xref: /illumos-gate/usr/src/uts/common/fs/zfs/zio_checksum.c (revision 770499e185d15678ccb0be57ebc626ad18d93383)
1fa9e4066Sahrens /*
2fa9e4066Sahrens  * CDDL HEADER START
3fa9e4066Sahrens  *
4fa9e4066Sahrens  * The contents of this file are subject to the terms of the
5ea8dc4b6Seschrock  * Common Development and Distribution License (the "License").
6ea8dc4b6Seschrock  * You may not use this file except in compliance with the License.
7fa9e4066Sahrens  *
8fa9e4066Sahrens  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9fa9e4066Sahrens  * or http://www.opensolaris.org/os/licensing.
10fa9e4066Sahrens  * See the License for the specific language governing permissions
11fa9e4066Sahrens  * and limitations under the License.
12fa9e4066Sahrens  *
13fa9e4066Sahrens  * When distributing Covered Code, include this CDDL HEADER in each
14fa9e4066Sahrens  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15fa9e4066Sahrens  * If applicable, add the following below this CDDL HEADER, with the
16fa9e4066Sahrens  * fields enclosed by brackets "[]" replaced with your own identifying
17fa9e4066Sahrens  * information: Portions Copyright [yyyy] [name of copyright owner]
18fa9e4066Sahrens  *
19fa9e4066Sahrens  * CDDL HEADER END
20fa9e4066Sahrens  */
21fa9e4066Sahrens /*
22cde58dbcSMatthew Ahrens  * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
236cedfc39SPavel Zakharov  * Copyright (c) 2013, 2016 by Delphix. All rights reserved.
24810e43b2SBill Pijewski  * Copyright (c) 2013, Joyent, Inc. All rights reserved.
2545818ee1SMatthew Ahrens  * Copyright 2013 Saso Kiselkov. All rights reserved.
26fa9e4066Sahrens  */
27fa9e4066Sahrens 
28fa9e4066Sahrens #include <sys/zfs_context.h>
29fa9e4066Sahrens #include <sys/spa.h>
3045818ee1SMatthew Ahrens #include <sys/spa_impl.h>
31fa9e4066Sahrens #include <sys/zio.h>
32fa9e4066Sahrens #include <sys/zio_checksum.h>
336e1f5caaSNeil Perrin #include <sys/zil.h>
34*770499e1SDan Kimmel #include <sys/abd.h>
35cde58dbcSMatthew Ahrens #include <zfs_fletcher.h>
36fa9e4066Sahrens 
37fa9e4066Sahrens /*
38fa9e4066Sahrens  * Checksum vectors.
39fa9e4066Sahrens  *
40fa9e4066Sahrens  * In the SPA, everything is checksummed.  We support checksum vectors
41fa9e4066Sahrens  * for three distinct reasons:
42fa9e4066Sahrens  *
43fa9e4066Sahrens  *   1. Different kinds of data need different levels of protection.
44fa9e4066Sahrens  *	For SPA metadata, we always want a very strong checksum.
45fa9e4066Sahrens  *	For user data, we let users make the trade-off between speed
46fa9e4066Sahrens  *	and checksum strength.
47fa9e4066Sahrens  *
48fa9e4066Sahrens  *   2. Cryptographic hash and MAC algorithms are an area of active research.
49fa9e4066Sahrens  *	It is likely that in future hash functions will be at least as strong
50fa9e4066Sahrens  *	as current best-of-breed, and may be substantially faster as well.
51fa9e4066Sahrens  *	We want the ability to take advantage of these new hashes as soon as
52fa9e4066Sahrens  *	they become available.
53fa9e4066Sahrens  *
54fa9e4066Sahrens  *   3. If someone develops hardware that can compute a strong hash quickly,
55fa9e4066Sahrens  *	we want the ability to take advantage of that hardware.
56fa9e4066Sahrens  *
57fa9e4066Sahrens  * Of course, we don't want a checksum upgrade to invalidate existing
58b24ab676SJeff Bonwick  * data, so we store the checksum *function* in eight bits of the bp.
59b24ab676SJeff Bonwick  * This gives us room for up to 256 different checksum functions.
60fa9e4066Sahrens  *
61fa9e4066Sahrens  * When writing a block, we always checksum it with the latest-and-greatest
62fa9e4066Sahrens  * checksum function of the appropriate strength.  When reading a block,
63fa9e4066Sahrens  * we compare the expected checksum against the actual checksum, which we
64b24ab676SJeff Bonwick  * compute via the checksum function specified by BP_GET_CHECKSUM(bp).
