xref: /openbmc/linux/block/blk-crypto.c (revision 488f6682c832e9549d28b30075f00c76328eb1be)
1a892c8d5SSatya Tangirala // SPDX-License-Identifier: GPL-2.0
2a892c8d5SSatya Tangirala /*
3a892c8d5SSatya Tangirala  * Copyright 2019 Google LLC
4a892c8d5SSatya Tangirala  */
5a892c8d5SSatya Tangirala 
6a892c8d5SSatya Tangirala /*
7a892c8d5SSatya Tangirala  * Refer to Documentation/block/inline-encryption.rst for detailed explanation.
8a892c8d5SSatya Tangirala  */
9a892c8d5SSatya Tangirala 
10a892c8d5SSatya Tangirala #define pr_fmt(fmt) "blk-crypto: " fmt
11a892c8d5SSatya Tangirala 
12a892c8d5SSatya Tangirala #include <linux/bio.h>
13a892c8d5SSatya Tangirala #include <linux/blkdev.h>
14a892c8d5SSatya Tangirala #include <linux/keyslot-manager.h>
15a892c8d5SSatya Tangirala #include <linux/module.h>
16a892c8d5SSatya Tangirala #include <linux/slab.h>
17a892c8d5SSatya Tangirala 
18a892c8d5SSatya Tangirala #include "blk-crypto-internal.h"
19a892c8d5SSatya Tangirala 
20a892c8d5SSatya Tangirala const struct blk_crypto_mode blk_crypto_modes[] = {
21a892c8d5SSatya Tangirala 	[BLK_ENCRYPTION_MODE_AES_256_XTS] = {
22*488f6682SSatya Tangirala 		.cipher_str = "xts(aes)",
23a892c8d5SSatya Tangirala 		.keysize = 64,
24a892c8d5SSatya Tangirala 		.ivsize = 16,
25a892c8d5SSatya Tangirala 	},
26a892c8d5SSatya Tangirala 	[BLK_ENCRYPTION_MODE_AES_128_CBC_ESSIV] = {
27*488f6682SSatya Tangirala 		.cipher_str = "essiv(cbc(aes),sha256)",
28a892c8d5SSatya Tangirala 		.keysize = 16,
29a892c8d5SSatya Tangirala 		.ivsize = 16,
30a892c8d5SSatya Tangirala 	},
31a892c8d5SSatya Tangirala 	[BLK_ENCRYPTION_MODE_ADIANTUM] = {
32*488f6682SSatya Tangirala 		.cipher_str = "adiantum(xchacha12,aes)",
33a892c8d5SSatya Tangirala 		.keysize = 32,
34a892c8d5SSatya Tangirala 		.ivsize = 32,
35a892c8d5SSatya Tangirala 	},
36a892c8d5SSatya Tangirala };
37a892c8d5SSatya Tangirala 
38a892c8d5SSatya Tangirala /*
39a892c8d5SSatya Tangirala  * This number needs to be at least (the number of threads doing IO
40a892c8d5SSatya Tangirala  * concurrently) * (maximum recursive depth of a bio), so that we don't
41a892c8d5SSatya Tangirala  * deadlock on crypt_ctx allocations. The default is chosen to be the same
42a892c8d5SSatya Tangirala  * as the default number of post read contexts in both EXT4 and F2FS.
