xref: /freebsd/crypto/openssl/crypto/x509/pcy_tree.c (revision f25b8c9fb4f58cf61adb47d7570abe7caa6d385d)
1 /*
2  * Copyright 2004-2025 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/cryptlib.h"
11 #include <openssl/trace.h>
12 #include <openssl/x509.h>
13 #include <openssl/x509v3.h>
14 
15 #include "pcy_local.h"
16 
17 /*
18  * If the maximum number of nodes in the policy tree isn't defined, set it to
19  * a generous default of 1000 nodes.
20  *
21  * Defining this to be zero means unlimited policy tree growth which opens the
22  * door on CVE-2023-0464.
23  */
24 #ifndef OPENSSL_POLICY_TREE_NODES_MAX
25 #define OPENSSL_POLICY_TREE_NODES_MAX 1000
26 #endif
27 
28 static void exnode_free(X509_POLICY_NODE *node);
29 
expected_print(BIO * channel,X509_POLICY_LEVEL * lev,X509_POLICY_NODE * node,int indent)30 static void expected_print(BIO *channel,
31     X509_POLICY_LEVEL *lev, X509_POLICY_NODE *node,
32     int indent)
33 {
34     if ((lev->flags & X509_V_FLAG_INHIBIT_MAP)
35         || !(node->data->flags & POLICY_DATA_FLAG_MAP_MASK))
36         BIO_puts(channel, "  Not Mapped\n");
37     else {
38         int i;
39 
40         STACK_OF(ASN1_OBJECT) *pset = node->data->expected_policy_set;
41         ASN1_OBJECT *oid;
42         BIO_puts(channel, "  Expected: ");
43         for (i = 0; i < sk_ASN1_OBJECT_num(pset); i++) {
44             oid = sk_ASN1_OBJECT_value(pset, i);
45             if (i)
46                 BIO_puts(channel, ", ");
47             i2a_ASN1_OBJECT(channel, oid);
48         }
49         BIO_puts(channel, "\n");
50     }
51 }
52 
tree_print(BIO * channel,char * str,X509_POLICY_TREE * tree,X509_POLICY_LEVEL * curr)53 static void tree_print(BIO *channel,
54     char *str, X509_POLICY_TREE *tree,
55     X509_POLICY_LEVEL *curr)
56 {
57     X509_POLICY_LEVEL *plev;
58 
59     if (!curr)
60         curr = tree->levels + tree->nlevel;
61     else
62         curr++;
63 
64     BIO_printf(channel, "Level print after %s\n", str);
65     BIO_printf(channel, "Printing Up to Level %ld\n",
66         (long)(curr - tree->levels));
67     for (plev = tree->levels; plev != curr; plev++) {
68         int i;
69 
70         BIO_printf(channel, "Level %ld, flags = %x\n",
71             (long)(plev - tree->levels), plev->flags);
72         for (i = 0; i < sk_X509_POLICY_NODE_num(plev->nodes); i++) {
73             X509_POLICY_NODE *node = sk_X509_POLICY_NODE_value(plev->nodes, i);
74 
75             X509_POLICY_NODE_print(channel, node, 2);
76             expected_print(channel, plev, node, 2);
77             BIO_printf(channel, "  Flags: %x\n", node->data->flags);
78         }
79         if (plev->anyPolicy)
80             X509_POLICY_NODE_print(channel, plev->anyPolicy, 2);
81     }
82 }
83 
84 #define TREE_PRINT(str, tree, curr)                             \
85     OSSL_TRACE_BEGIN(X509V3_POLICY)                             \
86     {                                                           \
87         tree_print(trc_out, "before tree_prune()", tree, curr); \
88     }                                                           \
89     OSSL_TRACE_END(X509V3_POLICY)
90 
91 /*-
92  * Return value: <= 0 on error, or positive bit mask:
93  *
94  * X509_PCY_TREE_VALID: valid tree
95  * X509_PCY_TREE_EMPTY: empty tree (including bare TA case)
96  * X509_PCY_TREE_EXPLICIT: explicit policy required
97  */
tree_init(X509_POLICY_TREE ** ptree,STACK_OF (X509)* certs,unsigned int flags)98 static int tree_init(X509_POLICY_TREE **ptree, STACK_OF(X509) *certs,
