1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Cryptographic API for algorithms (i.e., low-level API).
8 #include <crypto/algapi.h>
10 #include <linux/errno.h>
11 #include <linux/fips.h>
12 #include <linux/init.h>
13 #include <linux/kernel.h>
14 #include <linux/list.h>
15 #include <linux/module.h>
16 #include <linux/rtnetlink.h>
17 #include <linux/slab.h>
18 #include <linux/string.h>
22 static LIST_HEAD(crypto_template_list);
24 static inline void crypto_check_module_sig(struct module *mod)
26 if (fips_enabled && mod && !module_sig_ok(mod))
27 panic("Module %s signature verification failed in FIPS mode\n",
31 static int crypto_check_alg(struct crypto_alg *alg)
33 crypto_check_module_sig(alg->cra_module);
35 if (!alg->cra_name[0] || !alg->cra_driver_name[0])
38 if (alg->cra_alignmask & (alg->cra_alignmask + 1))
41 /* General maximums for all algs. */
42 if (alg->cra_alignmask > MAX_ALGAPI_ALIGNMASK)
45 if (alg->cra_blocksize > MAX_ALGAPI_BLOCKSIZE)
48 /* Lower maximums for specific alg types. */
49 if (!alg->cra_type && (alg->cra_flags & CRYPTO_ALG_TYPE_MASK) ==
50 CRYPTO_ALG_TYPE_CIPHER) {
51 if (alg->cra_alignmask > MAX_CIPHER_ALIGNMASK)
54 if (alg->cra_blocksize > MAX_CIPHER_BLOCKSIZE)
58 if (alg->cra_priority < 0)
61 refcount_set(&alg->cra_refcnt, 1);
66 static void crypto_free_instance(struct crypto_instance *inst)
68 inst->alg.cra_type->free(inst);
71 static void crypto_destroy_instance(struct crypto_alg *alg)
73 struct crypto_instance *inst = (void *)alg;
74 struct crypto_template *tmpl = inst->tmpl;
76 crypto_free_instance(inst);
77 crypto_tmpl_put(tmpl);
81 * This function adds a spawn to the list secondary_spawns which
82 * will be used at the end of crypto_remove_spawns to unregister
83 * instances, unless the spawn happens to be one that is depended
84 * on by the new algorithm (nalg in crypto_remove_spawns).
86 * This function is also responsible for resurrecting any algorithms
87 * in the dependency chain of nalg by unsetting n->dead.
89 static struct list_head *crypto_more_spawns(struct crypto_alg *alg,
90 struct list_head *stack,
91 struct list_head *top,
92 struct list_head *secondary_spawns)
94 struct crypto_spawn *spawn, *n;
96 spawn = list_first_entry_or_null(stack, struct crypto_spawn, list);
100 n = list_prev_entry(spawn, list);
101 list_move(&spawn->list, secondary_spawns);
103 if (list_is_last(&n->list, stack))
106 n = list_next_entry(n, list);
110 return &n->inst->alg.cra_users;
113 static void crypto_remove_instance(struct crypto_instance *inst,
114 struct list_head *list)
116 struct crypto_template *tmpl = inst->tmpl;
118 if (crypto_is_dead(&inst->alg))
121 inst->alg.cra_flags |= CRYPTO_ALG_DEAD;
123 if (!tmpl || !crypto_tmpl_get(tmpl))
126 list_move(&inst->alg.cra_list, list);
127 hlist_del(&inst->list);
128 inst->alg.cra_destroy = crypto_destroy_instance;
130 BUG_ON(!list_empty(&inst->alg.cra_users));
134 * Given an algorithm alg, remove all algorithms that depend on it
135 * through spawns. If nalg is not null, then exempt any algorithms
136 * that is depended on by nalg. This is useful when nalg itself
139 void crypto_remove_spawns(struct crypto_alg *alg, struct list_head *list,
140 struct crypto_alg *nalg)
142 u32 new_type = (nalg ?: alg)->cra_flags;
143 struct crypto_spawn *spawn, *n;
144 LIST_HEAD(secondary_spawns);
145 struct list_head *spawns;
149 spawns = &alg->cra_users;
150 list_for_each_entry_safe(spawn, n, spawns, list) {
151 if ((spawn->alg->cra_flags ^ new_type) & spawn->mask)
154 list_move(&spawn->list, &top);
158 * Perform a depth-first walk starting from alg through
159 * the cra_users tree. The list stack records the path
160 * from alg to the current spawn.
