Coverage Report

Created: 2026-05-26 17:37

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/cloud/cloud_tablet.cpp
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Count
Source
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// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
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// 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
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
10
//
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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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18
#include "cloud/cloud_tablet.h"
19
20
#include <bvar/bvar.h>
21
#include <bvar/latency_recorder.h>
22
#include <gen_cpp/Types_types.h>
23
#include <gen_cpp/olap_file.pb.h>
24
#include <rapidjson/document.h>
25
#include <rapidjson/encodings.h>
26
#include <rapidjson/prettywriter.h>
27
#include <rapidjson/rapidjson.h>
28
#include <rapidjson/stringbuffer.h>
29
30
#include <atomic>
31
#include <chrono>
32
#include <cstdint>
33
#include <memory>
34
#include <ranges>
35
#include <ratio>
36
#include <shared_mutex>
37
#include <unordered_map>
38
#include <vector>
39
40
#include "cloud/cloud_meta_mgr.h"
41
#include "cloud/cloud_storage_engine.h"
42
#include "cloud/cloud_tablet_mgr.h"
43
#include "cloud/cloud_warm_up_manager.h"
44
#include "common/cast_set.h"
45
#include "common/config.h"
46
#include "common/logging.h"
47
#include "cpp/sync_point.h"
48
#include "io/cache/block_file_cache.h"
49
#include "io/cache/block_file_cache_downloader.h"
50
#include "io/cache/block_file_cache_factory.h"
51
#include "io/cache/file_cache_expiration.h"
52
#include "olap/base_tablet.h"
53
#include "olap/compaction.h"
54
#include "olap/cumulative_compaction_time_series_policy.h"
55
#include "olap/olap_define.h"
56
#include "olap/rowset/beta_rowset.h"
57
#include "olap/rowset/rowset.h"
58
#include "olap/rowset/rowset_factory.h"
59
#include "olap/rowset/rowset_fwd.h"
60
#include "olap/rowset/rowset_writer.h"
61
#include "olap/rowset/segment_v2/inverted_index_desc.h"
62
#include "olap/storage_policy.h"
63
#include "olap/tablet_schema.h"
64
#include "olap/txn_manager.h"
65
#include "util/debug_points.h"
66
#include "vec/common/schema_util.h"
67
68
namespace doris {
69
#include "common/compile_check_begin.h"
70
using namespace ErrorCode;
71
72
bvar::LatencyRecorder g_cu_compaction_get_delete_bitmap_lock_time_ms(
73
        "cu_compaction_get_delete_bitmap_lock_time_ms");
74
bvar::LatencyRecorder g_base_compaction_get_delete_bitmap_lock_time_ms(
75
        "base_compaction_get_delete_bitmap_lock_time_ms");
76
77
bvar::Adder<int64_t> g_unused_rowsets_count("unused_rowsets_count");
78
bvar::Adder<int64_t> g_unused_rowsets_bytes("unused_rowsets_bytes");
79
80
bvar::Adder<int64_t> g_capture_prefer_cache_count("capture_prefer_cache_count");
81
bvar::Adder<int64_t> g_capture_with_freshness_tolerance_count(
82
        "capture_with_freshness_tolerance_count");
83
bvar::Adder<int64_t> g_capture_with_freshness_tolerance_fallback_count(
84
        "capture_with_freshness_tolerance_fallback_count");
85
bvar::Adder<int64_t> g_rowset_warmup_state_missing_count("rowset_warmup_state_missing_count");
86
bvar::Window<bvar::Adder<int64_t>> g_capture_prefer_cache_count_window(
87
        "capture_prefer_cache_count_window", &g_capture_prefer_cache_count, 30);
88
bvar::Window<bvar::Adder<int64_t>> g_capture_with_freshness_tolerance_count_window(
89
        "capture_with_freshness_tolerance_count_window", &g_capture_with_freshness_tolerance_count,
90
        30);
91
bvar::Window<bvar::Adder<int64_t>> g_capture_with_freshness_tolerance_fallback_count_window(
92
        "capture_with_freshness_tolerance_fallback_count_window",
93
        &g_capture_with_freshness_tolerance_fallback_count, 30);
94
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static constexpr int LOAD_INITIATOR_ID = -1;
96
97
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_submitted_segment_size(
98
        "file_cache_cloud_tablet_submitted_segment_size");
99
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_submitted_segment_num(
100
        "file_cache_cloud_tablet_submitted_segment_num");
101
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_submitted_index_size(
102
        "file_cache_cloud_tablet_submitted_index_size");
103
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_submitted_index_num(
104
        "file_cache_cloud_tablet_submitted_index_num");
105
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_finished_segment_size(
106
        "file_cache_cloud_tablet_finished_segment_size");
107
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_finished_segment_num(
108
        "file_cache_cloud_tablet_finished_segment_num");
109
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_finished_index_size(
110
        "file_cache_cloud_tablet_finished_index_size");
111
bvar::Adder<uint64_t> g_file_cache_cloud_tablet_finished_index_num(
112
        "file_cache_cloud_tablet_finished_index_num");
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114
bvar::Adder<uint64_t> g_file_cache_recycle_cached_data_segment_num(
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        "file_cache_recycle_cached_data_segment_num");
116
bvar::Adder<uint64_t> g_file_cache_recycle_cached_data_segment_size(
117
        "file_cache_recycle_cached_data_segment_size");
118
bvar::Adder<uint64_t> g_file_cache_recycle_cached_data_index_num(
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        "file_cache_recycle_cached_data_index_num");
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121
bvar::Adder<uint64_t> g_file_cache_warm_up_segment_complete_num(
122
        "file_cache_warm_up_segment_complete_num");
123
bvar::Adder<uint64_t> g_file_cache_warm_up_segment_failed_num(
124
        "file_cache_warm_up_segment_failed_num");
125
bvar::Adder<uint64_t> g_file_cache_warm_up_inverted_idx_complete_num(
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        "file_cache_warm_up_inverted_idx_complete_num");
127
bvar::Adder<uint64_t> g_file_cache_warm_up_inverted_idx_failed_num(
128
        "file_cache_warm_up_inverted_idx_failed_num");
129
bvar::Adder<uint64_t> g_file_cache_warm_up_rowset_complete_num(
130
        "file_cache_warm_up_rowset_complete_num");
131
bvar::Adder<uint64_t> g_file_cache_warm_up_rowset_triggered_by_job_num(
132
        "file_cache_warm_up_rowset_triggered_by_job_num");
133
bvar::Adder<uint64_t> g_file_cache_warm_up_rowset_triggered_by_sync_rowset_num(
134
        "file_cache_warm_up_rowset_triggered_by_sync_rowset_num");
135
bvar::Adder<uint64_t> g_file_cache_warm_up_rowset_triggered_by_event_driven_num(
136
        "file_cache_warm_up_rowset_triggered_by_event_driven_num");
137
bvar::LatencyRecorder g_file_cache_warm_up_rowset_all_segments_latency(
138
        "file_cache_warm_up_rowset_all_segments_latency");
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CloudTablet::CloudTablet(CloudStorageEngine& engine, TabletMetaSharedPtr tablet_meta)
141
140
        : BaseTablet(std::move(tablet_meta)), _engine(engine) {}
142
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CloudTablet::~CloudTablet() = default;
144
145
0
bool CloudTablet::exceed_version_limit(int32_t limit) {
146
0
    return _approximate_num_rowsets.load(std::memory_order_relaxed) > limit;
147
0
}
148
149
19
std::string CloudTablet::tablet_path() const {
150
19
    return "";
151
19
}
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Status CloudTablet::capture_rs_readers(const Version& spec_version,
154
                                       std::vector<RowSetSplits>* rs_splits,
155
0
                                       const CaptureRowsetOps& opts) {
156
0
    DBUG_EXECUTE_IF("CloudTablet.capture_rs_readers.return.e-230", {
157
0
        LOG_WARNING("CloudTablet.capture_rs_readers.return e-230").tag("tablet_id", tablet_id());
158
0
        return Status::Error<false>(-230, "injected error");
159
0
    });
160
0
    std::shared_lock rlock(_meta_lock);
161
0
    *rs_splits = DORIS_TRY(capture_rs_readers_unlocked(
162
0
            spec_version, CaptureRowsetOps {.skip_missing_versions = opts.skip_missing_versions}));
163
0
    return Status::OK();
164
0
}
165
166
[[nodiscard]] Result<std::vector<Version>> CloudTablet::capture_consistent_versions_unlocked(
167
39
        const Version& version_range, const CaptureRowsetOps& options) const {
168
39
    if (options.query_freshness_tolerance_ms > 0) {
169
24
        return capture_versions_with_freshness_tolerance(version_range, options);
170
24
    } else if (options.enable_prefer_cached_rowset && !enable_unique_key_merge_on_write()) {
171
13
        return capture_versions_prefer_cache(version_range);
172
13
    }
173
2
    return BaseTablet::capture_consistent_versions_unlocked(version_range, options);
174
39
}
175
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Result<std::vector<Version>> CloudTablet::capture_versions_prefer_cache(
177
13
        const Version& spec_version) const {
178
13
    g_capture_prefer_cache_count << 1;
179
13
    Versions version_path;
180
13
    std::shared_lock rlock(_meta_lock);
181
13
    auto st = _timestamped_version_tracker.capture_consistent_versions_prefer_cache(
182
13
            spec_version, version_path,
183
92
            [&](int64_t start, int64_t end) { return rowset_is_warmed_up_unlocked(start, end); });
184
13
    if (!st.ok()) {
185
0
        return ResultError(st);
186
0
    }
187
13
    int64_t path_max_version = version_path.back().second;
188
13
    VLOG_DEBUG << fmt::format(
189
0
            "[verbose] CloudTablet::capture_versions_prefer_cache, capture path: {}, "
190
0
            "tablet_id={}, spec_version={}, path_max_version={}",
191
0
            fmt::join(version_path | std::views::transform([](const auto& version) {
192
0
                          return fmt::format("{}", version.to_string());
193
0
                      }),
194
0
                      ", "),
195
0
            tablet_id(), spec_version.to_string(), path_max_version);
196
13
    return version_path;
197
13
}
198
199
230
bool CloudTablet::rowset_is_warmed_up_unlocked(int64_t start_version, int64_t end_version) const {
200
230
    if (start_version > end_version) {
201
0
        return false;
202
0
    }
203
230
    Version version {start_version, end_version};
204
230
    auto it = _rs_version_map.find(version);
205
230
    if (it == _rs_version_map.end()) {
206
78
        it = _stale_rs_version_map.find(version);
207
78
        if (it == _stale_rs_version_map.end()) {
208
0
            LOG_WARNING(
209
0
                    "fail to find Rowset in rs_version or stale_rs_version for version. "
210
0
                    "tablet={}, version={}",
211
0
                    tablet_id(), version.to_string());
212
0
            return false;
213
0
        }
214
78
    }
215
230
    const auto& rs = it->second;
216
230
    if (rs->visible_timestamp() < _engine.startup_timepoint()) {
217
        // We only care about rowsets that are created after startup time point. For other rowsets,
218
        // we assume they are warmed up.