99     unsigned int flags)
100 {
101     X509_POLICY_TREE *tree;
102     X509_POLICY_LEVEL *level;
103     const X509_POLICY_CACHE *cache;
104     X509_POLICY_DATA *data = NULL;
105     int ret = X509_PCY_TREE_VALID;
106     int n = sk_X509_num(certs) - 1; /* RFC5280 paths omit the TA */
107     int explicit_policy = (flags & X509_V_FLAG_EXPLICIT_POLICY) ? 0 : n + 1;
108     int any_skip = (flags & X509_V_FLAG_INHIBIT_ANY) ? 0 : n + 1;
109     int map_skip = (flags & X509_V_FLAG_INHIBIT_MAP) ? 0 : n + 1;
110     int i;
111 
112     *ptree = NULL;
113 
114     if (n < 0)
115         return X509_PCY_TREE_INTERNAL;
116     /* Can't do anything with just a trust anchor */
117     if (n == 0)
118         return X509_PCY_TREE_EMPTY;
119 
120     /*
121      * First setup the policy cache in all n non-TA certificates, this will be
122      * used in X509_verify_cert() which will invoke the verify callback for all
123      * certificates with invalid policy extensions.
124      */
125     for (i = n - 1; i >= 0; i--) {
126         X509 *x = sk_X509_value(certs, i);
127 
128         /* Call for side-effect of computing hash and caching extensions */
129         X509_check_purpose(x, -1, 0);
130 
131         /* If cache is NULL, likely ENOMEM: return immediately */
132         if (ossl_policy_cache_set(x) == NULL)
133             return X509_PCY_TREE_INTERNAL;
134     }
135 
136     /*
137      * At this point check for invalid policies and required explicit policy.
138      * Note that the explicit_policy counter is a count-down to zero, with the
139      * requirement kicking in if and once it does that.  The counter is
140      * decremented for every non-self-issued certificate in the path, but may
141      * be further reduced by policy constraints in a non-leaf certificate.
142      *
143      * The ultimate policy set is the intersection of all the policies along
144      * the path, if we hit a certificate with an empty policy set, and explicit
145      * policy is required we're done.
146      */
147     for (i = n - 1;
148         i >= 0 && (explicit_policy > 0 || (ret & X509_PCY_TREE_EMPTY) == 0);
149         i--) {
150         X509 *x = sk_X509_value(certs, i);
151         uint32_t ex_flags = X509_get_extension_flags(x);
152 
153         /* All the policies are already cached, we can return early */
154         if (ex_flags & EXFLAG_INVALID_POLICY)
155             return X509_PCY_TREE_INVALID;
156 
157         /* Access the cache which we now know exists */
158         cache = ossl_policy_cache_set(x);
159 
160         if ((ret & X509_PCY_TREE_VALID) && cache->data == NULL)
161             ret = X509_PCY_TREE_EMPTY;
162         if (explicit_policy > 0) {
163             if (!(ex_flags & EXFLAG_SI))
164                 explicit_policy--;
165             if ((cache->explicit_skip >= 0)
166                 && (cache->explicit_skip < explicit_policy))
167                 explicit_policy = cache->explicit_skip;
168         }
169     }
170 
171     if (explicit_policy == 0)
172         ret |= X509_PCY_TREE_EXPLICIT;
173     if ((ret & X509_PCY_TREE_VALID) == 0)
174         return ret;
175 
176     /* If we get this far initialize the tree */
177     if ((tree = OPENSSL_zalloc(sizeof(*tree))) == NULL)
178         return X509_PCY_TREE_INTERNAL;
179 
180     /* Limit the growth of the tree to mitigate CVE-2023-0464 */
181     tree->node_maximum = OPENSSL_POLICY_TREE_NODES_MAX;
182 
183     /*
184      * http://tools.ietf.org/html/rfc5280#section-6.1.2, figure 3.
