1 /*
2 * Copyright 2019-2025 The OpenSSL Project Authors. All Rights Reserved.
3 * Copyright (c) 2019, 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 <string.h>
12 #include <stdio.h>
13 #include <stdarg.h>
14 #include <openssl/crypto.h>
15 #include "internal/core.h"
16 #include "internal/property.h"
17 #include "internal/provider.h"
18 #include "internal/tsan_assist.h"
19 #include "crypto/ctype.h"
20 #include <openssl/lhash.h>
21 #include <openssl/rand.h>
22 #include <openssl/trace.h>
23 #include "internal/thread_once.h"
24 #include "crypto/lhash.h"
25 #include "crypto/sparse_array.h"
26 #include "property_local.h"
27 #include "crypto/context.h"
28
29 /*
30 * The number of elements in the query cache before we initiate a flush.
31 * If reducing this, also ensure the stochastic test in test/property_test.c
32 * isn't likely to fail.
33 */
34 #define IMPL_CACHE_FLUSH_THRESHOLD 500
35
36 typedef struct {
37 void *method;
38 int (*up_ref)(void *);
39 void (*free)(void *);
40 } METHOD;
41
42 typedef struct {
43 const OSSL_PROVIDER *provider;
44 OSSL_PROPERTY_LIST *properties;
45 METHOD method;
46 } IMPLEMENTATION;
47
48 DEFINE_STACK_OF(IMPLEMENTATION)
49
50 typedef struct {
51 const OSSL_PROVIDER *provider;
52 const char *query;
53 METHOD method;
54 char body[1];
55 } QUERY;
56
57 DEFINE_LHASH_OF_EX(QUERY);
58
59 typedef struct {
60 int nid;
61 STACK_OF(IMPLEMENTATION) *impls;
62 LHASH_OF(QUERY) *cache;
63 } ALGORITHM;
64
65 struct ossl_method_store_st {
66 OSSL_LIB_CTX *ctx;
67 SPARSE_ARRAY_OF(ALGORITHM) *algs;
68 /*
69 * Lock to protect the |algs| array from concurrent writing, when
70 * individual implementations or queries are inserted. This is used
71 * by the appropriate functions here.
72 */
73 CRYPTO_RWLOCK *lock;
74 /*
75 * Lock to reserve the whole store. This is used when fetching a set
76 * of algorithms, via these functions, found in crypto/core_fetch.c:
77 * ossl_method_construct_reserve_store()
78 * ossl_method_construct_unreserve_store()
79 */
80 CRYPTO_RWLOCK *biglock;
81
82 /* query cache specific values */
83
84 /* Count of the query cache entries for all algs */
85 size_t cache_nelem;
86
87 /* Flag: 1 if query cache entries for all algs need flushing */
88 int cache_need_flush;
89 };
90
91 typedef struct {
92 LHASH_OF(QUERY) *cache;
93 size_t nelem;
94 uint32_t seed;
95 unsigned char using_global_seed;
96 } IMPL_CACHE_FLUSH;
97
98 DEFINE_SPARSE_ARRAY_OF(ALGORITHM);
99
100 DEFINE_STACK_OF(ALGORITHM)
101
102 typedef struct ossl_global_properties_st {
103 OSSL_PROPERTY_LIST *list;
104 #ifndef FIPS_MODULE
105 unsigned int no_mirrored : 1;
106 #endif
107 } OSSL_GLOBAL_PROPERTIES;
108
109 static void ossl_method_cache_flush_alg(OSSL_METHOD_STORE *store,
110 ALGORITHM *alg);
111 static void ossl_method_cache_flush(OSSL_METHOD_STORE *store, int nid);
112
113 /* Global properties are stored per library context */
ossl_ctx_global_properties_free(void * vglobp)114 void ossl_ctx_global_properties_free(void *vglobp)
115 {
116 OSSL_GLOBAL_PROPERTIES *globp = vglobp;
117
118 if (globp != NULL) {
119 ossl_property_free(globp->list);
120 OPENSSL_free(globp);
121 }
122 }
123
ossl_ctx_global_properties_new(OSSL_LIB_CTX * ctx)124 void *ossl_ctx_global_properties_new(OSSL_LIB_CTX *ctx)
125 {
126 return OPENSSL_zalloc(sizeof(OSSL_GLOBAL_PROPERTIES));
127 }
128
ossl_ctx_global_properties(OSSL_LIB_CTX * libctx,ossl_unused int loadconfig)129 OSSL_PROPERTY_LIST **ossl_ctx_global_properties(OSSL_LIB_CTX *libctx,
130 ossl_unused int loadconfig)
131 {
132 OSSL_GLOBAL_PROPERTIES *globp;
133
134 #if !defined(FIPS_MODULE) && !defined(OPENSSL_NO_AUTOLOAD_CONFIG)
135 if (loadconfig && !OPENSSL_init_crypto(OPENSSL_INIT_LOAD_CONFIG, NULL))
