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Revert "Fix issues with truncated files in raw sends"
This partially reverts commit 5dbf8b4ed
. This change resolved
the issues observed with truncated files in raw sends. However,
the required changes to dnode_allocate() introduced a regression
for non-raw streams which needs to be understood.
The additional debugging improvements from the original patch
were not reverted.
Reviewed-by: Tom Caputi <tcaputi@datto.com>
Signed-off-by: Brian Behlendorf <behlendorf1@llnl.gov>
Issue #7378
Issue #8528
Issue #8540
Issue #8565
Close #8584
This commit is contained in:
parent
944a37248a
commit
d93d4b1acd
@ -1737,7 +1737,6 @@ dmu_assign_arcbuf_by_dnode(dnode_t *dn, uint64_t offset, arc_buf_t *buf,
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/* compressed bufs must always be assignable to their dbuf */
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ASSERT3U(arc_get_compression(buf), ==, ZIO_COMPRESS_OFF);
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ASSERT(!(buf->b_flags & ARC_BUF_FLAG_COMPRESSED));
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ASSERT(!arc_is_encrypted(buf));
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dbuf_rele(db, FTAG);
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dmu_write(os, object, offset, blksz, buf->b_data, tx);
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@ -1235,13 +1235,11 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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* processed. However, for raw receives we manually set the
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* maxblkid from the drr_maxblkid and so we must first free
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* everything above that blkid to ensure the DMU is always
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* consistent with itself. We will never free the first block
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* of the object here because a maxblkid of 0 could indicate
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* an object with a single block or one with no blocks.
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* consistent with itself.
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*/
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if (rwa->raw && object != DMU_NEW_OBJECT) {
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if (rwa->raw) {
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err = dmu_free_long_range(rwa->os, drro->drr_object,
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(drro->drr_maxblkid + 1) * doi.doi_data_block_size,
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(drro->drr_maxblkid + 1) * drro->drr_blksz,
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DMU_OBJECT_END);
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if (err != 0)
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return (SET_ERROR(EINVAL));
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@ -1377,8 +1375,11 @@ receive_object(struct receive_writer_arg *rwa, struct drr_object *drro,
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drro->drr_nlevels, tx));
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/*
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* Set the maxblkid. This will always succeed because
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* we freed all blocks beyond the new maxblkid above.
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* Set the maxblkid. We will never free the first block of
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* an object here because a maxblkid of 0 could indicate
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* an object with a single block or one with no blocks.
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* This will always succeed because we freed all blocks
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* beyond the new maxblkid above.
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*/
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VERIFY0(dmu_object_set_maxblkid(rwa->os, drro->drr_object,
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drro->drr_maxblkid, tx));
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@ -689,9 +689,12 @@ dnode_reallocate(dnode_t *dn, dmu_object_type_t ot, int blocksize,
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rw_enter(&dn->dn_struct_rwlock, RW_WRITER);
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dnode_setdirty(dn, tx);
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if (dn->dn_datablksz != blocksize) {
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ASSERT0(dn->dn_maxblkid);
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ASSERT(BP_IS_HOLE(&dn->dn_phys->dn_blkptr[0]) ||
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dnode_block_freed(dn, 0));
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/* change blocksize */
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ASSERT(dn->dn_maxblkid == 0 &&
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(BP_IS_HOLE(&dn->dn_phys->dn_blkptr[0]) ||
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dnode_block_freed(dn, 0)));
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dnode_setdblksz(dn, blocksize);
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dn->dn_next_blksz[tx->tx_txg&TXG_MASK] = blocksize;
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}
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if (dn->dn_bonuslen != bonuslen)
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dn->dn_next_bonuslen[tx->tx_txg&TXG_MASK] = bonuslen;
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@ -712,8 +715,6 @@ dnode_reallocate(dnode_t *dn, dmu_object_type_t ot, int blocksize,
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}
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rw_exit(&dn->dn_struct_rwlock);
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VERIFY0(dnode_set_blksz(dn, blocksize, 0, tx));
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/* change type */
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dn->dn_type = ot;
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@ -803,8 +803,7 @@ tests = ['rsend_001_pos', 'rsend_002_pos', 'rsend_003_pos', 'rsend_004_pos',
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'send-c_lz4_disabled', 'send-c_recv_lz4_disabled',
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'send-c_mixed_compression', 'send-c_stream_size_estimate', 'send-cD',
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'send-c_embedded_blocks', 'send-c_resume', 'send-cpL_varied_recsize',
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'send-c_recv_dedup', 'send_encrypted_files',
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'send_encrypted_truncated_files', 'send_encrypted_heirarchy',
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'send-c_recv_dedup', 'send_encrypted_files', 'send_encrypted_heirarchy',
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'send_encrypted_props', 'send_freeobjects', 'send_realloc_dnode_size',
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'send_holds', 'send_hole_birth', 'send_mixed_raw',
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'send-wDR_encrypted_zvol']
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@ -22,7 +22,6 @@ dist_pkgdata_SCRIPTS = \
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rsend_022_pos.ksh \
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rsend_024_pos.ksh \
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send_encrypted_files.ksh \
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send_encrypted_truncated_files.ksh \
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send_encrypted_heirarchy.ksh \
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send_encrypted_props.ksh \
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send-cD.ksh \
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@ -22,8 +22,7 @@
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#
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# DESCRIPTION:
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# Verify that a raw zfs send and receive can deal with several different
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# types of file layouts.