185      *
186      * The top level is implicitly for the trust anchor with valid expected
187      * policies of anyPolicy.  (RFC 5280 has the TA at depth 0 and the leaf at
188      * depth n, we have the leaf at depth 0 and the TA at depth n).
189      */
190     if ((tree->levels = OPENSSL_zalloc(sizeof(*tree->levels) * (n + 1))) == NULL) {
191         OPENSSL_free(tree);
192         return X509_PCY_TREE_INTERNAL;
193     }
194     tree->nlevel = n + 1;
195     level = tree->levels;
196     if ((data = ossl_policy_data_new(NULL,
197              OBJ_nid2obj(NID_any_policy), 0))
198         == NULL)
199         goto bad_tree;
200     if (ossl_policy_level_add_node(level, data, NULL, tree, 1) == NULL) {
201         ossl_policy_data_free(data);
202         goto bad_tree;
203     }
204 
205     /*
206      * In this pass initialize all the tree levels and whether anyPolicy and
207      * policy mapping are inhibited at each level.
208      */
209     for (i = n - 1; i >= 0; i--) {
210         X509 *x = sk_X509_value(certs, i);
211         uint32_t ex_flags = X509_get_extension_flags(x);
212 
213         /* Access the cache which we now know exists */
214         cache = ossl_policy_cache_set(x);
215 
216         if (!X509_up_ref(x))
217             goto bad_tree;
218 
219         (++level)->cert = x;
220 
221         if (!cache->anyPolicy)
222             level->flags |= X509_V_FLAG_INHIBIT_ANY;
223 
224         /* Determine inhibit any and inhibit map flags */
225         if (any_skip == 0) {
226             /*
227              * Any matching allowed only if certificate is self issued and not
228              * the last in the chain.
229              */
230             if (!(ex_flags & EXFLAG_SI) || (i == 0))
231                 level->flags |= X509_V_FLAG_INHIBIT_ANY;
232         } else {
233             if (!(ex_flags & EXFLAG_SI))
234                 any_skip--;
235             if ((cache->any_skip >= 0) && (cache->any_skip < any_skip))
236                 any_skip = cache->any_skip;
237         }
238 
239         if (map_skip == 0)
240             level->flags |= X509_V_FLAG_INHIBIT_MAP;
241         else {
242             if (!(ex_flags & EXFLAG_SI))
243                 map_skip--;
244             if ((cache->map_skip >= 0) && (cache->map_skip < map_skip))
245                 map_skip = cache->map_skip;
246         }
247     }
248 
249     *ptree = tree;
250     return ret;
251 
252 bad_tree:
253     X509_policy_tree_free(tree);
254     return X509_PCY_TREE_INTERNAL;
255 }
256 
257 /*
258  * Return value: 1 on success, 0 otherwise
259  */
tree_link_matching_nodes(X509_POLICY_LEVEL * curr,X509_POLICY_DATA * data,X509_POLICY_TREE * tree)260 static int tree_link_matching_nodes(X509_POLICY_LEVEL *curr,
261     X509_POLICY_DATA *data,
262     X509_POLICY_TREE *tree)
263 {
264     X509_POLICY_LEVEL *last = curr - 1;
265     int i, matched = 0;
266 
267     /* Iterate through all in nodes linking matches */
268     for (i = 0; i < sk_X509_POLICY_NODE_num(last->nodes); i++) {
269         X509_POLICY_NODE *node = sk_X509_POLICY_NODE_value(last->nodes, i);
270 
271         if (ossl_policy_node_match(last, node, data->valid_policy)) {
272             if (ossl_policy_level_add_node(curr, data, node, tree, 0) == NULL)
273                 return 0;
274             matched = 1;
275         }
276     }
277     if (!matched && last->anyPolicy) {
278         if (ossl_policy_level_add_node(curr, data, last->anyPolicy, tree, 0) == NULL)
279             return 0;
280     }
281     return 1;
282 }
283 
284 /*
285  * This corresponds to RFC3280 6.1.3(d)(1): link any data from
286  * CertificatePolicies onto matching parent or anyPolicy if no match.