136 return NULL;
137 #endif
138 globp = ossl_lib_ctx_get_data(libctx, OSSL_LIB_CTX_GLOBAL_PROPERTIES);
139
140 return globp != NULL ? &globp->list : NULL;
141 }
142
143 #ifndef FIPS_MODULE
ossl_global_properties_no_mirrored(OSSL_LIB_CTX * libctx)144 int ossl_global_properties_no_mirrored(OSSL_LIB_CTX *libctx)
145 {
146 OSSL_GLOBAL_PROPERTIES *globp
147 = ossl_lib_ctx_get_data(libctx, OSSL_LIB_CTX_GLOBAL_PROPERTIES);
148
149 return globp != NULL && globp->no_mirrored ? 1 : 0;
150 }
151
ossl_global_properties_stop_mirroring(OSSL_LIB_CTX * libctx)152 void ossl_global_properties_stop_mirroring(OSSL_LIB_CTX *libctx)
153 {
154 OSSL_GLOBAL_PROPERTIES *globp
155 = ossl_lib_ctx_get_data(libctx, OSSL_LIB_CTX_GLOBAL_PROPERTIES);
156
157 if (globp != NULL)
158 globp->no_mirrored = 1;
159 }
160 #endif
161
ossl_method_up_ref(METHOD * method)162 static int ossl_method_up_ref(METHOD *method)
163 {
164 return (*method->up_ref)(method->method);
165 }
166
ossl_method_free(METHOD * method)167 static void ossl_method_free(METHOD *method)
168 {
169 (*method->free)(method->method);
170 }
171
ossl_property_read_lock(OSSL_METHOD_STORE * p)172 static __owur int ossl_property_read_lock(OSSL_METHOD_STORE *p)
173 {
174 return p != NULL ? CRYPTO_THREAD_read_lock(p->lock) : 0;
175 }
176
ossl_property_write_lock(OSSL_METHOD_STORE * p)177 static __owur int ossl_property_write_lock(OSSL_METHOD_STORE *p)
178 {
179 return p != NULL ? CRYPTO_THREAD_write_lock(p->lock) : 0;
180 }
181
ossl_property_unlock(OSSL_METHOD_STORE * p)182 static int ossl_property_unlock(OSSL_METHOD_STORE *p)
183 {
184 return p != 0 ? CRYPTO_THREAD_unlock(p->lock) : 0;
185 }
186
query_hash(const QUERY * a)187 static unsigned long query_hash(const QUERY *a)
188 {
189 return OPENSSL_LH_strhash(a->query);
190 }
191
query_cmp(const QUERY * a,const QUERY * b)192 static int query_cmp(const QUERY *a, const QUERY *b)
193 {
194 int res = strcmp(a->query, b->query);
195
196 if (res == 0 && a->provider != NULL && b->provider != NULL)
197 res = b->provider > a->provider ? 1
198 : b->provider < a->provider ? -1
199 : 0;
200 return res;
201 }
202
impl_free(IMPLEMENTATION * impl)203 static void impl_free(IMPLEMENTATION *impl)
204 {
205 if (impl != NULL) {
206 ossl_method_free(&impl->method);
207 OPENSSL_free(impl);
208 }
209 }
210
impl_cache_free(QUERY * elem)211 static void impl_cache_free(QUERY *elem)
212 {
213 if (elem != NULL) {
214 ossl_method_free(&elem->method);
215 OPENSSL_free(elem);
216 }
217 }
218
impl_cache_flush_alg(ossl_uintmax_t idx,ALGORITHM * alg)219 static void impl_cache_flush_alg(ossl_uintmax_t idx, ALGORITHM *alg)
220 {
221 lh_QUERY_doall(alg->cache, &impl_cache_free);
222 lh_QUERY_flush(alg->cache);
223 }
224
alg_cleanup(ossl_uintmax_t idx,ALGORITHM * a,void * arg)225 static void alg_cleanup(ossl_uintmax_t idx, ALGORITHM *a, void *arg)
226 {
227 OSSL_METHOD_STORE *store = arg;
228
229 if (a != NULL) {
230 sk_IMPLEMENTATION_pop_free(a->impls, &impl_free);
231 lh_QUERY_doall(a->cache, &impl_cache_free);
232 lh_QUERY_free(a->cache);
233 OPENSSL_free(a);
234 }
235 if (store != NULL)
236 ossl_sa_ALGORITHM_set(store->algs, idx, NULL);
237 }
238
239 /*
240 * The OSSL_LIB_CTX param here allows access to underlying property data needed
241 * for computation
242 */
ossl_method_store_new(OSSL_LIB_CTX * ctx)243 OSSL_METHOD_STORE *ossl_method_store_new(OSSL_LIB_CTX *ctx)
244 {
245 OSSL_METHOD_STORE *res;
246
247 res = OPENSSL_zalloc(sizeof(*res));
248 if (res != NULL) {
249 res->ctx = ctx;
250 if ((res->algs = ossl_sa_ALGORITHM_new()) == NULL
251 || (res->lock = CRYPTO_THREAD_lock_new()) == NULL
252 || (res->biglock = CRYPTO_THREAD_lock_new()) == NULL) {
253 ossl_method_store_free(res);
254 return NULL;