43a892c8d5SSatya Tangirala  */
44a892c8d5SSatya Tangirala static int num_prealloc_crypt_ctxs = 128;
45a892c8d5SSatya Tangirala 
46a892c8d5SSatya Tangirala module_param(num_prealloc_crypt_ctxs, int, 0444);
47a892c8d5SSatya Tangirala MODULE_PARM_DESC(num_prealloc_crypt_ctxs,
48a892c8d5SSatya Tangirala 		"Number of bio crypto contexts to preallocate");
49a892c8d5SSatya Tangirala 
50a892c8d5SSatya Tangirala static struct kmem_cache *bio_crypt_ctx_cache;
51a892c8d5SSatya Tangirala static mempool_t *bio_crypt_ctx_pool;
52a892c8d5SSatya Tangirala 
53a892c8d5SSatya Tangirala static int __init bio_crypt_ctx_init(void)
54a892c8d5SSatya Tangirala {
55a892c8d5SSatya Tangirala 	size_t i;
56a892c8d5SSatya Tangirala 
57a892c8d5SSatya Tangirala 	bio_crypt_ctx_cache = KMEM_CACHE(bio_crypt_ctx, 0);
58a892c8d5SSatya Tangirala 	if (!bio_crypt_ctx_cache)
59a892c8d5SSatya Tangirala 		goto out_no_mem;
60a892c8d5SSatya Tangirala 
61a892c8d5SSatya Tangirala 	bio_crypt_ctx_pool = mempool_create_slab_pool(num_prealloc_crypt_ctxs,
62a892c8d5SSatya Tangirala 						      bio_crypt_ctx_cache);
63a892c8d5SSatya Tangirala 	if (!bio_crypt_ctx_pool)
64a892c8d5SSatya Tangirala 		goto out_no_mem;
65a892c8d5SSatya Tangirala 
66a892c8d5SSatya Tangirala 	/* This is assumed in various places. */
67a892c8d5SSatya Tangirala 	BUILD_BUG_ON(BLK_ENCRYPTION_MODE_INVALID != 0);
68a892c8d5SSatya Tangirala 
69a892c8d5SSatya Tangirala 	/* Sanity check that no algorithm exceeds the defined limits. */
70a892c8d5SSatya Tangirala 	for (i = 0; i < BLK_ENCRYPTION_MODE_MAX; i++) {
71a892c8d5SSatya Tangirala 		BUG_ON(blk_crypto_modes[i].keysize > BLK_CRYPTO_MAX_KEY_SIZE);
72a892c8d5SSatya Tangirala 		BUG_ON(blk_crypto_modes[i].ivsize > BLK_CRYPTO_MAX_IV_SIZE);
73a892c8d5SSatya Tangirala 	}
74a892c8d5SSatya Tangirala 
75a892c8d5SSatya Tangirala 	return 0;
76a892c8d5SSatya Tangirala out_no_mem:
77a892c8d5SSatya Tangirala 	panic("Failed to allocate mem for bio crypt ctxs\n");
78a892c8d5SSatya Tangirala }
79a892c8d5SSatya Tangirala subsys_initcall(bio_crypt_ctx_init);
80a892c8d5SSatya Tangirala 
81a892c8d5SSatya Tangirala void bio_crypt_set_ctx(struct bio *bio, const struct blk_crypto_key *key,
82a892c8d5SSatya Tangirala 		       const u64 dun[BLK_CRYPTO_DUN_ARRAY_SIZE], gfp_t gfp_mask)
83a892c8d5SSatya Tangirala {
84a892c8d5SSatya Tangirala 	struct bio_crypt_ctx *bc = mempool_alloc(bio_crypt_ctx_pool, gfp_mask);
85a892c8d5SSatya Tangirala 
86a892c8d5SSatya Tangirala 	bc->bc_key = key;
87a892c8d5SSatya Tangirala 	memcpy(bc->bc_dun, dun, sizeof(bc->bc_dun));
88a892c8d5SSatya Tangirala 
89a892c8d5SSatya Tangirala 	bio->bi_crypt_context = bc;
90a892c8d5SSatya Tangirala }
91a892c8d5SSatya Tangirala 
92a892c8d5SSatya Tangirala void __bio_crypt_free_ctx(struct bio *bio)
93a892c8d5SSatya Tangirala {
94a892c8d5SSatya Tangirala 	mempool_free(bio->bi_crypt_context, bio_crypt_ctx_pool);
95a892c8d5SSatya Tangirala 	bio->bi_crypt_context = NULL;