164 while (!list_empty(spawns)) {
165 struct crypto_instance *inst;
167 spawn = list_first_entry(spawns, struct crypto_spawn,
171 list_move(&spawn->list, &stack);
172 spawn->dead = !spawn->registered || &inst->alg != nalg;
174 if (!spawn->registered)
177 BUG_ON(&inst->alg == alg);
179 if (&inst->alg == nalg)
182 spawns = &inst->alg.cra_users;
185 * Even if spawn->registered is true, the
186 * instance itself may still be unregistered.
187 * This is because it may have failed during
188 * registration. Therefore we still need to
189 * make the following test.
191 * We may encounter an unregistered instance here, since
192 * an instance's spawns are set up prior to the instance
193 * being registered. An unregistered instance will have
194 * NULL ->cra_users.next, since ->cra_users isn't
195 * properly initialized until registration. But an
196 * unregistered instance cannot have any users, so treat
197 * it the same as ->cra_users being empty.
199 if (spawns->next == NULL)
202 } while ((spawns = crypto_more_spawns(alg, &stack, &top,
203 &secondary_spawns)));
206 * Remove all instances that are marked as dead. Also
207 * complete the resurrection of the others by moving them
208 * back to the cra_users list.
210 list_for_each_entry_safe(spawn, n, &secondary_spawns, list) {
212 list_move(&spawn->list, &spawn->alg->cra_users);
213 else if (spawn->registered)
214 crypto_remove_instance(spawn->inst, list);
217 EXPORT_SYMBOL_GPL(crypto_remove_spawns);
219 static struct crypto_larval *crypto_alloc_test_larval(struct crypto_alg *alg)
221 struct crypto_larval *larval;
223 if (!IS_ENABLED(CONFIG_CRYPTO_MANAGER))
226 larval = crypto_larval_alloc(alg->cra_name,
227 alg->cra_flags | CRYPTO_ALG_TESTED, 0);
231 larval->adult = crypto_mod_get(alg);
232 if (!larval->adult) {
234 return ERR_PTR(-ENOENT);
237 refcount_set(&larval->alg.cra_refcnt, 1);
238 memcpy(larval->alg.cra_driver_name, alg->cra_driver_name,
239 CRYPTO_MAX_ALG_NAME);
240 larval->alg.cra_priority = alg->cra_priority;
245 static struct crypto_larval *__crypto_register_alg(struct crypto_alg *alg)
247 struct crypto_alg *q;
248 struct crypto_larval *larval;
251 if (crypto_is_dead(alg))
254 INIT_LIST_HEAD(&alg->cra_users);
257 alg->cra_flags &= ~CRYPTO_ALG_TESTED;
261 list_for_each_entry(q, &crypto_alg_list, cra_list) {
265 if (crypto_is_moribund(q))
268 if (crypto_is_larval(q)) {
269 if (!strcmp(alg->cra_driver_name, q->cra_driver_name))
274 if (!strcmp(q->cra_driver_name, alg->cra_name) ||
275 !strcmp(q->cra_name, alg->cra_driver_name))
279 larval = crypto_alloc_test_larval(alg);
283 list_add(&alg->cra_list, &crypto_alg_list);
286 list_add(&larval->alg.cra_list, &crypto_alg_list);
288 crypto_stats_init(alg);
294 larval = ERR_PTR(ret);
298 void crypto_alg_tested(const char *name, int err)
300 struct crypto_larval *test;
301 struct crypto_alg *alg;
302 struct crypto_alg *q;
306 down_write(&crypto_alg_sem);
307 list_for_each_entry(q, &crypto_alg_list, cra_list) {
308 if (crypto_is_moribund(q) || !crypto_is_larval(q))
311 test = (struct crypto_larval *)q;
313 if (!strcmp(q->cra_driver_name, name))
317 pr_err("alg: Unexpected test result for %s: %d\n", name, err);
321 q->cra_flags |= CRYPTO_ALG_DEAD;
323 if (err || list_empty(&alg->cra_list))
326 alg->cra_flags |= CRYPTO_ALG_TESTED;
328 /* Only satisfy larval waiters if we are the best. */
330 list_for_each_entry(q, &crypto_alg_list, cra_list) {
331 if (crypto_is_moribund(q) || !crypto_is_larval(q))
334 if (strcmp(alg->cra_name, q->cra_name))
337 if (q->cra_priority > alg->cra_priority) {
343 list_for_each_entry(q, &crypto_alg_list, cra_list) {
347 if (crypto_is_moribund(q))
350 if (crypto_is_larval(q)) {
351 struct crypto_larval *larval = (void *)q;
354 * Check to see if either our generic name or
355 * specific name can satisfy the name requested
356 * by the larval entry q.
