Coverage Report

Created: 2026-03-16 19:58

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/cloud/cloud_tablet_mgr.cpp
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Source
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements.  See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#include "cloud/cloud_tablet_mgr.h"
19
20
#include <bthread/countdown_event.h>
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22
#include <chrono>
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#include "cloud/cloud_cluster_info.h"
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#include "cloud/cloud_meta_mgr.h"
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#include "cloud/cloud_storage_engine.h"
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#include "cloud/cloud_tablet.h"
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#include "cloud/config.h"
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#include "common/status.h"
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#include "cpp/sync_point.h"
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#include "runtime/memory/cache_policy.h"
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#include "util/debug_points.h"
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#include "util/lru_cache.h"
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#include "util/stack_util.h"
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namespace doris {
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uint64_t g_tablet_report_inactive_duration_ms = 0;
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bvar::Adder<uint64_t> g_base_compaction_not_frozen_tablet_num(
39
        "base_compaction_not_frozen_tablet_num");
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bvar::Adder<uint64_t> g_cumu_compaction_not_frozen_tablet_num(
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        "cumu_compaction_not_frozen_tablet_num");
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namespace {
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// port from
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// https://github.com/golang/groupcache/blob/master/singleflight/singleflight.go
46
template <typename Key, typename Val>
47
class SingleFlight {
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public:
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1
    SingleFlight() = default;
50
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    SingleFlight(const SingleFlight&) = delete;
52
    void operator=(const SingleFlight&) = delete;
53
54
    using Loader = std::function<Val(const Key&)>;
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    // Do executes and returns the results of the given function, making
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    // sure that only one execution is in-flight for a given key at a
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    // time. If a duplicate comes in, the duplicate caller waits for the
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    // original to complete and receives the same results.
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12
    Val load(const Key& key, Loader loader) {
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12
        std::unique_lock lock(_call_map_mtx);
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63
12
        auto it = _call_map.find(key);
64
12
        if (it != _call_map.end()) {
65
1
            auto call = it->second;
66
1
            lock.unlock();
67
1
            if (int ec = call->event.wait(); ec != 0) {
68
0
                throw std::system_error(std::error_code(ec, std::system_category()),
69
0
                                        "CountdownEvent wait failed");
70
0
            }
71
1
            return call->val;
72
1
        }
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11
        auto call = std::make_shared<Call>();
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11
        _call_map.emplace(key, call);
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11
        lock.unlock();
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77
11
        call->val = loader(key);
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11
        call->event.signal();
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80
11
        lock.lock();
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11
        _call_map.erase(key);
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11
        lock.unlock();
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84
11
        return call->val;
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12
    }
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private:
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    // `Call` is an in-flight or completed `load` call
89
    struct Call {
90
        bthread::CountdownEvent event;
91
        Val val;
92
    };
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    std::mutex _call_map_mtx;
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    std::unordered_map<Key, std::shared_ptr<Call>> _call_map;
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};
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// tablet_id -> load tablet function
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SingleFlight<int64_t, Result<std::shared_ptr<CloudTablet>>> s_singleflight_load_tablet;
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} // namespace
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// tablet_id -> cached tablet
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// This map owns all cached tablets. The lifetime of tablet can be longer than the LRU handle.
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// It's also used for scenarios where users want to access the tablet by `tablet_id` without changing the LRU order.
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// TODO(plat1ko): multi shard to increase concurrency
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class CloudTabletMgr::TabletMap {
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public:
109
3
    void put(std::shared_ptr<CloudTablet> tablet) {
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3
        std::lock_guard lock(_mtx);
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3
        _map[tablet->tablet_id()] = std::move(tablet);
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3
    }
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114
1
    void erase(CloudTablet* tablet) {
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1
        std::lock_guard lock(_mtx);
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1
        auto it = _map.find(tablet->tablet_id());
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        // According to the implementation of `LRUCache`, `deleter` may be called after a tablet
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        // with same tablet id insert into cache and `TabletMap`. So we MUST check if the tablet
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        // instance to be erased is the same one in the map.
