Coverage Report

Created: 2026-03-21 00:25

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/cloud/cloud_tablet.h
Line
Count
Source
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
8
//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
#pragma once
19
20
#include <memory>
21
22
#include "olap/base_tablet.h"
23
#include "olap/partial_update_info.h"
24
#include "olap/rowset/rowset.h"
25
26
namespace doris {
27
28
class CloudStorageEngine;
29
30
enum class WarmUpTriggerSource : int { NONE, SYNC_ROWSET, EVENT_DRIVEN, JOB };
31
32
enum class WarmUpProgress : int { NONE, DOING, DONE };
33
34
struct WarmUpState {
35
    WarmUpTriggerSource trigger_source {WarmUpTriggerSource::NONE};
36
    WarmUpProgress progress {WarmUpProgress::NONE};
37
38
55
    bool operator==(const WarmUpState& other) const {
39
55
        return trigger_source == other.trigger_source && progress == other.progress;
40
55
    }
41
};
42
43
struct SyncRowsetStats {
44
    int64_t get_remote_rowsets_num {0};
45
    int64_t get_remote_rowsets_rpc_ns {0};
46
47
    int64_t get_local_delete_bitmap_rowsets_num {0};
48
    int64_t get_remote_delete_bitmap_rowsets_num {0};
49
    int64_t get_remote_delete_bitmap_key_count {0};
50
    int64_t get_remote_delete_bitmap_bytes {0};
51
    int64_t get_remote_delete_bitmap_rpc_ns {0};
52
53
    int64_t get_remote_tablet_meta_rpc_ns {0};
54
    int64_t tablet_meta_cache_hit {0};
55
    int64_t tablet_meta_cache_miss {0};
56
57
    int64_t bthread_schedule_delay_ns {0};
58
    int64_t meta_lock_wait_ns {0}; // _meta_lock (std::shared_mutex) wait across all acquisitions
59
    int64_t sync_meta_lock_wait_ns {
60
            0}; // _sync_meta_lock (bthread::Mutex) wait across all acquisitions
61
};
62
63
struct SyncOptions {
64
    bool warmup_delta_data = false;
65
    bool sync_delete_bitmap = true;
66
    bool full_sync = false;
67
    bool merge_schema = false;
68
    int64_t query_version = -1;
69
};
70
71
struct RecycledRowsets {
72
    RowsetId rowset_id;
73
    int64_t num_segments;
74
    std::vector<std::string> index_file_names;
75
};
76
77
class CloudTablet final : public BaseTablet {
78
public:
79
    CloudTablet(CloudStorageEngine& engine, TabletMetaSharedPtr tablet_meta);
80
81
    ~CloudTablet() override;
82
83
    bool exceed_version_limit(int32_t limit) override;
84
85
    Result<std::unique_ptr<RowsetWriter>> create_rowset_writer(RowsetWriterContext& context,
86
                                                               bool vertical) override;
87
88
    Status capture_rs_readers(const Version& spec_version, std::vector<RowSetSplits>* rs_splits,
89
                              const CaptureRowsetOps& opts) override;
90
91
    [[nodiscard]] Result<std::vector<Version>> capture_consistent_versions_unlocked(
92
            const Version& version_range, const CaptureRowsetOps& options) const override;
93
94
    // Capture versions with cache preference optimization.
95
    // This method prioritizes using cached/warmed-up rowsets when building version paths,
96
    // avoiding cold data reads when possible. It uses capture_consistent_versions_prefer_cache
97
    // to find a consistent version path that prefers already warmed-up rowsets.
98
    Result<std::vector<Version>> capture_versions_prefer_cache(const Version& spec_version) const;
99
100
    // Capture versions with query freshness tolerance.
101
    // This method finds a consistent version path where all rowsets are warmed up,
102
    // but allows fallback to normal capture if there are newer rowsets that should be
103
    // visible (based on freshness tolerance) but haven't been warmed up yet.
104
    // For merge-on-write tables, uses special validation to ensure data correctness.
105
    //
106
    // IMPORTANT: The returned version may be smaller than the requested version if newer
107
    // data hasn't been warmed up yet. This can cause different tablets in the same query
108
    // to read from different versions, potentially leading to inconsistent query results.