219
13
        return true;
220
13
    }
221
217
    return is_rowset_warmed_up(rs->rowset_id());
222
230
};
223
224
Result<std::vector<Version>> CloudTablet::capture_versions_with_freshness_tolerance(
225
24
        const Version& spec_version, const CaptureRowsetOps& options) const {
226
24
    g_capture_with_freshness_tolerance_count << 1;
227
24
    using namespace std::chrono;
228
24
    auto query_freshness_tolerance_ms = options.query_freshness_tolerance_ms;
229
24
    auto freshness_limit_tp = system_clock::now() - milliseconds(query_freshness_tolerance_ms);
230
    // find a version path where every edge(rowset) has been warmuped
231
24
    Versions version_path;
232
24
    std::shared_lock rlock(_meta_lock);
233
24
    if (enable_unique_key_merge_on_write()) {
234
        // For merge-on-write table, newly generated delete bitmap marks will be on the rowsets which are in newest layout.
235
        // So we can ony capture rowsets which are in newest data layout. Otherwise there may be data correctness issue.
236
12
        RETURN_IF_ERROR_RESULT(
237
12
                _timestamped_version_tracker.capture_consistent_versions_with_validator_mow(
238
12
                        spec_version, version_path, [&](int64_t start, int64_t end) {
239
12
                            return rowset_is_warmed_up_unlocked(start, end);
240
12
                        }));
241
12
    } else {
242
12
        RETURN_IF_ERROR_RESULT(
243
12
                _timestamped_version_tracker.capture_consistent_versions_with_validator(
244
12
                        spec_version, version_path, [&](int64_t start, int64_t end) {
245
12
                            return rowset_is_warmed_up_unlocked(start, end);
246
12
                        }));
247
12
    }
248
24
    int64_t path_max_version = version_path.back().second;
249
417
    auto should_be_visible_but_not_warmed_up = [&](const auto& rs_meta) -> bool {
250
417
        if (rs_meta->version() == Version {0, 1}) {
251
            // skip rowset[0-1]
252
22
            return false;
253
22
        }
254
395
        bool ret = rs_meta->start_version() > path_max_version &&
255
395
                   rs_meta->visible_timestamp() < freshness_limit_tp;
256
395
        if (ret && config::read_cluster_cache_opt_verbose_log) {
257
5
            std::time_t t1 = system_clock::to_time_t(rs_meta->visible_timestamp());
258
5
            std::tm tm1 = *std::localtime(&t1);
259
5
            std::ostringstream oss1;
260
5
            oss1 << std::put_time(&tm1, "%Y-%m-%d %H:%M:%S");
261
262
5
            std::time_t t2 = system_clock::to_time_t(freshness_limit_tp);
263
5
            std::tm tm2 = *std::localtime(&t2);
264
5
            std::ostringstream oss2;
265
5
            oss2 << std::put_time(&tm2, "%Y-%m-%d %H:%M:%S");
266
5
            LOG_INFO(
267
5
                    "[verbose] CloudTablet::capture_rs_readers_with_freshness_tolerance, "
268
5
                    "find a rowset which should be visible but not warmed up, tablet_id={}, "
269
5
                    "path_max_version={}, rowset_id={}, version={}, visible_time={}, "
270
5
                    "freshness_limit={}, version_graph={}, rowset_warmup_digest={}",
271
5
                    tablet_id(), path_max_version, rs_meta->rowset_id().to_string(),
272
5
                    rs_meta->version().to_string(), oss1.str(), oss2.str(),
273
5
                    _timestamped_version_tracker.debug_string(), rowset_warmup_digest());
274
5
        }
275
395
        return ret;
276
417
    };
277
    // use std::views::concat after C++26
278
24
    bool should_fallback =
279
24
            std::ranges::any_of(std::views::values(_tablet_meta->all_rs_metas()),
280
24
                                should_be_visible_but_not_warmed_up) ||
281
24
            std::ranges::any_of(std::views::values(_tablet_meta->all_stale_rs_metas()),
282
22
                                should_be_visible_but_not_warmed_up);
283
24
    if (should_fallback) {
284
5
        rlock.unlock();
285
5
        g_capture_with_freshness_tolerance_fallback_count << 1;
286
        // if there exists a rowset which satisfies freshness tolerance and its start version is larger than the path max version
287
        // but has not been warmuped up yet, fallback to capture rowsets as usual
288
5
        return BaseTablet::capture_consistent_versions_unlocked(spec_version, options);
289
5
    }
290
19
    VLOG_DEBUG << fmt::format(
291
0
            "[verbose] CloudTablet::capture_versions_with_freshness_tolerance, capture path: {}, "
292
0
            "tablet_id={}, spec_version={}, path_max_version={}",
293
0
            fmt::join(version_path | std::views::transform([](const auto& version) {
294
0
                          return fmt::format("{}", version.to_string());
295
0
                      }),
296
0
                      ", "),
297
0
            tablet_id(), spec_version.to_string(), path_max_version);
298
19
    return version_path;
299
24
}
300
301
// There are only two tablet_states RUNNING and NOT_READY in cloud mode
302
// This function will erase the tablet from `CloudTabletMgr` when it can't find this tablet in MS.
303
22
Status CloudTablet::sync_rowsets(const SyncOptions& options, SyncRowsetStats* stats) {
304
22
    RETURN_IF_ERROR(sync_if_not_running(stats));
305
306
22
    if (options.query_version > 0) {
307
3
        auto lock_start = std::chrono::steady_clock::now();
308
3
        std::shared_lock rlock(_meta_lock);
309
3
        if (stats) {
310
0
            stats->meta_lock_wait_ns += std::chrono::duration_cast<std::chrono::nanoseconds>(
311
0
                                                std::chrono::steady_clock::now() - lock_start)
312
0
                                                .count();
313
0
        }
314
3
        if (_max_version >= options.query_version) {
315
0
            return Status::OK();
316
0
        }
317
3
    }
318
319
    // serially execute sync to reduce unnecessary network overhead
320
22
    auto sync_lock_start = std::chrono::steady_clock::now();
321
22
    std::unique_lock lock(_sync_meta_lock);
322
22
    if (stats) {
323
0
        stats->sync_meta_lock_wait_ns += std::chrono::duration_cast<std::chrono::nanoseconds>(
324
0
                                                 std::chrono::steady_clock::now() - sync_lock_start)
325
0
                                                 .count();
326
0
    }
327
22
    if (options.query_version > 0) {
328
3
        auto lock_start = std::chrono::steady_clock::now();
329
3
        std::shared_lock rlock(_meta_lock);
330
3
        if (stats) {
331
0
            stats->meta_lock_wait_ns += std::chrono::duration_cast<std::chrono::nanoseconds>(
332
0
                                                std::chrono::steady_clock::now() - lock_start)
333
0
                                                .count();
334
0
        }
335
3
        if (_max_version >= options.query_version) {
336
0
            return Status::OK();
337
0
        }
338
3
    }
339
340
22
    auto st = _engine.meta_mgr().sync_tablet_rowsets_unlocked(this, lock, options, stats);
341
22
    if (st.is<ErrorCode::NOT_FOUND>()) {
342
0
        clear_cache();
343
0
    }
344
345
22
    return st;
346
22
}
347
348
// Sync tablet meta and all rowset meta if not running.
349
// This could happen when BE didn't finish schema change job and another BE committed this schema change job.
350
// It should be a quite rare situation.