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1
        if (it != _map.end() && it->second.get() == tablet) {
121
1
            _map.erase(it);
122
1
        }
123
1
    }
124
125
0
    std::shared_ptr<CloudTablet> get(int64_t tablet_id) {
126
0
        std::lock_guard lock(_mtx);
127
0
        if (auto it = _map.find(tablet_id); it != _map.end()) {
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0
            return it->second;
129
0
        }
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0
        return nullptr;
131
0
    }
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133
5
    size_t size() { return _map.size(); }
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135
5
    void traverse(std::function<void(const std::shared_ptr<CloudTablet>&)> visitor) {
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5
        std::lock_guard lock(_mtx);
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5
        for (auto& [_, tablet] : _map) {
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5
            visitor(tablet);
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5
        }
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5
    }
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private:
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    std::mutex _mtx;
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    std::unordered_map<int64_t, std::shared_ptr<CloudTablet>> _map;
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};
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// TODO(plat1ko): Prune cache
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CloudTabletMgr::CloudTabletMgr(CloudStorageEngine& engine)
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134
        : _engine(engine),
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          _tablet_map(std::make_unique<TabletMap>()),
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          _cache(std::make_unique<LRUCachePolicy>(
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                  CachePolicy::CacheType::CLOUD_TABLET_CACHE, config::tablet_cache_capacity,
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                  LRUCacheType::NUMBER, /*sweep time*/ 0, config::tablet_cache_shards,
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                  /*element_count_capacity*/ 0, /*enable_prune*/ false,
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                  /*is_lru_k*/ false)) {}
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CloudTabletMgr::~CloudTabletMgr() = default;
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159
5
void set_tablet_access_time_ms(CloudTablet* tablet) {
160
5
    using namespace std::chrono;
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5
    int64_t now = duration_cast<milliseconds>(system_clock::now().time_since_epoch()).count();
162
5
    tablet->last_access_time_ms = now;
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5
}
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Result<std::shared_ptr<CloudTablet>> CloudTabletMgr::get_tablet(int64_t tablet_id, bool warmup_data,
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                                                                bool sync_delete_bitmap,
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                                                                SyncRowsetStats* sync_stats,
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                                                                bool force_use_only_cached,
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13
                                                                bool cache_on_miss) {
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13
    DBUG_EXECUTE_IF("CloudTabletMgr::get_tablet.block", DBUG_BLOCK);
171
    // LRU value type. `Value`'s lifetime MUST NOT be longer than `CloudTabletMgr`
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13
    class Value : public LRUCacheValueBase {
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13
    public:
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13
        Value(const std::shared_ptr<CloudTablet>& tablet, TabletMap& tablet_map)
175
13
                : tablet(tablet), tablet_map(tablet_map) {}
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13
        ~Value() override { tablet_map.erase(tablet.get()); }
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        // FIXME(plat1ko): The ownership of tablet seems to belong to 'TabletMap', while `Value`
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        // only requires a reference.
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13
        std::shared_ptr<CloudTablet> tablet;
181
13
        TabletMap& tablet_map;
182
13
    };
183
184
13
    VLOG_DEBUG << "get_tablet tablet_id=" << tablet_id << " stack: " << get_stack_trace();
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186
13
    auto tablet_id_str = std::to_string(tablet_id);
187
13
    CacheKey key(tablet_id_str);
188
13
    auto* handle = _cache->lookup(key);
189
190
13
    if (handle == nullptr) {
191
12
        if (force_use_only_cached) {
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0
            LOG(INFO) << "tablet=" << tablet_id
193
0
                      << "does not exists in local tablet cache, because param "
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0
                         "force_use_only_cached=true, "
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0
                         "treat it as an error";
196
0
            return ResultError(Status::InternalError(
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0
                    "tablet={} does not exists in local tablet cache, because param "
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0
                    "force_use_only_cached=true, "
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0
                    "treat it as an error",
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0
                    tablet_id));
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0
        }
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12
        TEST_SYNC_POINT("CloudTabletMgr::get_tablet.not_found_in_cache");
203
12
        if (sync_stats) {
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0
            ++sync_stats->tablet_meta_cache_miss;
205
0
        }
206
        // Insert into cache and tablet_map inside SingleFlight lambda to ensure
207
        // only the leader caller does this. Moving these outside the lambda causes
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        // a race condition: when multiple concurrent callers share the same CloudTablet*
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        // from SingleFlight, each creates a competing LRU cache entry. Delayed Value
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        // destructors then erase the tablet_map entry (the raw pointer safety check
211
        // passes since all callers share the same pointer), and the tablet permanently
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        // disappears from tablet_map. Subsequent get_tablet() calls hit the LRU cache
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        // directly (cache hit path) which never re-inserts into tablet_map, making the
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        // tablet invisible to the compaction scheduler.
