github-actions[bot] commented on code in PR #66633:
URL: https://github.com/apache/doris/pull/66633#discussion_r3755059016


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fe/fe-connector/fe-connector-cache/src/main/java/org/apache/doris/connector/cache/ScopedMetaCacheRegistry.java:
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@@ -0,0 +1,953 @@
+// Licensed to the Apache Software Foundation (ASF) under one
+// or more contributor license agreements.  See the NOTICE file
+// distributed with this work for additional information
+// regarding copyright ownership.  The ASF licenses this file
+// to you under the Apache License, Version 2.0 (the
+// "License"); you may not use this file except in compliance
+// with the License.  You may obtain a copy of the License at
+//
+//   http://www.apache.org/licenses/LICENSE-2.0
+//
+// Unless required by applicable law or agreed to in writing,
+// software distributed under the License is distributed on an
+// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
+// KIND, either express or implied.  See the License for the
+// specific language governing permissions and limitations
+// under the License.
+
+package org.apache.doris.connector.cache;
+
+import com.github.benmanes.caffeine.cache.RemovalListener;
+import com.github.benmanes.caffeine.cache.Ticker;
+
+import java.time.Duration;
+import java.util.ArrayList;
+import java.util.Collections;
+import java.util.IdentityHashMap;
+import java.util.List;
+import java.util.Objects;
+import java.util.Set;
+import java.util.concurrent.ConcurrentHashMap;
+import java.util.concurrent.ConcurrentMap;
+import java.util.concurrent.Executor;
+import java.util.concurrent.atomic.AtomicBoolean;
+import java.util.concurrent.atomic.AtomicInteger;
+import java.util.concurrent.atomic.AtomicReference;
+import java.util.concurrent.atomic.LongAdder;
+import java.util.function.BiConsumer;
+import java.util.function.BooleanSupplier;
+
+/**
+ * Catalog-local hierarchy shared by independent physical metadata caches.
+ *
+ * <p>Logical invalidation replaces one state object. Values capture state 
identities and are rejected after a
+ * replacement even when physical Caffeine cleanup is delayed. Each state also 
owns the exact registrations that
+ * must be physically removed. Empty child nodes are pruned bottom-up so 
scope-directory memory remains bounded by
+ * live values and in-flight loads rather than by every name ever observed.
+ */
+public final class ScopedMetaCacheRegistry implements AutoCloseable {
+    private static final Runnable NO_OP = () -> {
+    };
+    private static final BiConsumer<ScopePath.Level, Object> NO_OP_SCOPE = 
(level, key) -> {
+    };
+
+    private final ScopeNode root = new ScopeNode(null, null, 
ScopePath.Level.CATALOG);
+    private final Set<ScopedMetaCache<?, ?>> caches = 
ConcurrentHashMap.newKeySet();
+    private final StripedPhaseGate publicationGate = new StripedPhaseGate();
+    private final AtomicBoolean closed = new AtomicBoolean(false);
+    private final LongAdder[] retainedActiveLoads = 
newCounters(ScopePath.Level.values().length);
+    private final BiConsumer<ScopePath.Level, Object> afterParentPin;
+    private final BiConsumer<ScopePath.Level, Object> beforePruneMark;
+    private final BiConsumer<ScopePath.Level, Object> afterPruneMark;
+
+    public ScopedMetaCacheRegistry() {
+        this(NO_OP_SCOPE, NO_OP_SCOPE, NO_OP_SCOPE);
+    }
+
+    ScopedMetaCacheRegistry(
+            BiConsumer<ScopePath.Level, Object> afterParentPin,
+            BiConsumer<ScopePath.Level, Object> beforePruneMark,
+            BiConsumer<ScopePath.Level, Object> afterPruneMark) {
+        this.afterParentPin = Objects.requireNonNull(afterParentPin, 
"afterParentPin can not be null");
+        this.beforePruneMark = Objects.requireNonNull(beforePruneMark, 
"beforePruneMark can not be null");
+        this.afterPruneMark = Objects.requireNonNull(afterPruneMark, 
"afterPruneMark can not be null");
+    }
+
+    public <K, V> ScopedMetaCache<K, V> createCache(String name, CacheSpec 
cacheSpec) {
+        return createCache(name, cacheSpec, null, null, NO_OP, NO_OP);
+    }
+
+    <K, V> ScopedMetaCache<K, V> createCacheWithRemovalListener(
+            String name, CacheSpec cacheSpec, RemovalListener<K, V> 
removalListener,
+            Duration refreshAfterWrite, Executor refreshExecutor) {
+        return createCacheWithRemovalListener(name, cacheSpec, null, 
removalListener,
+                refreshAfterWrite, refreshExecutor, NO_OP, NO_OP, NO_OP);
+    }
+
+    <K, V> ScopedMetaCache<K, V> createCacheWithMetaRemovalListener(
+            String name, CacheSpec cacheSpec, MetaCacheRemovalListener<K, V> 
removalListener,
+            Duration refreshAfterWrite, Executor refreshExecutor) {
+        RemovalListener<K, V> caffeineListener = removalListener == null ? null
+                : (key, value, cause) -> removalListener.onRemoval(
+                        key, value, 
MetaCacheRemovalReason.valueOf(cause.name()));
+        return createCacheWithRemovalListener(
+                name, cacheSpec, caffeineListener, refreshAfterWrite, 
refreshExecutor);
+    }
+
+    <K, V> ScopedMetaCache<K, V> createCache(
+            String name,
+            CacheSpec cacheSpec,
+            Ticker ticker,
+            BiConsumer<K, V> beforeRemoval) {
+        return createCache(name, cacheSpec, ticker, beforeRemoval, NO_OP, 