351
22
Status CloudTablet::sync_if_not_running(SyncRowsetStats* stats) {
352
22
    if (tablet_state() == TABLET_RUNNING) {
353
19
        return Status::OK();
354
19
    }
355
356
    // Serially execute sync to reduce unnecessary network overhead
357
3
    auto sync_lock_start = std::chrono::steady_clock::now();
358
3
    std::unique_lock lock(_sync_meta_lock);
359
3
    if (stats) {
360
0
        stats->sync_meta_lock_wait_ns += std::chrono::duration_cast<std::chrono::nanoseconds>(
361
0
                                                 std::chrono::steady_clock::now() - sync_lock_start)
362
0
                                                 .count();
363
0
    }
364
365
3
    {
366
3
        auto lock_start = std::chrono::steady_clock::now();
367
3
        std::shared_lock rlock(_meta_lock);
368
3
        if (stats) {
369
0
            stats->meta_lock_wait_ns += std::chrono::duration_cast<std::chrono::nanoseconds>(
370
0
                                                std::chrono::steady_clock::now() - lock_start)
371
0
                                                .count();
372
0
        }
373
3
        if (tablet_state() == TABLET_RUNNING) {
374
0
            return Status::OK();
375
0
        }
376
3
    }
377
378
3
    TabletMetaSharedPtr tablet_meta;
379
3
    auto st = _engine.meta_mgr().get_tablet_meta(tablet_id(), &tablet_meta);
380
3
    if (!st.ok()) {
381
0
        if (st.is<ErrorCode::NOT_FOUND>()) {
382
0
            clear_cache();
383
0
        }
384
0
        return st;
385
0
    }
386
387
3
    if (tablet_meta->tablet_state() != TABLET_RUNNING) [[unlikely]] {
388
        // MoW may go to here when load while schema change
389
3
        return Status::OK();
390
3
    }
391
392
0
    TimestampedVersionTracker empty_tracker;
393
0
    {
394
0
        auto lock_start = std::chrono::steady_clock::now();
395
0
        std::lock_guard wlock(_meta_lock);
396
0
        if (stats) {
397
0
            stats->meta_lock_wait_ns += std::chrono::duration_cast<std::chrono::nanoseconds>(
398
0
                                                std::chrono::steady_clock::now() - lock_start)
399
0
                                                .count();
400
0
        }
401
0
        RETURN_IF_ERROR(set_tablet_state(TABLET_RUNNING));
402
0
        _rs_version_map.clear();
403
0
        _stale_rs_version_map.clear();
404
0
        std::swap(_timestamped_version_tracker, empty_tracker);
405
0
        _tablet_meta->clear_rowsets();
406
0
        _tablet_meta->clear_stale_rowset();
407
0
        _max_version = -1;
408
0
    }
409
410
0
    st = _engine.meta_mgr().sync_tablet_rowsets_unlocked(this, lock, {}, stats);
411
0
    if (st.is<ErrorCode::NOT_FOUND>()) {
412
0
        clear_cache();
413
0
    }
414
0
    return st;
415
0
}
416
417
void CloudTablet::add_rowsets(std::vector<RowsetSharedPtr> to_add, bool version_overlap,
418
                              std::unique_lock<std::shared_mutex>& meta_lock,
419
287
                              bool warmup_delta_data) {
420
287
    if (to_add.empty()) {
421
0
        return;
422
0
    }
423
424
287
    auto add_rowsets_directly = [=, this](std::vector<RowsetSharedPtr>& rowsets) {
425
849
        for (auto& rs : rowsets) {
426
849
            if (warmup_delta_data) {
427
#ifndef BE_TEST
428
                // Pre-set encryption algorithm to avoid re-entrant get_tablet() call
429
                // inside RowsetMeta::fs() which causes SingleFlight deadlock when the
430
                // tablet is not yet cached (during initial load_tablet).
431
                rs->rowset_meta()->set_encryption_algorithm(_tablet_meta->encryption_algorithm());
432
                bool warm_up_state_updated = false;
433
                // Warmup rowset data in background
434
                for (int seg_id = 0; seg_id < rs->num_segments(); ++seg_id) {
435
                    const auto& rowset_meta = rs->rowset_meta();
436
                    constexpr int64_t interval = 600; // 10 mins
437
                    // When BE restart and receive the `load_sync` rpc, it will sync all historical rowsets first time.
438
                    // So we need to filter out the old rowsets avoid to download the whole table.
439
                    if (warmup_delta_data &&
440
                        ::time(nullptr) - rowset_meta->newest_write_timestamp() >= interval) {
441
                        continue;
442
                    }
443
444
                    auto storage_resource = rowset_meta->remote_storage_resource();
445
                    if (!storage_resource) {
446
                        LOG(WARNING) << storage_resource.error();
447
                        continue;
448
                    }
449
450
                    int64_t expiration_time = io::calc_file_cache_expiration_time(
451
                            _tablet_meta->creation_time(), _tablet_meta->ttl_seconds());
452
                    g_file_cache_cloud_tablet_submitted_segment_num << 1;
453
                    if (rs->rowset_meta()->segment_file_size(seg_id) > 0) {
454
                        g_file_cache_cloud_tablet_submitted_segment_size
455
                                << rs->rowset_meta()->segment_file_size(seg_id);
456
                    }
457
                    if (!warm_up_state_updated) {
458
                        VLOG_DEBUG << "warm up rowset " << rs->version() << "(" << rs->rowset_id()
459
                                   << ") triggerd by sync rowset";
460
                        if (!add_rowset_warmup_state_unlocked(*(rs->rowset_meta()),
461
                                                              WarmUpTriggerSource::SYNC_ROWSET)) {
462
                            LOG(INFO) << "found duplicate warmup task for rowset "
463
                                      << rs->rowset_id() << ", skip it";
464
                            break;
465
                        }
466
                        warm_up_state_updated = true;
467
                    }
468
                    // clang-format off
469
                    auto self = std::dynamic_pointer_cast<CloudTablet>(shared_from_this());
470
                    auto file_system = rowset_meta->fs();
471
                    if (!file_system) {
472
                        LOG(WARNING) << "failed to get file system for tablet_id="
473
                                     << _tablet_meta->tablet_id() << ", rowset_id="
474
                                     << rowset_meta->rowset_id();
475
                        continue;
476
                    }
477
                    if (!config::file_cache_enable_only_warm_up_idx) {
478
                        _engine.file_cache_block_downloader().submit_download_task(io::DownloadFileMeta {
479
                                .path = storage_resource.value()->remote_segment_path(*rowset_meta, seg_id),
480
                                .file_size = rs->rowset_meta()->segment_file_size(seg_id),
481
                                .file_system = file_system,
482
                                .ctx =
483
                                        {
484
                                                .expiration_time = expiration_time,
485
                                                .is_dryrun = config::enable_reader_dryrun_when_download_file_cache,
486
                                                .is_warmup = true
487
                                        },
488
                                .download_done {[=](Status st) {
489
                                    DBUG_EXECUTE_IF("CloudTablet::add_rowsets.download_data.callback.block_compaction_rowset", {
490
                                                if (rs->version().second > rs->version().first) {
491
                                                    auto sleep_time = dp->param<int>("sleep", 3);
492
                                                    LOG_INFO(
493
                                                            "[verbose] block download for rowset={}, "
494
                                                            "version={}, sleep={}",
495
                                                            rs->rowset_id().to_string(),
496
                                                            rs->version().to_string(), sleep_time);
497
                                                    std::this_thread::sleep_for(
498
                                                            std::chrono::seconds(sleep_time));
499
                                                }
500
                                    });
501
                                    self->complete_rowset_segment_warmup(WarmUpTriggerSource::SYNC_ROWSET, rowset_meta->rowset_id(), st, 1, 0);
502
                                    if (!st) {
503
                                        LOG_WARNING("add rowset warm up error ").error(st);
504
                                    }
505
                                }},
506
                        });
507
                    }
508
509
                    auto download_idx_file = [&, self](const io::Path& idx_path, int64_t idx_size) {
510
                        io::DownloadFileMeta meta {
511
                                .path = idx_path,
512
                                .file_size = idx_size,
513
                                .file_system = file_system,
514
                                .ctx =
515
                                        {
516
                                                .expiration_time = expiration_time,
517
                                                .is_dryrun = config::enable_reader_dryrun_when_download_file_cache,
518
                                                .is_warmup = true
519
                                        },
520
                                .download_done {[=](Status st) {
521
                                    DBUG_EXECUTE_IF("CloudTablet::add_rowsets.download_idx.callback.block", {
522
                                                // clang-format on
523
                                                auto sleep_time = dp->param<int>("sleep", 3);
524
                                                LOG_INFO(
525
                                                        "[verbose] block download for "
526
                                                        "rowset={}, inverted_idx_file={}, "
527
                                                        "sleep={}",
528
                                                        rs->rowset_id().to_string(),
529
                                                        idx_path.string(), sleep_time);
530
                                                std::this_thread::sleep_for(
531
                                                        std::chrono::seconds(sleep_time));
532
                                                // clang-format off
533
                                    });
534
                                    self->complete_rowset_segment_warmup(WarmUpTriggerSource::SYNC_ROWSET, rowset_meta->rowset_id(), st, 0, 1);
535
                                    if (!st) {
536
                                        LOG_WARNING("add rowset warm up error ").error(st);
537
                                    }
538
                                }},
539
                        };
540
                        self->update_rowset_warmup_state_inverted_idx_num_unlocked(WarmUpTriggerSource::SYNC_ROWSET, rowset_meta->rowset_id(), 1);
541
                        _engine.file_cache_block_downloader().submit_download_task(std::move(meta));
542
                        g_file_cache_cloud_tablet_submitted_index_num << 1;
543
                        g_file_cache_cloud_tablet_submitted_index_size << idx_size;
544
                    };
545
                    // clang-format on
546
                    auto schema_ptr = rowset_meta->tablet_schema();
547
                    auto idx_version = schema_ptr->get_inverted_index_storage_format();
548
                    if (idx_version == InvertedIndexStorageFormatPB::V1) {
