github-actions[bot] commented on code in PR #68180:
URL: https://github.com/apache/doris/pull/68180#discussion_r4061183239
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fe/fe-core/src/main/java/org/apache/doris/catalog/MTMV.java:
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@@ -682,33 +687,207 @@ public void invalidateIvmBaseline() {
editLogItem.await();
}
- public void invalidateIvmBaseline(BaseTableInfo baseTableInfo, Map<String,
Long> changedPartitions) {
+ /**
+ * Mark the MV partitions that may hold rows read from the changed base
table partitions as needing a
+ * rebuild. When those partitions cannot be determined, the whole MV is
marked instead.
+ */
+ /**
+ * @return whether a barrier was recorded. The caller reports the two
outcomes differently: a change
+ * that no MV partition reads leaves nothing to rebuild and must
not be logged as one.
+ */
+ public boolean invalidateIvmBaseline(BaseTableInfo baseTableInfo,
Map<String, Long> changedPartitions) {
+ // Computed before the MV lock is taken, not inside it: the mapping
reads the partition items of the
+ // MV and of every PCT table, so it takes those tables' locks, and the
MV lock has to stay a leaf
+ // (nothing may be acquired under it) the way the rest of this class
assumes. The selection does not
+ // need to be atomic with the barrier it produces: the barrier is
recorded under the lock below, and
+ // the names it carries are intersected with the live partition names
when they are consumed
+ // (MTMVTask).
+ Optional<Set<String>> affectedMvPartitions =
selectAffectedMvPartitions(baseTableInfo,
+ changedPartitions);
+ if (affectedMvPartitions.isPresent() &&
affectedMvPartitions.get().isEmpty()) {
+ // No MV partition reads any of the changed base partitions, so
this change cannot leave
+ // anything behind here: there is no barrier to persist, and
skipping the version bump
+ // keeps it from discarding the result of a task that is already
running.
+ LOG.debug("No MV partition is affected by changed base partitions,
mv={}, baseTable={}, "
+ + "changedPartitions={}", name, baseTableInfo,
changedPartitions);
+ return false;
+ }
EditLogItem editLogItem;
writeMvLock();
try {
if (ivmInfo == null) {
ivmInfo = new IvmInfo();
}
- if (mvPartitionInfo.getPartitionType() !=
MTMVPartitionType.SELF_MANAGE
- && mvPartitionInfo.getPctInfos().stream()
- .anyMatch(pctInfo ->
pctInfo.getTableInfo().equals(baseTableInfo))) {
- Optional<Set<String>> mvPartitionNames =
refreshSnapshot.getMvPartitionNames(baseTableInfo,
- changedPartitions);
- if (mvPartitionNames.isPresent()) {
-
ivmInfo.addPendingBaselineRebuildPartitions(mvPartitionNames.get());
- } else {
- // Without a snapshot for every changed base partition, a
PARTITIONS rebuild is unsafe.
- ivmInfo.requireCompleteBaselineRebuild();
- }
- } else {
+ if (!affectedMvPartitions.isPresent()) {
+ // A narrower rebuild could leave a partition holding rows of
the changed base partition
+ // untouched, and those rows cannot be repaired later: the
change emitted no row binlog.
ivmInfo.requireCompleteBaselineRebuild();
+ } else {
+
ivmInfo.addPendingBaselineRebuildPartitions(affectedMvPartitions.get());
}
schemaChangeVersion++;
editLogItem = submitIvmInfoChange();
} finally {
writeMvUnlock();
}
editLogItem.await();
+ return true;
+ }
+
+ /**
+ * Select the MV partitions that may hold rows read from the changed base
table partitions.
+ *
+ * <p>This asks which MV partitions read the changed base partitions at
all, instead of (as the
+ * refresh snapshot based selection did) which of them had already seen
them. The snapshot is a lower
+ * bound that is allowed to lag: a base partition that was added after the
snapshot was captured never
+ * appears in it, so it can report "this partition never read the changed
base partition" about a
+ * partition that does hold its rows. Missing a partition here is not
repaired by a later refresh --
+ * dropping or truncating a base partition emits no row binlog, so the
incremental path never learns
+ * about those orphan rows and they stay in the MV forever.
+ *
+ * <p>Three cases have no answer in the mapping, and each of them must
rebuild the whole MV instead:
+ * a SELF_MANAGE MV (the mapping API answers nothing for it, although its
single partition reads every
+ * base partition); a base table that is not one of the MV's PCT tables
(the mapping is seeded from
+ * {@code getPctTables()} and never gains a table later, so a joined
partition table that the MV's
+ * partition column does not reach is not described at all); and a changed
partition that is not in
+ * the base table's metadata right now, which is how RECOVER PARTITION
arrives here -- it marks before
+ * the partition is added back, so at this point the partition is still in
the recycle bin.
+ *
+ * <p>Locking is the fourth way to end up rebuilding everything, but it is
contention rather than a
+ * property of the MV: the tables whose partition items the mapping reads
are locked with a bounded
+ * tryLock, and the MV is rebuilt only while one of them is being written.
See the comment at that
+ * loop.
+ *
+ * <p>An empty result is meaningful, on the other hand: the mapping lists
every base partition read by
+ * the MV, so a changed base partition that no MV partition maps to is
read by none of them.