287  *
288  * Return value: 1 on success, 0 otherwise.
289  */
tree_link_nodes(X509_POLICY_LEVEL * curr,const X509_POLICY_CACHE * cache,X509_POLICY_TREE * tree)290 static int tree_link_nodes(X509_POLICY_LEVEL *curr,
291     const X509_POLICY_CACHE *cache,
292     X509_POLICY_TREE *tree)
293 {
294     int i;
295 
296     for (i = 0; i < sk_X509_POLICY_DATA_num(cache->data); i++) {
297         X509_POLICY_DATA *data = sk_X509_POLICY_DATA_value(cache->data, i);
298 
299         /* Look for matching nodes in previous level */
300         if (!tree_link_matching_nodes(curr, data, tree))
301             return 0;
302     }
303     return 1;
304 }
305 
306 /*
307  * This corresponds to RFC3280 6.1.3(d)(2): Create new data for any unmatched
308  * policies in the parent and link to anyPolicy.
309  *
310  * Return value: 1 on success, 0 otherwise.
311  */
tree_add_unmatched(X509_POLICY_LEVEL * curr,const X509_POLICY_CACHE * cache,const ASN1_OBJECT * id,X509_POLICY_NODE * node,X509_POLICY_TREE * tree)312 static int tree_add_unmatched(X509_POLICY_LEVEL *curr,
313     const X509_POLICY_CACHE *cache,
314     const ASN1_OBJECT *id,
315     X509_POLICY_NODE *node, X509_POLICY_TREE *tree)
316 {
317     X509_POLICY_DATA *data;
318 
319     if (id == NULL)
320         id = node->data->valid_policy;
321     /*
322      * Create a new node with qualifiers from anyPolicy and id from unmatched
323      * node.
324      */
325     if ((data = ossl_policy_data_new(NULL, id, node_critical(node))) == NULL)
326         return 0;
327 
328     /* Curr may not have anyPolicy */
329     data->qualifier_set = cache->anyPolicy->qualifier_set;
330     data->flags |= POLICY_DATA_FLAG_SHARED_QUALIFIERS;
331     if (ossl_policy_level_add_node(curr, data, node, tree, 1) == NULL) {
332         ossl_policy_data_free(data);
333         return 0;
334     }
335     return 1;
336 }
337 
338 /*
339  * Return value: 1 on success, 0 otherwise.
340  */
tree_link_unmatched(X509_POLICY_LEVEL * curr,const X509_POLICY_CACHE * cache,X509_POLICY_NODE * node,X509_POLICY_TREE * tree)341 static int tree_link_unmatched(X509_POLICY_LEVEL *curr,
342     const X509_POLICY_CACHE *cache,
343     X509_POLICY_NODE *node, X509_POLICY_TREE *tree)
344 {
345     const X509_POLICY_LEVEL *last = curr - 1;
346     int i;
347 
348     if ((last->flags & X509_V_FLAG_INHIBIT_MAP)
349         || !(node->data->flags & POLICY_DATA_FLAG_MAPPED)) {
350         /* If no policy mapping: matched if one child present */
351         if (node->nchild)
352             return 1;
353         if (!tree_add_unmatched(curr, cache, NULL, node, tree))
354             return 0;
355         /* Add it */
356     } else {
357         /* If mapping: matched if one child per expected policy set */
358         STACK_OF(ASN1_OBJECT) *expset = node->data->expected_policy_set;
359         if (node->nchild == sk_ASN1_OBJECT_num(expset))
360             return 1;
361         /* Locate unmatched nodes */
362         for (i = 0; i < sk_ASN1_OBJECT_num(expset); i++) {
363             ASN1_OBJECT *oid = sk_ASN1_OBJECT_value(expset, i);
364             if (ossl_policy_level_find_node(curr, node, oid))
365                 continue;
