
0
{
3095
0
    SSL_DANE *dane = ctx->dane;
3096
0
    unsigned usage = DANETLS_NONE;
3097
0
    unsigned selector = DANETLS_NONE;
3098
0
    unsigned ordinal = DANETLS_NONE;
3099
0
    unsigned mtype = DANETLS_NONE;
3100
0
    unsigned char *i2dbuf = NULL;
3101
0
    unsigned int i2dlen = 0;
3102
0
    unsigned char mdbuf[EVP_MAX_MD_SIZE];
3103
0
    unsigned char *cmpbuf = NULL;
3104
0
    unsigned int cmplen = 0;
3105
0
    int i;
3106
0
    int recnum;
3107
0
    int matched = 0;
3108
0
    danetls_record *t = NULL;
3109
0
    uint32_t mask;
3110
3111
0
    mask = (depth == 0) ? DANETLS_EE_MASK : DANETLS_TA_MASK;
3112
3113
    /* The trust store is not applicable with DANE-TA(2) */
3114
0
    if (depth >= ctx->num_untrusted)
3115
0
        mask &= DANETLS_PKIX_MASK;
3116
3117
    /*
3118
     * If we've previously matched a PKIX-?? record, no need to test any
3119
     * further PKIX-?? records, it remains to just build the PKIX chain.
3120
     * Had the match been a DANE-?? record, we'd be done already.
3121
     */
3122
0
    if (dane->mdpth >= 0)
3123
0
        mask &= ~DANETLS_PKIX_MASK;
3124
3125
    /*-
3126
     * https://tools.ietf.org/html/rfc7671#section-5.1
3127
     * https://tools.ietf.org/html/rfc7671#section-5.2
3128
     * https://tools.ietf.org/html/rfc7671#section-5.3
3129
     * https://tools.ietf.org/html/rfc7671#section-5.4
3130
     *
3131
     * We handle DANE-EE(3) records first as they require no chain building
3132
     * and no expiration or hostname checks.  We also process digests with
3133
     * higher ordinals first and ignore lower priorities except Full(0) which
3134
     * is always processed (last).  If none match, we then process PKIX-EE(1).
3135
     *
3136
     * NOTE: This relies on DANE usages sorting before the corresponding PKIX
3137
     * usages in SSL_dane_tlsa_add(), and also on descending sorting of digest
3138
     * priorities.  See twin comment in ssl/ssl_lib.c.
3139
     *
3140
     * We expect that most TLSA RRsets will have just a single usage, so we
3141
     * don't go out of our way to cache multiple selector-specific i2d buffers
3142
     * across usages, but if the selector happens to remain the same as switch
3143
     * usages, that's OK.  Thus, a set of "3 1 1", "3 0 1", "1 1 1", "1 0 1",
3144
     * records would result in us generating each of the certificate and public
3145
     * key DER forms twice, but more typically we'd just see multiple "3 1 1"
3146
     * or multiple "3 0 1" records.
3147
     *
3148
     * As soon as we find a match at any given depth, we stop, because either
3149
     * we've matched a DANE-?? record and the peer is authenticated, or, after
3150
     * exhausting all DANE-?? records, we've matched a PKIX-?? record, which is
3151
     * sufficient for DANE, and what remains to do is ordinary PKIX validation.
3152
     */
3153
0
    recnum = (dane->umask & mask) != 0 ? sk_danetls_record_num(dane->trecs) : 0;
3154
0
    for (i = 0; matched == 0 && i < recnum; ++i) {
3155
0
        t = sk_danetls_record_value(dane->trecs, i);
3156
0
        if ((DANETLS_USAGE_BIT(t->usage) & mask) == 0)
3157
0
            continue;
3158
0
        if (t->usage != usage) {
3159
0
            usage = t->usage;
3160
3161
            /* Reset digest agility for each usage/selector pair */
3162
0
            mtype = DANETLS_NONE;
3163
0
            ordinal = dane->dctx->mdord[t->mtype];
3164
0
        }
3165
0
        if (t->selector != selector) {
3166
0
            selector = t->selector;
3167
3168
            /* Update per-selector state */
3169
0
            OPENSSL_free(i2dbuf);
3170
0
            i2dbuf = dane_i2d(cert, selector, &i2dlen);
3171
0
            if (i2dbuf == NULL)
3172
0
                return -1;
3173
3174
            /* Reset digest agility for each usage/selector pair */
3175
0
            mtype = DANETLS_NONE;
3176
0
            ordinal = dane->dctx->mdord[t->mtype];
3177
0
        } else if (t->mtype != DANETLS_MATCHING_FULL) {
3178
            /*-
3179
             * Digest agility:
3180
             *
3181
             *     <https://tools.ietf.org/html/rfc7671#section-9>
3182
             *
3183
             * For a fixed selector, after processing all records with the
3184
             * highest mtype ordinal, ignore all mtypes with lower ordinals
3185
             * other than "Full".
3186
             */
3187
0
            if (dane->dctx->mdord[t->mtype] < ordinal)
3188
0
                continue;
3189
0
        }
3190
3191
        /*
3192
         * Each time we hit a (new selector or) mtype, re-compute the relevant
3193
         * digest, more complex caching is not worth the code space.
