Coverage Report

Created: 2025-06-13 06:58

/src/openssl32/crypto/x509/x509_trust.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 1999-2023 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
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 * in the file LICENSE in the source distribution or at
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 * https://www.openssl.org/source/license.html
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 */
9
10
#include <stdio.h>
11
#include "internal/cryptlib.h"
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#include <openssl/x509v3.h>
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#include "crypto/x509.h"
14
15
static int tr_cmp(const X509_TRUST *const *a, const X509_TRUST *const *b);
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static void trtable_free(X509_TRUST *p);
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18
static int trust_1oidany(X509_TRUST *trust, X509 *x, int flags);
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static int trust_1oid(X509_TRUST *trust, X509 *x, int flags);
20
static int trust_compat(X509_TRUST *trust, X509 *x, int flags);
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22
static int obj_trust(int id, X509 *x, int flags);
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static int (*default_trust) (int id, X509 *x, int flags) = obj_trust;
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/*
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 * WARNING: the following table should be kept in order of trust and without
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 * any gaps so we can just subtract the minimum trust value to get an index
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 * into the table
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 */
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31
static X509_TRUST trstandard[] = {
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    {X509_TRUST_COMPAT, 0, trust_compat, "compatible", 0, NULL},
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    {X509_TRUST_SSL_CLIENT, 0, trust_1oidany, "SSL Client", NID_client_auth,
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     NULL},
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    {X509_TRUST_SSL_SERVER, 0, trust_1oidany, "SSL Server", NID_server_auth,
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     NULL},
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    {X509_TRUST_EMAIL, 0, trust_1oidany, "S/MIME email", NID_email_protect,
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     NULL},
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    {X509_TRUST_OBJECT_SIGN, 0, trust_1oidany, "Object Signer", NID_code_sign,
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     NULL},
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    {X509_TRUST_OCSP_SIGN, 0, trust_1oid, "OCSP responder", NID_OCSP_sign,
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     NULL},
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    {X509_TRUST_OCSP_REQUEST, 0, trust_1oid, "OCSP request", NID_ad_OCSP,
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     NULL},
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    {X509_TRUST_TSA, 0, trust_1oidany, "TSA server", NID_time_stamp, NULL}
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};
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202
#define X509_TRUST_COUNT        OSSL_NELEM(trstandard)
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static STACK_OF(X509_TRUST) *trtable = NULL;
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52
static int tr_cmp(const X509_TRUST *const *a, const X509_TRUST *const *b)
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0
{
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0
    return (*a)->trust - (*b)->trust;
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0
}
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int (*X509_TRUST_set_default(int (*trust) (int, X509 *, int))) (int, X509 *,
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0
                                                                int) {
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0
    int (*oldtrust) (int, X509 *, int);
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0
    oldtrust = default_trust;
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0
    default_trust = trust;
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0
    return oldtrust;
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0
}
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/* Returns X509_TRUST_TRUSTED, X509_TRUST_REJECTED, or X509_TRUST_UNTRUSTED */
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int X509_check_trust(X509 *x, int id, int flags)
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2.51k
{
68
2.51k
    X509_TRUST *pt;
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2.51k
    int idx;
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71
    /* We get this as a default value */
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2.51k
    if (id == X509_TRUST_DEFAULT)
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2.11k
        return obj_trust(NID_anyExtendedKeyUsage, x,
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2.11k
                         flags | X509_TRUST_DO_SS_COMPAT);
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402
    idx = X509_TRUST_get_by_id(id);
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402
    if (idx < 0)
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200
        return default_trust(id, x, flags);
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202
    pt = X509_TRUST_get0(idx);
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202
    return pt->check_trust(pt, x, flags);
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402
}
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int X509_TRUST_get_count(void)
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0
{
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0
    if (!trtable)
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0
        return X509_TRUST_COUNT;
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0
    return sk_X509_TRUST_num(trtable) + X509_TRUST_COUNT;
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0
}
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X509_TRUST *X509_TRUST_get0(int idx)
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202
{
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202
    if (idx < 0)
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0
        return NULL;
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202
    if (idx < (int)X509_TRUST_COUNT)
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202
        return trstandard + idx;
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0
    return sk_X509_TRUST_value(trtable, idx - X509_TRUST_COUNT);
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202
}
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int X509_TRUST_get_by_id(int id)