6545818ee1SMatthew Ahrens  *
6645818ee1SMatthew Ahrens  * SALTED CHECKSUMS
6745818ee1SMatthew Ahrens  *
6845818ee1SMatthew Ahrens  * To enable the use of less secure hash algorithms with dedup, we
6945818ee1SMatthew Ahrens  * introduce the notion of salted checksums (MACs, really).  A salted
7045818ee1SMatthew Ahrens  * checksum is fed both a random 256-bit value (the salt) and the data
7145818ee1SMatthew Ahrens  * to be checksummed.  This salt is kept secret (stored on the pool, but
7245818ee1SMatthew Ahrens  * never shown to the user).  Thus even if an attacker knew of collision
7345818ee1SMatthew Ahrens  * weaknesses in the hash algorithm, they won't be able to mount a known
7445818ee1SMatthew Ahrens  * plaintext attack on the DDT, since the actual hash value cannot be
7545818ee1SMatthew Ahrens  * known ahead of time.  How the salt is used is algorithm-specific
7645818ee1SMatthew Ahrens  * (some might simply prefix it to the data block, others might need to
7745818ee1SMatthew Ahrens  * utilize a full-blown HMAC).  On disk the salt is stored in a ZAP
7845818ee1SMatthew Ahrens  * object in the MOS (DMU_POOL_CHECKSUM_SALT).
7945818ee1SMatthew Ahrens  *
8045818ee1SMatthew Ahrens  * CONTEXT TEMPLATES
8145818ee1SMatthew Ahrens  *
8245818ee1SMatthew Ahrens  * Some hashing algorithms need to perform a substantial amount of
8345818ee1SMatthew Ahrens  * initialization work (e.g. salted checksums above may need to pre-hash
8445818ee1SMatthew Ahrens  * the salt) before being able to process data.  Performing this
8545818ee1SMatthew Ahrens  * redundant work for each block would be wasteful, so we instead allow
8645818ee1SMatthew Ahrens  * a checksum algorithm to do the work once (the first time it's used)
8745818ee1SMatthew Ahrens  * and then keep this pre-initialized context as a template inside the
8845818ee1SMatthew Ahrens  * spa_t (spa_cksum_tmpls).  If the zio_checksum_info_t contains
8945818ee1SMatthew Ahrens  * non-NULL ci_tmpl_init and ci_tmpl_free callbacks, they are used to
9045818ee1SMatthew Ahrens  * construct and destruct the pre-initialized checksum context.  The
9145818ee1SMatthew Ahrens  * pre-initialized context is then reused during each checksum
9245818ee1SMatthew Ahrens  * invocation and passed to the checksum function.
93fa9e4066Sahrens  */
94fa9e4066Sahrens 
95fa9e4066Sahrens /*ARGSUSED*/
96fa9e4066Sahrens static void
97*770499e1SDan Kimmel abd_checksum_off(abd_t *abd, uint64_t size,
9845818ee1SMatthew Ahrens     const void *ctx_template, zio_cksum_t *zcp)
99fa9e4066Sahrens {
100fa9e4066Sahrens 	ZIO_SET_CHECKSUM(zcp, 0, 0, 0, 0);
101fa9e4066Sahrens }
102fa9e4066Sahrens 
103*770499e1SDan Kimmel /*ARGSUSED*/
104*770499e1SDan Kimmel void
105*770499e1SDan Kimmel abd_fletcher_2_native(abd_t *abd, uint64_t size,
106*770499e1SDan Kimmel     const void *ctx_template, zio_cksum_t *zcp)
107*770499e1SDan Kimmel {
108*770499e1SDan Kimmel 	fletcher_init(zcp);
109*770499e1SDan Kimmel 	(void) abd_iterate_func(abd, 0, size,
110*770499e1SDan Kimmel 	    fletcher_2_incremental_native, zcp);
111*770499e1SDan Kimmel }
112*770499e1SDan Kimmel 
113*770499e1SDan Kimmel /*ARGSUSED*/
114*770499e1SDan Kimmel void
115*770499e1SDan Kimmel abd_fletcher_2_byteswap(abd_t *abd, uint64_t size,
116*770499e1SDan Kimmel     const void *ctx_template, zio_cksum_t *zcp)
117*770499e1SDan Kimmel {
118*770499e1SDan Kimmel 	fletcher_init(zcp);
119*770499e1SDan Kimmel 	(void) abd_iterate_func(abd, 0, size,
120*770499e1SDan Kimmel 	    fletcher_2_incremental_byteswap, zcp);
121*770499e1SDan Kimmel }
122*770499e1SDan Kimmel 
123*770499e1SDan Kimmel /*ARGSUSED*/
124*770499e1SDan Kimmel void
125*770499e1SDan Kimmel abd_fletcher_4_native(abd_t *abd, uint64_t size,