3194
         */
3195
0
        if (t->mtype != mtype) {
3196
0
            const EVP_MD *md = dane->dctx->mdevp[mtype = t->mtype];
3197
3198
0
            cmpbuf = i2dbuf;
3199
0
            cmplen = i2dlen;
3200
3201
0
            if (md != NULL) {
3202
0
                cmpbuf = mdbuf;
3203
0
                if (!EVP_Digest(i2dbuf, i2dlen, cmpbuf, &cmplen, md, 0)) {
3204
0
                    matched = -1;
3205
0
                    break;
3206
0
                }
3207
0
            }
3208
0
        }
3209
3210
        /*
3211
         * Squirrel away the certificate and depth if we have a match.  Any
3212
         * DANE match is dispositive, but with PKIX we still need to build a
3213
         * full chain.
3214
         */
3215
0
        if (cmplen == t->dlen && memcmp(cmpbuf, t->data, cmplen) == 0) {
3216
0
            if (DANETLS_USAGE_BIT(usage) & DANETLS_DANE_MASK)
3217
0
                matched = 1;
3218
0
            if (matched || dane->mdpth < 0) {
3219
0
                if (!X509_up_ref(cert)) {
3220
0
                    matched = -1;
3221
0
                    break;
3222
0
                }
3223
3224
0
                OPENSSL_free(dane->mcert);
3225
0
                dane->mcert = cert;
3226
0
                dane->mdpth = depth;
3227
0
                dane->mtlsa = t;
3228
0
            }
3229
0
            break;
3230
0
        }
3231
0
    }
3232
3233
    /* Clear the one-element DER cache */
3234
0
    OPENSSL_free(i2dbuf);
3235
0
    return matched;
3236
0
}
3237
3238
/* Returns -1 on internal error */
3239
static int check_dane_issuer(X509_STORE_CTX *ctx, int depth)
3240
985
{
3241
985
    SSL_DANE *dane = ctx->dane;
3242
985
    int matched = 0;
3243
985
    X509 *cert;
3244
3245
985
    if (!DANETLS_HAS_TA(dane) || depth == 0)
3246
985
        return X509_TRUST_UNTRUSTED;
3247
3248
    /*
3249
     * Record any DANE trust anchor matches, for the first depth to test, if
3250
     * there's one at that depth. (This'll be false for length 1 chains looking
3251
     * for an exact match for the leaf certificate).
3252
     */
3253
0
    cert = sk_X509_value(ctx->chain, depth);
3254
0
    if (cert != NULL && (matched = dane_match_cert(ctx, cert, depth)) < 0)
3255
0
        return matched;
3256
0
    if (matched > 0) {
3257
0
        ctx->num_untrusted = depth - 1;
3258
0
        return X509_TRUST_TRUSTED;
3259
0
    }
3260
3261
0
    return X509_TRUST_UNTRUSTED;
3262
0
}
3263
3264
static int check_dane_pkeys(X509_STORE_CTX *ctx)
3265
0
{
3266
0
    SSL_DANE *dane = ctx->dane;
3267
0
    danetls_record *t;
3268
0
    int num = ctx->num_untrusted;
3269
0
    X509 *cert = sk_X509_value(ctx->chain, num - 1);
3270
0
    int recnum = sk_danetls_record_num(dane->trecs);
3271
0
    int i;
3272
3273
0
    for (i = 0; i < recnum; ++i) {
3274
0
        t = sk_danetls_record_value(dane->trecs, i);
3275
0
        if (t->usage != DANETLS_USAGE_DANE_TA || t->selector != DANETLS_SELECTOR_SPKI || t->mtype != DANETLS_MATCHING_FULL || X509_verify(cert, t->spki) <= 0)
3276
0
            continue;
3277
3278
        /* Clear any PKIX-?? matches that failed to extend to a full chain */
3279
0
        X509_free(dane->mcert);
3280
0
        dane->mcert = NULL;
3281
3282
        /* Record match via a bare TA public key */
3283
0
        ctx->bare_ta_signed = 1;
3284
0
        dane->mdpth = num - 1;
3285
0
        dane->mtlsa = t;
3286
3287
        /* Prune any excess chain certificates */
3288
0
        num = sk_X509_num(ctx->chain);
3289
0
        for (; num > ctx->num_untrusted; --num)
3290
0
            X509_free(sk_X509_pop(ctx->chain));
3291
3292
0
        return X509_TRUST_TRUSTED;
3293
0
    }
3294
3295
0
    return X509_TRUST_UNTRUSTED;
3296
0
}
3297
3298
/*
3299
 * Only DANE-EE and SPKI are supported
3300
 * Returns -1 on internal error
3301
 */
3302
static int dane_match_rpk(X509_STORE_CTX *ctx, EVP_PKEY *rpk)
3303
0
{
3304
0
    SSL_DANE *dane = ctx->dane;
3305
0
    danetls_record *t = NULL;
3306
0
    int mtype = DANETLS_MATCHING_FULL;