96a892c8d5SSatya Tangirala }
97a892c8d5SSatya Tangirala 
98a892c8d5SSatya Tangirala void __bio_crypt_clone(struct bio *dst, struct bio *src, gfp_t gfp_mask)
99a892c8d5SSatya Tangirala {
100a892c8d5SSatya Tangirala 	dst->bi_crypt_context = mempool_alloc(bio_crypt_ctx_pool, gfp_mask);
101a892c8d5SSatya Tangirala 	*dst->bi_crypt_context = *src->bi_crypt_context;
102a892c8d5SSatya Tangirala }
103a892c8d5SSatya Tangirala EXPORT_SYMBOL_GPL(__bio_crypt_clone);
104a892c8d5SSatya Tangirala 
105a892c8d5SSatya Tangirala /* Increments @dun by @inc, treating @dun as a multi-limb integer. */
106a892c8d5SSatya Tangirala void bio_crypt_dun_increment(u64 dun[BLK_CRYPTO_DUN_ARRAY_SIZE],
107a892c8d5SSatya Tangirala 			     unsigned int inc)
108a892c8d5SSatya Tangirala {
109a892c8d5SSatya Tangirala 	int i;
110a892c8d5SSatya Tangirala 
111a892c8d5SSatya Tangirala 	for (i = 0; inc && i < BLK_CRYPTO_DUN_ARRAY_SIZE; i++) {
112a892c8d5SSatya Tangirala 		dun[i] += inc;
113a892c8d5SSatya Tangirala 		/*
114a892c8d5SSatya Tangirala 		 * If the addition in this limb overflowed, then we need to
115a892c8d5SSatya Tangirala 		 * carry 1 into the next limb. Else the carry is 0.
116a892c8d5SSatya Tangirala 		 */
117a892c8d5SSatya Tangirala 		if (dun[i] < inc)
118a892c8d5SSatya Tangirala 			inc = 1;
119a892c8d5SSatya Tangirala 		else
120a892c8d5SSatya Tangirala 			inc = 0;
121a892c8d5SSatya Tangirala 	}
122a892c8d5SSatya Tangirala }
123a892c8d5SSatya Tangirala 
124a892c8d5SSatya Tangirala void __bio_crypt_advance(struct bio *bio, unsigned int bytes)
125a892c8d5SSatya Tangirala {
126a892c8d5SSatya Tangirala 	struct bio_crypt_ctx *bc = bio->bi_crypt_context;
127a892c8d5SSatya Tangirala 
128a892c8d5SSatya Tangirala 	bio_crypt_dun_increment(bc->bc_dun,
129a892c8d5SSatya Tangirala 				bytes >> bc->bc_key->data_unit_size_bits);
130a892c8d5SSatya Tangirala }
131a892c8d5SSatya Tangirala 
132a892c8d5SSatya Tangirala /*
133a892c8d5SSatya Tangirala  * Returns true if @bc->bc_dun plus @bytes converted to data units is equal to
134a892c8d5SSatya Tangirala  * @next_dun, treating the DUNs as multi-limb integers.
135a892c8d5SSatya Tangirala  */
136a892c8d5SSatya Tangirala bool bio_crypt_dun_is_contiguous(const struct bio_crypt_ctx *bc,
137a892c8d5SSatya Tangirala 				 unsigned int bytes,
138a892c8d5SSatya Tangirala 				 const u64 next_dun[BLK_CRYPTO_DUN_ARRAY_SIZE])
139a892c8d5SSatya Tangirala {
140a892c8d5SSatya Tangirala 	int i;
141a892c8d5SSatya Tangirala 	unsigned int carry = bytes >> bc->bc_key->data_unit_size_bits;
142a892c8d5SSatya Tangirala 
143a892c8d5SSatya Tangirala 	for (i = 0; i < BLK_CRYPTO_DUN_ARRAY_SIZE; i++) {
144a892c8d5SSatya Tangirala 		if (bc->bc_dun[i] + carry != next_dun[i])
145a892c8d5SSatya Tangirala 			return false;
146a892c8d5SSatya Tangirala 		/*
147a892c8d5SSatya Tangirala 		 * If the addition in this limb overflowed, then we need to
148a892c8d5SSatya Tangirala 		 * carry 1 into the next limb. Else the carry is 0.