358 if (strcmp(alg->cra_name, q->cra_name) &&
359 strcmp(alg->cra_driver_name, q->cra_name))
364 if ((q->cra_flags ^ alg->cra_flags) & larval->mask)
367 if (best && crypto_mod_get(alg))
370 larval->adult = ERR_PTR(-EAGAIN);
375 if (strcmp(alg->cra_name, q->cra_name))
378 if (strcmp(alg->cra_driver_name, q->cra_driver_name) &&
379 q->cra_priority > alg->cra_priority)
382 crypto_remove_spawns(q, &list, alg);
386 complete_all(&test->completion);
389 up_write(&crypto_alg_sem);
391 crypto_remove_final(&list);
393 EXPORT_SYMBOL_GPL(crypto_alg_tested);
395 void crypto_remove_final(struct list_head *list)
397 struct crypto_alg *alg;
398 struct crypto_alg *n;
400 list_for_each_entry_safe(alg, n, list, cra_list) {
401 list_del_init(&alg->cra_list);
405 EXPORT_SYMBOL_GPL(crypto_remove_final);
407 int crypto_register_alg(struct crypto_alg *alg)
409 struct crypto_larval *larval;
413 alg->cra_flags &= ~CRYPTO_ALG_DEAD;
414 err = crypto_check_alg(alg);
418 down_write(&crypto_alg_sem);
419 larval = __crypto_register_alg(alg);
420 test_started = static_key_enabled(&crypto_boot_test_finished);
421 if (!IS_ERR_OR_NULL(larval))
422 larval->test_started = test_started;
423 up_write(&crypto_alg_sem);
425 if (IS_ERR_OR_NULL(larval))
426 return PTR_ERR(larval);
429 crypto_wait_for_test(larval);
432 EXPORT_SYMBOL_GPL(crypto_register_alg);
434 static int crypto_remove_alg(struct crypto_alg *alg, struct list_head *list)
436 if (unlikely(list_empty(&alg->cra_list)))
439 alg->cra_flags |= CRYPTO_ALG_DEAD;
441 list_del_init(&alg->cra_list);
442 crypto_remove_spawns(alg, list, NULL);
447 void crypto_unregister_alg(struct crypto_alg *alg)
452 down_write(&crypto_alg_sem);
453 ret = crypto_remove_alg(alg, &list);
454 up_write(&crypto_alg_sem);
456 if (WARN(ret, "Algorithm %s is not registered", alg->cra_driver_name))
459 BUG_ON(refcount_read(&alg->cra_refcnt) != 1);
460 if (alg->cra_destroy)
461 alg->cra_destroy(alg);
463 crypto_remove_final(&list);
465 EXPORT_SYMBOL_GPL(crypto_unregister_alg);
467 int crypto_register_algs(struct crypto_alg *algs, int count)
471 for (i = 0; i < count; i++) {
472 ret = crypto_register_alg(&algs[i]);
480 for (--i; i >= 0; --i)
481 crypto_unregister_alg(&algs[i]);
485 EXPORT_SYMBOL_GPL(crypto_register_algs);
487 void crypto_unregister_algs(struct crypto_alg *algs, int count)
491 for (i = 0; i < count; i++)
492 crypto_unregister_alg(&algs[i]);
494 EXPORT_SYMBOL_GPL(crypto_unregister_algs);
496 int crypto_register_template(struct crypto_template *tmpl)
498 struct crypto_template *q;
501 down_write(&crypto_alg_sem);
503 crypto_check_module_sig(tmpl->module);
505 list_for_each_entry(q, &crypto_template_list, list) {
510 list_add(&tmpl->list, &crypto_template_list);
513 up_write(&crypto_alg_sem);
516 EXPORT_SYMBOL_GPL(crypto_register_template);
518 int crypto_register_templates(struct crypto_template *tmpls, int count)
522 for (i = 0; i < count; i++) {
523 err = crypto_register_template(&tmpls[i]);
530 for (--i; i >= 0; --i)
531 crypto_unregister_template(&tmpls[i]);
534 EXPORT_SYMBOL_GPL(crypto_register_templates);
536 void crypto_unregister_template(struct crypto_template *tmpl)
538 struct crypto_instance *inst;
539 struct hlist_node *n;
540 struct hlist_head *list;
543 down_write(&crypto_alg_sem);
545 BUG_ON(list_empty(&tmpl->list));
546 list_del_init(&tmpl->list);
548 list = &tmpl->instances;
549 hlist_for_each_entry(inst, list, list) {