3307
0
    unsigned char *i2dbuf = NULL;
3308
0
    unsigned int i2dlen = 0;
3309
0
    unsigned char mdbuf[EVP_MAX_MD_SIZE];
3310
0
    unsigned char *cmpbuf;
3311
0
    unsigned int cmplen = 0;
3312
0
    int len;
3313
0
    int recnum = sk_danetls_record_num(dane->trecs);
3314
0
    int i;
3315
0
    int matched = 0;
3316
3317
    /* Calculate ASN.1 DER of RPK */
3318
0
    if ((len = i2d_PUBKEY(rpk, &i2dbuf)) <= 0)
3319
0
        return -1;
3320
0
    cmplen = i2dlen = (unsigned int)len;
3321
0
    cmpbuf = i2dbuf;
3322
3323
0
    for (i = 0; i < recnum; i++) {
3324
0
        t = sk_danetls_record_value(dane->trecs, i);
3325
0
        if (t->usage != DANETLS_USAGE_DANE_EE || t->selector != DANETLS_SELECTOR_SPKI)
3326
0
            continue;
3327
3328
        /* Calculate hash - keep only one around */
3329
0
        if (t->mtype != mtype) {
3330
0
            const EVP_MD *md = dane->dctx->mdevp[mtype = t->mtype];
3331
3332
0
            cmpbuf = i2dbuf;
3333
0
            cmplen = i2dlen;
3334
3335
0
            if (md != NULL) {
3336
0
                cmpbuf = mdbuf;
3337
0
                if (!EVP_Digest(i2dbuf, i2dlen, cmpbuf, &cmplen, md, 0)) {
3338
0
                    matched = -1;
3339
0
                    break;
3340
0
                }
3341
0
            }
3342
0
        }
3343
0
        if (cmplen == t->dlen && memcmp(cmpbuf, t->data, cmplen) == 0) {
3344
0
            matched = 1;
3345
0
            dane->mdpth = 0;
3346
0
            dane->mtlsa = t;
3347
0
            break;
3348
0
        }
3349
0
    }
3350
0
    OPENSSL_free(i2dbuf);
3351
0
    return matched;
3352
0
}
3353
3354
static void dane_reset(SSL_DANE *dane)
3355
0
{
3356
    /* Reset state to verify another chain, or clear after failure. */
3357
0
    X509_free(dane->mcert);
3358
0
    dane->mcert = NULL;
3359
0
    dane->mtlsa = NULL;
3360
0
    dane->mdpth = -1;
3361
0
    dane->pdpth = -1;
3362
0
}
3363
3364
/* Sadly, returns 0 also on internal error in ctx->verify_cb(). */
3365
static int check_leaf_suiteb(X509_STORE_CTX *ctx, X509 *cert)
3366
0
{
3367
0
    int err = X509_chain_check_suiteb(NULL, cert, NULL, ctx->param->flags);
3368
3369
0
    CB_FAIL_IF(err != X509_V_OK, ctx, cert, 0, err);
3370
0
    return 1;
3371
0
}
3372
3373
/* Returns -1 on internal error */
3374
static int dane_verify_rpk(X509_STORE_CTX *ctx)
3375
0
{
3376
0
    SSL_DANE *dane = ctx->dane;
3377
0
    int matched;
3378
3379
0
    dane_reset(dane);
3380
3381
    /*
3382
     * Look for a DANE record for RPK
3383
     * If error, return -1
3384
     * If found, call ctx->verify_cb(1, ctx)
3385
     * If not found call ctx->verify_cb(0, ctx)
3386
     */
3387
0
    matched = dane_match_rpk(ctx, ctx->rpk);
3388
0
    ctx->error_depth = 0;
3389
3390
0
    if (matched < 0) {
3391
0
        ctx->error = X509_V_ERR_UNSPECIFIED;
3392
0
        return -1;
3393
0
    }
3394
3395
0
    if (matched > 0)
3396
0
        ctx->error = X509_V_OK;
3397
0
    else
3398
0
        ctx->error = X509_V_ERR_DANE_NO_MATCH;
3399
3400
0
    return verify_rpk(ctx);
3401
0
}
3402
3403
/* Returns -1 on internal error */
3404
static int dane_verify(X509_STORE_CTX *ctx)
3405
0
{
3406
0
    X509 *cert = ctx->cert;
3407
0
    SSL_DANE *dane = ctx->dane;
3408
0
    int matched;
3409
0
    int done;
3410
3411
0
    dane_reset(dane);
3412
3413
    /*-
3414
     * When testing the leaf certificate, if we match a DANE-EE(3) record,
3415
     * dane_match() returns 1 and we're done.  If however we match a PKIX-EE(1)
3416
     * record, the match depth and matching TLSA record are recorded, but the
3417
     * return value is 0, because we still need to find a PKIX trust anchor.
3418
     * Therefore, when DANE authentication is enabled (required), we're done
3419
     * if:
3420
     *   + matched < 0, internal error.
3421
     *   + matched == 1, we matched a DANE-EE(3) record
3422
     *   + matched == 0, mdepth < 0 (no PKIX-EE match) and there are no
3423
     *     DANE-TA(2) or PKIX-TA(0) to test.