126*770499e1SDan Kimmel     const void *ctx_template, zio_cksum_t *zcp)
127*770499e1SDan Kimmel {
128*770499e1SDan Kimmel 	fletcher_init(zcp);
129*770499e1SDan Kimmel 	(void) abd_iterate_func(abd, 0, size,
130*770499e1SDan Kimmel 	    fletcher_4_incremental_native, zcp);
131*770499e1SDan Kimmel }
132*770499e1SDan Kimmel 
133*770499e1SDan Kimmel /*ARGSUSED*/
134*770499e1SDan Kimmel void
135*770499e1SDan Kimmel abd_fletcher_4_byteswap(abd_t *abd, uint64_t size,
136*770499e1SDan Kimmel     const void *ctx_template, zio_cksum_t *zcp)
137*770499e1SDan Kimmel {
138*770499e1SDan Kimmel 	fletcher_init(zcp);
139*770499e1SDan Kimmel 	(void) abd_iterate_func(abd, 0, size,
140*770499e1SDan Kimmel 	    fletcher_4_incremental_byteswap, zcp);
141*770499e1SDan Kimmel }
142*770499e1SDan Kimmel 
143fa9e4066Sahrens zio_checksum_info_t zio_checksum_table[ZIO_CHECKSUM_FUNCTIONS] = {
14445818ee1SMatthew Ahrens 	{{NULL, NULL}, NULL, NULL, 0, "inherit"},
14545818ee1SMatthew Ahrens 	{{NULL, NULL}, NULL, NULL, 0, "on"},
146*770499e1SDan Kimmel 	{{abd_checksum_off,		abd_checksum_off},
14745818ee1SMatthew Ahrens 	    NULL, NULL, 0, "off"},
148*770499e1SDan Kimmel 	{{abd_checksum_SHA256,		abd_checksum_SHA256},
14945818ee1SMatthew Ahrens 	    NULL, NULL, ZCHECKSUM_FLAG_METADATA | ZCHECKSUM_FLAG_EMBEDDED,
15045818ee1SMatthew Ahrens 	    "label"},
151*770499e1SDan Kimmel 	{{abd_checksum_SHA256,		abd_checksum_SHA256},
15245818ee1SMatthew Ahrens 	    NULL, NULL, ZCHECKSUM_FLAG_METADATA | ZCHECKSUM_FLAG_EMBEDDED,
15345818ee1SMatthew Ahrens 	    "gang_header"},
154*770499e1SDan Kimmel 	{{abd_fletcher_2_native,	abd_fletcher_2_byteswap},
15545818ee1SMatthew Ahrens 	    NULL, NULL, ZCHECKSUM_FLAG_EMBEDDED, "zilog"},
156*770499e1SDan Kimmel 	{{abd_fletcher_2_native,	abd_fletcher_2_byteswap},
15745818ee1SMatthew Ahrens 	    NULL, NULL, 0, "fletcher2"},
158*770499e1SDan Kimmel 	{{abd_fletcher_4_native,	abd_fletcher_4_byteswap},
15945818ee1SMatthew Ahrens 	    NULL, NULL, ZCHECKSUM_FLAG_METADATA, "fletcher4"},
160*770499e1SDan Kimmel 	{{abd_checksum_SHA256,		abd_checksum_SHA256},
16145818ee1SMatthew Ahrens 	    NULL, NULL, ZCHECKSUM_FLAG_METADATA | ZCHECKSUM_FLAG_DEDUP |
16245818ee1SMatthew Ahrens 	    ZCHECKSUM_FLAG_NOPWRITE, "sha256"},
163*770499e1SDan Kimmel 	{{abd_fletcher_4_native,	abd_fletcher_4_byteswap},
16445818ee1SMatthew Ahrens 	    NULL, NULL, ZCHECKSUM_FLAG_EMBEDDED, "zilog2"},
165*770499e1SDan Kimmel 	{{abd_checksum_off,		abd_checksum_off},
16645818ee1SMatthew Ahrens 	    NULL, NULL, 0, "noparity"},
167*770499e1SDan Kimmel 	{{abd_checksum_SHA512_native,	abd_checksum_SHA512_byteswap},
16845818ee1SMatthew Ahrens 	    NULL, NULL, ZCHECKSUM_FLAG_METADATA | ZCHECKSUM_FLAG_DEDUP |
16945818ee1SMatthew Ahrens 	    ZCHECKSUM_FLAG_NOPWRITE, "sha512"},
170*770499e1SDan Kimmel 	{{abd_checksum_skein_native,	abd_checksum_skein_byteswap},
171*770499e1SDan Kimmel 	    abd_checksum_skein_tmpl_init, abd_checksum_skein_tmpl_free,
17245818ee1SMatthew Ahrens 	    ZCHECKSUM_FLAG_METADATA | ZCHECKSUM_FLAG_DEDUP |
17345818ee1SMatthew Ahrens 	    ZCHECKSUM_FLAG_SALTED | ZCHECKSUM_FLAG_NOPWRITE, "skein"},
174*770499e1SDan Kimmel 	{{abd_checksum_edonr_native,	abd_checksum_edonr_byteswap},
175*770499e1SDan Kimmel 	    abd_checksum_edonr_tmpl_init, abd_checksum_edonr_tmpl_free,
17645818ee1SMatthew Ahrens 	    ZCHECKSUM_FLAG_METADATA | ZCHECKSUM_FLAG_SALTED |
17745818ee1SMatthew Ahrens 	    ZCHECKSUM_FLAG_NOPWRITE, "edonr"},
178fa9e4066Sahrens };
179fa9e4066Sahrens 
180971640e6Silovezfs /*
181971640e6Silovezfs  * The flag corresponding to the "verify" in dedup=[checksum,]verify
182971640e6Silovezfs  * must be cleared first, so callers should use ZIO_CHECKSUM_MASK.