366             if (!tree_add_unmatched(curr, cache, oid, node, tree))
367                 return 0;
368         }
369     }
370     return 1;
371 }
372 
373 /*
374  * Return value: 1 on success, 0 otherwise
375  */
tree_link_any(X509_POLICY_LEVEL * curr,const X509_POLICY_CACHE * cache,X509_POLICY_TREE * tree)376 static int tree_link_any(X509_POLICY_LEVEL *curr,
377     const X509_POLICY_CACHE *cache,
378     X509_POLICY_TREE *tree)
379 {
380     int i;
381     X509_POLICY_NODE *node;
382     X509_POLICY_LEVEL *last = curr - 1;
383 
384     for (i = 0; i < sk_X509_POLICY_NODE_num(last->nodes); i++) {
385         node = sk_X509_POLICY_NODE_value(last->nodes, i);
386 
387         if (!tree_link_unmatched(curr, cache, node, tree))
388             return 0;
389     }
390     /* Finally add link to anyPolicy */
391     if (last->anyPolicy && ossl_policy_level_add_node(curr, cache->anyPolicy, last->anyPolicy, tree, 0) == NULL)
392         return 0;
393     return 1;
394 }
395 
396 /*-
397  * Prune the tree: delete any child mapped child data on the current level then
398  * proceed up the tree deleting any data with no children. If we ever have no
399  * data on a level we can halt because the tree will be empty.
400  *
401  * Return value: <= 0 error, otherwise one of:
402  *
403  * X509_PCY_TREE_VALID: valid tree
404  * X509_PCY_TREE_EMPTY: empty tree
405  */
tree_prune(X509_POLICY_TREE * tree,X509_POLICY_LEVEL * curr)406 static int tree_prune(X509_POLICY_TREE *tree, X509_POLICY_LEVEL *curr)
407 {
408     STACK_OF(X509_POLICY_NODE) *nodes;
409     X509_POLICY_NODE *node;
410     int i;
411     nodes = curr->nodes;
412     if (curr->flags & X509_V_FLAG_INHIBIT_MAP) {
413         for (i = sk_X509_POLICY_NODE_num(nodes) - 1; i >= 0; i--) {
414             node = sk_X509_POLICY_NODE_value(nodes, i);
415             /* Delete any mapped data: see RFC3280 XXXX */
416             if (node->data->flags & POLICY_DATA_FLAG_MAP_MASK) {
417                 node->parent->nchild--;
418                 OPENSSL_free(node);
419                 (void)sk_X509_POLICY_NODE_delete(nodes, i);
420             }
421         }
422     }
423 
424     for (;;) {
425         --curr;
426         nodes = curr->nodes;
427         for (i = sk_X509_POLICY_NODE_num(nodes) - 1; i >= 0; i--) {
428             node = sk_X509_POLICY_NODE_value(nodes, i);
429             if (node->nchild == 0) {
430                 node->parent->nchild--;
431                 OPENSSL_free(node);
432                 (void)sk_X509_POLICY_NODE_delete(nodes, i);
433             }
434         }
435         if (curr->anyPolicy && !curr->anyPolicy->nchild) {
436             if (curr->anyPolicy->parent)
437                 curr->anyPolicy->parent->nchild--;
438             OPENSSL_free(curr->anyPolicy);
439             curr->anyPolicy = NULL;
440         }
441         if (curr == tree->levels) {
442             /* If we zapped anyPolicy at top then tree is empty */
443             if (!curr->anyPolicy)
444                 return X509_PCY_TREE_EMPTY;
445             break;
446         }
447     }
448     return X509_PCY_TREE_VALID;
449 }
450 
451 /*
452  * Return value: 1 on success, 0 otherwise.