3424
     */
3425
0
    matched = dane_match_cert(ctx, ctx->cert, 0);
3426
0
    done = matched != 0 || (!DANETLS_HAS_TA(dane) && dane->mdpth < 0);
3427
3428
0
    if (done && !X509_get_pubkey_parameters(NULL, ctx->chain))
3429
0
        return -1;
3430
3431
0
    if (matched > 0) {
3432
        /* Callback invoked as needed */
3433
0
        if (!check_leaf_suiteb(ctx, cert))
3434
0
            return 0;
3435
        /* Callback invoked as needed */
3436
0
        if ((dane->flags & DANE_FLAG_NO_DANE_EE_NAMECHECKS) == 0 && !check_id(ctx))
3437
0
            return 0;
3438
        /* Bypass internal_verify(), issue depth 0 success callback */
3439
0
        ctx->error_depth = 0;
3440
0
        ctx->current_cert = cert;
3441
0
        return ctx->verify_cb(1, ctx);
3442
0
    }
3443
3444
0
    if (matched < 0) {
3445
0
        ctx->error_depth = 0;
3446
0
        ctx->current_cert = cert;
3447
0
        ctx->error = X509_V_ERR_OUT_OF_MEM;
3448
0
        return -1;
3449
0
    }
3450
3451
0
    if (done) {
3452
        /* Fail early, TA-based success is not possible */
3453
0
        if (!check_leaf_suiteb(ctx, cert))
3454
0
            return 0;
3455
0
        return verify_cb_cert(ctx, cert, 0, X509_V_ERR_DANE_NO_MATCH);
3456
0
    }
3457
3458
    /*
3459
     * Chain verification for usages 0/1/2.  TLSA record matching of depth > 0
3460
     * certificates happens in-line with building the rest of the chain.
3461
     */
3462
0
    return verify_chain(ctx);
3463
0
}
3464
3465
/*
3466
 * Get trusted issuer, without duplicate suppression
3467
 * Returns -1 on internal error.
3468
 */
3469
static int get1_trusted_issuer(X509 **issuer, X509_STORE_CTX *ctx, X509 *cert)
3470
100k
{
3471
100k
    STACK_OF(X509) *saved_chain = ctx->chain;
3472
100k
    int ok;
3473
3474
100k
    ctx->chain = NULL;
3475
100k
    ok = ctx->get_issuer(issuer, ctx, cert);
3476
100k
    ctx->chain = saved_chain;
3477
3478
100k
    return ok;
3479
100k
}
3480
3481
/*-
3482
 * Returns -1 on internal error.
3483
 * Sadly, returns 0 also on internal error in ctx->verify_cb().
3484
 */
3485
static int build_chain(X509_STORE_CTX *ctx)
3486
67.3k
{
3487
67.3k
    SSL_DANE *dane = ctx->dane;
3488
67.3k
    int num = sk_X509_num(ctx->chain);
3489
67.3k
    STACK_OF(X509) *sk_untrusted = NULL;
3490
67.3k
    unsigned int search;
3491
67.3k
    int may_trusted = 0;
3492
67.3k
    int may_alternate = 0;
3493
67.3k
    int trust = X509_TRUST_UNTRUSTED;
3494
67.3k
    int alt_untrusted = 0;
3495
67.3k
    int max_depth;
3496
67.3k
    int ok = 0;
3497
67.3k
    int i;
3498
3499
    /* Our chain starts with a single untrusted element. */
3500
67.3k
    if (!ossl_assert(num == 1 && ctx->num_untrusted == num))
3501
0
        goto int_err;
3502
3503
197k
#define S_DOUNTRUSTED (1 << 0) /* Search untrusted chain */
3504
199k
#define S_DOTRUSTED (1 << 1) /* Search trusted store */
3505
167k
#define S_DOALTERNATE (1 << 2) /* Retry with pruned alternate chain */
3506
    /*
3507
     * Set up search policy, untrusted if possible, trusted-first if enabled,
3508
     * which is the default.
3509
     * If we're doing DANE and not doing PKIX-TA/PKIX-EE, we never look in the
3510
     * trust_store, otherwise we might look there first.  If not trusted-first,
3511
     * and alternate chains are not disabled, try building an alternate chain
3512
     * if no luck with untrusted first.
3513
     */
3514
67.3k
    search = ctx->untrusted != NULL ? S_DOUNTRUSTED : 0;
3515
67.3k
    if (DANETLS_HAS_PKIX(dane) || !DANETLS_HAS_DANE(dane)) {
3516
67.3k
        if (search == 0 || (ctx->param->flags & X509_V_FLAG_TRUSTED_FIRST) != 0)
3517
67.3k
            search |= S_DOTRUSTED;
3518
0
        else if (!(ctx->param->flags & X509_V_FLAG_NO_ALT_CHAINS))
3519
0
            may_alternate = 1;
3520
67.3k
        may_trusted = 1;
3521
67.3k
    }
3522
3523
    /* Initialize empty untrusted stack. */
3524
67.3k
    if ((sk_untrusted = sk_X509_new_null()) == NULL) {
3525
0
        ERR_raise(ERR_LIB_X509, ERR_R_CRYPTO_LIB);
3526
0
        goto memerr;
3527
0
    }
3528
3529
    /*
3530
     * If we got any "Cert(0) Full(0)" trust anchors from DNS, *prepend* them
3531
     * to our working copy of the untrusted certificate stack.
3532
     */
3533
67.3k
    if (DANETLS_ENABLED(dane) && dane->certs != NULL
3534
0
        && !X509_add_certs(sk_untrusted, dane->certs, X509_ADD_FLAG_DEFAULT)) {
3535
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
3536
0
        goto memerr;
3537
0
    }
3538
3539
    /*
3540
     * Shallow-copy the stack of untrusted certificates (with TLS, this is
3541
     * typically the content of the peer's certificate message) so we can make
3542
     * multiple passes over it, while free to remove elements as we go.