215
12
        auto load_tablet = [this, &key, warmup_data, sync_delete_bitmap, sync_stats, cache_on_miss](
216
12
                                   int64_t tablet_id) -> Result<std::shared_ptr<CloudTablet>> {
217
11
            TabletMetaSharedPtr tablet_meta;
218
11
            auto start = std::chrono::steady_clock::now();
219
11
            auto st = _engine.meta_mgr().get_tablet_meta(tablet_id, &tablet_meta);
220
11
            auto end = std::chrono::steady_clock::now();
221
11
            if (sync_stats) {
222
0
                sync_stats->get_remote_tablet_meta_rpc_ns +=
223
0
                        std::chrono::duration_cast<std::chrono::nanoseconds>(end - start).count();
224
0
            }
225
11
            if (!st.ok()) {
226
10
                LOG(WARNING) << "failed to tablet " << tablet_id << ": " << st;
227
10
                return ResultError(st);
228
10
            }
229
230
1
            auto tablet = std::make_shared<CloudTablet>(_engine, std::move(tablet_meta));
231
            // MUST sync stats to let compaction scheduler work correctly
232
1
            SyncOptions options;
233
1
            options.warmup_delta_data = warmup_data;
234
1
            options.sync_delete_bitmap = sync_delete_bitmap;
235
1
            st = _engine.meta_mgr().sync_tablet_rowsets(tablet.get(), options, sync_stats);
236
1
            if (!st.ok()) {
237
0
                LOG(WARNING) << "failed to sync tablet " << tablet_id << ": " << st;
238
0
                return ResultError(st);
239
0
            }
240
241
1
            if (!cache_on_miss) {
242
0
                set_tablet_access_time_ms(tablet.get());
243
0
                return tablet;
244
0
            }
245
246
1
            auto value = std::make_unique<Value>(tablet, *_tablet_map);
247
1
            auto* insert_handle = _cache->insert(key, value.release(), 1, sizeof(CloudTablet),
248
1
                                                 CachePriority::NORMAL);
249
1
            auto ret = std::shared_ptr<CloudTablet>(tablet.get(),
250
1
                                                    [this, insert_handle](CloudTablet* tablet_ptr) {
251
1
                                                        set_tablet_access_time_ms(tablet_ptr);
252
1
                                                        _cache->release(insert_handle);
253
1
                                                    });
254
1
            _tablet_map->put(std::move(tablet));
255
1
            return ret;
256
1
        };
257
258
12
        auto load_result = s_singleflight_load_tablet.load(tablet_id, std::move(load_tablet));
259
12
        if (!load_result.has_value()) {
260
10
            return ResultError(Status::InternalError("failed to get tablet {}, msg={}", tablet_id,
261
10
                                                     load_result.error()));
262
10
        }
263
2
        auto tablet = load_result.value();
264
2
        set_tablet_access_time_ms(tablet.get());
265
2
        return tablet;
266
12
    }
267
1
    if (sync_stats) {
268
0
        ++sync_stats->tablet_meta_cache_hit;
269
0
    }
270
1
    CloudTablet* tablet_raw_ptr = reinterpret_cast<Value*>(_cache->value(handle))->tablet.get();
271
1
    set_tablet_access_time_ms(tablet_raw_ptr);
272
1
    auto tablet = std::shared_ptr<CloudTablet>(tablet_raw_ptr, [this, handle](CloudTablet* tablet) {
273
1
        set_tablet_access_time_ms(tablet);
274
1
