Coverage Report

Created: 2025-06-13 06:55

/src/openssl/ssl/ssl_cert.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 1995-2025 The OpenSSL Project Authors. All Rights Reserved.
3
 * Copyright (c) 2002, Oracle and/or its affiliates. All rights reserved
4
 *
5
 * Licensed under the Apache License 2.0 (the "License").  You may not use
6
 * this file except in compliance with the License.  You can obtain a copy
7
 * in the file LICENSE in the source distribution or at
8
 * https://www.openssl.org/source/license.html
9
 */
10
11
#include "internal/e_os.h"
12
13
#include <stdio.h>
14
#include <sys/types.h>
15
16
#include "internal/nelem.h"
17
#include "internal/o_dir.h"
18
#include <openssl/bio.h>
19
#include <openssl/pem.h>
20
#include <openssl/store.h>
21
#include <openssl/x509v3.h>
22
#include <openssl/dh.h>
23
#include <openssl/bn.h>
24
#include <openssl/crypto.h>
25
#include "internal/refcount.h"
26
#include "ssl_local.h"
27
#include "ssl_cert_table.h"
28
#include "internal/thread_once.h"
29
#include "internal/ssl_unwrap.h"
30
#ifndef OPENSSL_NO_POSIX_IO
31
# include <sys/stat.h>
32
# ifdef _WIN32
33
#  define stat _stat
34
# endif
35
# ifndef S_ISDIR
36
#  define S_ISDIR(a) (((a) & S_IFMT) == S_IFDIR)
37
# endif
38
#endif
39
40
41
static int ssl_security_default_callback(const SSL *s, const SSL_CTX *ctx,
42
                                         int op, int bits, int nid, void *other,
43
                                         void *ex);
44
45
static CRYPTO_ONCE ssl_x509_store_ctx_once = CRYPTO_ONCE_STATIC_INIT;
46
static volatile int ssl_x509_store_ctx_idx = -1;
47
48
DEFINE_RUN_ONCE_STATIC(ssl_x509_store_ctx_init)
49
2
{
50
2
    ssl_x509_store_ctx_idx = X509_STORE_CTX_get_ex_new_index(0,
51
2
                                                             "SSL for verify callback",
52
2
                                                             NULL, NULL, NULL);
53
2
    return ssl_x509_store_ctx_idx >= 0;
54
2
}
55
56
int SSL_get_ex_data_X509_STORE_CTX_idx(void)
57
81
{
58
59
81
    if (!RUN_ONCE(&ssl_x509_store_ctx_once, ssl_x509_store_ctx_init))
60
0
        return -1;
61
81
    return ssl_x509_store_ctx_idx;
62
81
}
63
64
CERT *ssl_cert_new(size_t ssl_pkey_num)
65
79
{
66
79
    CERT *ret = NULL;
67
68
    /* Should never happen */
69
79
    if (!ossl_assert(ssl_pkey_num >= SSL_PKEY_NUM))
70
0
        return NULL;
71
72
79
    ret = OPENSSL_zalloc(sizeof(*ret));
73
79
    if (ret == NULL)
74
0
        return NULL;
75
76
79
    ret->ssl_pkey_num = ssl_pkey_num;
77
79
    ret->pkeys = OPENSSL_zalloc(ret->ssl_pkey_num * sizeof(CERT_PKEY));
78
79
    if (ret->pkeys == NULL) {
79
0
        OPENSSL_free(ret);
80
0
        return NULL;
81
0
    }
82
83
79
    ret->key = &(ret->pkeys[SSL_PKEY_RSA]);
84
79
    ret->sec_cb = ssl_security_default_callback;
85
79
    ret->sec_level = OPENSSL_TLS_SECURITY_LEVEL;
86
79
    ret->sec_ex = NULL;
87
79
    if (!CRYPTO_NEW_REF(&ret->references, 1)) {
88
0
        OPENSSL_free(ret->pkeys);
89
0
        OPENSSL_free(ret);
90
0
        return NULL;
91
0
    }
92
93
79
    return ret;
94
79
}
95
96
CERT *ssl_cert_dup(CERT *cert)
97
0
{
98
0
    CERT *ret = OPENSSL_zalloc(sizeof(*ret));
99
0
    size_t i;
100
#ifndef OPENSSL_NO_COMP_ALG
101
    int j;
102
#endif
103
104
0
    if (ret == NULL)
105
0
        return NULL;
106
107
0
    ret->ssl_pkey_num = cert->ssl_pkey_num;
108
0
    ret->pkeys = OPENSSL_zalloc(ret->ssl_pkey_num * sizeof(CERT_PKEY));
109
0
    if (ret->pkeys == NULL) {
110
0
        OPENSSL_free(ret);
111
0
        return NULL;
112
0
    }
113
114
0
    ret->key = &ret->pkeys[cert->key - cert->pkeys];
115
0
    if (!CRYPTO_NEW_REF(&ret->references, 1)) {
116
0
        OPENSSL_free(ret->pkeys);
117
0
        OPENSSL_free(ret);
118
0
        return NULL;
119
0
    }
120
121
0
    if (cert->dh_tmp != NULL) {
122
0
        if (!EVP_PKEY_up_ref(cert->dh_tmp))
123
0
            goto err;
124
0
        ret->dh_tmp = cert->dh_tmp;
125
0
    }
126
127
0
    ret->dh_tmp_cb = cert->dh_tmp_cb;
128
0
    ret->dh_tmp_auto = cert->dh_tmp_auto;
129
130
0
    for (i = 0; i < ret->ssl_pkey_num; i++) {
131
0
        CERT_PKEY *cpk = cert->pkeys + i;
132
0
        CERT_PKEY *rpk = ret->pkeys + i;
133
134
0
        if (cpk->x509 != NULL) {
135
0
            if (!X509_up_ref(cpk->x509))
136
0
                goto err;
137
0
            rpk->x509 = cpk->x509;
138
0
        }
139
140
0
        if (cpk->privatekey != NULL) {
141
0
            if (!EVP_PKEY_up_ref(cpk->privatekey))
142
0
                goto err;
143
0
            rpk->privatekey = cpk->privatekey;
144
0
        }
145
146
0
        if (cpk->chain) {
147
0
            rpk->chain = X509_chain_up_ref(cpk->chain);
148
0
            if (!rpk->chain) {
149
0
                ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
150
0
                goto err;
151
0
            }
152
0
        }
153
0
        if (cpk->serverinfo != NULL) {
154
            /* Just copy everything. */
155
0
            rpk->serverinfo = OPENSSL_memdup(cpk->serverinfo, cpk->serverinfo_length);
156
0
            if (rpk->serverinfo == NULL)
157
0
                goto err;
158
0
            rpk->serverinfo_length = cpk->serverinfo_length;
159
0
        }
160
#ifndef OPENSSL_NO_COMP_ALG
161
        for (j = TLSEXT_comp_cert_none; j < TLSEXT_comp_cert_limit; j++) {
162
