Coverage Report

Created: 2024-07-24 06:31

/src/openssl/crypto/x509/x_x509.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 1995-2021 The OpenSSL Project Authors. All Rights Reserved.
3
 *
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 * 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 <stdio.h>
11
#include "internal/cryptlib.h"
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#include <openssl/evp.h>
13
#include <openssl/asn1t.h>
14
#include <openssl/x509.h>
15
#include <openssl/x509v3.h>
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#include "crypto/x509.h"
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18
ASN1_SEQUENCE_enc(X509_CINF, enc, 0) = {
19
        ASN1_EXP_OPT(X509_CINF, version, ASN1_INTEGER, 0),
20
        ASN1_EMBED(X509_CINF, serialNumber, ASN1_INTEGER),
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        ASN1_EMBED(X509_CINF, signature, X509_ALGOR),
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        ASN1_SIMPLE(X509_CINF, issuer, X509_NAME),
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        ASN1_EMBED(X509_CINF, validity, X509_VAL),
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        ASN1_SIMPLE(X509_CINF, subject, X509_NAME),
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        ASN1_SIMPLE(X509_CINF, key, X509_PUBKEY),
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        ASN1_IMP_OPT(X509_CINF, issuerUID, ASN1_BIT_STRING, 1),
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        ASN1_IMP_OPT(X509_CINF, subjectUID, ASN1_BIT_STRING, 2),
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        ASN1_EXP_SEQUENCE_OF_OPT(X509_CINF, extensions, X509_EXTENSION, 3)
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} ASN1_SEQUENCE_END_enc(X509_CINF, X509_CINF)
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IMPLEMENT_ASN1_FUNCTIONS(X509_CINF)
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/* X509 top level structure needs a bit of customisation */
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34
extern void ossl_policy_cache_free(X509_POLICY_CACHE *cache);
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36
static int x509_cb(int operation, ASN1_VALUE **pval, const ASN1_ITEM *it,
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                   void *exarg)
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131k
{
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131k
    X509 *ret = (X509 *)*pval;
40
41
131k
    switch (operation) {
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43
13.6k
    case ASN1_OP_D2I_PRE:
44
13.6k
        CRYPTO_free_ex_data(CRYPTO_EX_INDEX_X509, ret, &ret->ex_data);
45
13.6k
        X509_CERT_AUX_free(ret->aux);
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13.6k
        ASN1_OCTET_STRING_free(ret->skid);
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13.6k
        AUTHORITY_KEYID_free(ret->akid);
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13.6k
        CRL_DIST_POINTS_free(ret->crldp);
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13.6k
        ossl_policy_cache_free(ret->policy_cache);
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13.6k
        GENERAL_NAMES_free(ret->altname);
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13.6k
        NAME_CONSTRAINTS_free(ret->nc);
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13.6k
#ifndef OPENSSL_NO_RFC3779
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13.6k
        sk_IPAddressFamily_pop_free(ret->rfc3779_addr, IPAddressFamily_free);
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13.6k
        ASIdentifiers_free(ret->rfc3779_asid);
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13.6k
#endif
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13.6k
        ASN1_OCTET_STRING_free(ret->distinguishing_id);
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        /* fall through */
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27.3k
    case ASN1_OP_NEW_POST:
61
27.3k
        ret->ex_cached = 0;
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27.3k
        ret->ex_kusage = 0;
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27.3k
        ret->ex_xkusage = 0;
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27.3k
        ret->ex_nscert = 0;
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27.3k
        ret->ex_flags = 0;
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27.3k
        ret->ex_pathlen = -1;
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27.3k
        ret->ex_pcpathlen = -1;
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27.3k
        ret->skid = NULL;
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27.3k
        ret->akid = NULL;
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27.3k
        ret->policy_cache = NULL;
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27.3k
        ret->altname = NULL;
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27.3k
        ret->nc = NULL;
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27.3k
#ifndef OPENSSL_NO_RFC3779
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27.3k
        ret->rfc3779_addr = NULL;
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27.3k
        ret->rfc3779_asid = NULL;
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27.3k
#endif
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27.3k
        ret->distinguishing_id = NULL;
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27.3k
        ret->aux = NULL;
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27.3k