109
    //
110
    // @param options.query_freshness_tolerance_ms: Time tolerance in milliseconds. Rowsets that
111
    //        became visible within this time range (after current_time - query_freshness_tolerance_ms)
112
    //        can be skipped if not warmed up. However, if older rowsets (before this time point)
113
    //        are not warmed up, the method will fallback to normal capture.
114
    Result<std::vector<Version>> capture_versions_with_freshness_tolerance(
115
            const Version& spec_version, const CaptureRowsetOps& options) const;
116
117
0
    size_t tablet_footprint() override {
118
0
        return _approximate_data_size.load(std::memory_order_relaxed);
119
0
    }
120
121
    std::string tablet_path() const override;
122
123
    // clang-format off
124
2
    int64_t fetch_add_approximate_num_rowsets (int64_t x) { return _approximate_num_rowsets .fetch_add(x, std::memory_order_relaxed); }
125
0
    int64_t fetch_add_approximate_num_segments(int64_t x) { return _approximate_num_segments.fetch_add(x, std::memory_order_relaxed); }
126
0
    int64_t fetch_add_approximate_num_rows    (int64_t x) { return _approximate_num_rows    .fetch_add(x, std::memory_order_relaxed); }
127
0
    int64_t fetch_add_approximate_data_size   (int64_t x) { return _approximate_data_size   .fetch_add(x, std::memory_order_relaxed); }
128
2
    int64_t fetch_add_approximate_cumu_num_rowsets (int64_t x) { return _approximate_cumu_num_rowsets.fetch_add(x, std::memory_order_relaxed); }
129
0
    int64_t fetch_add_approximate_cumu_num_deltas   (int64_t x) { return _approximate_cumu_num_deltas.fetch_add(x, std::memory_order_relaxed); }
130
    // clang-format on
131
132
    // meta lock must be held when calling this function
133
    void reset_approximate_stats(int64_t num_rowsets, int64_t num_segments, int64_t num_rows,
134
                                 int64_t data_size);
135
136
    // return a json string to show the compaction status of this tablet
137
    void get_compaction_status(std::string* json_result);
138
139
    // Synchronize the rowsets from meta service.
140
    // If tablet state is not `TABLET_RUNNING`, sync tablet meta and all visible rowsets.
141
    // If `query_version` > 0 and local max_version of the tablet >= `query_version`, do nothing.
142
    // If 'need_download_data_async' is true, it means that we need to download the new version
143
    // rowsets datum async.
144
    Status sync_rowsets(const SyncOptions& options = {}, SyncRowsetStats* stats = nullptr);
145
146
    // Synchronize the tablet meta from meta service.
147
    Status sync_meta();
148
149
    // If `version_overlap` is true, function will delete rowsets with overlapped version in this tablet.
150
    // If 'warmup_delta_data' is true, download the new version rowset data in background.
151
    // MUST hold EXCLUSIVE `_meta_lock`.
152
    // If 'need_download_data_async' is true, it means that we need to download the new version
153
    // rowsets datum async.
154
    void add_rowsets(std::vector<RowsetSharedPtr> to_add, bool version_overlap,
155
                     std::unique_lock<std::shared_mutex>& meta_lock,
156
                     bool warmup_delta_data = false);
157
158
    // MUST hold EXCLUSIVE `_meta_lock`.