149a892c8d5SSatya Tangirala 		 */
150a892c8d5SSatya Tangirala 		if ((bc->bc_dun[i] + carry) < carry)
151a892c8d5SSatya Tangirala 			carry = 1;
152a892c8d5SSatya Tangirala 		else
153a892c8d5SSatya Tangirala 			carry = 0;
154a892c8d5SSatya Tangirala 	}
155a892c8d5SSatya Tangirala 
156a892c8d5SSatya Tangirala 	/* If the DUN wrapped through 0, don't treat it as contiguous. */
157a892c8d5SSatya Tangirala 	return carry == 0;
158a892c8d5SSatya Tangirala }
159a892c8d5SSatya Tangirala 
160a892c8d5SSatya Tangirala /*
161a892c8d5SSatya Tangirala  * Checks that two bio crypt contexts are compatible - i.e. that
162a892c8d5SSatya Tangirala  * they are mergeable except for data_unit_num continuity.
163a892c8d5SSatya Tangirala  */
164a892c8d5SSatya Tangirala static bool bio_crypt_ctx_compatible(struct bio_crypt_ctx *bc1,
165a892c8d5SSatya Tangirala 				     struct bio_crypt_ctx *bc2)
166a892c8d5SSatya Tangirala {
167a892c8d5SSatya Tangirala 	if (!bc1)
168a892c8d5SSatya Tangirala 		return !bc2;
169a892c8d5SSatya Tangirala 
170a892c8d5SSatya Tangirala 	return bc2 && bc1->bc_key == bc2->bc_key;
171a892c8d5SSatya Tangirala }
172a892c8d5SSatya Tangirala 
173a892c8d5SSatya Tangirala bool bio_crypt_rq_ctx_compatible(struct request *rq, struct bio *bio)
174a892c8d5SSatya Tangirala {
175a892c8d5SSatya Tangirala 	return bio_crypt_ctx_compatible(rq->crypt_ctx, bio->bi_crypt_context);
176a892c8d5SSatya Tangirala }
177a892c8d5SSatya Tangirala 
178a892c8d5SSatya Tangirala /*
179a892c8d5SSatya Tangirala  * Checks that two bio crypt contexts are compatible, and also
180a892c8d5SSatya Tangirala  * that their data_unit_nums are continuous (and can hence be merged)
181a892c8d5SSatya Tangirala  * in the order @bc1 followed by @bc2.
182a892c8d5SSatya Tangirala  */
183a892c8d5SSatya Tangirala bool bio_crypt_ctx_mergeable(struct bio_crypt_ctx *bc1, unsigned int bc1_bytes,
184a892c8d5SSatya Tangirala 			     struct bio_crypt_ctx *bc2)
185a892c8d5SSatya Tangirala {
186a892c8d5SSatya Tangirala 	if (!bio_crypt_ctx_compatible(bc1, bc2))
187a892c8d5SSatya Tangirala 		return false;
188a892c8d5SSatya Tangirala 
189a892c8d5SSatya Tangirala 	return !bc1 || bio_crypt_dun_is_contiguous(bc1, bc1_bytes, bc2->bc_dun);
190a892c8d5SSatya Tangirala }
191a892c8d5SSatya Tangirala 
192a892c8d5SSatya Tangirala /* Check that all I/O segments are data unit aligned. */
193a892c8d5SSatya Tangirala static bool bio_crypt_check_alignment(struct bio *bio)
194a892c8d5SSatya Tangirala {
195a892c8d5SSatya Tangirala 	const unsigned int data_unit_size =
196a892c8d5SSatya Tangirala 		bio->bi_crypt_context->bc_key->crypto_cfg.data_unit_size;
197a892c8d5SSatya Tangirala 	struct bvec_iter iter;
198a892c8d5SSatya Tangirala 	struct bio_vec bv;
199a892c8d5SSatya Tangirala 
200a892c8d5SSatya Tangirala 	bio_for_each_segment(bv, bio, iter) {
201a892c8d5SSatya Tangirala 		if (!IS_ALIGNED(bv.bv_len | bv.bv_offset, data_unit_size))
202a892c8d5SSatya Tangirala 			return false;
203a892c8d5SSatya Tangirala 	}
204a892c8d5SSatya Tangirala 
205a892c8d5SSatya Tangirala 	return true;
206a892c8d5SSatya Tangirala }
207a892c8d5SSatya Tangirala 
208a892c8d5SSatya Tangirala blk_status_t __blk_crypto_init_request(struct request *rq)
209a892c8d5SSatya Tangirala {
210a892c8d5SSatya Tangirala 	return blk_ksm_get_slot_for_key(rq->q->ksm, rq->crypt_ctx->bc_key,
211a892c8d5SSatya Tangirala 					&rq->crypt_keyslot);
212a892c8d5SSatya Tangirala }
213a892c8d5SSatya Tangirala 
214a892c8d5SSatya Tangirala /**
215a892c8d5SSatya Tangirala  * __blk_crypto_free_request - Uninitialize the crypto fields of a request.