549
                        std::unordered_map<int64_t, int64_t> index_size_map;
550
                        auto&& inverted_index_info = rowset_meta->inverted_index_file_info(seg_id);
551
                        for (const auto& info : inverted_index_info.index_info()) {
552
                            if (info.index_file_size() != -1) {
553
                                index_size_map[info.index_id()] = info.index_file_size();
554
                            } else {
555
                                VLOG_DEBUG << "Invalid index_file_size for segment_id " << seg_id
556
                                           << ", index_id " << info.index_id();
557
                            }
558
                        }
559
                        for (const auto& index : schema_ptr->inverted_indexes()) {
560
                            auto idx_path = storage_resource.value()->remote_idx_v1_path(
561
                                    *rowset_meta, seg_id, index->index_id(),
562
                                    index->get_index_suffix());
563
                            download_idx_file(idx_path, index_size_map[index->index_id()]);
564
                        }
565
                    } else {
566
                        if (schema_ptr->has_inverted_index() || schema_ptr->has_ann_index()) {
567
                            auto&& inverted_index_info =
568
                                    rowset_meta->inverted_index_file_info(seg_id);
569
                            int64_t idx_size = 0;
570
                            if (inverted_index_info.has_index_size()) {
571
                                idx_size = inverted_index_info.index_size();
572
                            } else {
573
                                VLOG_DEBUG << "index_size is not set for segment " << seg_id;
574
                            }
575
                            auto idx_path = storage_resource.value()->remote_idx_v2_path(
576
                                    *rowset_meta, seg_id);
577
                            download_idx_file(idx_path, idx_size);
578
                        }
579
                    }
580
                }
581
#endif
582
0
            }
583
849
            _rs_version_map.emplace(rs->version(), rs);
584
849
            _timestamped_version_tracker.add_version(rs->version());
585
849
            _max_version = std::max(rs->end_version(), _max_version);
586
849
            update_base_size(*rs);
587
849
        }
588
287
        _tablet_meta->add_rowsets_unchecked(rowsets);
589
287
    };
590
591
287
    if (!version_overlap) {
592
287
        add_rowsets_directly(to_add);
593
287
        return;
594
287
    }
595
596
    // Filter out existed rowsets
597
0
    auto remove_it =
598
0
            std::remove_if(to_add.begin(), to_add.end(), [this](const RowsetSharedPtr& rs) {
599
0
                if (auto find_it = _rs_version_map.find(rs->version());
600
0
                    find_it == _rs_version_map.end()) {
601
0
                    return false;
602
0
                } else if (find_it->second->rowset_id() == rs->rowset_id()) {
603
0
                    return true; // Same rowset
604
0
                }
605
606
                // If version of rowset in `to_add` is equal to rowset in tablet but rowset_id is not equal,
607
                // replace existed rowset with `to_add` rowset. This may occur when:
608
                //  1. schema change converts rowsets which have been double written to new tablet
609
                //  2. cumu compaction picks single overlapping input rowset to perform compaction
610
611
                // add existed rowset to unused_rowsets to remove delete bitmap and recycle cached data
612
613
0
                std::vector<RowsetSharedPtr> unused_rowsets;
614
0
                if (auto find_it = _rs_version_map.find(rs->version());
615
0
                    find_it != _rs_version_map.end()) {
616
0
                    if (find_it->second->rowset_id() == rs->rowset_id()) {
617
0
                        LOG(WARNING) << "tablet_id=" << tablet_id()
618
0
                                     << ", rowset_id=" << rs->rowset_id().to_string()
619
0
                                     << ", existed rowset_id="
620
0
                                     << find_it->second->rowset_id().to_string();
621
0
                        DCHECK(find_it->second->rowset_id() != rs->rowset_id())
622
0
                                << "tablet_id=" << tablet_id()
623
0
                                << ", rowset_id=" << rs->rowset_id().to_string()
624
0
                                << ", existed rowset_id="
625
0
                                << find_it->second->rowset_id().to_string();
626
0
                    }
627
0
                    unused_rowsets.push_back(find_it->second);
628
0
                }
629
0
                add_unused_rowsets(unused_rowsets);
630
631
0
                _tablet_meta->delete_rs_meta_by_version(rs->version(), nullptr);
632
0
                _rs_version_map[rs->version()] = rs;
633
0
                _tablet_meta->add_rowsets_unchecked({rs});
634
0
                update_base_size(*rs);
635
0
                return true;
636
0
            });
637
638
0
    to_add.erase(remove_it, to_add.end());
639
640
    // delete rowsets with overlapped version
641
0
    std::vector<RowsetSharedPtr> to_add_directly;
642
0
    for (auto& to_add_rs : to_add) {
643
        // delete rowsets with overlapped version
644
0
        std::vector<RowsetSharedPtr> to_delete;
645
0
        Version to_add_v = to_add_rs->version();
646
        // if start_version  > max_version, we can skip checking overlap here.
647
0
        if (to_add_v.first > _max_version) {
648
            // if start_version  > max_version, we can skip checking overlap here.
649
0
            to_add_directly.push_back(to_add_rs);
650
0
        } else {
651
0
            to_add_directly.push_back(to_add_rs);
652
0
            for (auto& [v, rs] : _rs_version_map) {
653
0
                if (to_add_v.contains(v)) {
654
0
                    to_delete.push_back(rs);
655
0
                }
656
0
            }
657
0
            delete_rowsets(to_delete, meta_lock);
658
0
        }
659
0
    }
660
661
0
    add_rowsets_directly(to_add_directly);
662
0
}
663
664
void CloudTablet::delete_rowsets(const std::vector<RowsetSharedPtr>& to_delete,
665
105
                                 std::unique_lock<std::shared_mutex>&) {
666
105
    if (to_delete.empty()) {
667
0
        return;
668
0
    }
669
105
    std::vector<RowsetMetaSharedPtr> rs_metas;
670
105
    rs_metas.reserve(to_delete.size());
671
105
    int64_t now = ::time(nullptr);
672
607
    for (auto&& rs : to_delete) {
673
607
        rs->rowset_meta()->set_stale_at(now);
674
607
        rs_metas.push_back(rs->rowset_meta());
675
607
        _stale_rs_version_map[rs->version()] = rs;
676
607
    }
677
105
    _timestamped_version_tracker.add_stale_path_version(rs_metas);
678
607
    for (auto&& rs : to_delete) {
679
607
        _rs_version_map.erase(rs->version());
680
607
    }
681
682
105
    _tablet_meta->modify_rs_metas({}, rs_metas, false);
683
105
}
684
685
void CloudTablet::delete_rowsets_for_schema_change(const std::vector<RowsetSharedPtr>& to_delete,
686
4
                                                   std::unique_lock<std::shared_mutex>&) {
687
4
    if (to_delete.empty()) {
688
1
        return;
689
1
    }
690
3
    std::vector<RowsetMetaSharedPtr> rs_metas;
691
3
    rs_metas.reserve(to_delete.size());
692
4
    for (auto&& rs : to_delete) {
693
4
        rs_metas.push_back(rs->rowset_meta());
694
4
        _rs_version_map.erase(rs->version());
695
        // Remove edge from version graph so that the greedy capture algorithm
696
        // won't prefer the wider stale compaction rowset over individual SC
697
        // output rowsets (e.g. [818-822] vs [818],[819],...,[822]).
698
4
        _timestamped_version_tracker.delete_version(rs->version());
699
4
    }
700
701
    // Use same_version=true to skip adding to _stale_rs_metas. Do NOT use the
702
    // stale tracking mechanism (_stale_rs_version_map / _stale_version_path_map)
703
    // because SC output will create new rowsets with identical version ranges;
704
    // a later compaction could put those into stale as well, causing two stale
705
    // paths to reference the same version key -- when one path is cleaned first,
706
    // the other hits a DCHECK(false) in delete_expired_stale_rowsets().
707
3
    _tablet_meta->modify_rs_metas({}, rs_metas, true);
708
709
    // Schedule for direct cache cleanup. MS has already recycled these rowsets.
710
3
    add_unused_rowsets(to_delete);
711
3
}
712
713
1
uint64_t CloudTablet::delete_expired_stale_rowsets() {
714
1
    if (config::enable_mow_verbose_log) {
715
0
        LOG_INFO("begin delete_expired_stale_rowset for tablet={}", tablet_id());
716
0
    }
717
1
    std::vector<RowsetSharedPtr> expired_rowsets;
718
    // ATTN: trick, Use stale_rowsets to temporarily increase the reference count of the rowset shared pointer in _stale_rs_version_map so that in the recycle_cached_data function, it checks if the reference count is 2.
719
1
    std::vector<std::pair<Version, std::vector<RowsetSharedPtr>>> deleted_stale_rowsets;
720
1
    int64_t expired_stale_sweep_endtime =
721
1
            ::time(nullptr) - config::tablet_rowset_stale_sweep_time_sec;
722
1
    {
723
1
        std::unique_lock wlock(_meta_lock);
724
725
1
        std::vector<int64_t> path_ids;
726
        // capture the path version to delete
727
1
        _timestamped_version_tracker.capture_expired_paths(expired_stale_sweep_endtime, &path_ids);
728
729
1
        if (path_ids.empty()) {
730
0
            return 0;
731
0
        }
732
733
1
        for (int64_t path_id : path_ids) {
734
1
            int64_t start_version = -1;
735
1
            int64_t end_version = -1;
736
1
            std::vector<RowsetSharedPtr> stale_rowsets;
737
            // delete stale versions in version graph
738
1
            auto version_path = _timestamped_version_tracker.fetch_and_delete_path_by_id(path_id);
739
5
            for (auto& v_ts : version_path->timestamped_versions()) {
740
5
                auto rs_it = _stale_rs_version_map.find(v_ts->version());
741
5
                if (rs_it != _stale_rs_version_map.end()) {
742
5
                    expired_rowsets.push_back(rs_it->second);
743
5
                    stale_rowsets.push_back(rs_it->second);
744
5
                    VLOG_DEBUG << "erase stale rowset, tablet_id=" << tablet_id()
745
0
                               << " rowset_id=" << rs_it->second->rowset_id().to_string()
746
0
                               << " version=" << rs_it->first.to_string();
747
5
                    _stale_rs_version_map.erase(rs_it);
748
5
                } else {
749
0
                    LOG(WARNING) << "cannot find stale rowset " << v_ts->version() << " in tablet "
750
0
                                 << tablet_id();
751
                    // clang-format off
752
0
                    DCHECK(false) << [this, &wlock]() { wlock.unlock(); std::string json; get_compaction_status(&json); return json; }();
753
                    // clang-format on
754
0
                }
755
5
                if (start_version < 0) {
756
1
                    start_version = v_ts->version().first;
757
1
                }
758
5
                end_version = v_ts->version().second;
759
5
                _tablet_meta->delete_stale_rs_meta_by_version(v_ts->version());
760
5
            }
761
1
            Version version(start_version, end_version);
762
1
            if (!stale_rowsets.empty()) {
763
1
                deleted_stale_rowsets.emplace_back(version, std::move(stale_rowsets));
764
1
            }
765
1
        }
766
1
        _reconstruct_version_tracker_if_necessary();
767
1
    }
768
769
    // if the rowset is not used by any query, we can recycle its cached data early.