255 }
256 }
257 return res;
258 }
259
ossl_method_store_free(OSSL_METHOD_STORE * store)260 void ossl_method_store_free(OSSL_METHOD_STORE *store)
261 {
262 if (store != NULL) {
263 if (store->algs != NULL)
264 ossl_sa_ALGORITHM_doall_arg(store->algs, &alg_cleanup, store);
265 ossl_sa_ALGORITHM_free(store->algs);
266 CRYPTO_THREAD_lock_free(store->lock);
267 CRYPTO_THREAD_lock_free(store->biglock);
268 OPENSSL_free(store);
269 }
270 }
271
ossl_method_lock_store(OSSL_METHOD_STORE * store)272 int ossl_method_lock_store(OSSL_METHOD_STORE *store)
273 {
274 return store != NULL ? CRYPTO_THREAD_write_lock(store->biglock) : 0;
275 }
276
ossl_method_unlock_store(OSSL_METHOD_STORE * store)277 int ossl_method_unlock_store(OSSL_METHOD_STORE *store)
278 {
279 return store != NULL ? CRYPTO_THREAD_unlock(store->biglock) : 0;
280 }
281
ossl_method_store_retrieve(OSSL_METHOD_STORE * store,int nid)282 static ALGORITHM *ossl_method_store_retrieve(OSSL_METHOD_STORE *store, int nid)
283 {
284 return ossl_sa_ALGORITHM_get(store->algs, nid);
285 }
286
ossl_method_store_insert(OSSL_METHOD_STORE * store,ALGORITHM * alg)287 static int ossl_method_store_insert(OSSL_METHOD_STORE *store, ALGORITHM *alg)
288 {
289 return ossl_sa_ALGORITHM_set(store->algs, alg->nid, alg);
290 }
291
292 /**
293 * @brief Adds a method to the specified method store.
294 *
295 * This function adds a new method to the provided method store, associating it
296 * with a specified id, properties, and provider. The method is stored with
297 * reference count and destruction callbacks.
298 *
299 * @param store Pointer to the OSSL_METHOD_STORE where the method will be added.
300 * Must be non-null.
301 * @param prov Pointer to the OSSL_PROVIDER for the provider of the method.
302 * Must be non-null.
303 * @param nid (identifier) associated with the method, must be > 0
304 * @param properties String containing properties of the method.
305 * @param method Pointer to the method to be added.
306 * @param method_up_ref Function pointer for incrementing the method ref count.
307 * @param method_destruct Function pointer for destroying the method.
308 *
309 * @return 1 if the method is successfully added, 0 on failure.
310 *
311 * If tracing is enabled, a message is printed indicating that the method is
312 * being added to the method store.
313 *
314 * NOTE: The nid parameter here is _not_ a nid in the sense of the NID_* macros.
315 * It is an internal unique identifier.
316 */
ossl_method_store_add(OSSL_METHOD_STORE * store,const OSSL_PROVIDER * prov,int nid,const char * properties,void * method,int (* method_up_ref)(void *),void (* method_destruct)(void *))317 int ossl_method_store_add(OSSL_METHOD_STORE *store, const OSSL_PROVIDER *prov,
318 int nid, const char *properties, void *method,
319 int (*method_up_ref)(void *),
320 void (*method_destruct)(void *))
321 {
322 ALGORITHM *alg = NULL;
323 IMPLEMENTATION *impl;
324 int ret = 0;
325 int i;
326
327 if (nid <= 0 || method == NULL || store == NULL)
328 return 0;
329
330 if (properties == NULL)
331 properties = "";
332
333 if (!ossl_assert(prov != NULL))
334 return 0;
335
336 /* Create new entry */
337 impl = OPENSSL_malloc(sizeof(*impl));
338 if (impl == NULL)
339 return 0;
340 impl->method.method = method;
341 impl->method.up_ref = method_up_ref;
342 impl->method.free = method_destruct;
343 if (!ossl_method_up_ref(&impl->method)) {
344 OPENSSL_free(impl);
345 return 0;
346 }
347 impl->provider = prov;
348
349 /* Insert into the hash table if required */
350 if (!ossl_property_write_lock(store)) {
351 impl_free(impl);
352 return 0;
353 }
354
355 /*
356 * Flush the alg cache of any implementation that already exists
357 * for this id.