183971640e6Silovezfs  */
18445818ee1SMatthew Ahrens spa_feature_t
18545818ee1SMatthew Ahrens zio_checksum_to_feature(enum zio_checksum cksum)
18645818ee1SMatthew Ahrens {
187971640e6Silovezfs 	VERIFY((cksum & ~ZIO_CHECKSUM_MASK) == 0);
188971640e6Silovezfs 
18945818ee1SMatthew Ahrens 	switch (cksum) {
19045818ee1SMatthew Ahrens 	case ZIO_CHECKSUM_SHA512:
19145818ee1SMatthew Ahrens 		return (SPA_FEATURE_SHA512);
19245818ee1SMatthew Ahrens 	case ZIO_CHECKSUM_SKEIN:
19345818ee1SMatthew Ahrens 		return (SPA_FEATURE_SKEIN);
19445818ee1SMatthew Ahrens 	case ZIO_CHECKSUM_EDONR:
19545818ee1SMatthew Ahrens 		return (SPA_FEATURE_EDONR);
19645818ee1SMatthew Ahrens 	}
19745818ee1SMatthew Ahrens 	return (SPA_FEATURE_NONE);
19845818ee1SMatthew Ahrens }
19945818ee1SMatthew Ahrens 
200b24ab676SJeff Bonwick enum zio_checksum
201b24ab676SJeff Bonwick zio_checksum_select(enum zio_checksum child, enum zio_checksum parent)
202fa9e4066Sahrens {
203fa9e4066Sahrens 	ASSERT(child < ZIO_CHECKSUM_FUNCTIONS);
204fa9e4066Sahrens 	ASSERT(parent < ZIO_CHECKSUM_FUNCTIONS);
205fa9e4066Sahrens 	ASSERT(parent != ZIO_CHECKSUM_INHERIT && parent != ZIO_CHECKSUM_ON);
206fa9e4066Sahrens 
207fa9e4066Sahrens 	if (child == ZIO_CHECKSUM_INHERIT)
208fa9e4066Sahrens 		return (parent);
209fa9e4066Sahrens 
210fa9e4066Sahrens 	if (child == ZIO_CHECKSUM_ON)
211fa9e4066Sahrens 		return (ZIO_CHECKSUM_ON_VALUE);
212fa9e4066Sahrens 
213fa9e4066Sahrens 	return (child);
214fa9e4066Sahrens }
215fa9e4066Sahrens 
216b24ab676SJeff Bonwick enum zio_checksum
217b24ab676SJeff Bonwick zio_checksum_dedup_select(spa_t *spa, enum zio_checksum child,
218b24ab676SJeff Bonwick     enum zio_checksum parent)
219b24ab676SJeff Bonwick {
220b24ab676SJeff Bonwick 	ASSERT((child & ZIO_CHECKSUM_MASK) < ZIO_CHECKSUM_FUNCTIONS);
221b24ab676SJeff Bonwick 	ASSERT((parent & ZIO_CHECKSUM_MASK) < ZIO_CHECKSUM_FUNCTIONS);
222b24ab676SJeff Bonwick 	ASSERT(parent != ZIO_CHECKSUM_INHERIT && parent != ZIO_CHECKSUM_ON);
223b24ab676SJeff Bonwick 
224b24ab676SJeff Bonwick 	if (child == ZIO_CHECKSUM_INHERIT)
225b24ab676SJeff Bonwick 		return (parent);
226b24ab676SJeff Bonwick 
227b24ab676SJeff Bonwick 	if (child == ZIO_CHECKSUM_ON)
228b24ab676SJeff Bonwick 		return (spa_dedup_checksum(spa));
229b24ab676SJeff Bonwick 
230b24ab676SJeff Bonwick 	if (child == (ZIO_CHECKSUM_ON | ZIO_CHECKSUM_VERIFY))
231b24ab676SJeff Bonwick 		return (spa_dedup_checksum(spa) | ZIO_CHECKSUM_VERIFY);
232b24ab676SJeff Bonwick 
23345818ee1SMatthew Ahrens 	ASSERT((zio_checksum_table[child & ZIO_CHECKSUM_MASK].ci_flags &
23445818ee1SMatthew Ahrens 	    ZCHECKSUM_FLAG_DEDUP) ||
235b24ab676SJeff Bonwick 	    (child & ZIO_CHECKSUM_VERIFY) || child == ZIO_CHECKSUM_OFF);
236b24ab676SJeff Bonwick 
237b24ab676SJeff Bonwick 	return (child);
238b24ab676SJeff Bonwick }
239b24ab676SJeff Bonwick 
240e14bb325SJeff Bonwick /*
241e14bb325SJeff Bonwick  * Set the external verifier for a gang block based on <vdev, offset, txg>,
242e14bb325SJeff Bonwick  * a tuple which is guaranteed to be unique for the life of the pool.