770
0
    auto recycled_rowsets = recycle_cached_data(expired_rowsets);
771
1
    if (!recycled_rowsets.empty()) {
772
0
        auto& manager = ExecEnv::GetInstance()->storage_engine().to_cloud().cloud_warm_up_manager();
773
0
        manager.recycle_cache(tablet_id(), recycled_rowsets);
774
0
    }
775
1
    if (config::enable_mow_verbose_log) {
776
0
        LOG_INFO("finish delete_expired_stale_rowset for tablet={}", tablet_id());
777
0
    }
778
779
1
    add_unused_rowsets(expired_rowsets);
780
1
    if (config::enable_agg_and_remove_pre_rowsets_delete_bitmap && keys_type() == UNIQUE_KEYS &&
781
1
        enable_unique_key_merge_on_write() && !deleted_stale_rowsets.empty()) {
782
        // agg delete bitmap for pre rowsets; record unused delete bitmap key ranges
783
0
        OlapStopWatch watch;
784
0
        for (const auto& [version, unused_rowsets] : deleted_stale_rowsets) {
785
            // agg delete bitmap for pre rowset
786
0
            DeleteBitmapKeyRanges remove_delete_bitmap_key_ranges;
787
0
            agg_delete_bitmap_for_stale_rowsets(version, remove_delete_bitmap_key_ranges);
788
            // add remove delete bitmap
789
0
            if (!remove_delete_bitmap_key_ranges.empty()) {
790
0
                std::vector<RowsetId> rowset_ids;
791
0
                for (const auto& rs : unused_rowsets) {
792
0
                    rowset_ids.push_back(rs->rowset_id());
793
0
                }
794
0
                std::lock_guard<std::mutex> lock(_gc_mutex);
795
0
                _unused_delete_bitmap.push_back(
796
0
                        std::make_pair(rowset_ids, remove_delete_bitmap_key_ranges));
797
0
            }
798
0
        }
799
0
        LOG(INFO) << "agg pre rowsets delete bitmap. tablet_id=" << tablet_id()
800
0
                  << ", size=" << deleted_stale_rowsets.size()
801
0
                  << ", cost(us)=" << watch.get_elapse_time_us();
802
0
    }
803
1
    return expired_rowsets.size();
804
1
}
805
806
1
bool CloudTablet::need_remove_unused_rowsets() {
807
1
    std::lock_guard<std::mutex> lock(_gc_mutex);
808
1
    return !_unused_rowsets.empty() || !_unused_delete_bitmap.empty();
809
1
}
810
811
4
void CloudTablet::add_unused_rowsets(const std::vector<RowsetSharedPtr>& rowsets) {
812
4
    std::lock_guard<std::mutex> lock(_gc_mutex);
813
9
    for (const auto& rowset : rowsets) {
814
9
        _unused_rowsets[rowset->rowset_id()] = rowset;
815
9
        g_unused_rowsets_bytes << rowset->total_disk_size();
816
9
    }
817
4
    g_unused_rowsets_count << rowsets.size();
818
4
}
819
820
0
void CloudTablet::remove_unused_rowsets() {
821
0
    std::vector<std::shared_ptr<Rowset>> removed_rowsets;
822
0
    int64_t removed_delete_bitmap_num = 0;
823
0
    OlapStopWatch watch;
824
0
    {
825
0
        std::lock_guard<std::mutex> lock(_gc_mutex);
826
        // 1. remove unused rowsets's cache data and delete bitmap
827
0
        for (auto it = _unused_rowsets.begin(); it != _unused_rowsets.end();) {
828
0
            auto& rs = it->second;
829
0
            if (rs.use_count() > 1) {
830
0
                LOG(WARNING) << "tablet_id:" << tablet_id() << " rowset: " << rs->rowset_id()
831
0
                             << " has " << rs.use_count() << " references, it cannot be removed";
832
0
                ++it;
833
0
                continue;
834
0
            }
835
0
            tablet_meta()->remove_rowset_delete_bitmap(rs->rowset_id(), rs->version());
836
0
            _rowset_warm_up_states.erase(rs->rowset_id());
837
0
            rs->clear_cache();
838
0
            g_unused_rowsets_count << -1;
839
0
            g_unused_rowsets_bytes << -rs->total_disk_size();
840
0
            removed_rowsets.push_back(std::move(rs));
841
0
            it = _unused_rowsets.erase(it);
842
0
        }
843
0
    }
844
845
0
    {
846
0
        std::vector<RecycledRowsets> recycled_rowsets;
847
848
0
        for (auto& rs : removed_rowsets) {
849
0
            auto index_names = rs->get_index_file_names();
850
0
            recycled_rowsets.emplace_back(rs->rowset_id(), rs->num_segments(), index_names);
851
0
            int64_t segment_size_sum = 0;
852
0
            for (int32_t i = 0; i < rs->num_segments(); i++) {
853
0
                segment_size_sum += rs->rowset_meta()->segment_file_size(i);
854
0
            }
855
0
            g_file_cache_recycle_cached_data_segment_num << rs->num_segments();
856
0
            g_file_cache_recycle_cached_data_segment_size << segment_size_sum;
857
0
            g_file_cache_recycle_cached_data_index_num << index_names.size();
858
0
        }
859
860
0
        if (recycled_rowsets.size() > 0) {
861
0
            auto& manager =
862
0
                    ExecEnv::GetInstance()->storage_engine().to_cloud().cloud_warm_up_manager();
863
0
            manager.recycle_cache(tablet_id(), recycled_rowsets);
864
0
        }
865
0
    }
866
867
0
    {
868
0
        std::lock_guard<std::mutex> lock(_gc_mutex);
869
        // 2. remove delete bitmap of pre rowsets
870
0
        for (auto it = _unused_delete_bitmap.begin(); it != _unused_delete_bitmap.end();) {
871
0
            auto& rowset_ids = std::get<0>(*it);
872
0
            bool find_unused_rowset = false;
873
0
            for (const auto& rowset_id : rowset_ids) {
874
0
                if (_unused_rowsets.find(rowset_id) != _unused_rowsets.end()) {
875
0
                    LOG(INFO) << "can not remove pre rowset delete bitmap because rowset is in use"
876
0
                              << ", tablet_id=" << tablet_id() << ", rowset_id=" << rowset_id;
877
0
                    find_unused_rowset = true;
878
0
                    break;
879
0
                }
880
0
            }
881
0
            if (find_unused_rowset) {
882
0
                ++it;
883
0
                continue;
884
0
            }
885
0
            auto& key_ranges = std::get<1>(*it);
886
0
            tablet_meta()->delete_bitmap().remove(key_ranges);
887
0
            it = _unused_delete_bitmap.erase(it);
888
0
            removed_delete_bitmap_num++;
889
            // TODO(kaijie): recycle cache for unused delete bitmap
890
0
        }
891
0
    }
892
893
0
    LOG(INFO) << "tablet_id=" << tablet_id() << ", unused_rowset size=" << _unused_rowsets.size()
894
0
              << ", unused_delete_bitmap size=" << _unused_delete_bitmap.size()
895
0
              << ", removed_rowsets_num=" << removed_rowsets.size()
896
0
              << ", removed_delete_bitmap_num=" << removed_delete_bitmap_num
897
0
              << ", cost(us)=" << watch.get_elapse_time_us();
898
0
}
899
900
849
void CloudTablet::update_base_size(const Rowset& rs) {
901
    // Define base rowset as the rowset of version [2-x]
902
849
    if (rs.start_version() == 2) {
903
113
        _base_size = rs.total_disk_size();
904
113
    }
905
849
}
906
907
0
void CloudTablet::clear_cache() {
908
0
    auto recycled_rowsets = CloudTablet::recycle_cached_data(get_snapshot_rowset(true));
909
0
    if (!recycled_rowsets.empty()) {
910
0
        auto& manager = ExecEnv::GetInstance()->storage_engine().to_cloud().cloud_warm_up_manager();
911
0
        manager.recycle_cache(tablet_id(), recycled_rowsets);
912
0
    }
913
0
    _engine.tablet_mgr().erase_tablet(tablet_id());
914
0
}
915
916
std::vector<RecycledRowsets> CloudTablet::recycle_cached_data(
917
1
        const std::vector<RowsetSharedPtr>& rowsets) {
918
1
    std::vector<RecycledRowsets> recycled_rowsets;
919
5
    for (const auto& rs : rowsets) {
920
        // rowsets and tablet._rs_version_map each hold a rowset shared_ptr, so at this point, the reference count of the shared_ptr is at least 2.
921
5
        if (rs.use_count() > 2) {
922
5
            LOG(WARNING) << "Rowset " << rs->rowset_id().to_string() << " has " << rs.use_count()
923
5
                         << " references. File Cache won't be recycled when query is using it.";
924
5
            continue;
925
5
        }
926
0
        rs->clear_cache();
927
0
        auto index_names = rs->get_index_file_names();
928
0
        recycled_rowsets.emplace_back(rs->rowset_id(), rs->num_segments(), index_names);
929
930
0
        int64_t segment_size_sum = 0;
931
0
        for (int32_t i = 0; i < rs->num_segments(); i++) {
932
0
            segment_size_sum += rs->rowset_meta()->segment_file_size(i);
933
0
        }
934
0
        g_file_cache_recycle_cached_data_segment_num << rs->num_segments();
935
0
        g_file_cache_recycle_cached_data_segment_size << segment_size_sum;
936
0
        g_file_cache_recycle_cached_data_index_num << index_names.size();
937
0
    }
938
1
    return recycled_rowsets;
939
1
}
940
941
void CloudTablet::reset_approximate_stats(int64_t num_rowsets, int64_t num_segments,
942
0
                                          int64_t num_rows, int64_t data_size) {
943
0
    _approximate_num_segments.store(num_segments, std::memory_order_relaxed);
944
0
    _approximate_num_rows.store(num_rows, std::memory_order_relaxed);
945
0
    _approximate_data_size.store(data_size, std::memory_order_relaxed);
946
0
    int64_t cumu_num_deltas = 0;
947
0
    int64_t cumu_num_rowsets = 0;
948
0
    auto cp = _cumulative_point.load(std::memory_order_relaxed);
949
0
    for (auto& [v, r] : _rs_version_map) {
950
0
        if (v.second < cp) {
951
0
            continue;
952
0
        }
953
0
        cumu_num_deltas += r->is_segments_overlapping() ? r->num_segments() : 1;
954
0
        ++cumu_num_rowsets;
955
0
    }
956
    // num_rowsets may be less than the size of _rs_version_map when there are some hole rowsets
957
    // in the version map, so we use the max value to ensure that the approximate number
958
    // of rowsets is at least the size of _rs_version_map.