            if (cpk->comp_cert[j] != NULL) {
163
                if (!OSSL_COMP_CERT_up_ref(cpk->comp_cert[j]))
164
                    goto err;
165
                rpk->comp_cert[j] = cpk->comp_cert[j];
166
            }
167
        }
168
#endif
169
0
    }
170
171
    /* Configured sigalgs copied across */
172
0
    if (cert->conf_sigalgs) {
173
0
        ret->conf_sigalgs = OPENSSL_malloc(cert->conf_sigalgslen
174
0
                                           * sizeof(*cert->conf_sigalgs));
175
0
        if (ret->conf_sigalgs == NULL)
176
0
            goto err;
177
0
        memcpy(ret->conf_sigalgs, cert->conf_sigalgs,
178
0
               cert->conf_sigalgslen * sizeof(*cert->conf_sigalgs));
179
0
        ret->conf_sigalgslen = cert->conf_sigalgslen;
180
0
    } else
181
0
        ret->conf_sigalgs = NULL;
182
183
0
    if (cert->client_sigalgs) {
184
0
        ret->client_sigalgs = OPENSSL_malloc(cert->client_sigalgslen
185
0
                                             * sizeof(*cert->client_sigalgs));
186
0
        if (ret->client_sigalgs == NULL)
187
0
            goto err;
188
0
        memcpy(ret->client_sigalgs, cert->client_sigalgs,
189
0
               cert->client_sigalgslen * sizeof(*cert->client_sigalgs));
190
0
        ret->client_sigalgslen = cert->client_sigalgslen;
191
0
    } else
192
0
        ret->client_sigalgs = NULL;
193
    /* Copy any custom client certificate types */
194
0
    if (cert->ctype) {
195
0
        ret->ctype = OPENSSL_memdup(cert->ctype, cert->ctype_len);
196
0
        if (ret->ctype == NULL)
197
0
            goto err;
198
0
        ret->ctype_len = cert->ctype_len;
199
0
    }
200
201
0
    ret->cert_flags = cert->cert_flags;
202
203
0
    ret->cert_cb = cert->cert_cb;
204
0
    ret->cert_cb_arg = cert->cert_cb_arg;
205
206
0
    if (cert->verify_store) {
207
0
        if (!X509_STORE_up_ref(cert->verify_store))
208
0
            goto err;
209
0
        ret->verify_store = cert->verify_store;
210
0
    }
211
212
0
    if (cert->chain_store) {
213
0
        if (!X509_STORE_up_ref(cert->chain_store))
214
0
            goto err;
215
0
        ret->chain_store = cert->chain_store;
216
0
    }
217
218
0
    ret->sec_cb = cert->sec_cb;
219
0
    ret->sec_level = cert->sec_level;
220
0
    ret->sec_ex = cert->sec_ex;
221
222
0
    if (!custom_exts_copy(&ret->custext, &cert->custext))
223
0
        goto err;
224
0
#ifndef OPENSSL_NO_PSK
225
0
    if (cert->psk_identity_hint) {
226
0
        ret->psk_identity_hint = OPENSSL_strdup(cert->psk_identity_hint);
227
0
        if (ret->psk_identity_hint == NULL)
228
0
            goto err;
229
0
    }
230
0
#endif
231
0
    return ret;
232
233
0
 err:
234
0
    ssl_cert_free(ret);
235
236
0
    return NULL;
237
0
}
238
239
/* Free up and clear all certificates and chains */
240
241
void ssl_cert_clear_certs(CERT *c)
242
79
{
243
79
    size_t i;
244
#ifndef OPENSSL_NO_COMP_ALG
245
    int j;
246
#endif
247
248
79
    if (c == NULL)
249
0
        return;
250
1.02k
    for (i = 0; i < c->ssl_pkey_num; i++) {
251
948
        CERT_PKEY *cpk = c->pkeys + i;
252
948
        X509_free(cpk->x509);
253
948
        cpk->x509 = NULL;
254
948
        EVP_PKEY_free(cpk->privatekey);
255
948
        cpk->privatekey = NULL;
256
948
        OSSL_STACK_OF_X509_free(cpk->chain);
257
948
        cpk->chain = NULL;
258
948
        OPENSSL_free(cpk->serverinfo);
259
948
        cpk->serverinfo = NULL;
260
948
        cpk->serverinfo_length = 0;
261
#ifndef OPENSSL_NO_COMP_ALG
262
        for (j = 0; j < TLSEXT_comp_cert_limit; j++) {
263
            OSSL_COMP_CERT_free(cpk->comp_cert[j]);
264
            cpk->comp_cert[j] = NULL;
265
            cpk->cert_comp_used = 0;
266
        }
267
#endif
268
948
    }
269
79
}
270
271
void ssl_cert_free(CERT *c)
272
79
{
273
79
    int i;
274
275
79
    if (c == NULL)
276
0
        return;
277
79
    CRYPTO_DOWN_REF(&c->references, &i);
278
79
    REF_PRINT_COUNT("CERT", i, c);
279
79
    if (i > 0)
280
0
        return;
281
79
    REF_ASSERT_ISNT(i < 0);
282
283
79
    EVP_PKEY_free(c->dh_tmp);
284
285
79
    ssl_cert_clear_certs(c);
286
79
    OPENSSL_free(c->conf_sigalgs);
287
79
    OPENSSL_free(c->client_sigalgs);
288
79
    OPENSSL_free(c->ctype);
289
79
    X509_STORE_free(c->verify_store);
290
79
    X509_STORE_free(c->chain_store);
291
79
    custom_exts_free(&c->custext);
292
79
#ifndef OPENSSL_NO_PSK
293
79
    OPENSSL_free(c->psk_identity_hint);
294
79
#endif
295
79
    OPENSSL_free(c->pkeys);
296
79
    CRYPTO_FREE_REF(&c->references);
297
79
    OPENSSL_free(c);
298
79
}
299
300
int ssl_cert_set0_chain(SSL_CONNECTION *s, SSL_CTX *ctx, STACK_OF(X509) *chain)
301
0
{
302
0
    int i, r;
303
0
    CERT_PKEY *cpk = s != NULL ? s->cert->key : ctx->cert->key;
304
305
0
    if (!cpk)
306
0
        return 0;
307
0
    for (i = 0; i < sk_X509_num(chain); i++) {
308
0
        X509 *x = sk_X509_value(chain, i);
309
310
0
        r = ssl_security_cert(s, ctx, x, 0, 0);
311
0
        if (r != 1) {
312
0
            ERR_raise(ERR_LIB_SSL, r);
313
0
            return 0;
314
0
        }
315
0
    }
316
0
    OSSL_STACK_OF_X509_free(cpk->chain);
317
0
    cpk->chain = chain;
318
0
    return 1;
319
0
}
320
321
int ssl_cert_set1_chain(SSL_CONNECTION *s, SSL_CTX *ctx, STACK_OF(X509) *chain)
322
0
{
323
0
    STACK_OF(X509) *dchain;
324
325
0
    if (!chain)
326
0