243e14bb325SJeff Bonwick  */
244e14bb325SJeff Bonwick static void
245e14bb325SJeff Bonwick zio_checksum_gang_verifier(zio_cksum_t *zcp, blkptr_t *bp)
246e14bb325SJeff Bonwick {
247e14bb325SJeff Bonwick 	dva_t *dva = BP_IDENTITY(bp);
248b24ab676SJeff Bonwick 	uint64_t txg = BP_PHYSICAL_BIRTH(bp);
249e14bb325SJeff Bonwick 
250e14bb325SJeff Bonwick 	ASSERT(BP_IS_GANG(bp));
251e14bb325SJeff Bonwick 
252e14bb325SJeff Bonwick 	ZIO_SET_CHECKSUM(zcp, DVA_GET_VDEV(dva), DVA_GET_OFFSET(dva), txg, 0);
253e14bb325SJeff Bonwick }
254e14bb325SJeff Bonwick 
255e14bb325SJeff Bonwick /*
256e14bb325SJeff Bonwick  * Set the external verifier for a label block based on its offset.
257e14bb325SJeff Bonwick  * The vdev is implicit, and the txg is unknowable at pool open time --
258e14bb325SJeff Bonwick  * hence the logic in vdev_uberblock_load() to find the most recent copy.
259e14bb325SJeff Bonwick  */
260e14bb325SJeff Bonwick static void
261e14bb325SJeff Bonwick zio_checksum_label_verifier(zio_cksum_t *zcp, uint64_t offset)
262e14bb325SJeff Bonwick {
263e14bb325SJeff Bonwick 	ZIO_SET_CHECKSUM(zcp, offset, 0, 0, 0);
264e14bb325SJeff Bonwick }
265e14bb325SJeff Bonwick 
26645818ee1SMatthew Ahrens /*
26745818ee1SMatthew Ahrens  * Calls the template init function of a checksum which supports context
26845818ee1SMatthew Ahrens  * templates and installs the template into the spa_t.
26945818ee1SMatthew Ahrens  */
27045818ee1SMatthew Ahrens static void
27145818ee1SMatthew Ahrens zio_checksum_template_init(enum zio_checksum checksum, spa_t *spa)
27245818ee1SMatthew Ahrens {
27345818ee1SMatthew Ahrens 	zio_checksum_info_t *ci = &zio_checksum_table[checksum];
27445818ee1SMatthew Ahrens 
27545818ee1SMatthew Ahrens 	if (ci->ci_tmpl_init == NULL)
27645818ee1SMatthew Ahrens 		return;
27745818ee1SMatthew Ahrens 	if (spa->spa_cksum_tmpls[checksum] != NULL)
27845818ee1SMatthew Ahrens 		return;
27945818ee1SMatthew Ahrens 
28045818ee1SMatthew Ahrens 	VERIFY(ci->ci_tmpl_free != NULL);
28145818ee1SMatthew Ahrens 	mutex_enter(&spa->spa_cksum_tmpls_lock);
28245818ee1SMatthew Ahrens 	if (spa->spa_cksum_tmpls[checksum] == NULL) {
28345818ee1SMatthew Ahrens 		spa->spa_cksum_tmpls[checksum] =
28445818ee1SMatthew Ahrens 		    ci->ci_tmpl_init(&spa->spa_cksum_salt);
28545818ee1SMatthew Ahrens 		VERIFY(spa->spa_cksum_tmpls[checksum] != NULL);
28645818ee1SMatthew Ahrens 	}
28745818ee1SMatthew Ahrens 	mutex_exit(&spa->spa_cksum_tmpls_lock);
28845818ee1SMatthew Ahrens }
28945818ee1SMatthew Ahrens 
290fa9e4066Sahrens /*
291fa9e4066Sahrens  * Generate the checksum.