550 int err = crypto_remove_alg(&inst->alg, &users);
555 up_write(&crypto_alg_sem);
557 hlist_for_each_entry_safe(inst, n, list, list) {
558 BUG_ON(refcount_read(&inst->alg.cra_refcnt) != 1);
559 crypto_free_instance(inst);
561 crypto_remove_final(&users);
563 EXPORT_SYMBOL_GPL(crypto_unregister_template);
565 void crypto_unregister_templates(struct crypto_template *tmpls, int count)
569 for (i = count - 1; i >= 0; --i)
570 crypto_unregister_template(&tmpls[i]);
572 EXPORT_SYMBOL_GPL(crypto_unregister_templates);
574 static struct crypto_template *__crypto_lookup_template(const char *name)
576 struct crypto_template *q, *tmpl = NULL;
578 down_read(&crypto_alg_sem);
579 list_for_each_entry(q, &crypto_template_list, list) {
580 if (strcmp(q->name, name))
582 if (unlikely(!crypto_tmpl_get(q)))
588 up_read(&crypto_alg_sem);
593 struct crypto_template *crypto_lookup_template(const char *name)
595 return try_then_request_module(__crypto_lookup_template(name),
598 EXPORT_SYMBOL_GPL(crypto_lookup_template);
600 int crypto_register_instance(struct crypto_template *tmpl,
601 struct crypto_instance *inst)
603 struct crypto_larval *larval;
604 struct crypto_spawn *spawn;
607 err = crypto_check_alg(&inst->alg);
611 inst->alg.cra_module = tmpl->module;
612 inst->alg.cra_flags |= CRYPTO_ALG_INSTANCE;
614 down_write(&crypto_alg_sem);
616 larval = ERR_PTR(-EAGAIN);
617 for (spawn = inst->spawns; spawn;) {
618 struct crypto_spawn *next;
625 spawn->registered = true;
627 crypto_mod_put(spawn->alg);
632 larval = __crypto_register_alg(&inst->alg);
636 larval->test_started = true;
638 hlist_add_head(&inst->list, &tmpl->instances);
642 up_write(&crypto_alg_sem);
644 err = PTR_ERR(larval);
645 if (IS_ERR_OR_NULL(larval))
648 crypto_wait_for_test(larval);
654 EXPORT_SYMBOL_GPL(crypto_register_instance);
656 void crypto_unregister_instance(struct crypto_instance *inst)
660 down_write(&crypto_alg_sem);
662 crypto_remove_spawns(&inst->alg, &list, NULL);
663 crypto_remove_instance(inst, &list);
665 up_write(&crypto_alg_sem);
667 crypto_remove_final(&list);
669 EXPORT_SYMBOL_GPL(crypto_unregister_instance);
671 int crypto_grab_spawn(struct crypto_spawn *spawn, struct crypto_instance *inst,
672 const char *name, u32 type, u32 mask)
674 struct crypto_alg *alg;
677 if (WARN_ON_ONCE(inst == NULL))
680 /* Allow the result of crypto_attr_alg_name() to be passed directly */
682 return PTR_ERR(name);
684 alg = crypto_find_alg(name, spawn->frontend, type, mask);
688 down_write(&crypto_alg_sem);
689 if (!crypto_is_moribund(alg)) {
690 list_add(&spawn->list, &alg->cra_users);
693 spawn->next = inst->spawns;
694 inst->spawns = spawn;
695 inst->alg.cra_flags |=
696 (alg->cra_flags & CRYPTO_ALG_INHERITED_FLAGS);
699 up_write(&crypto_alg_sem);
704 EXPORT_SYMBOL_GPL(crypto_grab_spawn);
706 void crypto_drop_spawn(struct crypto_spawn *spawn)
708 if (!spawn->alg) /* not yet initialized? */
711 down_write(&crypto_alg_sem);
713 list_del(&spawn->list);
714 up_write(&crypto_alg_sem);
716 if (!spawn->registered)
717 crypto_mod_put(spawn->alg);
719 EXPORT_SYMBOL_GPL(crypto_drop_spawn);
721 static struct crypto_alg *crypto_spawn_alg(struct crypto_spawn *spawn)
723 struct crypto_alg *alg = ERR_PTR(-EAGAIN);
724 struct crypto_alg *target;
727 down_read(&crypto_alg_sem);
730 if (!crypto_mod_get(alg)) {
731 target = crypto_alg_get(alg);
733 alg = ERR_PTR(-EAGAIN);