159
    void delete_rowsets(const std::vector<RowsetSharedPtr>& to_delete,
160
                        std::unique_lock<std::shared_mutex>& meta_lock);
161
162
    // When the tablet is dropped, we need to recycle cached data:
163
    // 1. The data in file cache
164
    // 2. The memory in tablet cache
165
    void clear_cache() override;
166
167
    // Return number of deleted stale rowsets
168
    uint64_t delete_expired_stale_rowsets();
169
170
0
    bool has_stale_rowsets() const { return !_stale_rs_version_map.empty(); }
171
172
    int64_t get_cloud_base_compaction_score() const;
173
    int64_t get_cloud_cumu_compaction_score() const;
174
175
2
    int64_t max_version_unlocked() const override { return _max_version; }
176
3
    int64_t base_compaction_cnt() const { return _base_compaction_cnt; }
177
3
    int64_t cumulative_compaction_cnt() const { return _cumulative_compaction_cnt; }
178
0
    int64_t full_compaction_cnt() const { return _full_compaction_cnt; }
179
6
    int64_t cumulative_layer_point() const {
180
6
        return _cumulative_point.load(std::memory_order_relaxed);
181
6
    }
182
183
0
    void set_base_compaction_cnt(int64_t cnt) { _base_compaction_cnt = cnt; }
184
0
    void set_cumulative_compaction_cnt(int64_t cnt) { _cumulative_compaction_cnt = cnt; }
185
0
    void set_full_compaction_cnt(int64_t cnt) { _full_compaction_cnt = cnt; }
186
    void set_cumulative_layer_point(int64_t new_point);
187
188
1
    int64_t last_cumu_compaction_failure_time() { return _last_cumu_compaction_failure_millis; }
189
3
    void set_last_cumu_compaction_failure_time(int64_t millis) {
190
3
        _last_cumu_compaction_failure_millis = millis;
191
3
    }
192
193
2
    int64_t last_base_compaction_failure_time() { return _last_base_compaction_failure_millis; }
194
3
    void set_last_base_compaction_failure_time(int64_t millis) {
195
3
        _last_base_compaction_failure_millis = millis;
196
3
    }
197
198
0
    int64_t last_full_compaction_failure_time() { return _last_full_compaction_failure_millis; }
199
0
    void set_last_full_compaction_failure_time(int64_t millis) {
200
0
        _last_full_compaction_failure_millis = millis;
201
0
    }
202
203
0
    int64_t last_cumu_compaction_success_time() { return _last_cumu_compaction_success_millis; }
204
0
    void set_last_cumu_compaction_success_time(int64_t millis) {
205
0
        _last_cumu_compaction_success_millis = millis;
206
0
    }
207
208
0
    int64_t last_base_compaction_success_time() { return _last_base_compaction_success_millis; }
209
0
    void set_last_base_compaction_success_time(int64_t millis) {
210
0
        _last_base_compaction_success_millis = millis;
211
0
    }
212
213
0
    int64_t last_full_compaction_success_time() { return _last_full_compaction_success_millis; }
214
0
    void set_last_full_compaction_success_time(int64_t millis) {
215
0
        _last_full_compaction_success_millis = millis;
216
0
    }
217
218
0
    int64_t last_cumu_compaction_schedule_time() { return _last_cumu_compaction_schedule_millis; }
219
0
    void set_last_cumu_compaction_schedule_time(int64_t millis) {
220
0
        _last_cumu_compaction_schedule_millis = millis;
221
0
    }
222
223
0
    int64_t last_base_compaction_schedule_time() { return _last_base_compaction_schedule_millis; }
224
0
    void set_last_base_compaction_schedule_time(int64_t millis) {
225
0
        _last_base_compaction_schedule_millis = millis;
226
0
    }
227
228
0
    int64_t last_full_compaction_schedule_time() { return _last_full_compaction_schedule_millis; }
229
0
    void set_last_full_compaction_schedule_time(int64_t millis) {
230
0
        _last_full_compaction_schedule_millis = millis;
231
0
    }
232
233
0
    void set_last_cumu_compaction_status(std::string status) {
234
0
        _last_cumu_compaction_status = std::move(status);
235
0
    }
236
237
0
    std::string get_last_cumu_compaction_status() { return _last_cumu_compaction_status; }
238
239
0
    void set_last_base_compaction_status(std::string status) {
240
0
        _last_base_compaction_status = std::move(status);
241
0
    }
242
243
0
    std::string get_last_base_compaction_status() { return _last_base_compaction_status; }
244
245
0
    void set_last_full_compaction_status(std::string status) {
246
0
        _last_full_compaction_status = std::move(status);
247
0
    }
248
249
0
    std::string get_last_full_compaction_status() { return _last_full_compaction_status; }
250
251
0
    int64_t alter_version() const { return _alter_version; }
252
2
    void set_alter_version(int64_t alter_version) { _alter_version = alter_version; }