453  */
tree_add_auth_node(STACK_OF (X509_POLICY_NODE)** pnodes,X509_POLICY_NODE * pcy)454 static int tree_add_auth_node(STACK_OF(X509_POLICY_NODE) **pnodes,
455     X509_POLICY_NODE *pcy)
456 {
457     if (*pnodes == NULL && (*pnodes = ossl_policy_node_cmp_new()) == NULL)
458         return 0;
459     if (sk_X509_POLICY_NODE_find(*pnodes, pcy) >= 0)
460         return 1;
461     return sk_X509_POLICY_NODE_push(*pnodes, pcy) != 0;
462 }
463 
464 #define TREE_CALC_FAILURE 0
465 #define TREE_CALC_OK_NOFREE 1
466 #define TREE_CALC_OK_DOFREE 2
467 
468 /*-
469  * Calculate the authority set based on policy tree. The 'pnodes' parameter is
470  * used as a store for the set of policy nodes used to calculate the user set.
471  * If the authority set is not anyPolicy then pnodes will just point to the
472  * authority set. If however the authority set is anyPolicy then the set of
473  * valid policies (other than anyPolicy) is store in pnodes.
474  *
475  * Return value:
476  *  TREE_CALC_FAILURE on failure,
477  *  TREE_CALC_OK_NOFREE on success and pnodes need not be freed,
478  *  TREE_CALC_OK_DOFREE on success and pnodes needs to be freed
479  */
tree_calculate_authority_set(X509_POLICY_TREE * tree,STACK_OF (X509_POLICY_NODE)** pnodes)480 static int tree_calculate_authority_set(X509_POLICY_TREE *tree,
481     STACK_OF(X509_POLICY_NODE) **pnodes)
482 {
483     X509_POLICY_LEVEL *curr;
484     X509_POLICY_NODE *node, *anyptr;
485     STACK_OF(X509_POLICY_NODE) **addnodes;
486     int i, j;
487     curr = tree->levels + tree->nlevel - 1;
488 
489     /* If last level contains anyPolicy set is anyPolicy */
490     if (curr->anyPolicy) {
491         if (!tree_add_auth_node(&tree->auth_policies, curr->anyPolicy))
492             return TREE_CALC_FAILURE;
493         addnodes = pnodes;
494     } else
495         /* Add policies to authority set */
496         addnodes = &tree->auth_policies;
497 
498     curr = tree->levels;
499     for (i = 1; i < tree->nlevel; i++) {
500         /*
501          * If no anyPolicy node on this level it can't appear on lower
502          * levels so end search.
503          */
504         if ((anyptr = curr->anyPolicy) == NULL)
505             break;
506         curr++;
507         for (j = 0; j < sk_X509_POLICY_NODE_num(curr->nodes); j++) {
508             node = sk_X509_POLICY_NODE_value(curr->nodes, j);
509             if ((node->parent == anyptr)
510                 && !tree_add_auth_node(addnodes, node)) {
511                 if (addnodes == pnodes) {
512                     sk_X509_POLICY_NODE_free(*pnodes);
513                     *pnodes = NULL;
514                 }
515                 return TREE_CALC_FAILURE;
516             }
517         }
518     }
519     if (addnodes == pnodes)
520         return TREE_CALC_OK_DOFREE;
521 
522     *pnodes = tree->auth_policies;
523     return TREE_CALC_OK_NOFREE;
524 }
525 
526 /*
527  * Return value: 1 on success, 0 otherwise.
528  */
tree_calculate_user_set(X509_POLICY_TREE * tree,STACK_OF (ASN1_OBJECT)* policy_oids,STACK_OF (X509_POLICY_NODE)* auth_nodes)529 static int tree_calculate_user_set(X509_POLICY_TREE *tree,
530     STACK_OF(ASN1_OBJECT) *policy_oids,
531     STACK_OF(X509_POLICY_NODE) *auth_nodes)
532 {
533     int i;
534     X509_POLICY_NODE *node;
535     ASN1_OBJECT *oid;
536     X509_POLICY_NODE *anyPolicy;
537     X509_POLICY_DATA *extra;
538 
539     /*
540      * Check if anyPolicy present in authority constrained policy set: this
541      * will happen if it is a leaf node.