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802
{
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802
    X509_TRUST tmp;
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802
    int idx;
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103
802
    if ((id >= X509_TRUST_MIN) && (id <= X509_TRUST_MAX))
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602
        return id - X509_TRUST_MIN;
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200
    if (trtable == NULL)
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200
        return -1;
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0
    tmp.trust = id;
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    /* Ideally, this would be done under lock */
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0
    sk_X509_TRUST_sort(trtable);
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0
    idx = sk_X509_TRUST_find(trtable, &tmp);
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0
    if (idx < 0)
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0
        return -1;
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0
    return idx + X509_TRUST_COUNT;
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0
}
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int X509_TRUST_set(int *t, int trust)
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0
{
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0
    if (X509_TRUST_get_by_id(trust) < 0) {
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0
        ERR_raise(ERR_LIB_X509, X509_R_INVALID_TRUST);
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0
        return 0;
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0
    }
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0
    *t = trust;
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0
    return 1;
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0
}
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int X509_TRUST_add(int id, int flags, int (*ck) (X509_TRUST *, X509 *, int),
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                   const char *name, int arg1, void *arg2)
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0
{
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0
    int idx;
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0
    X509_TRUST *trtmp;
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    /*
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     * This is set according to what we change: application can't set it
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     */
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0
    flags &= ~X509_TRUST_DYNAMIC;
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    /* This will always be set for application modified trust entries */
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0
    flags |= X509_TRUST_DYNAMIC_NAME;
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    /* Get existing entry if any */
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0
    idx = X509_TRUST_get_by_id(id);
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    /* Need a new entry */
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0
    if (idx < 0) {
141
0
        if ((trtmp = OPENSSL_malloc(sizeof(*trtmp))) == NULL)
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0
            return 0;
143
0
        trtmp->flags = X509_TRUST_DYNAMIC;
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0
    } else
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0
        trtmp = X509_TRUST_get0(idx);
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147
    /* OPENSSL_free existing name if dynamic */
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0
    if (trtmp->flags & X509_TRUST_DYNAMIC_NAME)
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0
        OPENSSL_free(trtmp->name);
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    /* dup supplied name */
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0
    if ((trtmp->name = OPENSSL_strdup(name)) == NULL)
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0
        goto err;
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    /* Keep the dynamic flag of existing entry */
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0
    trtmp->flags &= X509_TRUST_DYNAMIC;
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    /* Set all other flags */
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0
    trtmp->flags |= flags;
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158
0
    trtmp->trust = id;
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0
    trtmp->check_trust = ck;
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0
    trtmp->arg1 = arg1;
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0
    trtmp->arg2 = arg2;
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    /* If its a new entry manage the dynamic table */
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0
    if (idx < 0) {
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0
        if (trtable == NULL
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0
            && (trtable = sk_X509_TRUST_new(tr_cmp)) == NULL) {
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0
            ERR_raise(ERR_LIB_X509, ERR_R_CRYPTO_LIB);
168
0
            goto err;
169
0
        }
170
0
        if (!sk_X509_TRUST_push(trtable, trtmp)) {
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0
            ERR_raise(ERR_LIB_X509, ERR_R_CRYPTO_LIB);
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0
            goto err;
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0
        }
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0
    }
175
0
    return 1;
176
0
 err:
177
0
    if (idx < 0) {
178
0
        OPENSSL_free(trtmp->name);
179
0
        OPENSSL_free(trtmp);
180
0
    }
181
0
    return 0;
182
0
}
183
184
static void trtable_free(X509_TRUST *p)
185
0
{
186
0
    if (p == NULL)
187
0
        return;
188
0
    if (p->flags & X509_TRUST_DYNAMIC) {
189
0
        if (p->flags & X509_TRUST_DYNAMIC_NAME)
190
0
            OPENSSL_free(p->name);
191
0
        OPENSSL_free(p);
192
0
    }
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0
}
194
195
void X509_TRUST_cleanup(void)
196
0
{
197
0
    sk_X509_TRUST_pop_free(trtable, trtable_free);
198
0
    trtable = NULL;
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0
}
200
201
int X509_TRUST_get_flags(const X509_TRUST *xp)
202
0
{
203
0
    return xp->flags;
204
0
}
205
206
char *X509_TRUST_get0_name(const X509_TRUST *xp)
207
0
{
208
0
    return xp->name;
209
0
}
210
211
int X509_TRUST_get_trust(const X509_TRUST *xp)
212
0
{
213
0
    return xp->trust;
214
0
}
215
216
static int trust_1oidany(X509_TRUST *trust, X509 *x, int flags)
217
0
{
218
    /*
219
     * Declare the chain verified if the desired trust OID is not rejected in
220
     * any auxiliary trust info for this certificate, and the OID is either
221
     * expressly trusted, or else either "anyEKU" is trusted, or the
222
     * certificate is self-signed and X509_TRUST_NO_SS_COMPAT is not set.