253
254
    std::vector<RowsetSharedPtr> pick_candidate_rowsets_to_base_compaction();
255
256
9
    inline Version max_version() const {
257
9
        std::shared_lock rdlock(_meta_lock);
258
9
        return _tablet_meta->max_version();
259
9
    }
260
261
9
    int64_t base_size() const { return _base_size; }
262
263
    std::vector<RowsetSharedPtr> pick_candidate_rowsets_to_full_compaction();
264
    Result<RowsetSharedPtr> pick_a_rowset_for_index_change(int schema_version,
265
                                                           bool& is_base_rowset);
266
    Status check_rowset_schema_for_build_index(std::vector<TColumn>& columns, int schema_version);
267
268
0
    std::mutex& get_base_compaction_lock() { return _base_compaction_lock; }
269
0
    std::mutex& get_cumulative_compaction_lock() { return _cumulative_compaction_lock; }
270
271
    Result<std::unique_ptr<RowsetWriter>> create_transient_rowset_writer(
272
            const Rowset& rowset, std::shared_ptr<PartialUpdateInfo> partial_update_info,
273
            int64_t txn_expiration = 0) override;
274
275
    CalcDeleteBitmapExecutor* calc_delete_bitmap_executor() override;
276
277
    Status save_delete_bitmap(const TabletTxnInfo* txn_info, int64_t txn_id,
278
                              DeleteBitmapPtr delete_bitmap, RowsetWriter* rowset_writer,
279
                              const RowsetIdUnorderedSet& cur_rowset_ids, int64_t lock_id = -1,
280
                              int64_t next_visible_version = -1) override;
281
282
    Status save_delete_bitmap_to_ms(int64_t cur_version, int64_t txn_id,
283
                                    DeleteBitmapPtr delete_bitmap, int64_t lock_id,
284
                                    int64_t next_visible_version, RowsetSharedPtr rowset);
285
286
    Status calc_delete_bitmap_for_compaction(const std::vector<RowsetSharedPtr>& input_rowsets,
287
                                             const RowsetSharedPtr& output_rowset,
288
                                             const RowIdConversion& rowid_conversion,
289
                                             ReaderType compaction_type, int64_t merged_rows,
290
                                             int64_t filtered_rows, int64_t initiator,
291
                                             DeleteBitmapPtr& output_rowset_delete_bitmap,
292
                                             bool allow_delete_in_cumu_compaction,
293
                                             int64_t& get_delete_bitmap_lock_start_time);
294
295
    // Find the missed versions until the spec_version.
296
    //
297
    // for example:
298
    //     [0-4][5-5][8-8][9-9][14-14]
299
    // if spec_version = 12, it will return [6-7],[10-12]
300
    Versions calc_missed_versions(int64_t spec_version, Versions existing_versions) const override;
301
302
0
    std::mutex& get_rowset_update_lock() { return _rowset_update_lock; }
303
304
0
    bthread::Mutex& get_sync_meta_lock() { return _sync_meta_lock; }
305
306
94
    const auto& rowset_map() const { return _rs_version_map; }
307
308
    int64_t last_sync_time_s = 0;
309
    int64_t last_load_time_ms = 0;
310
    int64_t last_base_compaction_success_time_ms = 0;
311
    int64_t last_cumu_compaction_success_time_ms = 0;
312
    int64_t last_cumu_no_suitable_version_ms = 0;
313
    int64_t last_access_time_ms = 0;
314
315
    std::atomic<int64_t> local_read_time_us = 0;
316
    std::atomic<int64_t> remote_read_time_us = 0;
317
    std::atomic<int64_t> exec_compaction_time_us = 0;
318
319
    void build_tablet_report_info(TTabletInfo* tablet_info);
320
321
    // check that if the delete bitmap in delete bitmap cache has the same cardinality with the expected_delete_bitmap's
322
    Status check_delete_bitmap_cache(int64_t txn_id, DeleteBitmap* expected_delete_bitmap) override;
323
324
    void agg_delete_bitmap_for_compaction(int64_t start_version, int64_t end_version,
325
                                          const std::vector<RowsetSharedPtr>& pre_rowsets,
326
                                          DeleteBitmapPtr& new_delete_bitmap,
327
                                          std::map<std::string, int64_t>& pre_rowset_to_versions);
328
329
    bool need_remove_unused_rowsets();
330
331
    void add_unused_rowsets(const std::vector<RowsetSharedPtr>& rowsets);
332
    void remove_unused_rowsets();
333
334
    // For each given rowset not in active use, clears its file cache and returns its
335
    // ID, segment count, and index file names as RecycledRowsets entries.