358 * This is done to ensure that on the next lookup we go through the
359 * provider comparison in ossl_method_store_fetch. If we don't do this
360 * then this new method won't be given a chance to get selected.
361 * NOTE: This doesn't actually remove the method from the backing store
362 * It just ensures that we query the backing store when (re)-adding a
363 * method to the algorithm cache, in case the one selected by the next
364 * query selects a different implementation
365 */
366 ossl_method_cache_flush(store, nid);
367
368 /*
369 * Parse the properties associated with this method, and convert it to a
370 * property list stored against the implementation for later comparison
371 * during fetch operations
372 */
373 if ((impl->properties = ossl_prop_defn_get(store->ctx, properties)) == NULL) {
374 impl->properties = ossl_parse_property(store->ctx, properties);
375 if (impl->properties == NULL)
376 goto err;
377 if (!ossl_prop_defn_set(store->ctx, properties, &impl->properties)) {
378 ossl_property_free(impl->properties);
379 impl->properties = NULL;
380 goto err;
381 }
382 }
383
384 /*
385 * Check if we have an algorithm cache already for this nid. If so use
386 * it, otherwise, create it, and insert it into the store
387 */
388 alg = ossl_method_store_retrieve(store, nid);
389 if (alg == NULL) {
390 if ((alg = OPENSSL_zalloc(sizeof(*alg))) == NULL
391 || (alg->impls = sk_IMPLEMENTATION_new_null()) == NULL
392 || (alg->cache = lh_QUERY_new(&query_hash, &query_cmp)) == NULL)
393 goto err;
394 alg->nid = nid;
395 if (!ossl_method_store_insert(store, alg))
396 goto err;
397 OSSL_TRACE2(QUERY, "Inserted an alg with nid %d into the store %p\n", nid, (void *)store);
398 }
399
400 /* Push onto stack if there isn't one there already */
401 for (i = 0; i < sk_IMPLEMENTATION_num(alg->impls); i++) {
402 const IMPLEMENTATION *tmpimpl = sk_IMPLEMENTATION_value(alg->impls, i);
403
404 if (tmpimpl->provider == impl->provider
405 && tmpimpl->properties == impl->properties)
406 break;
407 }
408
409 if (i == sk_IMPLEMENTATION_num(alg->impls)
410 && sk_IMPLEMENTATION_push(alg->impls, impl)) {
411 ret = 1;
412 #ifndef FIPS_MODULE
413 OSSL_TRACE_BEGIN(QUERY) {
414 BIO_printf(trc_out, "Adding to method store "
415 "nid: %d\nproperties: %s\nprovider: %s\n",
416 nid, properties,
417 ossl_provider_name(prov) == NULL ? "none" :
418 ossl_provider_name(prov));
419 } OSSL_TRACE_END(QUERY);
420 #endif
421 }
422 ossl_property_unlock(store);
423 if (ret == 0)
424 impl_free(impl);
425 return ret;
426
427 err:
428 ossl_property_unlock(store);
429 alg_cleanup(0, alg, NULL);
430 impl_free(impl);
431 return 0;
432 }
433
ossl_method_store_remove(OSSL_METHOD_STORE * store,int nid,const void * method)434 int ossl_method_store_remove(OSSL_METHOD_STORE *store, int nid,
435 const void *method)
436 {
437 ALGORITHM *alg = NULL;
438 int i;
439
440 if (nid <= 0 || method == NULL || store == NULL)
441 return 0;
442
443 if (!ossl_property_write_lock(store))
444 return 0;
445 ossl_method_cache_flush(store, nid);
446 alg = ossl_method_store_retrieve(store, nid);
447 if (alg == NULL) {
448 ossl_property_unlock(store);
449 return 0;
450 }
451
452 /*
453 * A sorting find then a delete could be faster but these stacks should be
454 * relatively small, so we avoid the overhead. Sorting could also surprise
455 * users when result orderings change (even though they are not guaranteed).
456 */
457 for (i = 0; i < sk_IMPLEMENTATION_num(alg->impls); i++) {
458 IMPLEMENTATION *impl = sk_IMPLEMENTATION_value(alg->impls, i);
459
460 if (impl->method.method == method) {
461 impl_free(impl);
462 (void)sk_IMPLEMENTATION_delete(alg->impls, i);
463 ossl_property_unlock(store);
464 return 1;
465 }
466 }
467 ossl_property_unlock(store);
468 return 0;
469 }
470
471 struct alg_cleanup_by_provider_data_st {
472 OSSL_METHOD_STORE *store;
473 const OSSL_PROVIDER *prov;
474 };
475
476 /**
477 * @brief Cleans up implementations of an algorithm associated with a provider.