959
    // Note that this is not the exact number of rowsets, but an approximate number.
960
0
    int64_t approximate_num_rowsets =
961
0
            std::max(num_rowsets, static_cast<int64_t>(_rs_version_map.size()));
962
0
    _approximate_num_rowsets.store(approximate_num_rowsets, std::memory_order_relaxed);
963
0
    _approximate_cumu_num_rowsets.store(cumu_num_rowsets, std::memory_order_relaxed);
964
0
    _approximate_cumu_num_deltas.store(cumu_num_deltas, std::memory_order_relaxed);
965
0
}
966
967
Result<std::unique_ptr<RowsetWriter>> CloudTablet::create_rowset_writer(
968
0
        RowsetWriterContext& context, bool vertical) {
969
0
    context.rowset_id = _engine.next_rowset_id();
970
    // FIXME(plat1ko): Seems `tablet_id` and `index_id` has been set repeatedly
971
0
    context.tablet_id = tablet_id();
972
0
    context.index_id = index_id();
973
0
    context.partition_id = partition_id();
974
0
    context.file_cache_base_timestamp = tablet_meta()->creation_time();
975
0
    context.enable_unique_key_merge_on_write = enable_unique_key_merge_on_write();
976
0
    context.encrypt_algorithm = tablet_meta()->encryption_algorithm();
977
0
    return RowsetFactory::create_rowset_writer(_engine, context, vertical);
978
0
}
979
980
// create a rowset writer with rowset_id and seg_id
981
// after writer, merge this transient rowset with original rowset
982
Result<std::unique_ptr<RowsetWriter>> CloudTablet::create_transient_rowset_writer(
983
        const Rowset& rowset, std::shared_ptr<PartialUpdateInfo> partial_update_info,
984
0
        int64_t txn_expiration) {
985
0
    if (rowset.rowset_meta_state() != RowsetStatePB::BEGIN_PARTIAL_UPDATE &&
986
0
        rowset.rowset_meta_state() != RowsetStatePB::COMMITTED) [[unlikely]] {
987
0
        auto msg = fmt::format(
988
0
                "wrong rowset state when create_transient_rowset_writer, rowset state should be "
989
0
                "BEGIN_PARTIAL_UPDATE or COMMITTED, but found {}, rowset_id={}, tablet_id={}",
990
0
                RowsetStatePB_Name(rowset.rowset_meta_state()), rowset.rowset_id().to_string(),
991
0
                tablet_id());
992
        // see `CloudRowsetWriter::build` for detail.
993
        // if this is in a retry task, the rowset state may have been changed to RowsetStatePB::COMMITTED
994
        // in `RowsetMeta::merge_rowset_meta()` in previous trials.
995
0
        LOG(WARNING) << msg;
996
0
        DCHECK(false) << msg;
997
0
    }
998
0
    RowsetWriterContext context;
999
0
    context.rowset_state = PREPARED;
1000
0
    context.segments_overlap = OVERLAPPING;
1001
    // During a partial update, the extracted columns of a variant should not be included in the tablet schema.
1002
    // This is because the partial update for a variant needs to ignore the extracted columns.
1003
    // Otherwise, the schema types in different rowsets might be inconsistent. When performing a partial update,
1004
    // the complete variant is constructed by reading all the sub-columns of the variant.
1005
0
    context.tablet_schema = rowset.tablet_schema()->copy_without_variant_extracted_columns();
1006
0
    context.newest_write_timestamp = UnixSeconds();
1007
0
    context.tablet_id = table_id();
1008
0
    context.enable_segcompaction = false;
1009
0
    context.write_type = DataWriteType::TYPE_DIRECT;
1010
0
    context.partial_update_info = std::move(partial_update_info);
1011
0
    context.is_transient_rowset_writer = true;
1012
0
    context.rowset_id = rowset.rowset_id();
1013
0
    context.tablet_id = tablet_id();
1014
0
    context.index_id = index_id();
1015
0
    context.partition_id = partition_id();
1016
0
    context.file_cache_base_timestamp = tablet_meta()->creation_time();
1017
0
    context.enable_unique_key_merge_on_write = enable_unique_key_merge_on_write();
1018
0
    context.txn_expiration = txn_expiration;
1019
0
    context.encrypt_algorithm = tablet_meta()->encryption_algorithm();
1020
    // TODO(liaoxin) enable packed file for transient rowset
1021
0
    context.allow_packed_file = false;
1022
1023
0
    auto storage_resource = rowset.rowset_meta()->remote_storage_resource();
1024
0
    if (!storage_resource) {
1025
0
        return ResultError(std::move(storage_resource.error()));
1026
0
    }
1027
1028
0
    context.storage_resource = *storage_resource.value();
1029
1030
0
    return RowsetFactory::create_rowset_writer(_engine, context, false)
1031
0
            .transform([&](auto&& writer) {
1032
0
                writer->set_segment_start_id(cast_set<int32_t>(rowset.num_segments()));
1033
0
                return writer;
1034
0
            });
1035
0
}
1036
1037
3
int64_t CloudTablet::get_cloud_base_compaction_score() const {
1038
3
    if (_tablet_meta->compaction_policy() == CUMULATIVE_TIME_SERIES_POLICY) {
1039
0
        bool has_delete = false;
1040
0
        int64_t point = cumulative_layer_point();
1041
0
        std::shared_lock<std::shared_mutex> rlock(_meta_lock);
1042
0
        for (const auto& [_, rs_meta] : _tablet_meta->all_rs_metas()) {
1043
0
            if (rs_meta->start_version() >= point) {
1044
0
                continue;
1045
0
            }
1046
0
            if (rs_meta->has_delete_predicate()) {
1047
0
                has_delete = true;
1048
0
                break;
1049
0
            }
1050
0
        }
1051
0
        if (!has_delete) {
1052
0
            return 0;
1053
0
        }
1054
0
    }
1055
1056
3
    return _approximate_num_rowsets.load(std::memory_order_relaxed) -
1057
3
           _approximate_cumu_num_rowsets.load(std::memory_order_relaxed);
1058
3
}
1059
1060
1
int64_t CloudTablet::get_cloud_cumu_compaction_score() const {
1061
    // TODO(plat1ko): Propose an algorithm that considers tablet's key type, number of delete rowsets,
1062
    //  number of tablet versions simultaneously.
1063
1
    return _approximate_cumu_num_deltas.load(std::memory_order_relaxed);
1064
1
}
1065
1066
// return a json string to show the compaction status of this tablet
1067
33
void CloudTablet::get_compaction_status(std::string* json_result) {
1068
33
    rapidjson::Document root;
1069
33
    root.SetObject();
1070
1071
33
    rapidjson::Document path_arr;
1072
33
    path_arr.SetArray();
1073
1074
33
    std::vector<RowsetSharedPtr> rowsets;
1075
33
    std::vector<RowsetSharedPtr> stale_rowsets;
1076
33
    {
1077
33
        std::shared_lock rdlock(_meta_lock);
1078
33
        rowsets.reserve(_rs_version_map.size());
1079
148
        for (auto& it : _rs_version_map) {
1080
148
            rowsets.push_back(it.second);
1081
148
        }
1082
33
        stale_rowsets.reserve(_stale_rs_version_map.size());
1083
540
        for (auto& it : _stale_rs_version_map) {
1084
540
            stale_rowsets.push_back(it.second);
1085
540
        }
1086
33
    }
1087
33
    std::sort(rowsets.begin(), rowsets.end(), Rowset::comparator);
1088
33
    std::sort(stale_rowsets.begin(), stale_rowsets.end(), Rowset::comparator);
1089
1090
    // get snapshot version path json_doc
1091
33
    _timestamped_version_tracker.get_stale_version_path_json_doc(path_arr);
1092
33
    root.AddMember("cumulative point", _cumulative_point.load(), root.GetAllocator());
1093
33
    rapidjson::Value cumu_value;
1094
33
    std::string format_str = ToStringFromUnixMillis(_last_cumu_compaction_failure_millis.load());
1095
33
    cumu_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1096
33
                         root.GetAllocator());
1097
33
    root.AddMember("last cumulative failure time", cumu_value, root.GetAllocator());
1098
33
    rapidjson::Value base_value;
1099
33
    format_str = ToStringFromUnixMillis(_last_base_compaction_failure_millis.load());
1100
33
    base_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1101
33
                         root.GetAllocator());
1102
33
    root.AddMember("last base failure time", base_value, root.GetAllocator());
1103
33
    rapidjson::Value full_value;
1104
33
    format_str = ToStringFromUnixMillis(_last_full_compaction_failure_millis.load());
1105
33
    full_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1106
33
                         root.GetAllocator());
1107
33
    root.AddMember("last full failure time", full_value, root.GetAllocator());
1108
33
    rapidjson::Value cumu_success_value;
1109
33
    format_str = ToStringFromUnixMillis(_last_cumu_compaction_success_millis.load());
1110
33
    cumu_success_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1111
33
                                 root.GetAllocator());
1112
33
    root.AddMember("last cumulative success time", cumu_success_value, root.GetAllocator());
1113
33
    rapidjson::Value base_success_value;
1114
33
    format_str = ToStringFromUnixMillis(_last_base_compaction_success_millis.load());
1115
33
    base_success_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1116
33
                                 root.GetAllocator());
1117
33
    root.AddMember("last base success time", base_success_value, root.GetAllocator());
1118
33
    rapidjson::Value full_success_value;
1119
33
    format_str = ToStringFromUnixMillis(_last_full_compaction_success_millis.load());
1120
33
    full_success_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1121
33
                                 root.GetAllocator());
1122
33
    root.AddMember("last full success time", full_success_value, root.GetAllocator());