        return ssl_cert_set0_chain(s, ctx, NULL);
327
0
    dchain = X509_chain_up_ref(chain);
328
0
    if (!dchain)
329
0
        return 0;
330
0
    if (!ssl_cert_set0_chain(s, ctx, dchain)) {
331
0
        OSSL_STACK_OF_X509_free(dchain);
332
0
        return 0;
333
0
    }
334
0
    return 1;
335
0
}
336
337
int ssl_cert_add0_chain_cert(SSL_CONNECTION *s, SSL_CTX *ctx, X509 *x)
338
0
{
339
0
    int r;
340
0
    CERT_PKEY *cpk = s ? s->cert->key : ctx->cert->key;
341
342
0
    if (!cpk)
343
0
        return 0;
344
0
    r = ssl_security_cert(s, ctx, x, 0, 0);
345
0
    if (r != 1) {
346
0
        ERR_raise(ERR_LIB_SSL, r);
347
0
        return 0;
348
0
    }
349
0
    if (!cpk->chain)
350
0
        cpk->chain = sk_X509_new_null();
351
0
    if (!cpk->chain || !sk_X509_push(cpk->chain, x))
352
0
        return 0;
353
0
    return 1;
354
0
}
355
356
int ssl_cert_add1_chain_cert(SSL_CONNECTION *s, SSL_CTX *ctx, X509 *x)
357
0
{
358
0
    if (!X509_up_ref(x))
359
0
        return 0;
360
0
    if (!ssl_cert_add0_chain_cert(s, ctx, x)) {
361
0
        X509_free(x);
362
0
        return 0;
363
0
    }
364
0
    return 1;
365
0
}
366
367
int ssl_cert_select_current(CERT *c, X509 *x)
368
0
{
369
0
    size_t i;
370
371
0
    if (x == NULL)
372
0
        return 0;
373
0
    for (i = 0; i < c->ssl_pkey_num; i++) {
374
0
        CERT_PKEY *cpk = c->pkeys + i;
375
0
        if (cpk->x509 == x && cpk->privatekey) {
376
0
            c->key = cpk;
377
0
            return 1;
378
0
        }
379
0
    }
380
381
0
    for (i = 0; i < c->ssl_pkey_num; i++) {
382
0
        CERT_PKEY *cpk = c->pkeys + i;
383
0
        if (cpk->privatekey && cpk->x509 && !X509_cmp(cpk->x509, x)) {
384
0
            c->key = cpk;
385
0
            return 1;
386
0
        }
387
0
    }
388
0
    return 0;
389
0
}
390
391
int ssl_cert_set_current(CERT *c, long op)
392
0
{
393
0
    size_t i, idx;
394
395
0
    if (!c)
396
0
        return 0;
397
0
    if (op == SSL_CERT_SET_FIRST)
398
0
        idx = 0;
399
0
    else if (op == SSL_CERT_SET_NEXT) {
400
0
        idx = (size_t)(c->key - c->pkeys + 1);
401
0
        if (idx >= c->ssl_pkey_num)
402
0
            return 0;
403
0
    } else
404
0
        return 0;
405
0
    for (i = idx; i < c->ssl_pkey_num; i++) {
406
0
        CERT_PKEY *cpk = c->pkeys + i;
407
0
        if (cpk->x509 && cpk->privatekey) {
408
0
            c->key = cpk;
409
0
            return 1;
410
0
        }
411
0
    }
412
0
    return 0;
413
0
}
414
415
void ssl_cert_set_cert_cb(CERT *c, int (*cb) (SSL *ssl, void *arg), void *arg)
416
0
{
417
0
    c->cert_cb = cb;
418
0
    c->cert_cb_arg = arg;
419
0
}
420
421
/*
422
 * Verify a certificate chain/raw public key
423
 * Return codes:
424
 *  1: Verify success
425
 *  0: Verify failure or error
426
 * -1: Retry required
427
 */
428
static int ssl_verify_internal(SSL_CONNECTION *s, STACK_OF(X509) *sk, EVP_PKEY *rpk)
429
0
{
430
0
    X509 *x;
431
0
    int i = 0;
432
0
    X509_STORE *verify_store;
433
0
    X509_STORE_CTX *ctx = NULL;
434
0
    X509_VERIFY_PARAM *param;
435
0
    SSL_CTX *sctx;
436
437
    /* Something must be passed in */
438
0
    if ((sk == NULL || sk_X509_num(sk) == 0) && rpk == NULL)
439
0
        return 0;
440
441
    /* Only one can be set */
442
0
    if (sk != NULL && rpk != NULL)
443
0
        return 0;
444
445
0
    sctx = SSL_CONNECTION_GET_CTX(s);
446
0
    if (s->cert->verify_store)
447
0
        verify_store = s->cert->verify_store;
448
0
    else
449
0
        verify_store = sctx->cert_store;
450
451
0
    ctx = X509_STORE_CTX_new_ex(sctx->libctx, sctx->propq);
452
0
    if (ctx == NULL) {
453
0
        ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
454
0
        return 0;
455
0
    }
456
457
0
    if (sk != NULL) {
458
0
        x = sk_X509_value(sk, 0);
459
0
        if (!X509_STORE_CTX_init(ctx, verify_store, x, sk)) {
460
0
            ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
461
0
            goto end;
462
0
        }
463
0
    } else {
464
0
        if (!X509_STORE_CTX_init_rpk(ctx, verify_store, rpk)) {
465
0
            ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
466
0
            goto end;
467
0
        }
468
0
    }
469
0
    param = X509_STORE_CTX_get0_param(ctx);
470
    /*
471
     * XXX: Separate @AUTHSECLEVEL and @TLSSECLEVEL would be useful at some
472
     * point, for now a single @SECLEVEL sets the same policy for TLS crypto
473
     * and PKI authentication.
474
     */
475
0
    X509_VERIFY_PARAM_set_auth_level(param,
476
0
        SSL_get_security_level(SSL_CONNECTION_GET_SSL(s)));
477
478
    /* Set suite B flags if needed */
479
0
    X509_STORE_CTX_set_flags(ctx, tls1_suiteb(s));
480
0
    if (!X509_STORE_CTX_set_ex_data(ctx,
481
0
            SSL_get_ex_data_X509_STORE_CTX_idx(), s)) {
482
0
        goto end;
483
0
    }
484
485
    /* Verify via DANE if enabled */
486
0
    if (DANETLS_ENABLED(&s->dane))
487
0
        X509_STORE_CTX_set0_dane(ctx, &s->dane);
488
489
    /*
490
     * We need to inherit the verify parameters. These can be determined by
491
     * the context: if its a server it will verify SSL client certificates or
492
     * vice versa.
493
     */
494
495
0
    X509_STORE_CTX_set_default(ctx, s->server ? "ssl_client" : "ssl_server");
496
    /*
497
     * Anything non-default in "s->param" should overwrite anything in the ctx.