478 *
479 * This function removes all implementations of a specified algorithm that are
480 * associated with a given provider. The function walks through the stack of
481 * implementations backwards to handle deletions without affecting indexing.
482 *
483 * @param idx Index of the algorithm (unused in this function).
484 * @param alg Pointer to the ALGORITHM structure containing the implementations.
485 * @param arg Pointer to the data containing the provider information.
486 *
487 * If tracing is enabled, messages are printed indicating the removal of each
488 * implementation and its properties. If any implementation is removed, the
489 * associated cache is flushed.
490 */
491 static void
alg_cleanup_by_provider(ossl_uintmax_t idx,ALGORITHM * alg,void * arg)492 alg_cleanup_by_provider(ossl_uintmax_t idx, ALGORITHM *alg, void *arg)
493 {
494 struct alg_cleanup_by_provider_data_st *data = arg;
495 int i, count;
496
497 /*
498 * We walk the stack backwards, to avoid having to deal with stack shifts
499 * caused by deletion
500 */
501 for (count = 0, i = sk_IMPLEMENTATION_num(alg->impls); i-- > 0;) {
502 IMPLEMENTATION *impl = sk_IMPLEMENTATION_value(alg->impls, i);
503
504 if (impl->provider == data->prov) {
505 #ifndef FIPS_MODULE
506 OSSL_TRACE_BEGIN(QUERY) {
507 char buf[512];
508 size_t size;
509
510 size = ossl_property_list_to_string(NULL, impl->properties, buf,
511 sizeof(buf));
512 BIO_printf(trc_out, "Removing implementation from "
513 "query cache\nproperties %s\nprovider %s\n",
514 size == 0 ? "none" : buf,
515 ossl_provider_name(impl->provider) == NULL ? "none" :
516 ossl_provider_name(impl->provider));
517 } OSSL_TRACE_END(QUERY);
518 #endif
519
520 (void)sk_IMPLEMENTATION_delete(alg->impls, i);
521 count++;
522 impl_free(impl);
523 }
524 }
525
526 /*
527 * If we removed any implementation, we also clear the whole associated
528 * cache, 'cause that's the sensible thing to do.
529 * There's no point flushing the cache entries where we didn't remove
530 * any implementation, though.
531 */
532 if (count > 0)
533 ossl_method_cache_flush_alg(data->store, alg);
534 }
535
ossl_method_store_remove_all_provided(OSSL_METHOD_STORE * store,const OSSL_PROVIDER * prov)536 int ossl_method_store_remove_all_provided(OSSL_METHOD_STORE *store,
537 const OSSL_PROVIDER *prov)
538 {
539 struct alg_cleanup_by_provider_data_st data;
540
541 if (!ossl_property_write_lock(store))
542 return 0;
543 data.prov = prov;
544 data.store = store;
545 ossl_sa_ALGORITHM_doall_arg(store->algs, &alg_cleanup_by_provider, &data);
546 ossl_property_unlock(store);
547 return 1;
548 }
549
alg_do_one(ALGORITHM * alg,IMPLEMENTATION * impl,void (* fn)(int id,void * method,void * fnarg),void * fnarg)550 static void alg_do_one(ALGORITHM *alg, IMPLEMENTATION *impl,
551 void (*fn)(int id, void *method, void *fnarg),
552 void *fnarg)
553 {
554 fn(alg->nid, impl->method.method, fnarg);
555 }
556
alg_copy(ossl_uintmax_t idx,ALGORITHM * alg,void * arg)557 static void alg_copy(ossl_uintmax_t idx, ALGORITHM *alg, void *arg)
558 {
559 STACK_OF(ALGORITHM) *newalg = arg;
560
561 (void)sk_ALGORITHM_push(newalg, alg);
562 }
563
ossl_method_store_do_all(OSSL_METHOD_STORE * store,void (* fn)(int id,void * method,void * fnarg),void * fnarg)564 void ossl_method_store_do_all(OSSL_METHOD_STORE *store,
565 void (*fn)(int id, void *method, void *fnarg),
566 void *fnarg)
567 {
568 int i, j;
569 int numalgs, numimps;
570 STACK_OF(ALGORITHM) *tmpalgs;
571 ALGORITHM *alg;
572
573 if (store != NULL) {
574
575 if (!ossl_property_read_lock(store))
576 return;
577
578 tmpalgs = sk_ALGORITHM_new_reserve(NULL,
579 ossl_sa_ALGORITHM_num(store->algs));
580 if (tmpalgs == NULL) {
581 ossl_property_unlock(store);
582 return;
583 }
584
585 ossl_sa_ALGORITHM_doall_arg(store->algs, alg_copy, tmpalgs);
586 ossl_property_unlock(store);
587 numalgs = sk_ALGORITHM_num(tmpalgs);
588 for (i = 0; i < numalgs; i++) {
589 alg = sk_ALGORITHM_value(tmpalgs, i);
590 numimps = sk_IMPLEMENTATION_num(alg->impls);
591 for (j = 0; j < numimps; j++)
592 alg_do_one(alg, sk_IMPLEMENTATION_value(alg->impls, j), fn, fnarg);
593 }
594 sk_ALGORITHM_free(tmpalgs);
595 }
596 }
597
598 /**
599 * @brief Fetches a method from the method store matching the given properties.