216a892c8d5SSatya Tangirala  *
217a892c8d5SSatya Tangirala  * @rq: The request whose crypto fields to uninitialize.
218a892c8d5SSatya Tangirala  *
219a892c8d5SSatya Tangirala  * Completely uninitializes the crypto fields of a request. If a keyslot has
220a892c8d5SSatya Tangirala  * been programmed into some inline encryption hardware, that keyslot is
221a892c8d5SSatya Tangirala  * released. The rq->crypt_ctx is also freed.
222a892c8d5SSatya Tangirala  */
223a892c8d5SSatya Tangirala void __blk_crypto_free_request(struct request *rq)
224a892c8d5SSatya Tangirala {
225a892c8d5SSatya Tangirala 	blk_ksm_put_slot(rq->crypt_keyslot);
226a892c8d5SSatya Tangirala 	mempool_free(rq->crypt_ctx, bio_crypt_ctx_pool);
227a892c8d5SSatya Tangirala 	blk_crypto_rq_set_defaults(rq);
228a892c8d5SSatya Tangirala }
229a892c8d5SSatya Tangirala 
230a892c8d5SSatya Tangirala /**
231a892c8d5SSatya Tangirala  * __blk_crypto_bio_prep - Prepare bio for inline encryption
232a892c8d5SSatya Tangirala  *
233a892c8d5SSatya Tangirala  * @bio_ptr: pointer to original bio pointer
234a892c8d5SSatya Tangirala  *
235*488f6682SSatya Tangirala  * If the bio crypt context provided for the bio is supported by the underlying
236*488f6682SSatya Tangirala  * device's inline encryption hardware, do nothing.
237*488f6682SSatya Tangirala  *
238*488f6682SSatya Tangirala  * Otherwise, try to perform en/decryption for this bio by falling back to the
239*488f6682SSatya Tangirala  * kernel crypto API. When the crypto API fallback is used for encryption,
240*488f6682SSatya Tangirala  * blk-crypto may choose to split the bio into 2 - the first one that will
241*488f6682SSatya Tangirala  * continue to be processed and the second one that will be resubmitted via
242*488f6682SSatya Tangirala  * generic_make_request. A bounce bio will be allocated to encrypt the contents
243*488f6682SSatya Tangirala  * of the aforementioned "first one", and *bio_ptr will be updated to this
244*488f6682SSatya Tangirala  * bounce bio.
245a892c8d5SSatya Tangirala  *
246a892c8d5SSatya Tangirala  * Caller must ensure bio has bio_crypt_ctx.
247a892c8d5SSatya Tangirala  *
248a892c8d5SSatya Tangirala  * Return: true on success; false on error (and bio->bi_status will be set
249a892c8d5SSatya Tangirala  *	   appropriately, and bio_endio() will have been called so bio
250a892c8d5SSatya Tangirala  *	   submission should abort).