542      */
543     if (sk_ASN1_OBJECT_num(policy_oids) <= 0)
544         return 1;
545 
546     anyPolicy = tree->levels[tree->nlevel - 1].anyPolicy;
547 
548     for (i = 0; i < sk_ASN1_OBJECT_num(policy_oids); i++) {
549         oid = sk_ASN1_OBJECT_value(policy_oids, i);
550         if (OBJ_obj2nid(oid) == NID_any_policy) {
551             tree->flags |= POLICY_FLAG_ANY_POLICY;
552             return 1;
553         }
554     }
555 
556     for (i = 0; i < sk_ASN1_OBJECT_num(policy_oids); i++) {
557         oid = sk_ASN1_OBJECT_value(policy_oids, i);
558         node = ossl_policy_tree_find_sk(auth_nodes, oid);
559         if (!node) {
560             if (!anyPolicy)
561                 continue;
562             /*
563              * Create a new node with policy ID from user set and qualifiers
564              * from anyPolicy.
565              */
566             extra = ossl_policy_data_new(NULL, oid, node_critical(anyPolicy));
567             if (extra == NULL)
568                 return 0;
569             extra->qualifier_set = anyPolicy->data->qualifier_set;
570             extra->flags = POLICY_DATA_FLAG_SHARED_QUALIFIERS
571                 | POLICY_DATA_FLAG_EXTRA_NODE;
572             node = ossl_policy_level_add_node(NULL, extra, anyPolicy->parent,
573                 tree, 1);
574             if (node == NULL) {
575                 ossl_policy_data_free(extra);
576                 return 0;
577             }
578         }
579         if (!tree->user_policies) {
580             tree->user_policies = sk_X509_POLICY_NODE_new_null();
581             if (!tree->user_policies) {
582                 exnode_free(node);
583                 return 0;
584             }
585         }
586         if (!sk_X509_POLICY_NODE_push(tree->user_policies, node)) {
587             exnode_free(node);
588             return 0;
589         }
590     }
591     return 1;
592 }
593 
594 /*-
595  * Return value: <= 0 error, otherwise one of:
596  *  X509_PCY_TREE_VALID: valid tree
597  *  X509_PCY_TREE_EMPTY: empty tree
598  * (see tree_prune()).
599  */
tree_evaluate(X509_POLICY_TREE * tree)600 static int tree_evaluate(X509_POLICY_TREE *tree)
601 {
602     int ret, i;
603     X509_POLICY_LEVEL *curr = tree->levels + 1;
604     const X509_POLICY_CACHE *cache;
605 
606     for (i = 1; i < tree->nlevel; i++, curr++) {
607         cache = ossl_policy_cache_set(curr->cert);
608         if (!tree_link_nodes(curr, cache, tree))
609             return X509_PCY_TREE_INTERNAL;
610 
611         if (!(curr->flags & X509_V_FLAG_INHIBIT_ANY)
612             && !tree_link_any(curr, cache, tree))
613             return X509_PCY_TREE_INTERNAL;
614         TREE_PRINT("before tree_prune()", tree, curr);
615         ret = tree_prune(tree, curr);
616         if (ret != X509_PCY_TREE_VALID)
617             return ret;
618     }
619     return X509_PCY_TREE_VALID;
620 }
621 
exnode_free(X509_POLICY_NODE * node)622 static void exnode_free(X509_POLICY_NODE *node)
623 {
624     if (node->data && (node->data->flags & POLICY_DATA_FLAG_EXTRA_NODE))
625         OPENSSL_free(node);
626 }
627 
X509_policy_tree_free(X509_POLICY_TREE * tree)628 void X509_policy_tree_free(X509_POLICY_TREE *tree)
629 {
630     X509_POLICY_LEVEL *curr;
631     int i;
632 
633     if (!tree)
634         return;
635 
636     sk_X509_POLICY_NODE_free(tree->auth_policies);
637     sk_X509_POLICY_NODE_pop_free(tree->user_policies, exnode_free);
638 
639     for (i = 0, curr = tree->levels; i < tree->nlevel; i++, curr++) {
640         X509_free(curr->cert);
641         sk_X509_POLICY_NODE_pop_free(curr->nodes, ossl_policy_node_free);
642         ossl_policy_node_free(curr->anyPolicy);
643     }
644 
645     sk_X509_POLICY_DATA_pop_free(tree->extra_data, ossl_policy_data_free);
646     OPENSSL_free(tree->levels);
647     OPENSSL_free(tree);
648 }
649 
650 /*-
651  * Application policy checking function.