600 *
601 * This function searches the method store for an implementation of a specified
602 * method, identified by its id (nid), and matching the given property query. If
603 * successful, it returns the method and its associated provider.
604 *
605 * @param store Pointer to the OSSL_METHOD_STORE from which to fetch the method.
606 * Must be non-null.
607 * @param nid (identifier) of the method to be fetched. Must be > 0
608 * @param prop_query String containing the property query to match against.
609 * @param prov_rw Pointer to the OSSL_PROVIDER to restrict the search to, or
610 * to receive the matched provider.
611 * @param method Pointer to receive the fetched method. Must be non-null.
612 *
613 * @return 1 if the method is successfully fetched, 0 on failure.
614 *
615 * If tracing is enabled, a message is printed indicating the property query and
616 * the resolved provider.
617 *
618 * NOTE: The nid parameter here is _not_ a NID in the sense of the NID_* macros.
619 * It is a unique internal identifier value.
620 */
ossl_method_store_fetch(OSSL_METHOD_STORE * store,int nid,const char * prop_query,const OSSL_PROVIDER ** prov_rw,void ** method)621 int ossl_method_store_fetch(OSSL_METHOD_STORE *store,
622 int nid, const char *prop_query,
623 const OSSL_PROVIDER **prov_rw, void **method)
624 {
625 OSSL_PROPERTY_LIST **plp;
626 ALGORITHM *alg;
627 IMPLEMENTATION *impl, *best_impl = NULL;
628 OSSL_PROPERTY_LIST *pq = NULL, *p2 = NULL;
629 const OSSL_PROVIDER *prov = prov_rw != NULL ? *prov_rw : NULL;
630 int ret = 0;
631 int j, best = -1, score, optional;
632
633 if (nid <= 0 || method == NULL || store == NULL)
634 return 0;
635
636 #if !defined(FIPS_MODULE) && !defined(OPENSSL_NO_AUTOLOAD_CONFIG)
637 if (ossl_lib_ctx_is_default(store->ctx)
638 && !OPENSSL_init_crypto(OPENSSL_INIT_LOAD_CONFIG, NULL))
639 return 0;
640 #endif
641
642 /* This only needs to be a read lock, because the query won't create anything */
643 if (!ossl_property_read_lock(store))
644 return 0;
645
646 OSSL_TRACE2(QUERY, "Retrieving by nid %d from store %p\n", nid, (void *)store);
647 alg = ossl_method_store_retrieve(store, nid);
648 if (alg == NULL) {
649 ossl_property_unlock(store);
650 OSSL_TRACE2(QUERY, "Failed to retrieve by nid %d from store %p\n", nid, (void *)store);
651 return 0;
652 }
653 OSSL_TRACE2(QUERY, "Retrieved by nid %d from store %p\n", nid, (void *)store);
654
655 /*
656 * If a property query string is provided, convert it to an
657 * OSSL_PROPERTY_LIST structure
658 */
659 if (prop_query != NULL)
660 p2 = pq = ossl_parse_query(store->ctx, prop_query, 0);
661
662 /*
663 * If the library context has default properties specified
664 * then merge those with the properties passed to this function
665 */
666 plp = ossl_ctx_global_properties(store->ctx, 0);
667 if (plp != NULL && *plp != NULL) {
668 if (pq == NULL) {
669 pq = *plp;
670 } else {
671 p2 = ossl_property_merge(pq, *plp);
672 ossl_property_free(pq);
673 if (p2 == NULL)
674 goto fin;
675 pq = p2;
676 }
677 }
678
679 /*
680 * Search for a provider that provides this implementation.