498
     */
499
0
    X509_VERIFY_PARAM_set1(param, s->param);
500
501
0
    if (s->verify_callback)
502
0
        X509_STORE_CTX_set_verify_cb(ctx, s->verify_callback);
503
504
0
    if (sctx->app_verify_callback != NULL) {
505
0
        i = sctx->app_verify_callback(ctx, sctx->app_verify_arg);
506
0
    } else {
507
0
        i = X509_verify_cert(ctx);
508
        /* We treat an error in the same way as a failure to verify */
509
0
        if (i < 0)
510
0
            i = 0;
511
0
    }
512
513
0
    s->verify_result = X509_STORE_CTX_get_error(ctx);
514
0
    OSSL_STACK_OF_X509_free(s->verified_chain);
515
0
    s->verified_chain = NULL;
516
517
0
    if (sk != NULL && X509_STORE_CTX_get0_chain(ctx) != NULL) {
518
0
        s->verified_chain = X509_STORE_CTX_get1_chain(ctx);
519
0
        if (s->verified_chain == NULL) {
520
0
            ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
521
0
            i = 0;
522
0
        }
523
0
    }
524
525
    /* Move peername from the store context params to the SSL handle's */
526
0
    X509_VERIFY_PARAM_move_peername(s->param, param);
527
528
0
 end:
529
0
    X509_STORE_CTX_free(ctx);
530
0
    return i;
531
0
}
532
533
/*
534
 * Verify a raw public key
535
 * Return codes:
536
 *  1: Verify success
537
 *  0: Verify failure or error
538
 * -1: Retry required
539
 */
540
int ssl_verify_rpk(SSL_CONNECTION *s, EVP_PKEY *rpk)
541
0
{
542
0
    return ssl_verify_internal(s, NULL, rpk);
543
0
}
544
545
/*
546
 * Verify a certificate chain
547
 * Return codes:
548
 *  1: Verify success
549
 *  0: Verify failure or error
550
 * -1: Retry required
551
 */
552
int ssl_verify_cert_chain(SSL_CONNECTION *s, STACK_OF(X509) *sk)
553
0
{
554
0
    return ssl_verify_internal(s, sk, NULL);
555
0
}
556
557
static void set0_CA_list(STACK_OF(X509_NAME) **ca_list,
558
                        STACK_OF(X509_NAME) *name_list)
559
0
{
560
0
    sk_X509_NAME_pop_free(*ca_list, X509_NAME_free);
561
0
    *ca_list = name_list;
562
0
}
563
564
STACK_OF(X509_NAME) *SSL_dup_CA_list(const STACK_OF(X509_NAME) *sk)
565
0
{
566
0
    int i;
567
0
    const int num = sk_X509_NAME_num(sk);
568
0
    STACK_OF(X509_NAME) *ret;
569
0
    X509_NAME *name;
570
571
0
    ret = sk_X509_NAME_new_reserve(NULL, num);
572
0
    if (ret == NULL) {
573
0
        ERR_raise(ERR_LIB_SSL, ERR_R_CRYPTO_LIB);
574
0
        return NULL;
575
0
    }
576
0
    for (i = 0; i < num; i++) {
577
0
        name = X509_NAME_dup(sk_X509_NAME_value(sk, i));
578
0
        if (name == NULL) {
579
0
            ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
580
0
            sk_X509_NAME_pop_free(ret, X509_NAME_free);
581
0
            return NULL;
582
0
        }
583
0
        sk_X509_NAME_push(ret, name);   /* Cannot fail after reserve call */
584
0
    }
585
0
    return ret;
586
0
}
587
588
void SSL_set0_CA_list(SSL *s, STACK_OF(X509_NAME) *name_list)
589
0
{
590
0
    SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(s);
591
592
0
    if (sc == NULL)
593
0
        return;
594
595
0
    set0_CA_list(&sc->ca_names, name_list);
596
0
}
597
598
void SSL_CTX_set0_CA_list(SSL_CTX *ctx, STACK_OF(X509_NAME) *name_list)
599
0
{
600
0
    set0_CA_list(&ctx->ca_names, name_list);
601
0
}
602
603
const STACK_OF(X509_NAME) *SSL_CTX_get0_CA_list(const SSL_CTX *ctx)
604
0
{
605
0
    return ctx->ca_names;
606
0
}
607
608
const STACK_OF(X509_NAME) *SSL_get0_CA_list(const SSL *s)
609
0
{
610
0
    const SSL_CONNECTION *sc = SSL_CONNECTION_FROM_CONST_SSL(s);
611
612
0
    if (sc == NULL)
613
0
        return NULL;
614
615
0
    return sc->ca_names != NULL ? sc->ca_names : s->ctx->ca_names;
616
0
}
617
618
void SSL_CTX_set_client_CA_list(SSL_CTX *ctx, STACK_OF(X509_NAME) *name_list)
619
0
{
620
0
    set0_CA_list(&ctx->client_ca_names, name_list);
621
0
}
622
623
STACK_OF(X509_NAME) *SSL_CTX_get_client_CA_list(const SSL_CTX *ctx)
624
0
{
625
0
    return ctx->client_ca_names;
626
0
}
627
628
void SSL_set_client_CA_list(SSL *s, STACK_OF(X509_NAME) *name_list)
629
0
{
630
0
    SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(s);
631
632
0
    if (sc == NULL)
633
0
        return;
634
635
0
    set0_CA_list(&sc->client_ca_names, name_list);
636
0
}
637
638
const STACK_OF(X509_NAME) *SSL_get0_peer_CA_list(const SSL *s)
639
0
{
640
0
    const SSL_CONNECTION *sc = SSL_CONNECTION_FROM_CONST_SSL(s);
641
642
0
    if (sc == NULL)
643
0
        return NULL;
644
645
0
    return sc->s3.tmp.peer_ca_names;
646
0
}
647
648
STACK_OF(X509_NAME) *SSL_get_client_CA_list(const SSL *s)
649
0
{
650
0
    const SSL_CONNECTION *sc = SSL_CONNECTION_FROM_CONST_SSL(s);
651
652
0
    if (sc == NULL)
653
0
        return NULL;
654
655
0
    if (!sc->server)
656
0
        return sc->s3.tmp.peer_ca_names;
657
0
    return sc->client_ca_names != NULL ? sc->client_ca_names
658
0
                                       : s->ctx->client_ca_names;
659
0
}
660
661
static int add_ca_name(STACK_OF(X509_NAME) **sk, const X509 *x)
662
0
{
663
0
    X509_NAME *name;
664
665
0
    if (x == NULL)
666
0
        return 0;
667
0
    if (*sk == NULL && ((*sk = sk_X509_NAME_new_null()) == NULL))
668
0
        return 0;
669
670
0
    if ((name = X509_NAME_dup(X509_get_subject_name(x))) == NULL)
671
0
        return 0;
672
673
0
    if (!sk_X509_NAME_push(*sk, name)) {
674
0
        X509_NAME_free(name);
675
0
        return 0;
676
0
    }
677
0
    return 1;
678
0
}
679
680
int SSL_add1_to_CA_list(SSL *ssl, const X509 *x)
681
0
{
682
0
    SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(ssl);
683
684
0
    if (sc == NULL)
685
0
        return 0;
686
687
0
    return add_ca_name(&sc->ca_names, x);
688
0
}
689
690
int SSL_CTX_add1_to_CA_list(SSL_CTX *ctx, const X509 *x)
691
0
{
692
0
    return add_ca_name(&ctx->ca_names, x);
693
0
}
694
695
/*
696
 * The following two are older names are to be replaced with
697
 * SSL(_CTX)_add1_to_CA_list
698
 */
699
int SSL_add_client_CA(SSL *ssl, X509 *x)
700
0
{
701
0
    SSL_CONNECTION *sc = SSL_CONNECTION_FROM_SSL(ssl);
702
703
0
    if (sc == NULL)
704
0
        return 0;
705
706
0
    return add_ca_name(&sc->client_ca_names, x);
707
0
}
708
709
int SSL_CTX_add_client_CA(SSL_CTX *ctx, X509 *x)
710
0
{
711
0
    return add_ca_name(&ctx->client_ca_names, x);