652  * Return codes:
653  *  X509_PCY_TREE_FAILURE:  Failure to satisfy explicit policy
654  *  X509_PCY_TREE_INVALID:  Inconsistent or invalid extensions
655  *  X509_PCY_TREE_INTERNAL: Internal error, most likely malloc
656  *  X509_PCY_TREE_VALID:    Success (null tree if empty or bare TA)
657  */
X509_policy_check(X509_POLICY_TREE ** ptree,int * pexplicit_policy,STACK_OF (X509)* certs,STACK_OF (ASN1_OBJECT)* policy_oids,unsigned int flags)658 int X509_policy_check(X509_POLICY_TREE **ptree, int *pexplicit_policy,
659     STACK_OF(X509) *certs,
660     STACK_OF(ASN1_OBJECT) *policy_oids, unsigned int flags)
661 {
662     int init_ret;
663     int ret;
664     int calc_ret;
665     X509_POLICY_TREE *tree = NULL;
666     STACK_OF(X509_POLICY_NODE) *nodes, *auth_nodes = NULL;
667 
668     *ptree = NULL;
669     *pexplicit_policy = 0;
670     init_ret = tree_init(&tree, certs, flags);
671 
672     if (init_ret <= 0)
673         return init_ret;
674 
675     if ((init_ret & X509_PCY_TREE_EXPLICIT) == 0) {
676         if (init_ret & X509_PCY_TREE_EMPTY) {
677             X509_policy_tree_free(tree);
678             return X509_PCY_TREE_VALID;
679         }
680     } else {
681         *pexplicit_policy = 1;
682         /* Tree empty and requireExplicit True: Error */
683         if (init_ret & X509_PCY_TREE_EMPTY)
684             return X509_PCY_TREE_FAILURE;
685     }
686 
687     ret = tree_evaluate(tree);
688     TREE_PRINT("tree_evaluate()", tree, NULL);
689     if (ret <= 0)
690         goto error;
691 
692     if (ret == X509_PCY_TREE_EMPTY) {
693         X509_policy_tree_free(tree);
694         if (init_ret & X509_PCY_TREE_EXPLICIT)
695             return X509_PCY_TREE_FAILURE;
696         return X509_PCY_TREE_VALID;
697     }
698 
699     /* Tree is not empty: continue */
700 
701     if ((calc_ret = tree_calculate_authority_set(tree, &auth_nodes)) == 0)
702         goto error;
703     sk_X509_POLICY_NODE_sort(auth_nodes);
704     ret = tree_calculate_user_set(tree, policy_oids, auth_nodes);
705     if (calc_ret == TREE_CALC_OK_DOFREE)
706         sk_X509_POLICY_NODE_free(auth_nodes);
707     if (!ret)
708         goto error;
709 
710     *ptree = tree;
711 
712     if (init_ret & X509_PCY_TREE_EXPLICIT) {
713         nodes = X509_policy_tree_get0_user_policies(tree);
714         if (sk_X509_POLICY_NODE_num(nodes) <= 0)
715             return X509_PCY_TREE_FAILURE;
716     }
717     return X509_PCY_TREE_VALID;
718 
719 error:
720     X509_policy_tree_free(tree);
721     return X509_PCY_TREE_INTERNAL;
722 }
723