251a892c8d5SSatya Tangirala  */
252a892c8d5SSatya Tangirala bool __blk_crypto_bio_prep(struct bio **bio_ptr)
253a892c8d5SSatya Tangirala {
254a892c8d5SSatya Tangirala 	struct bio *bio = *bio_ptr;
255a892c8d5SSatya Tangirala 	const struct blk_crypto_key *bc_key = bio->bi_crypt_context->bc_key;
256a892c8d5SSatya Tangirala 
257a892c8d5SSatya Tangirala 	/* Error if bio has no data. */
258*488f6682SSatya Tangirala 	if (WARN_ON_ONCE(!bio_has_data(bio))) {
259*488f6682SSatya Tangirala 		bio->bi_status = BLK_STS_IOERR;
260a892c8d5SSatya Tangirala 		goto fail;
261a892c8d5SSatya Tangirala 	}
262a892c8d5SSatya Tangirala 
263*488f6682SSatya Tangirala 	if (!bio_crypt_check_alignment(bio)) {
264*488f6682SSatya Tangirala 		bio->bi_status = BLK_STS_IOERR;
265*488f6682SSatya Tangirala 		goto fail;
266*488f6682SSatya Tangirala 	}
267*488f6682SSatya Tangirala 
268*488f6682SSatya Tangirala 	/*
269*488f6682SSatya Tangirala 	 * Success if device supports the encryption context, or if we succeeded
270*488f6682SSatya Tangirala 	 * in falling back to the crypto API.
271*488f6682SSatya Tangirala 	 */
272*488f6682SSatya Tangirala 	if (blk_ksm_crypto_cfg_supported(bio->bi_disk->queue->ksm,
273*488f6682SSatya Tangirala 					 &bc_key->crypto_cfg))
274*488f6682SSatya Tangirala 		return true;
275*488f6682SSatya Tangirala 
276*488f6682SSatya Tangirala 	if (blk_crypto_fallback_bio_prep(bio_ptr))
277a892c8d5SSatya Tangirala 		return true;
278a892c8d5SSatya Tangirala fail:
279a892c8d5SSatya Tangirala 	bio_endio(*bio_ptr);
280a892c8d5SSatya Tangirala 	return false;
281a892c8d5SSatya Tangirala }
282a892c8d5SSatya Tangirala 
283a892c8d5SSatya Tangirala /**
284a892c8d5SSatya Tangirala  * __blk_crypto_rq_bio_prep - Prepare a request's crypt_ctx when its first bio
285a892c8d5SSatya Tangirala  *			      is inserted
286a892c8d5SSatya Tangirala  *
287a892c8d5SSatya Tangirala  * @rq: The request to prepare
288a892c8d5SSatya Tangirala  * @bio: The first bio being inserted into the request
289a892c8d5SSatya Tangirala  * @gfp_mask: gfp mask
290a892c8d5SSatya Tangirala  */
291a892c8d5SSatya Tangirala void __blk_crypto_rq_bio_prep(struct request *rq, struct bio *bio,
292a892c8d5SSatya Tangirala 			      gfp_t gfp_mask)
293a892c8d5SSatya Tangirala {
294a892c8d5SSatya Tangirala 	if (!rq->crypt_ctx)
295a892c8d5SSatya Tangirala 		rq->crypt_ctx = mempool_alloc(bio_crypt_ctx_pool, gfp_mask);
296a892c8d5SSatya Tangirala 	*rq->crypt_ctx = *bio->bi_crypt_context;
297a892c8d5SSatya Tangirala }
298a892c8d5SSatya Tangirala 
299a892c8d5SSatya Tangirala /**
300a892c8d5SSatya Tangirala  * blk_crypto_init_key() - Prepare a key for use with blk-crypto
301a892c8d5SSatya Tangirala  * @blk_key: Pointer to the blk_crypto_key to initialize.
302a892c8d5SSatya Tangirala  * @raw_key: Pointer to the raw key. Must be the correct length for the chosen
303a892c8d5SSatya Tangirala  *	     @crypto_mode; see blk_crypto_modes[].