712
0
}
713
714
static int xname_cmp(const X509_NAME *a, const X509_NAME *b)
715
0
{
716
0
    unsigned char *abuf = NULL, *bbuf = NULL;
717
0
    int alen, blen, ret;
718
719
    /* X509_NAME_cmp() itself casts away constness in this way, so
720
     * assume it's safe:
721
     */
722
0
    alen = i2d_X509_NAME((X509_NAME *)a, &abuf);
723
0
    blen = i2d_X509_NAME((X509_NAME *)b, &bbuf);
724
725
0
    if (alen < 0 || blen < 0)
726
0
        ret = -2;
727
0
    else if (alen != blen)
728
0
        ret = alen - blen;
729
0
    else /* alen == blen */
730
0
        ret = memcmp(abuf, bbuf, alen);
731
732
0
    OPENSSL_free(abuf);
733
0
    OPENSSL_free(bbuf);
734
735
0
    return ret;
736
0
}
737
738
static int xname_sk_cmp(const X509_NAME *const *a, const X509_NAME *const *b)
739
0
{
740
0
    return xname_cmp(*a, *b);
741
0
}
742
743
static unsigned long xname_hash(const X509_NAME *a)
744
0
{
745
    /* This returns 0 also if SHA1 is not available */
746
0
    return X509_NAME_hash_ex((X509_NAME *)a, NULL, NULL, NULL);
747
0
}
748
749
STACK_OF(X509_NAME) *SSL_load_client_CA_file_ex(const char *file,
750
                                                OSSL_LIB_CTX *libctx,
751
                                                const char *propq)
752
0
{
753
0
    BIO *in = BIO_new(BIO_s_file());
754
0
    X509 *x = NULL;
755
0
    X509_NAME *xn = NULL;
756
0
    STACK_OF(X509_NAME) *ret = NULL;
757
0
    LHASH_OF(X509_NAME) *name_hash = lh_X509_NAME_new(xname_hash, xname_cmp);
758
0
    OSSL_LIB_CTX *prev_libctx = NULL;
759
760
0
    if (file == NULL) {
761
0
        ERR_raise(ERR_LIB_SSL, ERR_R_PASSED_NULL_PARAMETER);
762
0
        goto err;
763
0
    }
764
0
    if (name_hash == NULL) {
765
0
        ERR_raise(ERR_LIB_SSL, ERR_R_CRYPTO_LIB);
766
0
        goto err;
767
0
    }
768
0
    if (in == NULL) {
769
0
        ERR_raise(ERR_LIB_SSL, ERR_R_BIO_LIB);
770
0
        goto err;
771
0
    }
772
773
0
    x = X509_new_ex(libctx, propq);
774
0
    if (x == NULL) {
775
0
        ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
776
0
        goto err;
777
0
    }
778
0
    if (BIO_read_filename(in, file) <= 0)
779
0
        goto err;
780
781
    /* Internally lh_X509_NAME_retrieve() needs the libctx to retrieve SHA1 */
782
0
    prev_libctx = OSSL_LIB_CTX_set0_default(libctx);
783
0
    for (;;) {
784
0
        if (PEM_read_bio_X509(in, &x, NULL, NULL) == NULL)
785
0
            break;
786
0
        if (ret == NULL) {
787
0
            ret = sk_X509_NAME_new_null();
788
0
            if (ret == NULL) {
789
0
                ERR_raise(ERR_LIB_SSL, ERR_R_CRYPTO_LIB);
790
0
                goto err;
791
0
            }
792
0
        }
793
0
        if ((xn = X509_get_subject_name(x)) == NULL)
794
0
            goto err;
795
        /* check for duplicates */
796
0
        xn = X509_NAME_dup(xn);
797
0
        if (xn == NULL)
798
0
            goto err;
799
0
        if (lh_X509_NAME_retrieve(name_hash, xn) != NULL) {
800
            /* Duplicate. */
801
0
            X509_NAME_free(xn);
802
0
            xn = NULL;
803
0
        } else {
804
0
            lh_X509_NAME_insert(name_hash, xn);
805
0
            if (!sk_X509_NAME_push(ret, xn))
806
0
                goto err;
807
0
        }
808
0
    }
809
0
    goto done;
810
811
0
 err:
812
0
    X509_NAME_free(xn);
813
0
    sk_X509_NAME_pop_free(ret, X509_NAME_free);
814
0
    ret = NULL;
815
0
 done:
816
    /* restore the old libctx */
817
0
    OSSL_LIB_CTX_set0_default(prev_libctx);
818
0
    BIO_free(in);
819
0
    X509_free(x);
820
0
    lh_X509_NAME_free(name_hash);
821
0
    if (ret != NULL)
822
0
        ERR_clear_error();
823
0
    return ret;
824
0
}
825
826
STACK_OF(X509_NAME) *SSL_load_client_CA_file(const char *file)
827
0
{
828
0
    return SSL_load_client_CA_file_ex(file, NULL, NULL);
829
0
}
830
831
static int add_file_cert_subjects_to_stack(STACK_OF(X509_NAME) *stack,
832
                                           const char *file,
833
                                           LHASH_OF(X509_NAME) *name_hash)
834
0
{
835
0
    BIO *in;
836
0
    X509 *x = NULL;
837
0
    X509_NAME *xn = NULL;
838
0
    int ret = 1;
839
840
0
    in = BIO_new(BIO_s_file());
841
842
0
    if (in == NULL) {
843
0
        ERR_raise(ERR_LIB_SSL, ERR_R_BIO_LIB);
844
0
        goto err;
845
0
    }
846
847
0
    if (BIO_read_filename(in, file) <= 0)
848
0
        goto err;
849
850
0
    for (;;) {
851
0
        if (PEM_read_bio_X509(in, &x, NULL, NULL) == NULL)
852
0
            break;
853
0
        if ((xn = X509_get_subject_name(x)) == NULL)
854
0
            goto err;
855
0
        xn = X509_NAME_dup(xn);
856
0
        if (xn == NULL)
857
0
            goto err;
858
0
        if (lh_X509_NAME_retrieve(name_hash, xn) != NULL) {
859
            /* Duplicate. */
860
0
            X509_NAME_free(xn);
861
0
        } else if (!sk_X509_NAME_push(stack, xn)) {
862
0
            X509_NAME_free(xn);
863
0
            goto err;
864
0
        } else {
865
            /* Successful insert, add to hash table */
866
0
            lh_X509_NAME_insert(name_hash, xn);
867
0
        }
868
0
    }
869
870
0
    ERR_clear_error();
871
0
    goto done;
872
873
0
 err:
874
0
    ret = 0;
875
0
 done:
876
0
    BIO_free(in);
877
0
    X509_free(x);
878
0
    return ret;
879
0
}
880
881
int SSL_add_file_cert_subjects_to_stack(STACK_OF(X509_NAME) *stack,
882
                                        const char *file)
883
0
{
884
0
    X509_NAME *xn = NULL;
885
0
    int ret = 1;
886
0
    int idx = 0;
887
0
    int num = 0;
888
0
    LHASH_OF(X509_NAME) *name_hash = lh_X509_NAME_new(xname_hash, xname_cmp);
889
890
0
    if (file == NULL) {
891
0
        ERR_raise(ERR_LIB_SSL, ERR_R_PASSED_NULL_PARAMETER);
892
0
        goto err;
893
0
    }
894
895
0
    if (name_hash == NULL) {
896
0
        ERR_raise(ERR_LIB_SSL, ERR_R_CRYPTO_LIB);
897
0
        goto err;
898
0
    }
899
900
    /*
901
     * Pre-populate the lhash with the existing entries of the stack, since
902
     * using the LHASH_OF is much faster for duplicate checking. That's because
903
     * xname_cmp converts the X509_NAMEs to DER involving a memory allocation
904
     * for every single invocation of the comparison function.