292fa9e4066Sahrens  */
293fa9e4066Sahrens void
294e14bb325SJeff Bonwick zio_checksum_compute(zio_t *zio, enum zio_checksum checksum,
295*770499e1SDan Kimmel     abd_t *abd, uint64_t size)
296fa9e4066Sahrens {
297e14bb325SJeff Bonwick 	blkptr_t *bp = zio->io_bp;
298e14bb325SJeff Bonwick 	uint64_t offset = zio->io_offset;
299fa9e4066Sahrens 	zio_checksum_info_t *ci = &zio_checksum_table[checksum];
3006e1f5caaSNeil Perrin 	zio_cksum_t cksum;
30145818ee1SMatthew Ahrens 	spa_t *spa = zio->io_spa;
302fa9e4066Sahrens 
303e14bb325SJeff Bonwick 	ASSERT((uint_t)checksum < ZIO_CHECKSUM_FUNCTIONS);
304fa9e4066Sahrens 	ASSERT(ci->ci_func[0] != NULL);
305fa9e4066Sahrens 
30645818ee1SMatthew Ahrens 	zio_checksum_template_init(checksum, spa);
30745818ee1SMatthew Ahrens 
30845818ee1SMatthew Ahrens 	if (ci->ci_flags & ZCHECKSUM_FLAG_EMBEDDED) {
3096e1f5caaSNeil Perrin 		zio_eck_t *eck;
310*770499e1SDan Kimmel 		void *data = abd_to_buf(abd);
3116e1f5caaSNeil Perrin 
3126e1f5caaSNeil Perrin 		if (checksum == ZIO_CHECKSUM_ZILOG2) {
3136e1f5caaSNeil Perrin 			zil_chain_t *zilc = data;
3146e1f5caaSNeil Perrin 
3156e1f5caaSNeil Perrin 			size = P2ROUNDUP_TYPED(zilc->zc_nused, ZIL_MIN_BLKSZ,
3166e1f5caaSNeil Perrin 			    uint64_t);
3176e1f5caaSNeil Perrin 			eck = &zilc->zc_eck;
3186e1f5caaSNeil Perrin 		} else {
3196e1f5caaSNeil Perrin 			eck = (zio_eck_t *)((char *)data + size) - 1;
3206e1f5caaSNeil Perrin 		}
321e14bb325SJeff Bonwick 		if (checksum == ZIO_CHECKSUM_GANG_HEADER)
3226e1f5caaSNeil Perrin 			zio_checksum_gang_verifier(&eck->zec_cksum, bp);
323e14bb325SJeff Bonwick 		else if (checksum == ZIO_CHECKSUM_LABEL)
3246e1f5caaSNeil Perrin 			zio_checksum_label_verifier(&eck->zec_cksum, offset);
325e14bb325SJeff Bonwick 		else
3266e1f5caaSNeil Perrin 			bp->blk_cksum = eck->zec_cksum;
3276e1f5caaSNeil Perrin 		eck->zec_magic = ZEC_MAGIC;
328*770499e1SDan Kimmel 		ci->ci_func[0](abd, size, spa->spa_cksum_tmpls[checksum],
32945818ee1SMatthew Ahrens 		    &cksum);
3306e1f5caaSNeil Perrin 		eck->zec_cksum = cksum;
331fa9e4066Sahrens 	} else {
332*770499e1SDan Kimmel 		ci->ci_func[0](abd, size, spa->spa_cksum_tmpls[checksum],
33345818ee1SMatthew Ahrens 		    &bp->blk_cksum);
334fa9e4066Sahrens 	}
335fa9e4066Sahrens }
336fa9e4066Sahrens 
337fa9e4066Sahrens int
338dcbf3bd6SGeorge Wilson zio_checksum_error_impl(spa_t *spa, blkptr_t *bp, enum zio_checksum checksum,
339*770499e1SDan Kimmel     abd_t *abd, uint64_t size, uint64_t offset, zio_bad_cksum_t *info)
340fa9e4066Sahrens {
341fa9e4066Sahrens 	zio_checksum_info_t *ci = &zio_checksum_table[checksum];
342dcbf3bd6SGeorge Wilson 	zio_cksum_t actual_cksum, expected_cksum;
343dcbf3bd6SGeorge Wilson 	int byteswap;
344fa9e4066Sahrens 
345fa9e4066Sahrens 	if (checksum >= ZIO_CHECKSUM_FUNCTIONS || ci->ci_func[0] == NULL)
346be6fd75aSMatthew Ahrens 		return (SET_ERROR(EINVAL));
347fa9e4066Sahrens 
34845818ee1SMatthew Ahrens 	zio_checksum_template_init(checksum, spa);
34945818ee1SMatthew Ahrens 
35045818ee1SMatthew Ahrens 	if (ci->ci_flags & ZCHECKSUM_FLAG_EMBEDDED) {
3516e1f5caaSNeil Perrin 		zio_eck_t *eck;
352dcbf3bd6SGeorge Wilson 		zio_cksum_t verifier;