3543
     */
3544
67.3k
    if (!X509_add_certs(sk_untrusted, ctx->untrusted, X509_ADD_FLAG_DEFAULT)) {
3545
0
        ERR_raise(ERR_LIB_X509, ERR_R_X509_LIB);
3546
0
        goto memerr;
3547
0
    }
3548
3549
    /*
3550
     * Still absurdly large, but arithmetically safe, a lower hard upper bound
3551
     * might be reasonable.
3552
     */
3553
67.3k
    if (ctx->param->depth > INT_MAX / 2)
3554
0
        ctx->param->depth = INT_MAX / 2;
3555
3556
    /*
3557
     * Try to extend the chain until we reach an ultimately trusted issuer.
3558
     * Build chains up to one longer the limit, later fail if we hit the limit,
3559
     * with an X509_V_ERR_CERT_CHAIN_TOO_LONG error code.
3560
     */
3561
67.3k
    max_depth = ctx->param->depth + 1;
3562
3563
100k
    while (search != 0) {
3564
100k
        X509 *curr, *issuer = NULL;
3565
3566
100k
        num = sk_X509_num(ctx->chain);
3567
100k
        ctx->error_depth = num - 1;
3568
        /*
3569
         * Look in the trust store if enabled for first lookup, or we've run
3570
         * out of untrusted issuers and search here is not disabled.  When we
3571
         * reach the depth limit, we stop extending the chain, if by that point
3572
         * we've not found a trust anchor, any trusted chain would be too long.
3573
         *
3574
         * The error reported to the application verify callback is at the
3575
         * maximal valid depth with the current certificate equal to the last
3576
         * not ultimately-trusted issuer.  For example, with verify_depth = 0,
3577
         * the callback will report errors at depth=1 when the immediate issuer
3578
         * of the leaf certificate is not a trust anchor.  No attempt will be
3579
         * made to locate an issuer for that certificate, since such a chain
3580
         * would be a-priori too long.
3581
         */
3582
100k
        if ((search & S_DOTRUSTED) != 0) {
3583
100k
            i = num;
3584
100k
            if ((search & S_DOALTERNATE) != 0) {
3585
                /*
3586
                 * As high up the chain as we can, look for an alternative
3587
                 * trusted issuer of an untrusted certificate that currently
3588
                 * has an untrusted issuer.  We use the alt_untrusted variable
3589
                 * to track how far up the chain we find the first match.  It
3590
                 * is only if and when we find a match, that we prune the chain
3591
                 * and reset ctx->num_untrusted to the reduced count of
3592
                 * untrusted certificates.  While we're searching for such a
3593
                 * match (which may never be found), it is neither safe nor
3594
                 * wise to preemptively modify either the chain or
3595
                 * ctx->num_untrusted.
3596
                 *
3597
                 * Note, like ctx->num_untrusted, alt_untrusted is a count of
3598
                 * untrusted certificates, not a "depth".
3599
                 */
3600
0
                i = alt_untrusted;
3601
0
            }
3602
100k
            curr = sk_X509_value(ctx->chain, i - 1);
3603
3604
            /* Note: get1_trusted_issuer() must be used even if self-signed. */
3605
100k
            ok = num > max_depth ? 0 : get1_trusted_issuer(&issuer, ctx, curr);
3606
3607
100k
            if (ok < 0) {
3608
0
                trust = -1;
3609
0
                ctx->error = X509_V_ERR_STORE_LOOKUP;
3610
0
                break;
3611
0
            }
3612
3613
100k
            if (ok > 0) {
3614
2.51k
                int self_signed = X509_self_signed(curr, 0);
3615
3616
2.51k
                if (self_signed < 0) {
3617
77
                    X509_free(issuer);
3618
77
                    goto int_err;
3619
77
                }
3620
                /*
3621
                 * Alternative trusted issuer for a mid-chain untrusted cert?
3622
                 * Pop the untrusted cert's successors and retry.  We might now
3623
                 * be able to complete a valid chain via the trust store.  Note
3624
                 * that despite the current trust store match we might still
3625
                 * fail complete the chain to a suitable trust anchor, in which
3626
                 * case we may prune some more untrusted certificates and try
3627
                 * again.  Thus the S_DOALTERNATE bit may yet be turned on
3628
                 * again with an even shorter untrusted chain!
3629
                 *
3630
                 * If in the process we threw away our matching PKIX-TA trust
3631
                 * anchor, reset DANE trust.  We might find a suitable trusted
3632
                 * certificate among the ones from the trust store.