905
     */
906
0
    num = sk_X509_NAME_num(stack);
907
0
    for (idx = 0; idx < num; idx++) {
908
0
        xn = sk_X509_NAME_value(stack, idx);
909
0
        lh_X509_NAME_insert(name_hash, xn);
910
0
    }
911
912
0
    ret = add_file_cert_subjects_to_stack(stack, file, name_hash);
913
0
    goto done;
914
915
0
 err:
916
0
    ret = 0;
917
0
 done:
918
0
    lh_X509_NAME_free(name_hash);
919
0
    return ret;
920
0
}
921
922
int SSL_add_dir_cert_subjects_to_stack(STACK_OF(X509_NAME) *stack,
923
                                       const char *dir)
924
0
{
925
0
    OPENSSL_DIR_CTX *d = NULL;
926
0
    const char *filename;
927
0
    int ret = 0;
928
0
    X509_NAME *xn = NULL;
929
0
    int idx = 0;
930
0
    int num = 0;
931
0
    LHASH_OF(X509_NAME) *name_hash = lh_X509_NAME_new(xname_hash, xname_cmp);
932
933
0
    if (name_hash == NULL) {
934
0
        ERR_raise(ERR_LIB_SSL, ERR_R_CRYPTO_LIB);
935
0
        goto err;
936
0
    }
937
938
    /*
939
     * Pre-populate the lhash with the existing entries of the stack, since
940
     * using the LHASH_OF is much faster for duplicate checking. That's because
941
     * xname_cmp converts the X509_NAMEs to DER involving a memory allocation
942
     * for every single invocation of the comparison function.
943
     */
944
0
    num = sk_X509_NAME_num(stack);
945
0
    for (idx = 0; idx < num; idx++) {
946
0
        xn = sk_X509_NAME_value(stack, idx);
947
0
        lh_X509_NAME_insert(name_hash, xn);
948
0
    }
949
950
0
    while ((filename = OPENSSL_DIR_read(&d, dir))) {
951
0
        char buf[1024];
952
0
        int r;
953
0
#ifndef OPENSSL_NO_POSIX_IO
954
0
        struct stat st;
955
956
#else
957
        /* Cannot use stat so just skip current and parent directories */
958
        if (strcmp(filename, ".") == 0 || strcmp(filename, "..") == 0)
959
            continue;
960
#endif
961
0
        if (strlen(dir) + strlen(filename) + 2 > sizeof(buf)) {
962
0
            ERR_raise(ERR_LIB_SSL, SSL_R_PATH_TOO_LONG);
963
0
            goto err;
964
0
        }
965
#ifdef OPENSSL_SYS_VMS
966
        r = BIO_snprintf(buf, sizeof(buf), "%s%s", dir, filename);
967
#else
968
0
        r = BIO_snprintf(buf, sizeof(buf), "%s/%s", dir, filename);
969
0
#endif
970
0
#ifndef OPENSSL_NO_POSIX_IO
971
        /* Skip subdirectories */
972
0
        if (!stat(buf, &st) && S_ISDIR(st.st_mode))
973
0
            continue;
974
0
#endif
975
0
        if (r <= 0 || r >= (int)sizeof(buf))
976
0
            goto err;
977
0
        if (!add_file_cert_subjects_to_stack(stack, buf, name_hash))
978
0
            goto err;
979
0
    }
980
981
0
    if (errno) {
982
0
        ERR_raise_data(ERR_LIB_SYS, get_last_sys_error(),
983
0
                       "calling OPENSSL_dir_read(%s)", dir);
984
0
        ERR_raise(ERR_LIB_SSL, ERR_R_SYS_LIB);
985
0
        goto err;
986
0
    }
987
988
0
    ret = 1;
989
990
0
 err:
991
0
    if (d)
992
0
        OPENSSL_DIR_end(&d);
993
0
    lh_X509_NAME_free(name_hash);
994
995
0
    return ret;
996
0
}
997
998
static int add_uris_recursive(STACK_OF(X509_NAME) *stack,
999
                              const char *uri, int depth)
1000
0
{
1001
0
    int ok = 1;
1002
0
    OSSL_STORE_CTX *ctx = NULL;
1003
0
    X509 *x = NULL;
1004
0
    X509_NAME *xn = NULL;
1005
0
    OSSL_STORE_INFO *info = NULL;
1006
1007
0
    if ((ctx = OSSL_STORE_open(uri, NULL, NULL, NULL, NULL)) == NULL)
1008
0
        goto err;
1009
1010
0
    while (!OSSL_STORE_eof(ctx) && !OSSL_STORE_error(ctx)) {
1011
0
        int infotype;
1012
1013
0
        if ((info = OSSL_STORE_load(ctx)) == NULL)
1014
0
            continue;
1015
0
        infotype = OSSL_STORE_INFO_get_type(info);
1016
1017
0
        if (infotype == OSSL_STORE_INFO_NAME) {
1018
            /*
1019
             * This is an entry in the "directory" represented by the current
1020
             * uri.  if |depth| allows, dive into it.