        _cache->release(handle);
275
1
    });
276
1
    return tablet;
277
13
}
278
279
0
bool CloudTabletMgr::peek_tablet_meta(int64_t tablet_id, TabletMetaSharedPtr* tablet_meta) {
280
0
    if (tablet_meta == nullptr) {
281
0
        return false;
282
0
    }
283
0
    auto tablet = _tablet_map->get(tablet_id);
284
0
    if (!tablet) {
285
0
        return false;
286
0
    }
287
0
    *tablet_meta = tablet->tablet_meta();
288
0
    return true;
289
0
}
290
291
0
void CloudTabletMgr::erase_tablet(int64_t tablet_id) {
292
0
    auto tablet_id_str = std::to_string(tablet_id);
293
0
    CacheKey key(tablet_id_str.data(), tablet_id_str.size());
294
0
    _cache->erase(key);
295
0
}
296
297
0
void CloudTabletMgr::vacuum_stale_rowsets(const CountDownLatch& stop_latch) {
298
0
    LOG_INFO("begin to vacuum stale rowsets");
299
0
    std::vector<std::shared_ptr<CloudTablet>> tablets_to_vacuum;
300
0
    tablets_to_vacuum.reserve(_tablet_map->size());
301
0
    _tablet_map->traverse([&tablets_to_vacuum](auto&& t) {
302
0
        if (t->has_stale_rowsets()) {
303
0
            tablets_to_vacuum.push_back(t);
304
0
        }
305
0
    });
306
0
    int num_vacuumed = 0;
307
0
    for (auto& t : tablets_to_vacuum) {
308
0
        if (stop_latch.count() <= 0) {
309
0
            break;
310
0
        }
311
312
0
        num_vacuumed += t->delete_expired_stale_rowsets();
313
0
    }
314
0
    LOG_INFO("finish vacuum stale rowsets")
315
0
            .tag("num_vacuumed", num_vacuumed)
316
0
            .tag("num_tablets", tablets_to_vacuum.size());
317
318
0
    {
319
0
        LOG_INFO("begin to remove unused rowsets");
320
0
        std::vector<std::shared_ptr<CloudTablet>> tablets_to_remove_unused_rowsets;
321
0
        tablets_to_remove_unused_rowsets.reserve(_tablet_map->size());
322
0
        _tablet_map->traverse([&tablets_to_remove_unused_rowsets](auto&& t) {
323
0
            if (t->need_remove_unused_rowsets()) {
324
0
                tablets_to_remove_unused_rowsets.push_back(t);
325
0
            }
326
0
        });
327
0
        for (auto& t : tablets_to_remove_unused_rowsets) {
328
0
            t->remove_unused_rowsets();
329
0
        }
330
0
        LOG_INFO("finish remove unused rowsets")
331
0
                .tag("num_tablets", tablets_to_remove_unused_rowsets.size());
332
0
        if (config::enable_check_agg_and_remove_pre_rowsets_delete_bitmap) {
333
0
            int64_t max_useless_rowset_count = 0;
334
0
            int64_t tablet_id_with_max_useless_rowset_count = 0;
335
0
            int64_t max_useless_rowset_version_count = 0;
336
0
            int64_t tablet_id_with_max_useless_rowset_version_count = 0;
337
0
            OlapStopWatch watch;
338
0
            _tablet_map->traverse([&](auto&& tablet) {
339
0
                int64_t useless_rowset_count = 0;
340
0
                int64_t useless_rowset_version_count = 0;
341
0
                tablet->check_agg_delete_bitmap_for_stale_rowsets(useless_rowset_count,
342
0
                                                                  useless_rowset_version_count);
343
0
                if (useless_rowset_count > max_useless_rowset_count) {
344
0
                    max_useless_rowset_count = useless_rowset_count;
345
0
                    tablet_id_with_max_useless_rowset_count = tablet->tablet_id();
346
0
                }
347
0
                if (useless_rowset_version_count > max_useless_rowset_version_count) {