3633
                 */
3634
2.43k
                if ((search & S_DOALTERNATE) != 0) {
3635
0
                    if (!ossl_assert(num > i && i > 0 && !self_signed)) {
3636
0
                        X509_free(issuer);
3637
0
                        goto int_err;
3638
0
                    }
3639
0
                    search &= ~S_DOALTERNATE;
3640
0
                    for (; num > i; --num)
3641
0
                        X509_free(sk_X509_pop(ctx->chain));
3642
0
                    ctx->num_untrusted = num;
3643
3644
0
                    if (DANETLS_ENABLED(dane) && dane->mdpth >= ctx->num_untrusted) {
3645
0
                        dane->mdpth = -1;
3646
0
                        X509_free(dane->mcert);
3647
0
                        dane->mcert = NULL;
3648
0
                    }
3649
0
                    if (DANETLS_ENABLED(dane) && dane->pdpth >= ctx->num_untrusted)
3650
0
                        dane->pdpth = -1;
3651
0
                }
3652
3653
2.43k
                if (!self_signed) { /* untrusted not self-signed certificate */
3654
                    /* Grow the chain by trusted issuer */
3655
2.38k
                    if (!sk_X509_push(ctx->chain, issuer)) {
3656
0
                        X509_free(issuer);
3657
0
                        ERR_raise(ERR_LIB_X509, ERR_R_CRYPTO_LIB);
3658
0
                        goto memerr;
3659
0
                    }
3660
2.38k
                    if ((self_signed = X509_self_signed(issuer, 0)) < 0)
3661
0
                        goto int_err;
3662
2.38k
                } else {
3663
                    /*
3664
                     * We have a self-signed untrusted cert that has the same
3665
                     * subject name (and perhaps keyid and/or serial number) as
3666
                     * a trust anchor.  We must have an exact match to avoid
3667
                     * possible impersonation via key substitution etc.
3668
                     */
3669
55
                    if (X509_cmp(curr, issuer) != 0) {
3670
                        /* Self-signed untrusted mimic. */
3671
55
                        X509_free(issuer);
3672
55
                        ok = 0;
3673
55
                    } else { /* curr "==" issuer */
3674
                        /*
3675
                         * Replace self-signed untrusted certificate
3676
                         * by its trusted matching issuer.
3677
                         */
3678
0
                        X509_free(curr);
3679
0
                        ctx->num_untrusted = --num;
3680
0
                        (void)sk_X509_set(ctx->chain, num, issuer);
3681
0
                    }
3682
55
                }
3683
3684
                /*
3685
                 * We've added a new trusted certificate to the chain, re-check
3686
                 * trust.  If not done, and not self-signed look deeper.
3687
                 * Whether or not we're doing "trusted first", we no longer
3688
                 * look for untrusted certificates from the peer's chain.
3689
                 *
3690
                 * At this point ctx->num_trusted and num must reflect the
3691
                 * correct number of untrusted certificates, since the DANE
3692
                 * logic in check_trust() depends on distinguishing CAs from
3693
                 * "the wire" from CAs from the trust store.  In particular, the
3694
                 * certificate at depth "num" should be the new trusted
3695
                 * certificate with ctx->num_untrusted <= num.
3696
                 */
3697
2.43k
                if (ok) {
3698
2.38k
                    if (!ossl_assert(ctx->num_untrusted <= num))
3699
0
                        goto int_err;
3700
2.38k
                    search &= ~S_DOUNTRUSTED;
3701
2.38k
                    trust = check_trust(ctx, num);
3702
2.38k
                    if (trust != X509_TRUST_UNTRUSTED)
3703
2.38k
                        break;
3704
0
                    if (!self_signed)
3705
0
                        continue;
3706
0
                }
3707
2.43k
            }
3708
3709
            /*
3710
             * No dispositive decision, and either self-signed or no match, if
3711
             * we were doing untrusted-first, and alt-chains are not disabled,
3712
             * do that, by repeatedly losing one untrusted element at a time,
3713
             * and trying to extend the shorted chain.
3714
             */
3715
97.7k
            if ((search & S_DOUNTRUSTED) == 0) {
3716
                /* Continue search for a trusted issuer of a shorter chain? */
3717
64.8k
                if ((search & S_DOALTERNATE) != 0 && --alt_untrusted > 0)
3718
0
                    continue;
3719
                /* Still no luck and no fallbacks left? */
3720
64.8k
                if (!may_alternate || (search & S_DOALTERNATE) != 0 || ctx->num_untrusted < 2)
3721
64.8k
                    break;
3722
                /* Search for a trusted issuer of a shorter chain */
3723
0
                search |= S_DOALTERNATE;
3724
0
                alt_untrusted = ctx->num_untrusted - 1;
3725
0
            }
3726
97.7k
        }
3727
3728
        /*
3729
         * Try to extend chain with peer-provided untrusted certificate
3730
         */
3731
32.9k
        if ((search & S_DOUNTRUSTED) != 0) {
3732
32.9k
            num = sk_X509_num(ctx->chain);
3733
32.9k
            if (!ossl_assert(num == ctx->num_untrusted))
3734
0
                goto int_err;
3735
32.9k
            curr = sk_X509_value(ctx->chain, num - 1);
3736
32.9k
            issuer = (X509_self_signed(curr, 0) > 0 || num > max_depth) ? NULL : get0_best_issuer_sk(ctx, 0, 1 /* no_dup */, sk_untrusted, curr);
3737
32.9k
            if (issuer == NULL) {
3738
                /*
3739
                 * Once we have reached a self-signed cert or num > max_depth
3740
                 * or can't find an issuer in the untrusted list we stop looking
3741
                 * there and start looking only in the trust store if enabled.