353*770499e1SDan Kimmel 		uint64_t data_size = size;
354*770499e1SDan Kimmel 		void *data = abd_borrow_buf_copy(abd, data_size);
3556e1f5caaSNeil Perrin 
3566e1f5caaSNeil Perrin 		if (checksum == ZIO_CHECKSUM_ZILOG2) {
3576e1f5caaSNeil Perrin 			zil_chain_t *zilc = data;
3586e1f5caaSNeil Perrin 			uint64_t nused;
3596e1f5caaSNeil Perrin 
3606e1f5caaSNeil Perrin 			eck = &zilc->zc_eck;
361*770499e1SDan Kimmel 			if (eck->zec_magic == ZEC_MAGIC) {
3626e1f5caaSNeil Perrin 				nused = zilc->zc_nused;
363*770499e1SDan Kimmel 			} else if (eck->zec_magic == BSWAP_64(ZEC_MAGIC)) {
3646e1f5caaSNeil Perrin 				nused = BSWAP_64(zilc->zc_nused);
365*770499e1SDan Kimmel 			} else {
366*770499e1SDan Kimmel 				abd_return_buf(abd, data, data_size);
367be6fd75aSMatthew Ahrens 				return (SET_ERROR(ECKSUM));
368*770499e1SDan Kimmel 			}
3696e1f5caaSNeil Perrin 
370*770499e1SDan Kimmel 			if (nused > data_size) {
371*770499e1SDan Kimmel 				abd_return_buf(abd, data, data_size);
372be6fd75aSMatthew Ahrens 				return (SET_ERROR(ECKSUM));
373*770499e1SDan Kimmel 			}
3746e1f5caaSNeil Perrin 
3756e1f5caaSNeil Perrin 			size = P2ROUNDUP_TYPED(nused, ZIL_MIN_BLKSZ, uint64_t);
3766e1f5caaSNeil Perrin 		} else {
377*770499e1SDan Kimmel 			eck = (zio_eck_t *)((char *)data + data_size) - 1;
3786e1f5caaSNeil Perrin 		}
3796e1f5caaSNeil Perrin 
380fa9e4066Sahrens 		if (checksum == ZIO_CHECKSUM_GANG_HEADER)
381e14bb325SJeff Bonwick 			zio_checksum_gang_verifier(&verifier, bp);
382e14bb325SJeff Bonwick 		else if (checksum == ZIO_CHECKSUM_LABEL)
383e14bb325SJeff Bonwick 			zio_checksum_label_verifier(&verifier, offset);
384e14bb325SJeff Bonwick 		else
385e14bb325SJeff Bonwick 			verifier = bp->blk_cksum;
386e14bb325SJeff Bonwick 
3876e1f5caaSNeil Perrin 		byteswap = (eck->zec_magic == BSWAP_64(ZEC_MAGIC));
388fa9e4066Sahrens 
389e14bb325SJeff Bonwick 		if (byteswap)
390e14bb325SJeff Bonwick 			byteswap_uint64_array(&verifier, sizeof (zio_cksum_t));
391e14bb325SJeff Bonwick 
392*770499e1SDan Kimmel 		size_t eck_offset = (size_t)(&eck->zec_cksum) - (size_t)data;
3936e1f5caaSNeil Perrin 		expected_cksum = eck->zec_cksum;
3946e1f5caaSNeil Perrin 		eck->zec_cksum = verifier;
395*770499e1SDan Kimmel 		abd_return_buf_copy(abd, data, data_size);
396*770499e1SDan Kimmel 
397*770499e1SDan Kimmel 		ci->ci_func[byteswap](abd, size,
39845818ee1SMatthew Ahrens 		    spa->spa_cksum_tmpls[checksum], &actual_cksum);
399*770499e1SDan Kimmel 		abd_copy_from_buf_off(abd, &expected_cksum,
400*770499e1SDan Kimmel 		    eck_offset, sizeof (zio_cksum_t));
401e14bb325SJeff Bonwick 
402dcbf3bd6SGeorge Wilson 		if (byteswap) {
403fa9e4066Sahrens 			byteswap_uint64_array(&expected_cksum,
404fa9e4066Sahrens 			    sizeof (zio_cksum_t));
405dcbf3bd6SGeorge Wilson 		}
406fa9e4066Sahrens 	} else {
407e14bb325SJeff Bonwick 		byteswap = BP_SHOULD_BYTESWAP(bp);
408e14bb325SJeff Bonwick 		expected_cksum = bp->blk_cksum;
409*770499e1SDan Kimmel 		ci->ci_func[byteswap](abd, size,
41045818ee1SMatthew Ahrens 		    spa->spa_cksum_tmpls[checksum], &actual_cksum);
411fa9e4066Sahrens 	}
412fa9e4066Sahrens 
413dcbf3bd6SGeorge Wilson 	if (info != NULL) {
