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MFV r274271:
Improve zdb -b performance: - Reduce gethrtime() call to 1/100th of blkptr's; - Skip manipulating the size-ordered tree; - Issue more (10, previously 3) async reads; - Use lighter weight testing in traverse_visitbp(); Illumos issue: 5243 zdb -b could be much faster MFC after: 2 weeks
This commit is contained in:
commit
81f1255e58
Notes:
svn2git
2020-12-20 02:59:44 +00:00
svn path=/head/; revision=274276
@ -77,9 +77,11 @@
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#ifndef lint
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extern boolean_t zfs_recover;
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extern uint64_t zfs_arc_max, zfs_arc_meta_limit;
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extern int zfs_vdev_async_read_max_active;
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#else
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boolean_t zfs_recover;
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uint64_t zfs_arc_max, zfs_arc_meta_limit;
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int zfs_vdev_async_read_max_active;
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#endif
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const char cmdname[] = "zdb";
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@ -2384,8 +2386,14 @@ zdb_blkptr_cb(spa_t *spa, zilog_t *zilog, const blkptr_t *bp,
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zcb->zcb_readfails = 0;
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if (dump_opt['b'] < 5 &&
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gethrtime() > zcb->zcb_lastprint + NANOSEC) {
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/* only call gethrtime() every 100 blocks */
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static int iters;
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if (++iters > 100)
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iters = 0;
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else
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return (0);
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if (dump_opt['b'] < 5 && gethrtime() > zcb->zcb_lastprint + NANOSEC) {
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uint64_t now = gethrtime();
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char buf[10];
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uint64_t bytes = zcb->zcb_type[ZB_TOTAL][ZDB_OT_TOTAL].zb_asize;
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@ -2494,6 +2502,14 @@ zdb_leak_init(spa_t *spa, zdb_cb_t *zcb)
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(longlong_t)vd->vdev_ms_count);
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msp->ms_ops = &zdb_metaslab_ops;
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/*
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* We don't want to spend the CPU
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* manipulating the size-ordered
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* tree, so clear the range_tree
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* ops.
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*/
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msp->ms_tree->rt_ops = NULL;
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VERIFY0(space_map_load(msp->ms_sm,
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msp->ms_tree, SM_ALLOC));
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msp->ms_loaded = B_TRUE;
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@ -3508,6 +3524,13 @@ main(int argc, char **argv)
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*/
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zfs_arc_max = zfs_arc_meta_limit = 256 * 1024 * 1024;
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/*
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* "zdb -c" uses checksum-verifying scrub i/os which are async reads.
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* "zdb -b" uses traversal prefetch which uses async reads.
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* For good performance, let several of them be active at once.
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*/
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zfs_vdev_async_read_max_active = 10;
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kernel_init(FREAD);
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g_zfs = libzfs_init();
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ASSERT(g_zfs != NULL);
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@ -59,6 +59,7 @@ typedef struct traverse_data {
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int td_flags;
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prefetch_data_t *td_pfd;
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boolean_t td_paused;
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uint64_t td_hole_birth_enabled_txg;
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blkptr_cb_t *td_func;
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void *td_arg;
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} traverse_data_t;
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@ -229,25 +230,20 @@ traverse_visitbp(traverse_data_t *td, const dnode_phys_t *dnp,
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}
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if (bp->blk_birth == 0) {
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if (spa_feature_is_active(td->td_spa, SPA_FEATURE_HOLE_BIRTH)) {
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/*
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* Since this block has a birth time of 0 it must be a
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* hole created before the SPA_FEATURE_HOLE_BIRTH
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* feature was enabled. If SPA_FEATURE_HOLE_BIRTH
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* was enabled before the min_txg for this traveral we
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* know the hole must have been created before the
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* min_txg for this traveral, so we can skip it. If
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* SPA_FEATURE_HOLE_BIRTH was enabled after the min_txg
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* for this traveral we cannot tell if the hole was
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* created before or after the min_txg for this
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* traversal, so we cannot skip it.
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*/
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uint64_t hole_birth_enabled_txg;
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VERIFY(spa_feature_enabled_txg(td->td_spa,
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SPA_FEATURE_HOLE_BIRTH, &hole_birth_enabled_txg));
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if (hole_birth_enabled_txg < td->td_min_txg)
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return (0);
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}
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/*
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* Since this block has a birth time of 0 it must be a
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* hole created before the SPA_FEATURE_HOLE_BIRTH
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* feature was enabled. If SPA_FEATURE_HOLE_BIRTH
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* was enabled before the min_txg for this traveral we
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* know the hole must have been created before the
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* min_txg for this traveral, so we can skip it. If
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* SPA_FEATURE_HOLE_BIRTH was enabled after the min_txg
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* for this traveral we cannot tell if the hole was
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* created before or after the min_txg for this
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* traversal, so we cannot skip it.
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*/
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if (td->td_hole_birth_enabled_txg < td->td_min_txg)
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return (0);
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} else if (bp->blk_birth <= td->td_min_txg) {
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return (0);
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}
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@ -523,6 +519,13 @@ traverse_impl(spa_t *spa, dsl_dataset_t *ds, uint64_t objset, blkptr_t *rootbp,
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td.td_flags = flags;
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td.td_paused = B_FALSE;
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if (spa_feature_is_active(spa, SPA_FEATURE_HOLE_BIRTH)) {
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VERIFY(spa_feature_enabled_txg(spa,
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SPA_FEATURE_HOLE_BIRTH, &td.td_hole_birth_enabled_txg));
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} else {
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td.td_hole_birth_enabled_txg = 0;
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}
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pd.pd_blks_max = zfs_pd_blks_max;
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pd.pd_flags = flags;
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mutex_init(&pd.pd_mtx, NULL, MUTEX_DEFAULT, NULL);
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