348
0
                    max_useless_rowset_version_count = useless_rowset_version_count;
349
0
                    tablet_id_with_max_useless_rowset_version_count = tablet->tablet_id();
350
0
                }
351
0
            });
352
0
            g_max_rowsets_with_useless_delete_bitmap.set_value(max_useless_rowset_count);
353
0
            g_max_rowsets_with_useless_delete_bitmap_version.set_value(
354
0
                    max_useless_rowset_version_count);
355
0
            LOG(INFO) << "finish check_agg_delete_bitmap_for_stale_rowsets, cost(us)="
356
0
                      << watch.get_elapse_time_us()
357
0
                      << ". max useless rowset count=" << max_useless_rowset_count
358
0
                      << ", tablet_id=" << tablet_id_with_max_useless_rowset_count
359
0
                      << ", max useless rowset version count=" << max_useless_rowset_version_count
360
0
                      << ", tablet_id=" << tablet_id_with_max_useless_rowset_version_count;
361
0
        }
362
0
    }
363
0
}
364
365
4
std::vector<std::weak_ptr<CloudTablet>> CloudTabletMgr::get_weak_tablets() {
366
4
    std::vector<std::weak_ptr<CloudTablet>> weak_tablets;
367
4
    weak_tablets.reserve(_tablet_map->size());
368
4
    _tablet_map->traverse([&weak_tablets](auto& t) { weak_tablets.push_back(t); });
369
4
    return weak_tablets;
370
4
}
371
372
0
void CloudTabletMgr::sync_tablets(const CountDownLatch& stop_latch) {
373
0
    LOG_INFO("begin to sync tablets");
374
0
    int64_t last_sync_time_bound = ::time(nullptr) - config::tablet_sync_interval_s;
375
376
0
    auto weak_tablets = get_weak_tablets();
377
378
    // sort by last_sync_time
379
0
    static auto cmp = [](const auto& a, const auto& b) { return a.first < b.first; };
380
0
    std::multiset<std::pair<int64_t, std::weak_ptr<CloudTablet>>, decltype(cmp)>
381
0
            sync_time_tablet_set(cmp);
382
383
0
    for (auto& weak_tablet : weak_tablets) {
384
0
        if (auto tablet = weak_tablet.lock()) {
385
0
            int64_t last_sync_time = tablet->last_sync_time_s;
386
0
            if (last_sync_time <= last_sync_time_bound) {
387
0
                sync_time_tablet_set.emplace(last_sync_time, weak_tablet);
388
0
            }
389
0
        }
390
0
    }
391
392
0
    int num_sync = 0;
393
0
    for (auto&& [_, weak_tablet] : sync_time_tablet_set) {
394
0
        if (stop_latch.count() <= 0) {
395
0
            break;
396
0
        }
397
398
0
        if (auto tablet = weak_tablet.lock()) {
399
0
            if (tablet->last_sync_time_s > last_sync_time_bound) {
400
0
                continue;
401
0
            }
402
403
0
            ++num_sync;
404
0
            auto st = tablet->sync_meta();
405
0
            if (!st) {
406
0
                LOG_WARNING("failed to sync tablet meta {}", tablet->tablet_id()).error(st);
407
0
                if (st.is<ErrorCode::NOT_FOUND>()) {
408
0
                    continue;
409
0
                }
410
0
            }
411
0
            SyncOptions options;
412
0
            options.query_version = -1;
413
0
            options.merge_schema = true;
414
0
            st = tablet->sync_rowsets(options);
415
0
            if (!st) {
416
0
                LOG_WARNING("failed to sync tablet rowsets {}", tablet->tablet_id()).error(st);
417
0
            }
418
0
        }
419
0
    }
420
0
    LOG_INFO("finish sync tablets").tag("num_sync", num_sync);
421