336
    static std::vector<RecycledRowsets> recycle_cached_data(
337
            const std::vector<RowsetSharedPtr>& rowsets);
338
339
    // Add warmup state management
340
    WarmUpState get_rowset_warmup_state(RowsetId rowset_id);
341
    bool add_rowset_warmup_state(
342
            const RowsetMeta& rowset, WarmUpTriggerSource source,
343
            std::chrono::steady_clock::time_point start_tp = std::chrono::steady_clock::now());
344
    bool update_rowset_warmup_state_inverted_idx_num(WarmUpTriggerSource source, RowsetId rowset_id,
345
                                                     int64_t delta);
346
    bool update_rowset_warmup_state_inverted_idx_num_unlocked(WarmUpTriggerSource source,
347
                                                              RowsetId rowset_id, int64_t delta);
348
    WarmUpState complete_rowset_segment_warmup(WarmUpTriggerSource trigger_source,
349
                                               RowsetId rowset_id, Status status,
350
                                               int64_t segment_num, int64_t inverted_idx_num);
351
352
    bool is_rowset_warmed_up(const RowsetId& rowset_id) const;
353
354
    void add_warmed_up_rowset(const RowsetId& rowset_id);
355
356
5
    std::string rowset_warmup_digest() const {
357
5
        std::string res;
358
104
        auto add_log = [&](const RowsetSharedPtr& rs) {
359
104
            auto tmp = fmt::format("{}{}", rs->rowset_id().to_string(), rs->version().to_string());
360
104
            if (_rowset_warm_up_states.contains(rs->rowset_id())) {
361
87
                tmp += fmt::format(
362
87
                        ", progress={}, segments_warmed_up={}/{}, inverted_idx_warmed_up={}/{}",
363
87
                        _rowset_warm_up_states.at(rs->rowset_id()).state.progress,
364
87
                        _rowset_warm_up_states.at(rs->rowset_id()).num_segments_warmed_up,
365
87
                        _rowset_warm_up_states.at(rs->rowset_id()).num_segments,
366
87
                        _rowset_warm_up_states.at(rs->rowset_id()).num_inverted_idx_warmed_up,
367
87
                        _rowset_warm_up_states.at(rs->rowset_id()).num_inverted_idx);
368
87
            }
369
104
            res += fmt::format("[{}],", tmp);
370
104
        };
371
5
        traverse_rowsets_unlocked(add_log, true);
372
5
        return res;
373
5
    }
374
375
private:
376
    // FIXME(plat1ko): No need to record base size if rowsets are ordered by version
377
    void update_base_size(const Rowset& rs);
378
379
    Status sync_if_not_running(SyncRowsetStats* stats = nullptr);
380
381
    bool add_rowset_warmup_state_unlocked(
382
            const RowsetMeta& rowset, WarmUpTriggerSource source,
383
            std::chrono::steady_clock::time_point start_tp = std::chrono::steady_clock::now());
384
385
    // used by capture_rs_reader_xxx functions
386
    bool rowset_is_warmed_up_unlocked(int64_t start_version, int64_t end_version) const;
387
388
    // Check if a rowset should be visible but not warmed up within freshness tolerance
389
    bool _check_rowset_should_be_visible_but_not_warmed_up(
390
            const RowsetMetaSharedPtr& rs_meta, int64_t path_max_version,
391
            std::chrono::system_clock::time_point freshness_limit_tp) const;
392
393
    // Submit a segment download task for warming up
394
    void _submit_segment_download_task(const RowsetSharedPtr& rs,
395
                                       const StorageResource* storage_resource, int seg_id,
396
                                       int64_t expiration_time);
397
398
    // Submit an inverted index download task for warming up
399
    void _submit_inverted_index_download_task(const RowsetSharedPtr& rs,
400
                                              const StorageResource* storage_resource,
401
                                              const io::Path& idx_path, int64_t idx_size,
402
                                              int64_t expiration_time);
403
404
    // Add rowsets directly with warmup
405