1021
             */
1022
0
            if (depth > 0)
1023
0
                ok = add_uris_recursive(stack, OSSL_STORE_INFO_get0_NAME(info),
1024
0
                                        depth - 1);
1025
0
        } else if (infotype == OSSL_STORE_INFO_CERT) {
1026
0
            if ((x = OSSL_STORE_INFO_get0_CERT(info)) == NULL
1027
0
                || (xn = X509_get_subject_name(x)) == NULL
1028
0
                || (xn = X509_NAME_dup(xn)) == NULL)
1029
0
                goto err;
1030
0
            if (sk_X509_NAME_find(stack, xn) >= 0) {
1031
                /* Duplicate. */
1032
0
                X509_NAME_free(xn);
1033
0
            } else if (!sk_X509_NAME_push(stack, xn)) {
1034
0
                X509_NAME_free(xn);
1035
0
                goto err;
1036
0
            }
1037
0
        }
1038
1039
0
        OSSL_STORE_INFO_free(info);
1040
0
        info = NULL;
1041
0
    }
1042
1043
0
    ERR_clear_error();
1044
0
    goto done;
1045
1046
0
 err:
1047
0
    ok = 0;
1048
0
    OSSL_STORE_INFO_free(info);
1049
0
 done:
1050
0
    OSSL_STORE_close(ctx);
1051
1052
0
    return ok;
1053
0
}
1054
1055
int SSL_add_store_cert_subjects_to_stack(STACK_OF(X509_NAME) *stack,
1056
                                         const char *store)
1057
0
{
1058
0
    int (*oldcmp) (const X509_NAME *const *a, const X509_NAME *const *b)
1059
0
        = sk_X509_NAME_set_cmp_func(stack, xname_sk_cmp);
1060
0
    int ret = add_uris_recursive(stack, store, 1);
1061
1062
0
    (void)sk_X509_NAME_set_cmp_func(stack, oldcmp);
1063
0
    return ret;
1064
0
}
1065
1066
/* Build a certificate chain for current certificate */
1067
int ssl_build_cert_chain(SSL_CONNECTION *s, SSL_CTX *ctx, int flags)
1068
0
{
1069
0
    CERT *c = s != NULL ? s->cert : ctx->cert;
1070
0
    CERT_PKEY *cpk = c->key;
1071
0
    X509_STORE *chain_store = NULL;
1072
0
    X509_STORE_CTX *xs_ctx = NULL;
1073
0
    STACK_OF(X509) *chain = NULL, *untrusted = NULL;
1074
0
    X509 *x;
1075
0
    SSL_CTX *real_ctx = (s == NULL) ? ctx : SSL_CONNECTION_GET_CTX(s);
1076
0
    int i, rv = 0;
1077
1078
0
    if (cpk->x509 == NULL) {
1079
0
        ERR_raise(ERR_LIB_SSL, SSL_R_NO_CERTIFICATE_SET);
1080
0
        goto err;
1081
0
    }
1082
    /* Rearranging and check the chain: add everything to a store */
1083
0
    if (flags & SSL_BUILD_CHAIN_FLAG_CHECK) {
1084
0
        chain_store = X509_STORE_new();
1085
0
        if (chain_store == NULL)
1086
0
            goto err;
1087
0
        for (i = 0; i < sk_X509_num(cpk->chain); i++) {
1088
0
            x = sk_X509_value(cpk->chain, i);
1089
0
            if (!X509_STORE_add_cert(chain_store, x))
1090
0
                goto err;
1091
0
        }
1092
        /* Add EE cert too: it might be self signed */
1093
0
        if (!X509_STORE_add_cert(chain_store, cpk->x509))
1094
0
            goto err;
1095
0
    } else {
1096
0
        if (c->chain_store != NULL)
1097
0
            chain_store = c->chain_store;
1098
0
        else
1099
0
            chain_store = real_ctx->cert_store;
1100
1101
0
        if (flags & SSL_BUILD_CHAIN_FLAG_UNTRUSTED)
1102
0
            untrusted = cpk->chain;
1103
0
    }
1104
1105
0
    xs_ctx = X509_STORE_CTX_new_ex(real_ctx->libctx, real_ctx->propq);
1106
0
    if (xs_ctx == NULL) {
1107
0
        ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
1108
0
        goto err;
1109
0
    }
1110
0
    if (!X509_STORE_CTX_init(xs_ctx, chain_store, cpk->x509, untrusted)) {
1111
0
        ERR_raise(ERR_LIB_SSL, ERR_R_X509_LIB);
1112
0
        goto err;
1113
0
    }
1114
    /* Set suite B flags if needed */
1115
0
    X509_STORE_CTX_set_flags(xs_ctx,
1116
0
                             c->cert_flags & SSL_CERT_FLAG_SUITEB_128_LOS);
1117
1118
0
    i = X509_verify_cert(xs_ctx);
1119
0
    if (i <= 0 && flags & SSL_BUILD_CHAIN_FLAG_IGNORE_ERROR) {
1120
0
        if (flags & SSL_BUILD_CHAIN_FLAG_CLEAR_ERROR)
1121
0
            ERR_clear_error();
1122
0
        i = 1;
1123
0
        rv = 2;
1124
0
    }
1125
0
    if (i > 0)
1126
0
        chain = X509_STORE_CTX_get1_chain(xs_ctx);
1127
0
    if (i <= 0) {
1128
0
        i = X509_STORE_CTX_get_error(xs_ctx);
1129
0
        ERR_raise_data(ERR_LIB_SSL, SSL_R_CERTIFICATE_VERIFY_FAILED,
1130
0
                       "Verify error:%s", X509_verify_cert_error_string(i));
1131
1132
0
        goto err;
1133
0
    }
1134
    /* Remove EE certificate from chain */
1135
0
    x = sk_X509_shift(chain);
1136
0
    X509_free(x);
1137
0
    if (flags & SSL_BUILD_CHAIN_FLAG_NO_ROOT) {
1138
0
        if (sk_X509_num(chain) > 0) {
1139
            /* See if last cert is self signed */
1140
0
            x = sk_X509_value(chain, sk_X509_num(chain) - 1);
1141
0
            if (X509_get_extension_flags(x) & EXFLAG_SS) {
1142
0
                x = sk_X509_pop(chain);
1143
0
                X509_free(x);
1144
0
            }
1145
0
        }
1146
0
    }
1147
    /*
1148
     * Check security level of all CA certificates: EE will have been checked
1149
     * already.
1150
     */
1151
0
    for (i = 0; i < sk_X509_num(chain); i++) {
1152
0
        x = sk_X509_value(chain, i);
1153
0
        rv = ssl_security_cert(s, ctx, x, 0, 0);
1154
0
        if (rv != 1) {
1155
0
            ERR_raise(ERR_LIB_SSL, rv);
1156
0
            OSSL_STACK_OF_X509_free(chain);
1157
0
            rv = 0;
1158
0
            goto err;
1159
0
        }
1160
0
    }
1161
0
    OSSL_STACK_OF_X509_free(cpk->chain);
1162
0
    cpk->chain = chain;
1163
0
    if (rv == 0)
1164
0
        rv = 1;
1165
0
 err:
1166
0
    if (flags & SSL_BUILD_CHAIN_FLAG_CHECK)
1167
0
        X509_STORE_free(chain_store);
1168
0
    X509_STORE_CTX_free(xs_ctx);
1169
1170
0
    return rv;
1171
0
}
1172
1173
int ssl_cert_set_cert_store(CERT *c, X509_STORE *store, int chain, int ref)
1174
0
{
1175
0
    X509_STORE **pstore;
1176
1177
0
    if (ref && store && !X509_STORE_up_ref(store))
1178
0
        return 0;
1179
1180
0
    if (chain)
1181
0
        pstore = &c->chain_store;
1182
0
    else
1183
0
        pstore = &c->verify_store;
1184
0
    X509_STORE_free(*pstore);
1185
0
    *pstore = store;
1186
1187
0
    return 1;
1188
0
}
1189
1190
int ssl_cert_get_cert_store(CERT *c, X509_STORE **pstore, int chain)
1191
0
{
1192
0
    *pstore = (chain ? c->chain_store : c->verify_store);
1193
0
    return 1;
1194
0
}
1195
1196
int ssl_get_security_level_bits(const SSL *s, const SSL_CTX *ctx, int *levelp)
1197
0
{
1198
0
    int level;
1199
    /*
1200
     * note that there's a corresponding minbits_table
1201
     * in crypto/x509/x509_vfy.c that's used for checking the security level
1202
     * of RSA and DSA keys
1203
     */
1204
0
    static const int minbits_table[5 + 1] = { 0, 80, 112, 128, 192, 256 };
1205
1206
0
    if (ctx != NULL)
1207
0
        level = SSL_CTX_get_security_level(ctx);
1208
0
    else
1209
0
        level = SSL_get_security_level(s);
1210
1211
0
    if (level > 5)
1212
0
        level = 5;
1213
0
    else if (level < 0)
1214
0
        level = 0;
1215
1216
0
    if (levelp != NULL)
1217
0
        *levelp = level;
1218
1219
0
    return minbits_table[level];
1220
0
}
1221
1222
static int ssl_security_default_callback(const SSL *s, const SSL_CTX *ctx,
1223
                                         int op, int bits, int nid, void *other,
1224
                                         void *ex)
1225
0
{
1226
0
    int level, minbits, pfs_mask;
1227
0
    const SSL_CONNECTION *sc;
1228
1229
0
    minbits = ssl_get_security_level_bits(s, ctx, &level);
1230
1231
0
    if (level == 0) {
1232
        /*
1233
         * No EDH keys weaker than 1024-bits even at level 0, otherwise,
1234
         * anything goes.