0
}
422
423
Status CloudTabletMgr::get_topn_tablets_to_compact(
424
        int n, CompactionType compaction_type, const std::function<bool(CloudTablet*)>& filter_out,
425
4
        std::vector<std::shared_ptr<CloudTablet>>* tablets, int64_t* max_score) {
426
4
    DCHECK(compaction_type == CompactionType::BASE_COMPACTION ||
427
4
           compaction_type == CompactionType::CUMULATIVE_COMPACTION);
428
4
    *max_score = 0;
429
4
    int64_t max_score_tablet_id = 0;
430
    // clang-format off
431
4
    auto score = [compaction_type](CloudTablet* t) {
432
4
        return compaction_type == CompactionType::BASE_COMPACTION ? t->get_cloud_base_compaction_score()
433
4
               : compaction_type == CompactionType::CUMULATIVE_COMPACTION ? t->get_cloud_cumu_compaction_score()
434
1
               : 0;
435
4
    };
436
437
4
    using namespace std::chrono;
438
4
    auto now = duration_cast<milliseconds>(system_clock::now().time_since_epoch()).count();
439
4
    auto skip = [now, compaction_type](CloudTablet* t) {
440
3
        auto* cloud_cluster_info = static_cast<CloudClusterInfo*>(ExecEnv::GetInstance()->cluster_info());
441
442
3
        if (config::enable_standby_passive_compaction && cloud_cluster_info->is_in_standby()) {
443
0
            if (t->fetch_add_approximate_num_rowsets(0) < config::max_tablet_version_num * config::standby_compaction_version_ratio) {
444
0
                return true;
445
0
            }
446
0
        }
447
448
        // Compaction read-write separation: skip tablets that should be compacted by other clusters.
449
        // Placed after standby check so standby invariants (version count threshold) are preserved.
450
3
        if (cloud_cluster_info->should_skip_compaction(t)) {
451
0
            return true;
452
0
        }
453
454
3
        int32_t max_version_config = t->max_version_config();
455
3
        if (compaction_type == CompactionType::BASE_COMPACTION) {
456
2
            bool is_recent_failure = now - t->last_base_compaction_failure_time() < config::min_compaction_failure_interval_ms;
457
2
            bool is_frozen = (now - t->last_load_time_ms > config::compaction_load_max_freeze_interval_s * 1000
458
2
                   && now - t->last_base_compaction_success_time_ms < config::base_compaction_freeze_interval_s * 1000
459
2
                   && t->fetch_add_approximate_num_rowsets(0) < max_version_config / 2);
460
2
            g_base_compaction_not_frozen_tablet_num << !is_frozen;
461
2
            return is_recent_failure || is_frozen;
462
2
        }
463
464
        // If tablet has too many rowsets but not be compacted for a long time, compaction should be performed
465
        // regardless of whether there is a load job recently.
466
1
        bool is_recent_failure = now - t->last_cumu_compaction_failure_time() < config::min_compaction_failure_interval_ms;
467
1
        bool is_recent_no_suitable_version = now - t->last_cumu_no_suitable_version_ms < config::min_compaction_failure_interval_ms;
468
1
        bool is_frozen = (now - t->last_load_time_ms > config::compaction_load_max_freeze_interval_s * 1000
469
1
               && now - t->last_cumu_compaction_success_time_ms < config::cumu_compaction_interval_s * 1000
470
1
               && t->fetch_add_approximate_num_rowsets(0) < max_version_config / 2);
471
1
        g_cumu_compaction_not_frozen_tablet_num << !is_frozen;
472
1