304a892c8d5SSatya Tangirala  * @crypto_mode: identifier for the encryption algorithm to use
305a892c8d5SSatya Tangirala  * @dun_bytes: number of bytes that will be used to specify the DUN when this
306a892c8d5SSatya Tangirala  *	       key is used
307a892c8d5SSatya Tangirala  * @data_unit_size: the data unit size to use for en/decryption
308a892c8d5SSatya Tangirala  *
309a892c8d5SSatya Tangirala  * Return: 0 on success, -errno on failure.  The caller is responsible for
310a892c8d5SSatya Tangirala  *	   zeroizing both blk_key and raw_key when done with them.
311a892c8d5SSatya Tangirala  */
312a892c8d5SSatya Tangirala int blk_crypto_init_key(struct blk_crypto_key *blk_key, const u8 *raw_key,
313a892c8d5SSatya Tangirala 			enum blk_crypto_mode_num crypto_mode,
314a892c8d5SSatya Tangirala 			unsigned int dun_bytes,
315a892c8d5SSatya Tangirala 			unsigned int data_unit_size)
316a892c8d5SSatya Tangirala {
317a892c8d5SSatya Tangirala 	const struct blk_crypto_mode *mode;
318a892c8d5SSatya Tangirala 
319a892c8d5SSatya Tangirala 	memset(blk_key, 0, sizeof(*blk_key));
320a892c8d5SSatya Tangirala 
321a892c8d5SSatya Tangirala 	if (crypto_mode >= ARRAY_SIZE(blk_crypto_modes))
322a892c8d5SSatya Tangirala 		return -EINVAL;
323a892c8d5SSatya Tangirala 
324a892c8d5SSatya Tangirala 	mode = &blk_crypto_modes[crypto_mode];
325a892c8d5SSatya Tangirala 	if (mode->keysize == 0)
326a892c8d5SSatya Tangirala 		return -EINVAL;
327a892c8d5SSatya Tangirala 
328a892c8d5SSatya Tangirala 	if (dun_bytes == 0 || dun_bytes > BLK_CRYPTO_MAX_IV_SIZE)
329a892c8d5SSatya Tangirala 		return -EINVAL;
330a892c8d5SSatya Tangirala 
331a892c8d5SSatya Tangirala 	if (!is_power_of_2(data_unit_size))
332a892c8d5SSatya Tangirala 		return -EINVAL;
333a892c8d5SSatya Tangirala 
334a892c8d5SSatya Tangirala 	blk_key->crypto_cfg.crypto_mode = crypto_mode;
335a892c8d5SSatya Tangirala 	blk_key->crypto_cfg.dun_bytes = dun_bytes;
336a892c8d5SSatya Tangirala 	blk_key->crypto_cfg.data_unit_size = data_unit_size;
337a892c8d5SSatya Tangirala 	blk_key->data_unit_size_bits = ilog2(data_unit_size);
338a892c8d5SSatya Tangirala 	blk_key->size = mode->keysize;
339a892c8d5SSatya Tangirala 	memcpy(blk_key->raw, raw_key, mode->keysize);
340a892c8d5SSatya Tangirala 
341a892c8d5SSatya Tangirala 	return 0;
342a892c8d5SSatya Tangirala }
343a892c8d5SSatya Tangirala 
344*488f6682SSatya Tangirala /*
345*488f6682SSatya Tangirala  * Check if bios with @cfg can be en/decrypted by blk-crypto (i.e. either the
346*488f6682SSatya Tangirala  * request queue it's submitted to supports inline crypto, or the
347*488f6682SSatya Tangirala  * blk-crypto-fallback is enabled and supports the cfg).