681 * If the requested provider is NULL, then any provider will do,
682 * otherwise we should try to find the one that matches the requested
683 * provider. Note that providers are given implicit preference via the
684 * ordering of the implementation stack
685 */
686 if (pq == NULL) {
687 for (j = 0; j < sk_IMPLEMENTATION_num(alg->impls); j++) {
688 if ((impl = sk_IMPLEMENTATION_value(alg->impls, j)) != NULL
689 && (prov == NULL || impl->provider == prov)) {
690 best_impl = impl;
691 ret = 1;
692 break;
693 }
694 }
695 goto fin;
696 }
697
698 /*
699 * If there are optional properties specified
700 * then run the search again, and select the provider that matches the
701 * most options
702 */
703 optional = ossl_property_has_optional(pq);
704 for (j = 0; j < sk_IMPLEMENTATION_num(alg->impls); j++) {
705 if ((impl = sk_IMPLEMENTATION_value(alg->impls, j)) != NULL
706 && (prov == NULL || impl->provider == prov)) {
707 score = ossl_property_match_count(pq, impl->properties);
708 if (score > best) {
709 best_impl = impl;
710 best = score;
711 ret = 1;
712 if (!optional)
713 goto fin;
714 }
715 }
716 }
717 fin:
718 if (ret && ossl_method_up_ref(&best_impl->method)) {
719 *method = best_impl->method.method;
720 if (prov_rw != NULL)
721 *prov_rw = best_impl->provider;
722 } else {
723 ret = 0;
724 }
725
726 #ifndef FIPS_MODULE
727 OSSL_TRACE_BEGIN(QUERY) {
728 char buf[512];
729 int size;
730
731 size = ossl_property_list_to_string(NULL, pq, buf, 512);
732 BIO_printf(trc_out, "method store query with properties %s "
733 "resolves to provider %s\n",
734 size == 0 ? "none" : buf,
735 best_impl == NULL ? "none" :
736 ossl_provider_name(best_impl->provider));
737 } OSSL_TRACE_END(QUERY);
738 #endif
739
740 ossl_property_unlock(store);
741 ossl_property_free(p2);
742 return ret;
743 }
744
ossl_method_cache_flush_alg(OSSL_METHOD_STORE * store,ALGORITHM * alg)745 static void ossl_method_cache_flush_alg(OSSL_METHOD_STORE *store,
746 ALGORITHM *alg)
747 {
748 store->cache_nelem -= lh_QUERY_num_items(alg->cache);
749 impl_cache_flush_alg(0, alg);
750 }
751
ossl_method_cache_flush(OSSL_METHOD_STORE * store,int nid)752 static void ossl_method_cache_flush(OSSL_METHOD_STORE *store, int nid)
753 {
754 ALGORITHM *alg = ossl_method_store_retrieve(store, nid);
755
756 if (alg != NULL)
757 ossl_method_cache_flush_alg(store, alg);
758 }
759
ossl_method_store_cache_flush_all(OSSL_METHOD_STORE * store)760 int ossl_method_store_cache_flush_all(OSSL_METHOD_STORE *store)
761 {
762 if (!ossl_property_write_lock(store))
763 return 0;
764 ossl_sa_ALGORITHM_doall(store->algs, &impl_cache_flush_alg);
765 store->cache_nelem = 0;
766 ossl_property_unlock(store);
767 return 1;
768 }
769
770 IMPLEMENT_LHASH_DOALL_ARG(QUERY, IMPL_CACHE_FLUSH);
771
772 /*
773 * Flush an element from the query cache (perhaps).
774 *
775 * In order to avoid taking a write lock or using atomic operations
776 * to keep accurate least recently used (LRU) or least frequently used
777 * (LFU) information, the procedure used here is to stochastically
778 * flush approximately half the cache.
779 *
780 * This procedure isn't ideal, LRU or LFU would be better. However,
781 * in normal operation, reaching a full cache would be unexpected.
782 * It means that no steady state of algorithm queries has been reached.
783 * That is, it is most likely an attack of some form. A suboptimal clearance
784 * strategy that doesn't degrade performance of the normal case is
785 * preferable to a more refined approach that imposes a performance
786 * impact.
787 */
impl_cache_flush_cache(QUERY * c,IMPL_CACHE_FLUSH * state)788 static void impl_cache_flush_cache(QUERY *c, IMPL_CACHE_FLUSH *state)
789 {
790 uint32_t n;
791
792 /*
793 * Implement the 32 bit xorshift as suggested by George Marsaglia in:
794 * https://doi.org/10.18637/jss.v008.i14
795 *
796 * This is a very fast PRNG so there is no need to extract bits one at a
797 * time and use the entire value each time.