NO_OP);
+    }
+
+    <K, V> ScopedMetaCache<K, V> createCache(
+            String name,
+            CacheSpec cacheSpec,
+            Ticker ticker,
+            BiConsumer<K, V> beforeRemoval,
+            Runnable afterBulkStage) {
+        return createCache(name, cacheSpec, ticker, beforeRemoval, NO_OP, 
afterBulkStage);
+    }
+
+    <K, V> ScopedMetaCache<K, V> createCache(
+            String name,
+            CacheSpec cacheSpec,
+            Ticker ticker,
+            BiConsumer<K, V> beforeRemoval,
+            Runnable afterLoadElection,
+            Runnable afterBulkStage) {
+        RemovalListener<K, V> listener = beforeRemoval == null
+                ? null
+                : (key, value, cause) -> beforeRemoval.accept(key, value);
+        return createCacheWithRemovalListener(
+                name, cacheSpec, ticker, listener, null, null, 
afterLoadElection, afterBulkStage, NO_OP);
+    }
+
+    <K, V> ScopedMetaCache<K, V> createCacheWithRefresh(
+            String name,
+            CacheSpec cacheSpec,
+            Duration refreshAfterWrite,
+            Executor refreshExecutor,
+            Runnable afterRefreshRegistration) {
+        return createCacheWithRemovalListener(
+                name, cacheSpec, null, null, refreshAfterWrite, 
refreshExecutor,
+                NO_OP, NO_OP, afterRefreshRegistration);
+    }
+
+    private <K, V> ScopedMetaCache<K, V> createCacheWithRemovalListener(
+            String name,
+            CacheSpec cacheSpec,
+            Ticker ticker,
+            RemovalListener<K, V> removalListener,
+            Duration refreshAfterWrite,
+            Executor refreshExecutor,
+            Runnable afterLoadElection,
+            Runnable afterBulkStage,
+            Runnable afterRefreshRegistration) {
+        checkOpen();
+        ScopedMetaCache<K, V> cache = new ScopedMetaCache<>(
+                this,
+                name,
+                cacheSpec,
+                ticker,
+                removalListener,
+                refreshAfterWrite,
+                refreshExecutor,
+                afterLoadElection,
+                afterBulkStage,
+                afterRefreshRegistration);
+        caches.add(cache);
+        if (closed.get()) {
+            caches.remove(cache);
+            cache.closeFromRegistry();
+            throw new IllegalStateException("Scoped meta cache registry is 
closed");
+        }
+        return cache;
+    }
+
+    public void invalidate(ScopePath path) {
+        invalidate(path, NO_OP);
+    }
+
+    void invalidate(List<ScopePath> paths) {
+        invalidate(paths, NO_OP);
+    }
+
+    void invalidate(ScopePath path, Runnable afterStateReplacement) {
+        Objects.requireNonNull(path, "path can not be null");
+        Objects.requireNonNull(afterStateReplacement, "afterStateReplacement 
can not be null");
+        checkOpen();
+        InvalidatedScope invalidated = publicationGate.write(() -> {
+            List<ScopeNode> existing = resolveExisting(path);
+            bumpPublicationStates(existing);
+            if (existing.size() != path.level().ordinal() + 1) {
+                return null;
+            }
+            ScopeNode target = existing.get(existing.size() - 1);
+            return new InvalidatedScope(existing, replaceState(target));
+        });
+        if (invalidated == null) {
+            return;
+        }
+        afterStateReplacement.run();
+        cleanDetachedState(invalidated.oldState);
+        tryPrune(invalidated.existing);
+    }
+
+    void invalidate(List<ScopePath> paths, Runnable afterStateReplacement) {
+        Objects.requireNonNull(paths, "paths can not be null");
+        Objects.requireNonNull(afterStateReplacement, "afterStateReplacement 
can not be null");
+        checkOpen();
+        List<InvalidatedScope> invalidated = publicationGate.write(() -> {
+            List<List<ScopeNode>> resolvedScopes = new 
ArrayList<>(paths.size());
+            Set<ScopeNode> targets = Collections.newSetFromMap(new 
IdentityHashMap<>());
+            Set<ScopeNode> publicationNodes = Collections.newSetFromMap(new 
IdentityHashMap<>());
+            for (ScopePath path : paths) {
+                Objects.requireNonNull(path, "path can not be null");
+                List<ScopeNode> existing = resolveExisting(path);
+                if (existing.size() == path.level().ordinal() + 1) {

Review Comment:
   [P1] Fence cold descendants during batch invalidation
   
   This batch path adds resolved ancestors only when the exact leaf already 
exists. With the supported `meta.cache.hive.partition_names.ttl-second=0` and 
`meta.cache.hive.partition_view.ttl-second=0` settings, a cold `getPartitions` 
call captures a table-scoped bulk handle before its HMS RPC while the 
collection and target leaves are absent. If an ALTER/REFRESH invalidates that 
same partition before the RPC returns, neither path enters this branch, so the 
table publication state stays unchanged and the old location/parameters can 
still publish into the independently enabled, default 24-hour partition cache. 
Please add every path's resolved prefix to `publicationNodes` before the 
full-resolution check (while keeping state replacement conditional), and add a 
latch test for this cold bulk-fetch race.



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