736 up_read(&crypto_alg_sem);
739 crypto_shoot_alg(target);
740 crypto_alg_put(target);
746 struct crypto_tfm *crypto_spawn_tfm(struct crypto_spawn *spawn, u32 type,
749 struct crypto_alg *alg;
750 struct crypto_tfm *tfm;
752 alg = crypto_spawn_alg(spawn);
754 return ERR_CAST(alg);
756 tfm = ERR_PTR(-EINVAL);
757 if (unlikely((alg->cra_flags ^ type) & mask))
760 tfm = __crypto_alloc_tfm(alg, type, mask);
770 EXPORT_SYMBOL_GPL(crypto_spawn_tfm);
772 void *crypto_spawn_tfm2(struct crypto_spawn *spawn)
774 struct crypto_alg *alg;
775 struct crypto_tfm *tfm;
777 alg = crypto_spawn_alg(spawn);
779 return ERR_CAST(alg);
781 tfm = crypto_create_tfm(alg, spawn->frontend);
791 EXPORT_SYMBOL_GPL(crypto_spawn_tfm2);
793 int crypto_register_notifier(struct notifier_block *nb)
795 return blocking_notifier_chain_register(&crypto_chain, nb);
797 EXPORT_SYMBOL_GPL(crypto_register_notifier);
799 int crypto_unregister_notifier(struct notifier_block *nb)
801 return blocking_notifier_chain_unregister(&crypto_chain, nb);
803 EXPORT_SYMBOL_GPL(crypto_unregister_notifier);
805 struct crypto_attr_type *crypto_get_attr_type(struct rtattr **tb)
807 struct rtattr *rta = tb[0];
808 struct crypto_attr_type *algt;
811 return ERR_PTR(-ENOENT);
812 if (RTA_PAYLOAD(rta) < sizeof(*algt))
813 return ERR_PTR(-EINVAL);
814 if (rta->rta_type != CRYPTOA_TYPE)
815 return ERR_PTR(-EINVAL);
817 algt = RTA_DATA(rta);
821 EXPORT_SYMBOL_GPL(crypto_get_attr_type);
824 * crypto_check_attr_type() - check algorithm type and compute inherited mask
825 * @tb: the template parameters
826 * @type: the algorithm type the template would be instantiated as
827 * @mask_ret: (output) the mask that should be passed to crypto_grab_*()
828 * to restrict the flags of any inner algorithms
830 * Validate that the algorithm type the user requested is compatible with the
831 * one the template would actually be instantiated as. E.g., if the user is
832 * doing crypto_alloc_shash("cbc(aes)", ...), this would return an error because
833 * the "cbc" template creates an "skcipher" algorithm, not an "shash" algorithm.
835 * Also compute the mask to use to restrict the flags of any inner algorithms.
837 * Return: 0 on success; -errno on failure
839 int crypto_check_attr_type(struct rtattr **tb, u32 type, u32 *mask_ret)
841 struct crypto_attr_type *algt;
843 algt = crypto_get_attr_type(tb);
845 return PTR_ERR(algt);
847 if ((algt->type ^ type) & algt->mask)
850 *mask_ret = crypto_algt_inherited_mask(algt);
853 EXPORT_SYMBOL_GPL(crypto_check_attr_type);
855 const char *crypto_attr_alg_name(struct rtattr *rta)
857 struct crypto_attr_alg *alga;
860 return ERR_PTR(-ENOENT);
861 if (RTA_PAYLOAD(rta) < sizeof(*alga))
862 return ERR_PTR(-EINVAL);
863 if (rta->rta_type != CRYPTOA_ALG)
864 return ERR_PTR(-EINVAL);
866 alga = RTA_DATA(rta);
867 alga->name[CRYPTO_MAX_ALG_NAME - 1] = 0;
871 EXPORT_SYMBOL_GPL(crypto_attr_alg_name);
873 int crypto_inst_setname(struct crypto_instance *inst, const char *name,
874 struct crypto_alg *alg)
876 if (snprintf(inst->alg.cra_name, CRYPTO_MAX_ALG_NAME, "%s(%s)", name,
877 alg->cra_name) >= CRYPTO_MAX_ALG_NAME)
878 return -ENAMETOOLONG;
880 if (snprintf(inst->alg.cra_driver_name, CRYPTO_MAX_ALG_NAME, "%s(%s)",
881 name, alg->cra_driver_name) >= CRYPTO_MAX_ALG_NAME)
882 return -ENAMETOOLONG;
886 EXPORT_SYMBOL_GPL(crypto_inst_setname);
888 void crypto_init_queue(struct crypto_queue *queue, unsigned int max_qlen)