3742
                 */
3743
31.9k
                search &= ~S_DOUNTRUSTED;
3744
31.9k
                if (may_trusted)
3745
31.9k
                    search |= S_DOTRUSTED;
3746
31.9k
                continue;
3747
31.9k
            }
3748
3749
            /* Drop this issuer from future consideration */
3750
985
            (void)sk_X509_delete_ptr(sk_untrusted, issuer);
3751
3752
            /* Grow the chain by untrusted issuer */
3753
985
            if (!X509_add_cert(ctx->chain, issuer, X509_ADD_FLAG_UP_REF))
3754
0
                goto int_err;
3755
3756
985
            ++ctx->num_untrusted;
3757
3758
            /* Check for DANE-TA trust of the topmost untrusted certificate. */
3759
985
            trust = check_dane_issuer(ctx, ctx->num_untrusted - 1);
3760
985
            if (trust == X509_TRUST_TRUSTED || trust == X509_TRUST_REJECTED)
3761
0
                break;
3762
985
        }
3763
32.9k
    }
3764
67.2k
    sk_X509_free(sk_untrusted);
3765
3766
67.2k
    if (trust < 0) /* internal error */
3767
0
        return trust;
3768
3769
    /*
3770
     * Last chance to make a trusted chain, either bare DANE-TA public-key
3771
     * signers, or else direct leaf PKIX trust.
3772
     */
3773
67.2k
    num = sk_X509_num(ctx->chain);
3774
67.2k
    if (num <= max_depth) {
3775
67.2k
        if (trust == X509_TRUST_UNTRUSTED && DANETLS_HAS_DANE_TA(dane))
3776
0
            trust = check_dane_pkeys(ctx);
3777
67.2k
        if (trust == X509_TRUST_UNTRUSTED && num == ctx->num_untrusted)
3778
64.8k
            trust = check_trust(ctx, num);
3779
67.2k
    }
3780
3781
67.2k
    switch (trust) {
3782
2.39k
    case X509_TRUST_TRUSTED:
3783
2.39k
        return 1;
3784
0
    case X509_TRUST_REJECTED:
3785
        /* Callback already issued */
3786
0
        return 0;
3787
64.2k
    case X509_TRUST_UNTRUSTED:
3788
64.8k
    default:
3789
64.8k
        switch (ctx->error) {
3790
0
        case X509_V_ERR_ERROR_IN_CERT_NOT_BEFORE_FIELD:
3791
0
        case X509_V_ERR_CERT_NOT_YET_VALID:
3792
0
        case X509_V_ERR_ERROR_IN_CERT_NOT_AFTER_FIELD:
3793
0
        case X509_V_ERR_CERT_HAS_EXPIRED:
3794
0
            return 0; /* Callback already done by ossl_x509_check_cert_time() */
3795
0
        default: /* A preliminary error has become final */
3796
0
            return verify_cb_cert(ctx, NULL, num - 1, ctx->error);
3797
64.8k
        case X509_V_OK:
3798
64.8k
            break;
3799
64.8k
        }
3800
64.8k
        CB_FAIL_IF(num > max_depth,
3801
64.8k
            ctx, NULL, num - 1, X509_V_ERR_CERT_CHAIN_TOO_LONG);
3802
64.8k
        CB_FAIL_IF(DANETLS_ENABLED(dane)
3803
64.8k
                && (!DANETLS_HAS_PKIX(dane) || dane->pdpth >= 0),
3804
64.8k
            ctx, NULL, num - 1, X509_V_ERR_DANE_NO_MATCH);
3805
64.8k
        if (X509_self_signed(sk_X509_value(ctx->chain, num - 1), 0) > 0)
3806
27.4k
            return verify_cb_cert(ctx, NULL, num - 1,
3807
27.4k
                num == 1
3808
27.4k
                    ? X509_V_ERR_DEPTH_ZERO_SELF_SIGNED_CERT
3809
27.4k
                    : X509_V_ERR_SELF_SIGNED_CERT_IN_CHAIN);
3810
37.3k
        return verify_cb_cert(ctx, NULL, num - 1,
3811
37.3k
            ctx->num_untrusted < num
3812
37.3k
                ? X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT
3813
37.3k
                : X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT_LOCALLY);
3814
67.2k
    }
3815
3816
77
int_err:
3817
77
    ERR_raise(ERR_LIB_X509, ERR_R_INTERNAL_ERROR);
3818
77
    ctx->error = X509_V_ERR_UNSPECIFIED;
3819
77
    sk_X509_free(sk_untrusted);
3820
77
    return -1;
3821
3822
0
memerr:
3823
0
    ctx->error = X509_V_ERR_OUT_OF_MEM;
3824
0
    sk_X509_free(sk_untrusted);
3825
0
    return -1;
3826
67.2k
}
3827
3828
STACK_OF(X509) *X509_build_chain(X509 *target, STACK_OF(X509) *certs,
3829
    X509_STORE *store, int with_self_signed,
3830
    OSSL_LIB_CTX *libctx, const char *propq)
3831
0
{
3832
0
    int finish_chain = store != NULL;
3833
0
    X509_STORE_CTX *ctx;
3834
0
    int flags = X509_ADD_FLAG_UP_REF;
3835
0
    STACK_OF(X509) *result = NULL;
3836
3837
0
    if (target == NULL) {
3838
0