+ *
+ * @param changedBasePartitions base partition name to partition id, never
empty
+ * @return {@link Optional#empty()} when the affected MV partitions cannot
be determined, otherwise the
+ * (possibly empty) set of MV partition names that must be rebuilt
+ */
+ private Optional<Set<String>> selectAffectedMvPartitions(BaseTableInfo
baseTableInfo,
+ Map<String, Long> changedBasePartitions) {
+ if (mvPartitionInfo.getPartitionType() ==
MTMVPartitionType.SELF_MANAGE) {
+ return Optional.empty();
+ }
+ MTMVRelatedTableIf pctTable = findPctTable(baseTableInfo);
+ if (pctTable == null) {
+ return Optional.empty();
+ }
+ // Computing the mapping reads the partition items of the MV and of
every PCT table, which means
+ // taking their read locks. The caller already holds the changed
table's write lock (a partition DDL
+ // marks before it releases it), so these other reads must not block:
two partition DDLs on two PCT
+ // tables of this MV would otherwise each hold the write lock the
other one needs, and acquiring in
+ // id order cannot break a cycle whose first lock is already held.
They are taken with a bounded
+ // tryLock instead, the way the stream cleanup treats a busy table: a
busy table means a writer is
+ // involved, and then the whole MV is rebuilt. The list is still
sorted by id so that the acquisition
+ // order matches the rest of the code base.
+ List<TableIf> tablesToRead =
Lists.newArrayListWithCapacity(mvPartitionInfo.getPctInfos().size() + 1);
+ tablesToRead.add(this);
+ for (BaseColInfo pctInfo : mvPartitionInfo.getPctInfos()) {
+ if (pctInfo.getTableInfo().equals(baseTableInfo)) {
+ continue;
+ }
+ try {
+ tablesToRead.add(MTMVUtil.getTable(pctInfo.getTableInfo()));
+ } catch (Exception e) {
+ LOG.warn("Failed to resolve PCT table {}, rebuild the whole
MV. mv={}",
+ pctInfo.getTableInfo(), name, e);
+ return Optional.empty();
+ }
+ }
+ tablesToRead.sort(Comparator.comparing(TableIf::getId));
+ if (!MetaLockUtils.tryReadLockTables(tablesToRead,
Table.TRY_LOCK_TIMEOUT_MS, TimeUnit.MILLISECONDS)) {
+ LOG.warn("A PCT table is busy, rebuild the whole MV {} instead of
selecting part of it", name);
+ return Optional.empty();
+ }
+ try {
+ // A partition that is missing from the metadata here is invisible
to the mapping as well, so
+ // an empty answer below would be indistinguishable from "no MV
partition reads it". The match
+ // is deliberately exact: the mapping is keyed by the metadata's
spelling, so a name that only
+ // differs in case must take the whole-MV path too, or the lookup
below would quietly select
+ // nothing for a partition that some MV partition does read. Base
tables that do not implement
+ // getPartitionNames -- the external ones -- report no partition
at all, so a partition change
+ // on them always rebuilds the whole MV. That matches what the
refresh-snapshot selection
+ // answered for them, and the mapping has never been exercised for
external tables (IVM does
+ // not support them as base tables yet): revisit before taking the
narrow path for them.
+ if
(!pctTable.getPartitionNames().containsAll(changedBasePartitions.keySet())) {
+ return Optional.empty();
+ }
+ Map<String, Map<MTMVRelatedTableIf, Set<String>>>
partitionMappings =
+ calculatePartitionMappings(Maps.newHashMap());
+ Set<String> res = Sets.newHashSet();
+ boolean pctTableMapped = false;
+ for (Entry<String, Map<MTMVRelatedTableIf, Set<String>>> mapping :
partitionMappings.entrySet()) {
+ for (Entry<MTMVRelatedTableIf, Set<String>> tableMapping :
mapping.getValue().entrySet()) {
+ if (!tableMapping.getKey().equals(pctTable)) {
+ continue;
+ }
+ pctTableMapped = true;
+ if (!Collections.disjoint(tableMapping.getValue(),
changedBasePartitions.keySet())) {
+ res.add(mapping.getKey());
+ }
+ }
+ }
+ // The mapping does not describe this base table at all. That
contradicts the PCT check above,
+ // so it is safer to rebuild everything than to trust a selection
that never saw the table --
+ // unless the MV has no partition of its own yet, which is the one
shape where the missing
+ // entries are not a surprise: an MV without partitions holds no
rows.
+ if (!pctTableMapped) {
+ if (getPartitionNames().isEmpty()) {
+ LOG.info("MV has no partition yet, nothing can hold the
changed base partitions. "
+ + "baseTable={}, mv={}", baseTableInfo, name);
+ return Optional.of(Sets.newHashSet());
+ }
+ LOG.warn("Base table is not described by the partition
mapping, rebuild the whole MV. "
+ + "baseTable={}, mv={}", baseTableInfo, name);
+ return Optional.empty();
+ }
+ // An empty selection is only trustworthy while the mapping covers
every base partition. With a
+ // partition_sync_limit in effect it does not: the window leaves
out the partitions it dropped,
Review Comment:
[P1] Handle mixed in-window and out-of-window changes. When
`partition_sync_limit` is active, this check only falls back when the aggregate
`res` is empty. A multi-partition TRUNCATE/REPLACE can pass both an in-window
and an out-of-window partition: the in-window one makes `res` non-empty, while
the filtered old partition contributes no MV name. The barrier then covers only
the newer MV partition. If the window is widened before refresh, partition sync
retains the old MV partition and its stale rows, and no incremental delta
repairs them. Track whether every changed partition was represented (or
conservatively require a complete rebuild when any is missing), and add a
mixed-window regression test. This is distinct from the existing single
changed-partition case, which is now covered by the empty-selection fallback.
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