890 INIT_LIST_HEAD(&queue->list);
891 queue->backlog = &queue->list;
893 queue->max_qlen = max_qlen;
895 EXPORT_SYMBOL_GPL(crypto_init_queue);
897 int crypto_enqueue_request(struct crypto_queue *queue,
898 struct crypto_async_request *request)
900 int err = -EINPROGRESS;
902 if (unlikely(queue->qlen >= queue->max_qlen)) {
903 if (!(request->flags & CRYPTO_TFM_REQ_MAY_BACKLOG)) {
908 if (queue->backlog == &queue->list)
909 queue->backlog = &request->list;
913 list_add_tail(&request->list, &queue->list);
918 EXPORT_SYMBOL_GPL(crypto_enqueue_request);
920 void crypto_enqueue_request_head(struct crypto_queue *queue,
921 struct crypto_async_request *request)
924 list_add(&request->list, &queue->list);
926 EXPORT_SYMBOL_GPL(crypto_enqueue_request_head);
928 struct crypto_async_request *crypto_dequeue_request(struct crypto_queue *queue)
930 struct list_head *request;
932 if (unlikely(!queue->qlen))
937 if (queue->backlog != &queue->list)
938 queue->backlog = queue->backlog->next;
940 request = queue->list.next;
943 return list_entry(request, struct crypto_async_request, list);
945 EXPORT_SYMBOL_GPL(crypto_dequeue_request);
947 static inline void crypto_inc_byte(u8 *a, unsigned int size)
952 for (; size; size--) {
960 void crypto_inc(u8 *a, unsigned int size)
962 __be32 *b = (__be32 *)(a + size);
965 if (IS_ENABLED(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) ||
966 IS_ALIGNED((unsigned long)b, __alignof__(*b)))
967 for (; size >= 4; size -= 4) {
968 c = be32_to_cpu(*--b) + 1;
974 crypto_inc_byte(a, size);
976 EXPORT_SYMBOL_GPL(crypto_inc);
978 void __crypto_xor(u8 *dst, const u8 *src1, const u8 *src2, unsigned int len)
982 if (!IS_ENABLED(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS)) {
983 int size = sizeof(unsigned long);
984 int d = (((unsigned long)dst ^ (unsigned long)src1) |
985 ((unsigned long)dst ^ (unsigned long)src2)) &
988 relalign = d ? 1 << __ffs(d) : size;
991 * If we care about alignment, process as many bytes as
992 * needed to advance dst and src to values whose alignments
993 * equal their relative alignment. This will allow us to
994 * process the remainder of the input using optimal strides.
996 while (((unsigned long)dst & (relalign - 1)) && len > 0) {
997 *dst++ = *src1++ ^ *src2++;
1002 while (IS_ENABLED(CONFIG_64BIT) && len >= 8 && !(relalign & 7)) {
1003 *(u64 *)dst = *(u64 *)src1 ^ *(u64 *)src2;
1010 while (len >= 4 && !(relalign & 3)) {
1011 *(u32 *)dst = *(u32 *)src1 ^ *(u32 *)src2;
1018 while (len >= 2 && !(relalign & 1)) {
1019 *(u16 *)dst = *(u16 *)src1 ^ *(u16 *)src2;
1027 *dst++ = *src1++ ^ *src2++;
1029 EXPORT_SYMBOL_GPL(__crypto_xor);
1031 unsigned int crypto_alg_extsize(struct crypto_alg *alg)
1033 return alg->cra_ctxsize +
1034 (alg->cra_alignmask & ~(crypto_tfm_ctx_alignment() - 1));
1036 EXPORT_SYMBOL_GPL(crypto_alg_extsize);
1038 int crypto_type_has_alg(const char *name, const struct crypto_type *frontend,
1042 struct crypto_alg *alg = crypto_find_alg(name, frontend, type, mask);
1045 crypto_mod_put(alg);
1051 EXPORT_SYMBOL_GPL(crypto_type_has_alg);
1053 #ifdef CONFIG_CRYPTO_STATS
1054 void crypto_stats_init(struct crypto_alg *alg)
1056 memset(&alg->stats, 0, sizeof(alg->stats));
1058 EXPORT_SYMBOL_GPL(crypto_stats_init);
1060 void crypto_stats_get(struct crypto_alg *alg)
1062 crypto_alg_get(alg);
1064 EXPORT_SYMBOL_GPL(crypto_stats_get);