1235
         */
1236
0
        if (op == SSL_SECOP_TMP_DH && bits < 80)
1237
0
            return 0;
1238
0
        return 1;
1239
0
    }
1240
0
    switch (op) {
1241
0
    case SSL_SECOP_CIPHER_SUPPORTED:
1242
0
    case SSL_SECOP_CIPHER_SHARED:
1243
0
    case SSL_SECOP_CIPHER_CHECK:
1244
0
        {
1245
0
            const SSL_CIPHER *c = other;
1246
            /* No ciphers below security level */
1247
0
            if (bits < minbits)
1248
0
                return 0;
1249
            /* No unauthenticated ciphersuites */
1250
0
            if (c->algorithm_auth & SSL_aNULL)
1251
0
                return 0;
1252
            /* No MD5 mac ciphersuites */
1253
0
            if (c->algorithm_mac & SSL_MD5)
1254
0
                return 0;
1255
            /* SHA1 HMAC is 160 bits of security */
1256
0
            if (minbits > 160 && c->algorithm_mac & SSL_SHA1)
1257
0
                return 0;
1258
            /* Level 3: forward secure ciphersuites only */
1259
0
            pfs_mask = SSL_kDHE | SSL_kECDHE | SSL_kDHEPSK | SSL_kECDHEPSK;
1260
0
            if (level >= 3 && c->min_tls != TLS1_3_VERSION &&
1261
0
                               !(c->algorithm_mkey & pfs_mask))
1262
0
                return 0;
1263
0
            break;
1264
0
        }
1265
0
    case SSL_SECOP_VERSION:
1266
0
        if ((sc = SSL_CONNECTION_FROM_CONST_SSL(s)) == NULL)
1267
0
            return 0;
1268
0
        if (!SSL_CONNECTION_IS_DTLS(sc)) {
1269
            /* SSLv3, TLS v1.0 and TLS v1.1 only allowed at level 0 */
1270
0
            if (nid <= TLS1_1_VERSION && level > 0)
1271
0
                return 0;
1272
0
        } else {
1273
            /* DTLS v1.0 only allowed at level 0 */
1274
0
            if (DTLS_VERSION_LT(nid, DTLS1_2_VERSION) && level > 0)
1275
0
                return 0;
1276
0
        }
1277
0
        break;
1278
1279
0
    case SSL_SECOP_COMPRESSION:
1280
0
        if (level >= 2)
1281
0
            return 0;
1282
0
        break;
1283
0
    case SSL_SECOP_TICKET:
1284
0
        if (level >= 3)
1285
0
            return 0;
1286
0
        break;
1287
0
    default:
1288
0
        if (bits < minbits)
1289
0
            return 0;
1290
0
    }
1291
0
    return 1;
1292
0
}
1293
1294
int ssl_security(const SSL_CONNECTION *s, int op, int bits, int nid, void *other)
1295
0
{
1296
0
    return s->cert->sec_cb(SSL_CONNECTION_GET_USER_SSL(s), NULL, op, bits, nid,
1297
0
                           other, s->cert->sec_ex);
1298
0
}
1299
1300
int ssl_ctx_security(const SSL_CTX *ctx, int op, int bits, int nid, void *other)
1301
0
{
1302
0
    return ctx->cert->sec_cb(NULL, ctx, op, bits, nid, other,
1303
0
                             ctx->cert->sec_ex);
1304
0
}
1305
1306
int ssl_cert_lookup_by_nid(int nid, size_t *pidx, SSL_CTX *ctx)
1307
0
{
1308
0
    size_t i;
1309
1310
0
    for (i = 0; i < OSSL_NELEM(ssl_cert_info); i++) {
1311
0
        if (ssl_cert_info[i].nid == nid) {
1312
0
            *pidx = i;
1313
0
            return 1;
1314
0
        }
1315
0
    }
1316
0
    for (i = 0; i < ctx->sigalg_list_len; i++) {
1317
0
        if (ctx->ssl_cert_info[i].nid == nid) {
1318
0
            *pidx = SSL_PKEY_NUM + i;
1319
0
            return 1;
1320
0
        }
1321
0
    }
1322
0
    return 0;
1323
0
}
1324
1325
const SSL_CERT_LOOKUP *ssl_cert_lookup_by_pkey(const EVP_PKEY *pk, size_t *pidx, SSL_CTX *ctx)
1326
0
{
1327
0
    size_t i;
1328
1329
    /* check classic pk types */
1330
0
    for (i = 0; i < OSSL_NELEM(ssl_cert_info); i++) {
1331
0
        const SSL_CERT_LOOKUP *tmp_lu = &ssl_cert_info[i];
1332
1333
0
        if (EVP_PKEY_is_a(pk, OBJ_nid2sn(tmp_lu->nid))
1334
0
            || EVP_PKEY_is_a(pk, OBJ_nid2ln(tmp_lu->nid))) {
1335
0
            if (pidx != NULL)
1336
0
                *pidx = i;
1337
0
            return tmp_lu;
1338
0
        }
1339
0
    }
1340
    /* check provider-loaded pk types */
1341
0
    for (i = 0; i < ctx->sigalg_list_len; i++) {
1342
0
        SSL_CERT_LOOKUP *tmp_lu = &(ctx->ssl_cert_info[i]);
1343
1344
0
        if (EVP_PKEY_is_a(pk, OBJ_nid2sn(tmp_lu->nid))
1345
0
            || EVP_PKEY_is_a(pk, OBJ_nid2ln(tmp_lu->nid))) {
1346
0
            if (pidx != NULL)
1347
0
                *pidx = SSL_PKEY_NUM + i;
1348
0
            return &ctx->ssl_cert_info[i];
1349
0
        }
1350
0
    }
1351
1352
0
    return NULL;
1353
0
}
1354
1355
const SSL_CERT_LOOKUP *ssl_cert_lookup_by_idx(size_t idx, SSL_CTX *ctx)
1356
0
{
1357
0
    if (idx >= (OSSL_NELEM(ssl_cert_info) + ctx->sigalg_list_len))
1358
0
        return NULL;
1359
0
    else if (idx >= (OSSL_NELEM(ssl_cert_info)))
1360
0
        return &(ctx->ssl_cert_info[idx - SSL_PKEY_NUM]);
1361
0
    return &ssl_cert_info[idx];
1362
0
}