414dcbf3bd6SGeorge Wilson 		info->zbc_expected = expected_cksum;
415dcbf3bd6SGeorge Wilson 		info->zbc_actual = actual_cksum;
416dcbf3bd6SGeorge Wilson 		info->zbc_checksum_name = ci->ci_name;
417dcbf3bd6SGeorge Wilson 		info->zbc_byteswapped = byteswap;
418dcbf3bd6SGeorge Wilson 		info->zbc_injected = 0;
419dcbf3bd6SGeorge Wilson 		info->zbc_has_cksum = 1;
420dcbf3bd6SGeorge Wilson 	}
42122fe2c88SJonathan Adams 
422e14bb325SJeff Bonwick 	if (!ZIO_CHECKSUM_EQUAL(actual_cksum, expected_cksum))
423be6fd75aSMatthew Ahrens 		return (SET_ERROR(ECKSUM));
424fa9e4066Sahrens 
425dcbf3bd6SGeorge Wilson 	return (0);
426dcbf3bd6SGeorge Wilson }
427dcbf3bd6SGeorge Wilson 
428dcbf3bd6SGeorge Wilson int
429dcbf3bd6SGeorge Wilson zio_checksum_error(zio_t *zio, zio_bad_cksum_t *info)
430dcbf3bd6SGeorge Wilson {
431dcbf3bd6SGeorge Wilson 	blkptr_t *bp = zio->io_bp;
432dcbf3bd6SGeorge Wilson 	uint_t checksum = (bp == NULL ? zio->io_prop.zp_checksum :
433dcbf3bd6SGeorge Wilson 	    (BP_IS_GANG(bp) ? ZIO_CHECKSUM_GANG_HEADER : BP_GET_CHECKSUM(bp)));
434dcbf3bd6SGeorge Wilson 	int error;
435dcbf3bd6SGeorge Wilson 	uint64_t size = (bp == NULL ? zio->io_size :
436dcbf3bd6SGeorge Wilson 	    (BP_IS_GANG(bp) ? SPA_GANGBLOCKSIZE : BP_GET_PSIZE(bp)));
437dcbf3bd6SGeorge Wilson 	uint64_t offset = zio->io_offset;
438*770499e1SDan Kimmel 	abd_t *data = zio->io_abd;
439dcbf3bd6SGeorge Wilson 	spa_t *spa = zio->io_spa;
440dcbf3bd6SGeorge Wilson 
441dcbf3bd6SGeorge Wilson 	error = zio_checksum_error_impl(spa, bp, checksum, data, size,
442dcbf3bd6SGeorge Wilson 	    offset, info);
44322fe2c88SJonathan Adams 
4446cedfc39SPavel Zakharov 	if (zio_injection_enabled && error == 0 && zio->io_error == 0) {
4456cedfc39SPavel Zakharov 		error = zio_handle_fault_injection(zio, ECKSUM);
4466cedfc39SPavel Zakharov 		if (error != 0)
4476cedfc39SPavel Zakharov 			info->zbc_injected = 1;
44822fe2c88SJonathan Adams 	}
4496cedfc39SPavel Zakharov 
450dcbf3bd6SGeorge Wilson 	return (error);
451fa9e4066Sahrens }
45245818ee1SMatthew Ahrens 
45345818ee1SMatthew Ahrens /*
45445818ee1SMatthew Ahrens  * Called by a spa_t that's about to be deallocated. This steps through
45545818ee1SMatthew Ahrens  * all of the checksum context templates and deallocates any that were
45645818ee1SMatthew Ahrens  * initialized using the algorithm-specific template init function.
45745818ee1SMatthew Ahrens  */
45845818ee1SMatthew Ahrens void
45945818ee1SMatthew Ahrens zio_checksum_templates_free(spa_t *spa)
46045818ee1SMatthew Ahrens {
46145818ee1SMatthew Ahrens 	for (enum zio_checksum checksum = 0;
46245818ee1SMatthew Ahrens 	    checksum < ZIO_CHECKSUM_FUNCTIONS; checksum++) {
46345818ee1SMatthew Ahrens 		if (spa->spa_cksum_tmpls[checksum] != NULL) {
46445818ee1SMatthew Ahrens 			zio_checksum_info_t *ci = &zio_checksum_table[checksum];
46545818ee1SMatthew Ahrens 
46645818ee1SMatthew Ahrens 			VERIFY(ci->ci_tmpl_free != NULL);
46745818ee1SMatthew Ahrens 			ci->ci_tmpl_free(spa->spa_cksum_tmpls[checksum]);
46845818ee1SMatthew Ahrens 			spa->spa_cksum_tmpls[checksum] = NULL;
46945818ee1SMatthew Ahrens 		}
47045818ee1SMatthew Ahrens 	}
47145818ee1SMatthew Ahrens }
472