1066 void crypto_stats_aead_encrypt(unsigned int cryptlen, struct crypto_alg *alg,
1069 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1070 atomic64_inc(&alg->stats.aead.err_cnt);
1072 atomic64_inc(&alg->stats.aead.encrypt_cnt);
1073 atomic64_add(cryptlen, &alg->stats.aead.encrypt_tlen);
1075 crypto_alg_put(alg);
1077 EXPORT_SYMBOL_GPL(crypto_stats_aead_encrypt);
1079 void crypto_stats_aead_decrypt(unsigned int cryptlen, struct crypto_alg *alg,
1082 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1083 atomic64_inc(&alg->stats.aead.err_cnt);
1085 atomic64_inc(&alg->stats.aead.decrypt_cnt);
1086 atomic64_add(cryptlen, &alg->stats.aead.decrypt_tlen);
1088 crypto_alg_put(alg);
1090 EXPORT_SYMBOL_GPL(crypto_stats_aead_decrypt);
1092 void crypto_stats_akcipher_encrypt(unsigned int src_len, int ret,
1093 struct crypto_alg *alg)
1095 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1096 atomic64_inc(&alg->stats.akcipher.err_cnt);
1098 atomic64_inc(&alg->stats.akcipher.encrypt_cnt);
1099 atomic64_add(src_len, &alg->stats.akcipher.encrypt_tlen);
1101 crypto_alg_put(alg);
1103 EXPORT_SYMBOL_GPL(crypto_stats_akcipher_encrypt);
1105 void crypto_stats_akcipher_decrypt(unsigned int src_len, int ret,
1106 struct crypto_alg *alg)
1108 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1109 atomic64_inc(&alg->stats.akcipher.err_cnt);
1111 atomic64_inc(&alg->stats.akcipher.decrypt_cnt);
1112 atomic64_add(src_len, &alg->stats.akcipher.decrypt_tlen);
1114 crypto_alg_put(alg);
1116 EXPORT_SYMBOL_GPL(crypto_stats_akcipher_decrypt);
1118 void crypto_stats_akcipher_sign(int ret, struct crypto_alg *alg)
1120 if (ret && ret != -EINPROGRESS && ret != -EBUSY)
1121 atomic64_inc(&alg->stats.akcipher.err_cnt);
1123 atomic64_inc(&alg->stats.akcipher.sign_cnt);
1124 crypto_alg_put(alg);
1126 EXPORT_SYMBOL_GPL(crypto_stats_akcipher_sign);
1128 void crypto_stats_akcipher_verify(int ret, struct crypto_alg *alg)
1130 if (ret && ret != -EINPROGRESS && ret != -EBUSY)
1131 atomic64_inc(&alg->stats.akcipher.err_cnt);
1133 atomic64_inc(&alg->stats.akcipher.verify_cnt);
1134 crypto_alg_put(alg);
1136 EXPORT_SYMBOL_GPL(crypto_stats_akcipher_verify);
1138 void crypto_stats_compress(unsigned int slen, int ret, struct crypto_alg *alg)
1140 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1141 atomic64_inc(&alg->stats.compress.err_cnt);
1143 atomic64_inc(&alg->stats.compress.compress_cnt);
1144 atomic64_add(slen, &alg->stats.compress.compress_tlen);
1146 crypto_alg_put(alg);
1148 EXPORT_SYMBOL_GPL(crypto_stats_compress);
1150 void crypto_stats_decompress(unsigned int slen, int ret, struct crypto_alg *alg)
1152 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1153 atomic64_inc(&alg->stats.compress.err_cnt);
1155 atomic64_inc(&alg->stats.compress.decompress_cnt);
1156 atomic64_add(slen, &alg->stats.compress.decompress_tlen);
1158 crypto_alg_put(alg);
1160 EXPORT_SYMBOL_GPL(crypto_stats_decompress);
1162 void crypto_stats_ahash_update(unsigned int nbytes, int ret,
1163 struct crypto_alg *alg)
1165 if (ret && ret != -EINPROGRESS && ret != -EBUSY)
1166 atomic64_inc(&alg->stats.hash.err_cnt);
1168 atomic64_add(nbytes, &alg->stats.hash.hash_tlen);
1169 crypto_alg_put(alg);
1171 EXPORT_SYMBOL_GPL(crypto_stats_ahash_update);
1173 void crypto_stats_ahash_final(unsigned int nbytes, int ret,
1174 struct crypto_alg *alg)