1123
33
    rapidjson::Value cumu_schedule_value;
1124
33
    format_str = ToStringFromUnixMillis(_last_cumu_compaction_schedule_millis.load());
1125
33
    cumu_schedule_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1126
33
                                  root.GetAllocator());
1127
33
    root.AddMember("last cumulative schedule time", cumu_schedule_value, root.GetAllocator());
1128
33
    rapidjson::Value base_schedule_value;
1129
33
    format_str = ToStringFromUnixMillis(_last_base_compaction_schedule_millis.load());
1130
33
    base_schedule_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1131
33
                                  root.GetAllocator());
1132
33
    root.AddMember("last base schedule time", base_schedule_value, root.GetAllocator());
1133
33
    rapidjson::Value full_schedule_value;
1134
33
    format_str = ToStringFromUnixMillis(_last_full_compaction_schedule_millis.load());
1135
33
    full_schedule_value.SetString(format_str.c_str(), cast_set<uint>(format_str.length()),
1136
33
                                  root.GetAllocator());
1137
33
    root.AddMember("last full schedule time", full_schedule_value, root.GetAllocator());
1138
33
    rapidjson::Value cumu_compaction_status_value;
1139
33
    cumu_compaction_status_value.SetString(_last_cumu_compaction_status.c_str(),
1140
33
                                           cast_set<uint>(_last_cumu_compaction_status.length()),
1141
33
                                           root.GetAllocator());
1142
33
    root.AddMember("last cumulative status", cumu_compaction_status_value, root.GetAllocator());
1143
33
    rapidjson::Value base_compaction_status_value;
1144
33
    base_compaction_status_value.SetString(_last_base_compaction_status.c_str(),
1145
33
                                           cast_set<uint>(_last_base_compaction_status.length()),
1146
33
                                           root.GetAllocator());
1147
33
    root.AddMember("last base status", base_compaction_status_value, root.GetAllocator());
1148
33
    rapidjson::Value full_compaction_status_value;
1149
33
    full_compaction_status_value.SetString(_last_full_compaction_status.c_str(),
1150
33
                                           cast_set<uint>(_last_full_compaction_status.length()),
1151
33
                                           root.GetAllocator());
1152
33
    root.AddMember("last full status", full_compaction_status_value, root.GetAllocator());
1153
33
    rapidjson::Value exec_compaction_time;
1154
33
    std::string num_str {std::to_string(exec_compaction_time_us.load())};
1155
33
    exec_compaction_time.SetString(num_str.c_str(), cast_set<uint>(num_str.length()),
1156
33
                                   root.GetAllocator());
1157
33
    root.AddMember("exec compaction time us", exec_compaction_time, root.GetAllocator());
1158
33
    rapidjson::Value local_read_time;
1159
33
    num_str = std::to_string(local_read_time_us.load());
1160
33
    local_read_time.SetString(num_str.c_str(), cast_set<uint>(num_str.length()),
1161
33
                              root.GetAllocator());
1162
33
    root.AddMember("compaction local read time us", local_read_time, root.GetAllocator());
1163
33
    rapidjson::Value remote_read_time;
1164
33
    num_str = std::to_string(remote_read_time_us.load());
1165
33
    remote_read_time.SetString(num_str.c_str(), cast_set<uint>(num_str.length()),
1166
33
                               root.GetAllocator());
1167
33
    root.AddMember("compaction remote read time us", remote_read_time, root.GetAllocator());
1168
1169
    // print all rowsets' version as an array
1170
33
    rapidjson::Document versions_arr;
1171
33
    rapidjson::Document missing_versions_arr;
1172
33
    versions_arr.SetArray();
1173
33
    missing_versions_arr.SetArray();
1174
33
    int64_t last_version = -1;
1175
148
    for (auto& rowset : rowsets) {
1176
148
        const Version& ver = rowset->version();
1177
148
        if (ver.first != last_version + 1) {
1178
0
            rapidjson::Value miss_value;
1179
0
            miss_value.SetString(fmt::format("[{}-{}]", last_version + 1, ver.first - 1).c_str(),
1180
0
                                 missing_versions_arr.GetAllocator());
1181
0
            missing_versions_arr.PushBack(miss_value, missing_versions_arr.GetAllocator());
1182
0
        }
1183
148
        rapidjson::Value value;
1184
148
        std::string version_str = rowset->get_rowset_info_str();
1185
148
        value.SetString(version_str.c_str(), cast_set<uint32_t>(version_str.length()),
1186
148
                        versions_arr.GetAllocator());
1187
148
        versions_arr.PushBack(value, versions_arr.GetAllocator());
1188
148
        last_version = ver.second;
1189
148
    }
1190
33
    root.AddMember("rowsets", versions_arr, root.GetAllocator());
1191
33
    root.AddMember("missing_rowsets", missing_versions_arr, root.GetAllocator());
1192
1193
    // print all stale rowsets' version as an array
1194
33
    rapidjson::Document stale_versions_arr;
1195
33
    stale_versions_arr.SetArray();
1196
540
    for (auto& rowset : stale_rowsets) {
1197
540
        rapidjson::Value value;
1198
540
        std::string version_str = rowset->get_rowset_info_str();
1199
540
        value.SetString(version_str.c_str(), cast_set<uint32_t>(version_str.length()),
1200
540
                        stale_versions_arr.GetAllocator());
1201
540
        stale_versions_arr.PushBack(value, stale_versions_arr.GetAllocator());
1202
540
    }
1203
33
    root.AddMember("stale_rowsets", stale_versions_arr, root.GetAllocator());
1204
1205
    // add stale version rowsets
1206
33
    root.AddMember("stale version path", path_arr, root.GetAllocator());
1207
1208
    // to json string
1209
33
    rapidjson::StringBuffer strbuf;
1210
33
    rapidjson::PrettyWriter<rapidjson::StringBuffer> writer(strbuf);
1211
33
    root.Accept(writer);
1212
33
    *json_result = std::string(strbuf.GetString());
1213
33
}
1214
1215
0
void CloudTablet::set_cumulative_layer_point(int64_t new_point) {
1216
0
    if (new_point == Tablet::K_INVALID_CUMULATIVE_POINT || new_point >= _cumulative_point) {
1217
0
        _cumulative_point = new_point;
1218
0
        return;
1219
0
    }
1220
    // cumulative point should only be reset to -1, or be increased
1221
    // FIXME: could happen in currently unresolved race conditions
1222
0
    LOG(WARNING) << "Unexpected cumulative point: " << new_point
1223
0
                 << ", origin: " << _cumulative_point.load();
1224
0
}
1225
1226
Status CloudTablet::check_rowset_schema_for_build_index(std::vector<TColumn>& columns,
1227
10
                                                        int schema_version) {
1228
10
    std::map<std::string, TabletColumn> fe_col_map;
1229
14
    for (int i = 0; i < columns.size(); i++) {
1230
4
        fe_col_map[columns[i].column_name] = TabletColumn(columns[i]);
1231
4
    }
1232
1233
10
    std::shared_lock rlock(_meta_lock);
1234
10
    for (const auto& [version, rs] : _rs_version_map) {
1235
4
        if (version.first == 0) {
1236
0
            continue;
1237
0
        }
1238
1239
4
        if (rs->tablet_schema()->schema_version() >= schema_version) {
1240
0
            continue;
1241
0
        }
1242
1243
4
        for (auto rs_col : rs->tablet_schema()->columns()) {
1244
4
            auto find_ret = fe_col_map.find(rs_col->name());
1245
4
            if (find_ret == fe_col_map.end()) {
1246
1
                return Status::InternalError(
1247
1
                        "check rowset meta failed:rowset's col is dropped in FE.");
1248
1
            }
1249
1250
3
            if (rs_col->unique_id() != find_ret->second.unique_id()) {
1251
1
                return Status::InternalError("check rowset meta failed:col id not match.");
1252
1
            }
1253
1254
2
            if (rs_col->type() != find_ret->second.type()) {
1255
1
                return Status::InternalError("check rowset meta failed:col type not match.");
1256
1
            }
1257
2
        }
1258
4
    }
1259
1260
7
    return Status::OK();
1261
10
}
1262
1263
Result<RowsetSharedPtr> CloudTablet::pick_a_rowset_for_index_change(int schema_version,
1264
9
                                                                    bool& is_base_rowset) {
1265
9
    TEST_SYNC_POINT_RETURN_WITH_VALUE("CloudTablet::pick_a_rowset_for_index_change",
1266
2
                                      Result<RowsetSharedPtr>(nullptr));
1267
2
    RowsetSharedPtr ret_rowset = nullptr;
1268
2
    std::shared_lock rlock(_meta_lock);
1269
2
    for (const auto& [version, rs] : _rs_version_map) {
1270
2
        if (version.first == 0) {
1271
0
            continue;
1272
0
        }
1273
2
        if (rs->num_rows() == 0) {
1274
1
            VLOG_DEBUG << "[index_change]find empty rs, index change may "
1275
0
                          "failed, id="
1276
0
                       << rs->rowset_id().to_string();
1277
1
        }
1278
1279
2
        if (rs->tablet_schema()->schema_version() >= schema_version) {
1280
2
            VLOG_DEBUG << "[index_change] skip rowset " << rs->tablet_schema()->schema_version()
1281
0
                       << "," << schema_version;
1282
2
            continue;
1283
2
        }
1284
1285
0
        if (ret_rowset == nullptr) {
1286
0
            ret_rowset = rs;
1287
0
            continue;
1288
0