    void _add_rowsets_directly(std::vector<RowsetSharedPtr>& rowsets, bool warmup_delta_data);
406
407
    CloudStorageEngine& _engine;
408
409
    // this mutex MUST ONLY be used when sync meta
410
    bthread::Mutex _sync_meta_lock;
411
    // ATTENTION: lock order should be: _sync_meta_lock -> _meta_lock
412
413
    std::atomic<int64_t> _cumulative_point {-1};
414
    std::atomic<int64_t> _approximate_num_rowsets {-1};
415
    std::atomic<int64_t> _approximate_num_segments {-1};
416
    std::atomic<int64_t> _approximate_num_rows {-1};
417
    std::atomic<int64_t> _approximate_data_size {-1};
418
    std::atomic<int64_t> _approximate_cumu_num_rowsets {-1};
419
    // Number of sorted arrays (e.g. for rowset with N segments, if rowset is overlapping, delta is N, otherwise 1) after cumu point
420
    std::atomic<int64_t> _approximate_cumu_num_deltas {-1};
421
422
    // timestamp of last cumu compaction failure
423
    std::atomic<int64_t> _last_cumu_compaction_failure_millis;
424
    // timestamp of last base compaction failure
425
    std::atomic<int64_t> _last_base_compaction_failure_millis;
426
    // timestamp of last full compaction failure
427
    std::atomic<int64_t> _last_full_compaction_failure_millis;
428
    // timestamp of last cumu compaction success
429
    std::atomic<int64_t> _last_cumu_compaction_success_millis;
430
    // timestamp of last base compaction success
431
    std::atomic<int64_t> _last_base_compaction_success_millis;
432
    // timestamp of last full compaction success
433
    std::atomic<int64_t> _last_full_compaction_success_millis;
434
    // timestamp of last cumu compaction schedule time
435
    std::atomic<int64_t> _last_cumu_compaction_schedule_millis;
436
    // timestamp of last base compaction schedule time
437
    std::atomic<int64_t> _last_base_compaction_schedule_millis;
438
    // timestamp of last full compaction schedule time
439
    std::atomic<int64_t> _last_full_compaction_schedule_millis;
440
441
    std::string _last_cumu_compaction_status;
442
    std::string _last_base_compaction_status;
443
    std::string _last_full_compaction_status;
444
445
    int64_t _base_compaction_cnt = 0;
446
    int64_t _cumulative_compaction_cnt = 0;
447
    int64_t _full_compaction_cnt = 0;
448
    int64_t _max_version = -1;
449
    int64_t _base_size = 0;
450
    int64_t _alter_version = -1;
451
452
    std::mutex _base_compaction_lock;
453
    std::mutex _cumulative_compaction_lock;
454
455
    // To avoid multiple calc delete bitmap tasks on same (txn_id, tablet_id) with different
456
    // signatures being executed concurrently, we use _rowset_update_lock to serialize them
457
    mutable std::mutex _rowset_update_lock;
458
459
    // unused_rowsets, [start_version, end_version]
460
    std::mutex _gc_mutex;
461
    std::unordered_map<RowsetId, RowsetSharedPtr> _unused_rowsets;
462
    std::vector<std::pair<std::vector<RowsetId>, DeleteBitmapKeyRanges>> _unused_delete_bitmap;
463
464
    // for warm up states management
465
    struct RowsetWarmUpInfo {
466
        WarmUpState state;
467
        int64_t num_segments = 0;
468
        int64_t num_inverted_idx = 0;
469
        int64_t num_segments_warmed_up = 0;
470
        int64_t num_inverted_idx_warmed_up = 0;
471
        std::chrono::steady_clock::time_point start_tp;
472
473
18
        void done(int64_t num_segments, int64_t num_inverted_idx) {
474
18
            num_segments_warmed_up += num_segments;
475
18
            num_inverted_idx_warmed_up += num_inverted_idx;
476
18
            update_state();
477
18
        }
478
479
51
        bool has_finished() const {
480
51
            return (num_segments_warmed_up >= num_segments) &&
481
51
                   (num_inverted_idx_warmed_up >= num_inverted_idx);
482
51
        }
483
484
        void update_state();
485
    };
486
    std::unordered_map<RowsetId, RowsetWarmUpInfo> _rowset_warm_up_states;
487
488
    mutable std::shared_mutex _warmed_up_rowsets_mutex;
489
    std::unordered_set<RowsetId> _warmed_up_rowsets;
490
};
491
492
using CloudTabletSPtr = std::shared_ptr<CloudTablet>;
493
494
} // namespace doris