        ERR_raise(ERR_LIB_X509, ERR_R_PASSED_NULL_PARAMETER);
3839
0
        return NULL;
3840
0
    }
3841
3842
0
    if ((ctx = X509_STORE_CTX_new_ex(libctx, propq)) == NULL)
3843
0
        return NULL;
3844
0
    if (!X509_STORE_CTX_init(ctx, store, target, finish_chain ? certs : NULL))
3845
0
        goto err;
3846
0
    if (!finish_chain)
3847
0
        X509_STORE_CTX_set0_trusted_stack(ctx, certs);
3848
0
    if (!ossl_x509_add_cert_new(&ctx->chain, target, X509_ADD_FLAG_UP_REF)) {
3849
0
        ctx->error = X509_V_ERR_OUT_OF_MEM;
3850
0
        goto err;
3851
0
    }
3852
0
    ctx->num_untrusted = 1;
3853
3854
0
    if (!build_chain(ctx) && finish_chain)
3855
0
        goto err;
3856
3857
    /* result list to store the up_ref'ed certificates */
3858
0
    if (sk_X509_num(ctx->chain) > 1 && !with_self_signed)
3859
0
        flags |= X509_ADD_FLAG_NO_SS;
3860
0
    if (!ossl_x509_add_certs_new(&result, ctx->chain, flags)) {
3861
0
        sk_X509_free(result);
3862
0
        result = NULL;
3863
0
    }
3864
3865
0
err:
3866
0
    X509_STORE_CTX_free(ctx);
3867
0
    return result;
3868
0
}
3869
3870
/*
3871
 * note that there's a corresponding minbits_table in ssl/ssl_cert.c
3872
 * in ssl_get_security_level_bits that's used for selection of DH parameters
3873
 */
3874
static const int minbits_table[] = { 80, 112, 128, 192, 256 };
3875
static const int NUM_AUTH_LEVELS = OSSL_NELEM(minbits_table);
3876
3877
/*-
3878
 * Check whether the given public key meets the security level of `ctx`.
3879
 * Returns 1 on success, 0 otherwise.
3880
 */
3881
static int check_key_level(X509_STORE_CTX *ctx, EVP_PKEY *pkey)
3882
68.3k
{
3883
68.3k
    int level = ctx->param->auth_level;
3884
3885
    /*
3886
     * At security level zero, return without checking for a supported public
3887
     * key type.  Some engines support key types not understood outside the
3888
     * engine, and we only need to understand the key when enforcing a security
3889
     * floor.
3890
     */
3891
68.3k
    if (level <= 0)
3892
51.2k
        return 1;
3893
3894
    /* Unsupported or malformed keys are not secure */
3895
17.1k
    if (pkey == NULL)
3896
51
        return 0;
3897
3898
17.0k
    if (level > NUM_AUTH_LEVELS)
3899
0
        level = NUM_AUTH_LEVELS;
3900
3901
17.0k
    return EVP_PKEY_get_security_bits(pkey) >= minbits_table[level - 1];
3902
17.1k
}
3903
3904
/*-
3905
 * Check whether the public key of `cert` meets the security level of `ctx`.
3906
 * Returns 1 on success, 0 otherwise.
3907
 */
3908
static int check_cert_key_level(X509_STORE_CTX *ctx, X509 *cert)
3909
62.4k
{
3910
62.4k
    return check_key_level(ctx, X509_get0_pubkey(cert));
3911
62.4k
}
3912
3913
/*-
3914
 * Check whether the public key of ``cert`` does not use explicit params
3915
 * for an elliptic curve.
3916
 *
3917
 * Returns 1 on success, 0 if check fails, -1 for other errors.
3918
 */
3919
static int check_curve(X509 *cert)
3920
4.01k
{
3921
4.01k
    EVP_PKEY *pkey = X509_get0_pubkey(cert);
3922
4.01k
    int ret, val;
3923
3924
    /* Unsupported or malformed key */
3925
4.01k
    if (pkey == NULL)
3926
0
        return -1;
3927
4.01k
    if (EVP_PKEY_get_id(pkey) != EVP_PKEY_EC)
3928
4.00k
        return 1;
3929
3930
4
    ret = EVP_PKEY_get_int_param(pkey,
3931
4
        OSSL_PKEY_PARAM_EC_DECODED_FROM_EXPLICIT_PARAMS,
3932
4
        &val);
3933
4
    return ret == 1 ? !val : -1;
3934
4.01k
}
3935
3936
/*-
3937
 * Check whether the signature digest algorithm of ``cert`` meets the security
3938
 * level of ``ctx``.  Should not be checked for trust anchors (whether
3939
 * self-signed or otherwise).
3940
 *
3941
 * Returns 1 on success, 0 otherwise.
3942
 */
3943
static int check_sig_level(X509_STORE_CTX *ctx, X509 *cert)
3944
0
{
3945
0
    int secbits = -1;
3946
0
    int level = ctx->param->auth_level;
3947
3948
0
    if (level <= 0)
3949
0
        return 1;
3950
0
    if (level > NUM_AUTH_LEVELS)
3951
0
        level = NUM_AUTH_LEVELS;
3952
3953
0
    if (!X509_get_signature_info(cert, NULL, NULL, &secbits, NULL))
3954
0
        return 0;
3955
3956
0
    return secbits >= minbits_table[level - 1];
3957
0
}