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#
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#
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# STRATEGY:
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# 1. Create a new encrypted filesystem
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@ -31,14 +30,18 @@
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# 3. Add a small 512 byte file to the filesystem
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# 4. Add a larger 32M file to the filesystem
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# 5. Add a large sparse file to the filesystem
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# 6. Add 1000 empty files to the filesystem
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# 7. Add a file with a large xattr value
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# 8. Use xattrtest to create files with random xattrs (with and without xattrs=on)
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# 9. Take a snapshot of the filesystem
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# 10. Remove the 1000 empty files to the filesystem
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# 11. Take another snapshot of the filesystem
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# 12. Send and receive both snapshots
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# 13. Mount the filesystem and check the contents
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# 6. Add a 3 files that are to be truncated later
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# 7. Add 1000 empty files to the filesystem
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# 8. Add a file with a large xattr value
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# 9. Use xattrtest to create files with random xattrs (with and without xattrs=on)
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# 10. Take a snapshot of the filesystem
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# 11. Truncate one of the files from 32M to 128k
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# 12. Truncate one of the files from 512k to 384k
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# 13. Truncate one of the files from 512k to 0 to 384k
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# 14. Remove the 1000 empty files to the filesystem
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# 15. Take another snapshot of the filesystem
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# 16. Send and receive both snapshots
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# 17. Mount the filesystem and check the contents
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#
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verify_runnable "both"
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@ -71,12 +74,15 @@ log_must eval "echo 'password' > $keyfile"
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log_must zfs create -o encryption=on -o keyformat=passphrase \
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-o keylocation=file://$keyfile $TESTPOOL/$TESTFS2
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# Create files with varied layouts on disk
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# Create files with vaired layouts on disk
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log_must touch /$TESTPOOL/$TESTFS2/empty
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log_must mkfile 512 /$TESTPOOL/$TESTFS2/small
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log_must mkfile 32M /$TESTPOOL/$TESTFS2/full
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log_must dd if=/dev/urandom of=/$TESTPOOL/$TESTFS2/sparse \
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bs=512 count=1 seek=1048576 >/dev/null 2>&1
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log_must mkfile 32M /$TESTPOOL/$TESTFS2/truncated
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log_must mkfile 524288 /$TESTPOOL/$TESTFS2/truncated2
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log_must mkfile 524288 /$TESTPOOL/$TESTFS2/truncated3
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log_must mkdir -p /$TESTPOOL/$TESTFS2/dir
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for i in {1..1000}; do
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@ -95,10 +101,23 @@ log_must zfs set compression=on xattr=sa $TESTPOOL/$TESTFS2
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log_must touch /$TESTPOOL/$TESTFS2/attrs
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log_must eval "python -c 'print \"a\" * 4096' | \
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attr -s bigval /$TESTPOOL/$TESTFS2/attrs"
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log_must zfs set compression=off xattr=on $TESTPOOL/$TESTFS2
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log_must zfs snapshot $TESTPOOL/$TESTFS2@snap1
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#
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# Truncate files created in the first snapshot. The first tests
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# truncating a large file to a single block. The second tests
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# truncating one block off the end of a file without changing
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# the required nlevels to hold it. The last tests handling
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# of a maxblkid that is dropped and then raised again.
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#
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log_must truncate -s 131072 /$TESTPOOL/$TESTFS2/truncated
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log_must truncate -s 393216 /$TESTPOOL/$TESTFS2/truncated2
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log_must truncate -s 0 /$TESTPOOL/$TESTFS2/truncated3
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log_must zpool sync $TESTPOOL
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log_must dd if=/dev/urandom of=/$TESTPOOL/$TESTFS2/truncated3 \
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bs=128k count=3 iflag=fullblock
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# Remove the empty files created in the first snapshot
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for i in {1..1000}; do
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log_must rm /$TESTPOOL/$TESTFS2/dir/file-$i
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@ -1,114 +0,0 @@
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#!/bin/ksh -p
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#
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# CDDL HEADER START
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#
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# This file and its contents are supplied under the terms of the
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# Common Development and Distribution License ("CDDL"), version 1.0.