223
     */
224
0
    flags |= X509_TRUST_DO_SS_COMPAT | X509_TRUST_OK_ANY_EKU;
225
0
    return obj_trust(trust->arg1, x, flags);
226
0
}
227
228
static int trust_1oid(X509_TRUST *trust, X509 *x, int flags)
229
0
{
230
    /*
231
     * Declare the chain verified only if the desired trust OID is not
232
     * rejected and is expressly trusted.  Neither "anyEKU" nor "compat"
233
     * trust in self-signed certificates apply.
234
     */
235
0
    flags &= ~(X509_TRUST_DO_SS_COMPAT | X509_TRUST_OK_ANY_EKU);
236
0
    return obj_trust(trust->arg1, x, flags);
237
0
}
238
239
static int trust_compat(X509_TRUST *trust, X509 *x, int flags)
240
2.31k
{
241
    /* Call for side-effect of setting EXFLAG_SS for self-signed-certs */
242
2.31k
    if (X509_check_purpose(x, -1, 0) != 1)
243
8
        return X509_TRUST_UNTRUSTED;
244
2.31k
    if ((flags & X509_TRUST_NO_SS_COMPAT) == 0 && (x->ex_flags & EXFLAG_SS))
245
443
        return X509_TRUST_TRUSTED;
246
1.86k
    else
247
1.86k
        return X509_TRUST_UNTRUSTED;
248
2.31k
}
249
250
static int obj_trust(int id, X509 *x, int flags)
251
1.29k
{
252
1.29k
    X509_CERT_AUX *ax = x->aux;
253
1.29k
    int i;
254
255
1.29k
    if (ax != NULL && ax->reject != NULL) {
256
0
        for (i = 0; i < sk_ASN1_OBJECT_num(ax->reject); i++) {
257
0
            ASN1_OBJECT *obj = sk_ASN1_OBJECT_value(ax->reject, i);
258
0
            int nid = OBJ_obj2nid(obj);
259
260
0
            if (nid == id || (nid == NID_anyExtendedKeyUsage &&
261
0
                (flags & X509_TRUST_OK_ANY_EKU)))
262
0
                return X509_TRUST_REJECTED;
263
0
        }
264
0
    }
265
266
1.29k
    if (ax != NULL && ax->trust != NULL) {
267
0
        for (i = 0; i < sk_ASN1_OBJECT_num(ax->trust); i++) {
268
0
            ASN1_OBJECT *obj = sk_ASN1_OBJECT_value(ax->trust, i);
269
0
            int nid = OBJ_obj2nid(obj);
270
271
0
            if (nid == id || (nid == NID_anyExtendedKeyUsage &&
272
0
                (flags & X509_TRUST_OK_ANY_EKU)))
273
0
                return X509_TRUST_TRUSTED;
274
0
        }
275
        /*
276
         * Reject when explicit trust EKU are set and none match.
277
         *
278
         * Returning untrusted is enough for full chains that end in
279
         * self-signed roots, because when explicit trust is specified it
280
         * suppresses the default blanket trust of self-signed objects.
281
         *
282
         * But for partial chains, this is not enough, because absent a similar
283
         * trust-self-signed policy, non matching EKUs are indistinguishable
284
         * from lack of EKU constraints.
285
         *
286
         * Therefore, failure to match any trusted purpose must trigger an
287
         * explicit reject.
288
         */
289
0
        return X509_TRUST_REJECTED;
290
0
    }
291
292
1.29k
    if ((flags & X509_TRUST_DO_SS_COMPAT) == 0)
293
105
        return X509_TRUST_UNTRUSTED;
294
295
    /*
296
     * Not rejected, and there is no list of accepted uses, try compat.
297
     */
298
1.18k
    return trust_compat(NULL, x, flags);
299
1.29k
}