        ret->crldp = NULL;
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27.3k
        if (!CRYPTO_new_ex_data(CRYPTO_EX_INDEX_X509, ret, &ret->ex_data))
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0
            return 0;
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27.3k
        break;
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84
27.3k
    case ASN1_OP_FREE_POST:
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13.6k
        CRYPTO_free_ex_data(CRYPTO_EX_INDEX_X509, ret, &ret->ex_data);
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13.6k
        X509_CERT_AUX_free(ret->aux);
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13.6k
        ASN1_OCTET_STRING_free(ret->skid);
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13.6k
        AUTHORITY_KEYID_free(ret->akid);
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13.6k
        CRL_DIST_POINTS_free(ret->crldp);
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13.6k
        ossl_policy_cache_free(ret->policy_cache);
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13.6k
        GENERAL_NAMES_free(ret->altname);
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13.6k
        NAME_CONSTRAINTS_free(ret->nc);
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13.6k
#ifndef OPENSSL_NO_RFC3779
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13.6k
        sk_IPAddressFamily_pop_free(ret->rfc3779_addr, IPAddressFamily_free);
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13.6k
        ASIdentifiers_free(ret->rfc3779_asid);
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13.6k
#endif
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13.6k
        ASN1_OCTET_STRING_free(ret->distinguishing_id);
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13.6k
        OPENSSL_free(ret->propq);
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13.6k
        break;
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101
0
    case ASN1_OP_DUP_POST:
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0
        {
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0
            X509 *old = exarg;
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105
0
            if (!ossl_x509_set0_libctx(ret, old->libctx, old->propq))
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0
                return 0;
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0
        }
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0
        break;
109
0
    case ASN1_OP_GET0_LIBCTX:
110
0
        {
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0
            OSSL_LIB_CTX **libctx = exarg;
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113
0
            *libctx = ret->libctx;
114
0
        }
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0
        break;
116
117
0
    case ASN1_OP_GET0_PROPQ:
118
0
        {
119
0
            const char **propq = exarg;
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121
0
            *propq = ret->propq;
122
0
        }
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0
        break;
124
125
90.3k
    default:
126
90.3k
        break;
127
131k
    }
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129
131k
    return 1;
130
131k
}
131
132
ASN1_SEQUENCE_ref(X509, x509_cb) = {
133
        ASN1_EMBED(X509, cert_info, X509_CINF),
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        ASN1_EMBED(X509, sig_alg, X509_ALGOR),
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        ASN1_EMBED(X509, signature, ASN1_BIT_STRING)
136
} ASN1_SEQUENCE_END_ref(X509, X509)
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IMPLEMENT_ASN1_FUNCTIONS(X509)
139
IMPLEMENT_ASN1_DUP_FUNCTION(X509)
140
141
/*
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 * This should only be used if the X509 object was embedded inside another
143
 * asn1 object and it needs a libctx to operate.
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 * Use X509_new_ex() instead if possible.
145
 */
146
int ossl_x509_set0_libctx(X509 *x, OSSL_LIB_CTX *libctx, const char *propq)
147
0
{
148
0
    if (x != NULL) {
149
0
        x->libctx = libctx;
150
0
        OPENSSL_free(x->propq);
151
0
        x->propq = NULL;
152
0
        if (propq != NULL) {
153
0
            x->propq = OPENSSL_strdup(propq);
154
0
            if (x->propq == NULL)
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0
                return 0;
156
0
        }
157
0
    }
158
0
    return 1;
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0
}
160
161
X509 *X509_new_ex(OSSL_LIB_CTX *libctx, const char *propq)
162
0
{
163
0
    X509 *cert = NULL;
164
165
0
    cert = (X509 *)ASN1_item_new_ex(X509_it(), libctx, propq);
166
0
    if (!ossl_x509_set0_libctx(cert, libctx, propq)) {
167
0
        X509_free(cert);
168
0
        cert = NULL;
169
0
    }
170
0
    return cert;
171
0
}
172
173
int X509_set_ex_data(X509 *r, int idx, void *arg)
174
0
{
175
0
    return CRYPTO_set_ex_data(&r->ex_data, idx, arg);
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0
}
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178
void *X509_get_ex_data(const X509 *r, int idx)
179
0
{
180
0
    return CRYPTO_get_ex_data(&r->ex_data, idx);
181
0
}
182
183
/*
184
 * X509_AUX ASN1 routines. X509_AUX is the name given to a certificate with
185
 * extra info tagged on the end. Since these functions set how a certificate
186
 * is trusted they should only be used when the certificate comes from a
187
 * reliable source such as local storage.