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# You may only use this file in accordance with the terms of version
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# 1.0 of the CDDL.
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#
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# A full copy of the text of the CDDL should have accompanied this
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# source. A copy of the CDDL is also available via the Internet at
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# http://www.illumos.org/license/CDDL.
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#
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# CDDL HEADER END
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#
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#
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# Copyright (c) 2018 by Datto Inc. All rights reserved.
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#
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. $STF_SUITE/tests/functional/rsend/rsend.kshlib
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#
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# DESCRIPTION:
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#
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#
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# STRATEGY:
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# 1. Create a new encrypted filesystem
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# 2. Add a 4 files that are to be truncated later
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# 3. Take a snapshot of the filesystem
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# 4. Truncate one of the files from 32M to 128k
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# 5. Truncate one of the files from 512k to 384k
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# 6. Truncate one of the files from 512k to 0 to 384k via reallocation
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# 7. Truncate one of the files from 1k to 0 to 512b via reallocation
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# 8. Take another snapshot of the filesystem
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# 9. Send and receive both snapshots
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# 10. Mount the filesystem and check the contents
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#
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verify_runnable "both"
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function cleanup
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{
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datasetexists $TESTPOOL/$TESTFS2 && \
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log_must zfs destroy -r $TESTPOOL/$TESTFS2
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datasetexists $TESTPOOL/recv && \
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log_must zfs destroy -r $TESTPOOL/recv
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[[ -f $keyfile ]] && log_must rm $keyfile
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[[ -f $sendfile ]] && log_must rm $sendfile
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}
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log_onexit cleanup
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function recursive_cksum
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{
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find $1 -type f -exec sha256sum {} \; | \
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sort -k 2 | awk '{ print $1 }' | sha256sum
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}
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log_assert "Verify 'zfs send -w' works with many different file layouts"
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typeset keyfile=/$TESTPOOL/pkey
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typeset sendfile=/$TESTPOOL/sendfile
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typeset sendfile2=/$TESTPOOL/sendfile2
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# Create an encrypted dataset
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log_must eval "echo 'password' > $keyfile"
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log_must zfs create -o encryption=on -o keyformat=passphrase \
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-o keylocation=file://$keyfile $TESTPOOL/$TESTFS2
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# Create files with varied layouts on disk
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log_must mkfile 32M /$TESTPOOL/$TESTFS2/truncated
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log_must mkfile 524288 /$TESTPOOL/$TESTFS2/truncated2
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log_must mkfile 524288 /$TESTPOOL/$TESTFS2/truncated3
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log_must mkfile 1024 /$TESTPOOL/$TESTFS2/truncated4
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log_must zfs snapshot $TESTPOOL/$TESTFS2@snap1
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#
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# Truncate files created in the first snapshot. The first tests
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# truncating a large file to a single block. The second tests
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# truncating one block off the end of a file without changing
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# the required nlevels to hold it. The third tests handling
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# of a maxblkid that is dropped and then raised again. The
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# fourth tests an object that is truncated from a single block
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# to a smaller single block.
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#
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log_must truncate -s 131072 /$TESTPOOL/$TESTFS2/truncated
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log_must truncate -s 393216 /$TESTPOOL/$TESTFS2/truncated2
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log_must rm -f /$TESTPOOL/$TESTFS2/truncated3
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log_must rm -f /$TESTPOOL/$TESTFS2/truncated4
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log_must zpool sync $TESTPOOL
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log_must zfs umount $TESTPOOL/$TESTFS2
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log_must zfs mount $TESTPOOL/$TESTFS2
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log_must dd if=/dev/urandom of=/$TESTPOOL/$TESTFS2/truncated3 \
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bs=128k count=3 iflag=fullblock
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log_must dd if=/dev/urandom of=/$TESTPOOL/$TESTFS2/truncated4 \
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bs=512 count=1 iflag=fullblock
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log_must zfs snapshot $TESTPOOL/$TESTFS2@snap2
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expected_cksum=$(recursive_cksum /$TESTPOOL/$TESTFS2)
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log_must eval "zfs send -wp $TESTPOOL/$TESTFS2@snap1 > $sendfile"
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log_must eval "zfs send -wp -i @snap1 $TESTPOOL/$TESTFS2@snap2 > $sendfile2"
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log_must eval "zfs recv -F $TESTPOOL/recv < $sendfile"
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log_must eval "zfs recv -F $TESTPOOL/recv < $sendfile2"
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log_must zfs load-key $TESTPOOL/recv
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log_must zfs mount -a
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actual_cksum=$(recursive_cksum /$TESTPOOL/recv)
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[[ "$expected_cksum" != "$actual_cksum" ]] && \
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log_fail "Recursive checksums differ ($expected_cksum != $actual_cksum)"
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log_pass "Verified 'zfs send -w' works with many different file layouts"
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