        return is_recent_failure || is_recent_no_suitable_version || is_frozen;
473
3
    };
474
    // We don't schedule tablets that are disabled for compaction
475
4
    auto disable = [](CloudTablet* t) { return t->tablet_meta()->tablet_schema()->disable_auto_compaction(); };
476
477
4
    auto [num_filtered, num_disabled, num_skipped] = std::make_tuple(0, 0, 0);
478
479
4
    auto weak_tablets = get_weak_tablets();
480
4
    std::vector<std::pair<std::shared_ptr<CloudTablet>, int64_t>> buf;
481
4
    buf.reserve(n + 1);
482
4
    for (auto& weak_tablet : weak_tablets) {
483
4
        auto t = weak_tablet.lock();
484
4
        if (t == nullptr) { continue; }
485
486
4
        int64_t s = score(t.get());
487
4
        if (s <= 0) { continue; }
488
3
        if (s > *max_score) {
489
3
            max_score_tablet_id = t->tablet_id();
490
3
            *max_score = s;
491
3
        }
492
493
3
        if (filter_out(t.get())) { ++num_filtered; continue; }
494
3
        if (disable(t.get())) { ++num_disabled; continue; }
495
3
        if (skip(t.get())) { ++num_skipped; continue; }
496
497
2
        buf.emplace_back(std::move(t), s);
498
2
        std::sort(buf.begin(), buf.end(), [](auto& a, auto& b) { return a.second > b.second; });
499
2
        if (buf.size() > n) { buf.pop_back(); }
500
2
    }
501
502
4
    LOG_EVERY_N(INFO, 1000) << "get_topn_compaction_score, n=" << n << " type=" << compaction_type
503
1
               << " num_tablets=" << weak_tablets.size() << " num_skipped=" << num_skipped
504
1
               << " num_disabled=" << num_disabled << " num_filtered=" << num_filtered
505
1
               << " max_score=" << *max_score << " max_score_tablet=" << max_score_tablet_id
506
1
               << " tablets=[" << [&buf] { std::stringstream ss; for (auto& i : buf) ss << i.first->tablet_id() << ":" << i.second << ","; return ss.str(); }() << "]"
507
4
               ;
508
    // clang-format on
509
510
4
    tablets->clear();
511
4
    tablets->reserve(n + 1);
512
4
    for (auto& [t, _] : buf) {
513
2
        tablets->emplace_back(std::move(t));
514
2
    }
515
516
4
    return Status::OK();
517
4
}
518
519
void CloudTabletMgr::build_all_report_tablets_info(std::map<TTabletId, TTablet>* tablets_info,
520
0
                                                   uint64_t* tablet_num) {
521
0
    DCHECK(tablets_info != nullptr);
522
0
    VLOG_NOTICE << "begin to build all report cloud tablets info";
523
524
0
    HistogramStat tablet_version_num_hist;
525
526
0
    auto handler = [&](const std::weak_ptr<CloudTablet>& tablet_wk) {
527
0
        auto tablet = tablet_wk.lock();
528
0
        if (!tablet) return;
529
0
        (*tablet_num)++;
530
0
        TTabletInfo tablet_info;
531
0
        tablet->build_tablet_report_info(&tablet_info);
532
0
        using namespace std::chrono;
533
0
        int64_t now = duration_cast<milliseconds>(system_clock::now().time_since_epoch()).count();
534
0
        if (now - g_tablet_report_inactive_duration_ms < tablet->last_access_time_ms) {
535
            // the tablet is still being accessed and used in recently, so not report it
536
0
            return;
537
0
        }
538
0
        auto& t_tablet = (*tablets_info)[tablet->tablet_id()];
539
        // On the cloud, a specific BE has only one tablet replica;
540
        // there are no multiple replicas for a specific BE.
541
        // This is only to reuse the non-cloud report protocol.