188
 */
189
190
X509 *d2i_X509_AUX(X509 **a, const unsigned char **pp, long length)
191
0
{
192
0
    const unsigned char *q;
193
0
    X509 *ret;
194
0
    int freeret = 0;
195
196
    /* Save start position */
197
0
    q = *pp;
198
199
0
    if (a == NULL || *a == NULL)
200
0
        freeret = 1;
201
0
    ret = d2i_X509(a, &q, length);
202
    /* If certificate unreadable then forget it */
203
0
    if (ret == NULL)
204
0
        return NULL;
205
    /* update length */
206
0
    length -= q - *pp;
207
0
    if (length > 0 && !d2i_X509_CERT_AUX(&ret->aux, &q, length))
208
0
        goto err;
209
0
    *pp = q;
210
0
    return ret;
211
0
 err:
212
0
    if (freeret) {
213
0
        X509_free(ret);
214
0
        if (a)
215
0
            *a = NULL;
216
0
    }
217
0
    return NULL;
218
0
}
219
220
/*
221
 * Serialize trusted certificate to *pp or just return the required buffer
222
 * length if pp == NULL.  We ultimately want to avoid modifying *pp in the
223
 * error path, but that depends on similar hygiene in lower-level functions.
224
 * Here we avoid compounding the problem.
225
 */
226
static int i2d_x509_aux_internal(const X509 *a, unsigned char **pp)
227
0
{
228
0
    int length, tmplen;
229
0
    unsigned char *start = pp != NULL ? *pp : NULL;
230
231
    /*
232
     * This might perturb *pp on error, but fixing that belongs in i2d_X509()
233
     * not here.  It should be that if a == NULL length is zero, but we check
234
     * both just in case.
235
     */
236
0
    length = i2d_X509(a, pp);
237
0
    if (length <= 0 || a == NULL)
238
0
        return length;
239
240
0
    tmplen = i2d_X509_CERT_AUX(a->aux, pp);
241
0
    if (tmplen < 0) {
242
0
        if (start != NULL)
243
0
            *pp = start;
244
0
        return tmplen;
245
0
    }
246
0
    length += tmplen;
247
248
0
    return length;
249
0
}
250
251
/*
252
 * Serialize trusted certificate to *pp, or just return the required buffer
253
 * length if pp == NULL.
254
 *
255
 * When pp is not NULL, but *pp == NULL, we allocate the buffer, but since
256
 * we're writing two ASN.1 objects back to back, we can't have i2d_X509() do
257
 * the allocation, nor can we allow i2d_X509_CERT_AUX() to increment the
258
 * allocated buffer.
259
 */
260
int i2d_X509_AUX(const X509 *a, unsigned char **pp)
261
0
{
262
0
    int length;
263
0
    unsigned char *tmp;
264
265
    /* Buffer provided by caller */
266
0
    if (pp == NULL || *pp != NULL)
267
0
        return i2d_x509_aux_internal(a, pp);
268
269
    /* Obtain the combined length */
270
0
    if ((length = i2d_x509_aux_internal(a, NULL)) <= 0)
271
0
        return length;
272
273
    /* Allocate requisite combined storage */
274
0
    *pp = tmp = OPENSSL_malloc(length);
275
0
    if (tmp == NULL)
276
0
        return -1;
277
278
    /* Encode, but keep *pp at the originally malloced pointer */
279
0
    length = i2d_x509_aux_internal(a, &tmp);
280
0
    if (length <= 0) {
281
0
        OPENSSL_free(*pp);
282
0
        *pp = NULL;
283
0
    }
284
0
    return length;
285
0
}
286
287
int i2d_re_X509_tbs(X509 *x, unsigned char **pp)
288
0
{
289
0
    x->cert_info.enc.modified = 1;
290
0
    return i2d_X509_CINF(&x->cert_info, pp);
291
0
}
292
293
void X509_get0_signature(const ASN1_BIT_STRING **psig,
294
                         const X509_ALGOR **palg, const X509 *x)
295
0
{
296
0
    if (psig)
297
0
        *psig = &x->signature;
298
0
    if (palg)
299
0
        *palg = &x->sig_alg;
300
0
}
301
302
int X509_get_signature_nid(const X509 *x)
303
0
{
304
0
    return OBJ_obj2nid(x->sig_alg.algorithm);
305
0
}
306
307
void X509_set0_distinguishing_id(X509 *x, ASN1_OCTET_STRING *d_id)
308
0
{
309
0
    ASN1_OCTET_STRING_free(x->distinguishing_id);
310
0
    x->distinguishing_id = d_id;
311
0
}
312
313
ASN1_OCTET_STRING *X509_get0_distinguishing_id(X509 *x)
314
0
{
315
0
    return x->distinguishing_id;
316
0
}