1176 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1177 atomic64_inc(&alg->stats.hash.err_cnt);
1179 atomic64_inc(&alg->stats.hash.hash_cnt);
1180 atomic64_add(nbytes, &alg->stats.hash.hash_tlen);
1182 crypto_alg_put(alg);
1184 EXPORT_SYMBOL_GPL(crypto_stats_ahash_final);
1186 void crypto_stats_kpp_set_secret(struct crypto_alg *alg, int ret)
1189 atomic64_inc(&alg->stats.kpp.err_cnt);
1191 atomic64_inc(&alg->stats.kpp.setsecret_cnt);
1192 crypto_alg_put(alg);
1194 EXPORT_SYMBOL_GPL(crypto_stats_kpp_set_secret);
1196 void crypto_stats_kpp_generate_public_key(struct crypto_alg *alg, int ret)
1199 atomic64_inc(&alg->stats.kpp.err_cnt);
1201 atomic64_inc(&alg->stats.kpp.generate_public_key_cnt);
1202 crypto_alg_put(alg);
1204 EXPORT_SYMBOL_GPL(crypto_stats_kpp_generate_public_key);
1206 void crypto_stats_kpp_compute_shared_secret(struct crypto_alg *alg, int ret)
1209 atomic64_inc(&alg->stats.kpp.err_cnt);
1211 atomic64_inc(&alg->stats.kpp.compute_shared_secret_cnt);
1212 crypto_alg_put(alg);
1214 EXPORT_SYMBOL_GPL(crypto_stats_kpp_compute_shared_secret);
1216 void crypto_stats_rng_seed(struct crypto_alg *alg, int ret)
1218 if (ret && ret != -EINPROGRESS && ret != -EBUSY)
1219 atomic64_inc(&alg->stats.rng.err_cnt);
1221 atomic64_inc(&alg->stats.rng.seed_cnt);
1222 crypto_alg_put(alg);
1224 EXPORT_SYMBOL_GPL(crypto_stats_rng_seed);
1226 void crypto_stats_rng_generate(struct crypto_alg *alg, unsigned int dlen,
1229 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1230 atomic64_inc(&alg->stats.rng.err_cnt);
1232 atomic64_inc(&alg->stats.rng.generate_cnt);
1233 atomic64_add(dlen, &alg->stats.rng.generate_tlen);
1235 crypto_alg_put(alg);
1237 EXPORT_SYMBOL_GPL(crypto_stats_rng_generate);
1239 void crypto_stats_skcipher_encrypt(unsigned int cryptlen, int ret,
1240 struct crypto_alg *alg)
1242 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1243 atomic64_inc(&alg->stats.cipher.err_cnt);
1245 atomic64_inc(&alg->stats.cipher.encrypt_cnt);
1246 atomic64_add(cryptlen, &alg->stats.cipher.encrypt_tlen);
1248 crypto_alg_put(alg);
1250 EXPORT_SYMBOL_GPL(crypto_stats_skcipher_encrypt);
1252 void crypto_stats_skcipher_decrypt(unsigned int cryptlen, int ret,
1253 struct crypto_alg *alg)
1255 if (ret && ret != -EINPROGRESS && ret != -EBUSY) {
1256 atomic64_inc(&alg->stats.cipher.err_cnt);
1258 atomic64_inc(&alg->stats.cipher.decrypt_cnt);
1259 atomic64_add(cryptlen, &alg->stats.cipher.decrypt_tlen);
1261 crypto_alg_put(alg);
1263 EXPORT_SYMBOL_GPL(crypto_stats_skcipher_decrypt);
1266 static void __init crypto_start_tests(void)
1269 struct crypto_larval *larval = NULL;
1270 struct crypto_alg *q;
1272 down_write(&crypto_alg_sem);
1274 list_for_each_entry(q, &crypto_alg_list, cra_list) {
1275 struct crypto_larval *l;
1277 if (!crypto_is_larval(q))
1282 if (!crypto_is_test_larval(l))
1285 if (l->test_started)
1288 l->test_started = true;
1293 up_write(&crypto_alg_sem);
1298 crypto_wait_for_test(larval);
1301 static_branch_enable(&crypto_boot_test_finished);
1304 static int __init crypto_algapi_init(void)
1307 crypto_start_tests();
1311 static void __exit crypto_algapi_exit(void)
1317 * We run this at late_initcall so that all the built-in algorithms
1318 * have had a chance to register themselves first.
1320 late_initcall(crypto_algapi_init);
1321 module_exit(crypto_algapi_exit);
1323 MODULE_LICENSE("GPL");
1324 MODULE_DESCRIPTION("Cryptographic algorithms API");