542
0
        tablet_version_num_hist.add(tablet_info.total_version_count);
543
0
        t_tablet.tablet_infos.emplace_back(std::move(tablet_info));
544
0
    };
545
546
0
    auto weak_tablets = get_weak_tablets();
547
0
    std::for_each(weak_tablets.begin(), weak_tablets.end(), handler);
548
549
0
    DorisMetrics::instance()->tablet_version_num_distribution->set_histogram(
550
0
            tablet_version_num_hist);
551
0
    LOG(INFO) << "success to build all cloud report tablets info. all_tablet_count=" << *tablet_num
552
0
              << " exceed drop time limit count=" << tablets_info->size();
553
0
}
554
555
0
void CloudTabletMgr::get_tablet_info(int64_t num_tablets, std::vector<TabletInfo>* tablets_info) {
556
0
    auto weak_tablets = get_weak_tablets();
557
0
    for (auto& weak_tablet : weak_tablets) {
558
0
        auto tablet = weak_tablet.lock();
559
0
        if (tablet == nullptr) {
560
0
            continue;
561
0
        }
562
0
        if (tablets_info->size() >= num_tablets) {
563
0
            return;
564
0
        }
565
0
        tablets_info->push_back(tablet->get_tablet_info());
566
0
    }
567
0
}
568
569
void CloudTabletMgr::get_topn_tablet_delete_bitmap_score(
570
0
        uint64_t* max_delete_bitmap_score, uint64_t* max_base_rowset_delete_bitmap_score) {
571
0
    int64_t max_delete_bitmap_score_tablet_id = 0;
572
0
    OlapStopWatch watch;
573
0
    uint64_t total_delete_map_count = 0;
574
0
    int64_t max_base_rowset_delete_bitmap_score_tablet_id = 0;
575
0
    int n = config::check_tablet_delete_bitmap_score_top_n;
576
0
    std::vector<std::pair<std::shared_ptr<CloudTablet>, int64_t>> buf;
577
0
    buf.reserve(n + 1);
578
0
    auto handler = [&](const std::weak_ptr<CloudTablet>& tablet_wk) {
579
0
        auto t = tablet_wk.lock();
580
0
        if (!t) return;
581
0
        uint64_t delete_bitmap_count =
582
0
                t.get()->tablet_meta()->delete_bitmap().get_delete_bitmap_count();
583
0
        total_delete_map_count += delete_bitmap_count;
584
0
        if (delete_bitmap_count > *max_delete_bitmap_score) {
585
0
            max_delete_bitmap_score_tablet_id = t->tablet_id();
586
0
            *max_delete_bitmap_score = delete_bitmap_count;
587
0
        }
588
0
        buf.emplace_back(std::move(t), delete_bitmap_count);
589
0
        std::sort(buf.begin(), buf.end(), [](auto& a, auto& b) { return a.second > b.second; });
590
0
        if (buf.size() > n) {
591
0
            buf.pop_back();
592
0
        }
593
0
    };
594
0
    auto weak_tablets = get_weak_tablets();
595
0
    std::for_each(weak_tablets.begin(), weak_tablets.end(), handler);
596
0
    for (auto& [t, _] : buf) {
597
0
        t->get_base_rowset_delete_bitmap_count(max_base_rowset_delete_bitmap_score,
598
0
                                               &max_base_rowset_delete_bitmap_score_tablet_id);
599
0
    }
600
0
    std::stringstream ss;
601
0
    for (auto& i : buf) {
602
0
        ss << i.first->tablet_id() << ": " << i.second << ", ";
603
0
    }
604
0
    LOG(INFO) << "get_topn_tablet_delete_bitmap_score, n=" << n
605
0
              << ", tablet size=" << weak_tablets.size()
606
0
              << ", total_delete_map_count=" << total_delete_map_count
607
0
              << ", cost(us)=" << watch.get_elapse_time_us()
608
0
              << ", max_delete_bitmap_score=" << *max_delete_bitmap_score
609
0
              << ", max_delete_bitmap_score_tablet_id=" << max_delete_bitmap_score_tablet_id
610
0
              << ", max_base_rowset_delete_bitmap_score=" << *max_base_rowset_delete_bitmap_score
611
0
              << ", max_base_rowset_delete_bitmap_score_tablet_id="
612
0
              << max_base_rowset_delete_bitmap_score_tablet_id << ", tablets=[" << ss.str() << "]";
613
0
}
614
615
1
std::vector<std::shared_ptr<CloudTablet>> CloudTabletMgr::get_all_tablet() {
616
1
    std::vector<std::shared_ptr<CloudTablet>> tablets;
617
1
    tablets.reserve(_tablet_map->size());
618
1
    _tablet_map->traverse([&tablets](auto& t) { tablets.push_back(t); });
619
1
    return tablets;
620
1
}
621
622
2
void CloudTabletMgr::put_tablet_for_UT(std::shared_ptr<CloudTablet> tablet) {
623
2
    _tablet_map->put(tablet);
624
2
}
625
626
} // namespace doris