798 */
799 n = state->seed;
800 n ^= n << 13;
801 n ^= n >> 17;
802 n ^= n << 5;
803 state->seed = n;
804
805 if ((n & 1) != 0)
806 impl_cache_free(lh_QUERY_delete(state->cache, c));
807 else
808 state->nelem++;
809 }
810
impl_cache_flush_one_alg(ossl_uintmax_t idx,ALGORITHM * alg,void * v)811 static void impl_cache_flush_one_alg(ossl_uintmax_t idx, ALGORITHM *alg,
812 void *v)
813 {
814 IMPL_CACHE_FLUSH *state = (IMPL_CACHE_FLUSH *)v;
815 unsigned long orig_down_load = lh_QUERY_get_down_load(alg->cache);
816
817 state->cache = alg->cache;
818 lh_QUERY_set_down_load(alg->cache, 0);
819 lh_QUERY_doall_IMPL_CACHE_FLUSH(state->cache, &impl_cache_flush_cache,
820 state);
821 lh_QUERY_set_down_load(alg->cache, orig_down_load);
822 }
823
ossl_method_cache_flush_some(OSSL_METHOD_STORE * store)824 static void ossl_method_cache_flush_some(OSSL_METHOD_STORE *store)
825 {
826 IMPL_CACHE_FLUSH state;
827 static TSAN_QUALIFIER uint32_t global_seed = 1;
828
829 state.nelem = 0;
830 state.using_global_seed = 0;
831 if ((state.seed = OPENSSL_rdtsc()) == 0) {
832 /* If there is no timer available, seed another way */
833 state.using_global_seed = 1;
834 state.seed = tsan_load(&global_seed);
835 }
836 store->cache_need_flush = 0;
837 ossl_sa_ALGORITHM_doall_arg(store->algs, &impl_cache_flush_one_alg, &state);
838 store->cache_nelem = state.nelem;
839 /* Without a timer, update the global seed */
840 if (state.using_global_seed)
841 tsan_add(&global_seed, state.seed);
842 }
843
ossl_method_store_cache_get(OSSL_METHOD_STORE * store,OSSL_PROVIDER * prov,int nid,const char * prop_query,void ** method)844 int ossl_method_store_cache_get(OSSL_METHOD_STORE *store, OSSL_PROVIDER *prov,
845 int nid, const char *prop_query, void **method)
846 {
847 ALGORITHM *alg;
848 QUERY elem, *r;
849 int res = 0;
850
851 if (nid <= 0 || store == NULL || prop_query == NULL)
852 return 0;
853
854 if (!ossl_property_read_lock(store))
855 return 0;
856 alg = ossl_method_store_retrieve(store, nid);
857 if (alg == NULL)
858 goto err;
859
860 elem.query = prop_query;
861 elem.provider = prov;
862 r = lh_QUERY_retrieve(alg->cache, &elem);
863 if (r == NULL)
864 goto err;
865 if (ossl_method_up_ref(&r->method)) {
866 *method = r->method.method;
867 res = 1;
868 }
869 err:
870 ossl_property_unlock(store);
871 return res;
872 }
873
ossl_method_store_cache_set(OSSL_METHOD_STORE * store,OSSL_PROVIDER * prov,int nid,const char * prop_query,void * method,int (* method_up_ref)(void *),void (* method_destruct)(void *))874 int ossl_method_store_cache_set(OSSL_METHOD_STORE *store, OSSL_PROVIDER *prov,
875 int nid, const char *prop_query, void *method,
876 int (*method_up_ref)(void *),
877 void (*method_destruct)(void *))
878 {
879 QUERY elem, *old, *p = NULL;
880 ALGORITHM *alg;
881 size_t len;
882 int res = 1;
883
884 if (nid <= 0 || store == NULL || prop_query == NULL)
885 return 0;
886
887 if (!ossl_assert(prov != NULL))
888 return 0;
889
890 if (!ossl_property_write_lock(store))
891 return 0;
892 if (store->cache_need_flush)
893 ossl_method_cache_flush_some(store);
894 alg = ossl_method_store_retrieve(store, nid);
895 if (alg == NULL)
896 goto err;
897
898 if (method == NULL) {
899 elem.query = prop_query;
900 elem.provider = prov;
901 if ((old = lh_QUERY_delete(alg->cache, &elem)) != NULL) {
902 impl_cache_free(old);
903 store->cache_nelem--;
904 }
905 goto end;
906 }
907 p = OPENSSL_malloc(sizeof(*p) + (len = strlen(prop_query)));
908 if (p != NULL) {
909 p->query = p->body;
910 p->provider = prov;
911 p->method.method = method;
912 p->method.up_ref = method_up_ref;
913 p->method.free = method_destruct;
914 if (!ossl_method_up_ref(&p->method))
915 goto err;
916 memcpy((char *)p->query, prop_query, len + 1);
917 if ((old = lh_QUERY_insert(alg->cache, p)) != NULL) {
918 impl_cache_free(old);
919 goto end;
920 }
921 if (!lh_QUERY_error(alg->cache)) {
922 if (++store->cache_nelem >= IMPL_CACHE_FLUSH_THRESHOLD)
923 store->cache_need_flush = 1;
924 goto end;
925 }
926 ossl_method_free(&p->method);
927 }
928 err:
929 res = 0;
930 OPENSSL_free(p);
931 end:
932 ossl_property_unlock(store);
933 return res;
934 }
935