348*488f6682SSatya Tangirala  */
349a892c8d5SSatya Tangirala bool blk_crypto_config_supported(struct request_queue *q,
350a892c8d5SSatya Tangirala 				 const struct blk_crypto_config *cfg)
351a892c8d5SSatya Tangirala {
352*488f6682SSatya Tangirala 	return IS_ENABLED(CONFIG_BLK_INLINE_ENCRYPTION_FALLBACK) ||
353*488f6682SSatya Tangirala 	       blk_ksm_crypto_cfg_supported(q->ksm, cfg);
354a892c8d5SSatya Tangirala }
355a892c8d5SSatya Tangirala 
356a892c8d5SSatya Tangirala /**
357a892c8d5SSatya Tangirala  * blk_crypto_start_using_key() - Start using a blk_crypto_key on a device
358a892c8d5SSatya Tangirala  * @key: A key to use on the device
359a892c8d5SSatya Tangirala  * @q: the request queue for the device
360a892c8d5SSatya Tangirala  *
361*488f6682SSatya Tangirala  * Upper layers must call this function to ensure that either the hardware
362*488f6682SSatya Tangirala  * supports the key's crypto settings, or the crypto API fallback has transforms
363*488f6682SSatya Tangirala  * for the needed mode allocated and ready to go. This function may allocate
364*488f6682SSatya Tangirala  * an skcipher, and *should not* be called from the data path, since that might
365*488f6682SSatya Tangirala  * cause a deadlock
366a892c8d5SSatya Tangirala  *
367*488f6682SSatya Tangirala  * Return: 0 on success; -ENOPKG if the hardware doesn't support the key and
368*488f6682SSatya Tangirala  *	   blk-crypto-fallback is either disabled or the needed algorithm
369*488f6682SSatya Tangirala  *	   is disabled in the crypto API; or another -errno code.
370a892c8d5SSatya Tangirala  */
371a892c8d5SSatya Tangirala int blk_crypto_start_using_key(const struct blk_crypto_key *key,
372a892c8d5SSatya Tangirala 			       struct request_queue *q)
373a892c8d5SSatya Tangirala {
374a892c8d5SSatya Tangirala 	if (blk_ksm_crypto_cfg_supported(q->ksm, &key->crypto_cfg))
375a892c8d5SSatya Tangirala 		return 0;
376*488f6682SSatya Tangirala 	return blk_crypto_fallback_start_using_mode(key->crypto_cfg.crypto_mode);
377a892c8d5SSatya Tangirala }
378a892c8d5SSatya Tangirala 
379a892c8d5SSatya Tangirala /**
380a892c8d5SSatya Tangirala  * blk_crypto_evict_key() - Evict a key from any inline encryption hardware
381a892c8d5SSatya Tangirala  *			    it may have been programmed into
382a892c8d5SSatya Tangirala  * @q: The request queue who's associated inline encryption hardware this key
383a892c8d5SSatya Tangirala  *     might have been programmed into
384a892c8d5SSatya Tangirala  * @key: The key to evict
385a892c8d5SSatya Tangirala  *
386a892c8d5SSatya Tangirala  * Upper layers (filesystems) must call this function to ensure that a key is
387a892c8d5SSatya Tangirala  * evicted from any hardware that it might have been programmed into.  The key
388a892c8d5SSatya Tangirala  * must not be in use by any in-flight IO when this function is called.
389a892c8d5SSatya Tangirala  *
390a892c8d5SSatya Tangirala  * Return: 0 on success or if key is not present in the q's ksm, -err on error.
391a892c8d5SSatya Tangirala  */
392a892c8d5SSatya Tangirala int blk_crypto_evict_key(struct request_queue *q,
393a892c8d5SSatya Tangirala 			 const struct blk_crypto_key *key)
394a892c8d5SSatya Tangirala {
395a892c8d5SSatya Tangirala 	if (blk_ksm_crypto_cfg_supported(q->ksm, &key->crypto_cfg))
396a892c8d5SSatya Tangirala 		return blk_ksm_evict_key(q->ksm, key);
397a892c8d5SSatya Tangirala 
398*488f6682SSatya Tangirala 	/*
399*488f6682SSatya Tangirala 	 * If the request queue's associated inline encryption hardware didn't
400*488f6682SSatya Tangirala 	 * have support for the key, then the key might have been programmed
401*488f6682SSatya Tangirala 	 * into the fallback keyslot manager, so try to evict from there.
402*488f6682SSatya Tangirala 	 */
403*488f6682SSatya Tangirala 	return blk_crypto_fallback_evict_key(key);
404a892c8d5SSatya Tangirala }
405