        }
1289
1290
0
        if (rs->start_version() > ret_rowset->start_version()) {
1291
0
            ret_rowset = rs;
1292
0
        }
1293
0
    }
1294
1295
2
    if (ret_rowset != nullptr) {
1296
0
        is_base_rowset = ret_rowset->version().first < _cumulative_point;
1297
0
    }
1298
1299
2
    return ret_rowset;
1300
9
}
1301
1302
0
std::vector<RowsetSharedPtr> CloudTablet::pick_candidate_rowsets_to_base_compaction() {
1303
0
    std::vector<RowsetSharedPtr> candidate_rowsets;
1304
0
    {
1305
0
        std::shared_lock rlock(_meta_lock);
1306
0
        for (const auto& [version, rs] : _rs_version_map) {
1307
0
            if (version.first != 0 && version.first < _cumulative_point &&
1308
0
                (_alter_version == -1 || version.second <= _alter_version)) {
1309
0
                candidate_rowsets.push_back(rs);
1310
0
            }
1311
0
        }
1312
0
    }
1313
0
    std::sort(candidate_rowsets.begin(), candidate_rowsets.end(), Rowset::comparator);
1314
0
    return candidate_rowsets;
1315
0
}
1316
1317
0
std::vector<RowsetSharedPtr> CloudTablet::pick_candidate_rowsets_to_full_compaction() {
1318
0
    std::vector<RowsetSharedPtr> candidate_rowsets;
1319
0
    {
1320
0
        std::shared_lock rlock(_meta_lock);
1321
0
        for (auto& [v, rs] : _rs_version_map) {
1322
            // MUST NOT compact rowset [0-1] for some historical reasons (see cloud_schema_change)
1323
0
            if (v.first != 0) {
1324
0
                candidate_rowsets.push_back(rs);
1325
0
            }
1326
0
        }
1327
0
    }
1328
0
    std::sort(candidate_rowsets.begin(), candidate_rowsets.end(), Rowset::comparator);
1329
0
    return candidate_rowsets;
1330
0
}
1331
1332
0
CalcDeleteBitmapExecutor* CloudTablet::calc_delete_bitmap_executor() {
1333
0
    return _engine.calc_delete_bitmap_executor();
1334
0
}
1335
1336
Status CloudTablet::save_delete_bitmap(const TabletTxnInfo* txn_info, int64_t txn_id,
1337
                                       DeleteBitmapPtr delete_bitmap, RowsetWriter* rowset_writer,
1338
                                       const RowsetIdUnorderedSet& cur_rowset_ids, int64_t lock_id,
1339
0
                                       int64_t next_visible_version) {
1340
0
    RowsetSharedPtr rowset = txn_info->rowset;
1341
0
    int64_t cur_version = rowset->start_version();
1342
    // update delete bitmap info, in order to avoid recalculation when trying again
1343
0
    RETURN_IF_ERROR(_engine.txn_delete_bitmap_cache().update_tablet_txn_info(
1344
0
            txn_id, tablet_id(), delete_bitmap, cur_rowset_ids, PublishStatus::PREPARE));
1345
1346
0
    if (txn_info->partial_update_info && txn_info->partial_update_info->is_partial_update() &&
1347
0
        rowset_writer->num_rows() > 0) {
1348
0
        DBUG_EXECUTE_IF("CloudTablet::save_delete_bitmap.update_tmp_rowset.error", {
1349
0
            return Status::InternalError<false>("injected update_tmp_rowset error.");
1350
0
        });
1351
0
        const auto& rowset_meta = rowset->rowset_meta();
1352
0
        RETURN_IF_ERROR(_engine.meta_mgr().update_tmp_rowset(*rowset_meta));
1353
0
    }
1354
1355
0
    RETURN_IF_ERROR(save_delete_bitmap_to_ms(cur_version, txn_id, delete_bitmap, lock_id,
1356
0
                                             next_visible_version, rowset));
1357
1358
    // store the delete bitmap with sentinel marks in txn_delete_bitmap_cache because if the txn is retried for some reason,
1359
    // it will use the delete bitmap from txn_delete_bitmap_cache when re-calculating the delete bitmap, during which it will do
1360
    // delete bitmap correctness check. If we store the new_delete_bitmap, the delete bitmap correctness check will fail
1361
0
    RETURN_IF_ERROR(_engine.txn_delete_bitmap_cache().update_tablet_txn_info(
1362
0
            txn_id, tablet_id(), delete_bitmap, cur_rowset_ids, PublishStatus::SUCCEED,
1363
0
            txn_info->publish_info));
1364
1365
0
    DBUG_EXECUTE_IF("CloudTablet::save_delete_bitmap.enable_sleep", {
1366
0
        auto sleep_sec = dp->param<int>("sleep", 5);
1367
0
        std::this_thread::sleep_for(std::chrono::seconds(sleep_sec));
1368
0
    });
1369
1370
0
    DBUG_EXECUTE_IF("CloudTablet::save_delete_bitmap.injected_error", {
1371
0
        auto retry = dp->param<bool>("retry", false);
1372
0
        auto sleep_sec = dp->param<int>("sleep", 0);
1373
0
        std::this_thread::sleep_for(std::chrono::seconds(sleep_sec));
1374
0
        if (retry) { // return DELETE_BITMAP_LOCK_ERROR to let it retry
1375
0
            return Status::Error<ErrorCode::DELETE_BITMAP_LOCK_ERROR>(
1376
0
                    "injected DELETE_BITMAP_LOCK_ERROR");
1377
0
        } else {
1378
0
            return Status::InternalError<false>("injected non-retryable error");
1379
0
        }
1380
0
    });
1381
1382
0
    return Status::OK();
1383
0
}
1384
1385
Status CloudTablet::save_delete_bitmap_to_ms(int64_t cur_version, int64_t txn_id,
1386
                                             DeleteBitmapPtr delete_bitmap, int64_t lock_id,
1387
0
                                             int64_t next_visible_version, RowsetSharedPtr rowset) {
1388
0
    DeleteBitmapPtr new_delete_bitmap = std::make_shared<DeleteBitmap>(tablet_id());
1389
0
    for (auto iter = delete_bitmap->delete_bitmap.begin();
1390
0
         iter != delete_bitmap->delete_bitmap.end(); ++iter) {
1391
        // skip sentinel mark, which is used for delete bitmap correctness check
1392
0
        if (std::get<1>(iter->first) != DeleteBitmap::INVALID_SEGMENT_ID) {
1393
0
            new_delete_bitmap->merge(
1394
0
                    {std::get<0>(iter->first), std::get<1>(iter->first), cur_version},
1395
0
                    iter->second);
1396
0
        }
1397
0
    }
1398
    // lock_id != -1 means this is in an explict txn
1399
0
    bool is_explicit_txn = (lock_id != -1);
1400
0
    auto ms_lock_id = !is_explicit_txn ? txn_id : lock_id;
1401
0
    std::optional<StorageResource> storage_resource;
1402
0
    auto storage_resource_result = rowset->rowset_meta()->remote_storage_resource();
1403
0
    if (storage_resource_result) {
1404
0
        storage_resource = *storage_resource_result.value();
1405
0
    }
1406
0
    RETURN_IF_ERROR(_engine.meta_mgr().update_delete_bitmap(
1407
0
            *this, ms_lock_id, LOAD_INITIATOR_ID, new_delete_bitmap.get(), new_delete_bitmap.get(),
1408
0
            rowset->rowset_id().to_string(), storage_resource,
1409
0
            config::delete_bitmap_store_write_version, txn_id, is_explicit_txn,
1410
0
            next_visible_version));
1411
0
    return Status::OK();
1412
0
}
1413
1414
0
Versions CloudTablet::calc_missed_versions(int64_t spec_version, Versions existing_versions) const {
1415
0
    DCHECK(spec_version > 0) << "invalid spec_version: " << spec_version;
1416
1417
    // sort the existing versions in ascending order
1418
0
    std::sort(existing_versions.begin(), existing_versions.end(),
1419
0
              [](const Version& a, const Version& b) {
1420
                  // simple because 2 versions are certainly not overlapping
1421
0
                  return a.first < b.first;
1422
0
              });
1423
1424
    // From the first version(=0), find the missing version until spec_version
1425
0
    int64_t last_version = -1;
1426
0
    Versions missed_versions;
1427
0
    for (const Version& version : existing_versions) {
1428
0
        if (version.first > last_version + 1) {
1429
            // there is a hole between versions
1430
0
            missed_versions.emplace_back(last_version + 1, std::min(version.first, spec_version));
1431
0
        }
1432
0
        last_version = version.second;
1433
0
        if (last_version >= spec_version) {
1434
0
            break;
1435
0
        }
1436
0
    }
1437
0
    if (last_version < spec_version) {
1438
        // there is a hole between the last version and the specificed version.
1439
0
        missed_versions.emplace_back(last_version + 1, spec_version);
1440
0
    }
1441
0
    return missed_versions;
1442
0
}
1443
1444
Status CloudTablet::calc_delete_bitmap_for_compaction(
1445
        const std::vector<RowsetSharedPtr>& input_rowsets, const RowsetSharedPtr& output_rowset,
1446
        const RowIdConversion& rowid_conversion, ReaderType compaction_type, int64_t merged_rows,
1447
        int64_t filtered_rows, int64_t initiator, DeleteBitmapPtr& output_rowset_delete_bitmap,
1448
0
        bool allow_delete_in_cumu_compaction, int64_t& get_delete_bitmap_lock_start_time) {
1449
0
    output_rowset_delete_bitmap = std::make_shared<DeleteBitmap>(tablet_id());
1450
0
    std::unique_ptr<RowLocationSet> missed_rows;
1451
0
    if ((config::enable_missing_rows_correctness_check ||
1452
0
         config::enable_mow_compaction_correctness_check_core ||
1453
0
         config::enable_mow_compaction_correctness_check_fail) &&
1454
0
        !allow_delete_in_cumu_compaction &&
1455
0
        (compaction_type == ReaderType::READER_CUMULATIVE_COMPACTION ||
1456
0
         !config::enable_prune_delete_sign_when_base_compaction)) {
1457
        // also check duplicate key for base compaction when config::enable_prune_delete_sign_when_base_compaction==false
1458
0
        missed_rows = std::make_unique<RowLocationSet>();
1459
0
        LOG(INFO) << "RowLocation Set inited succ for tablet:" << tablet_id();
1460
0
    }
1461
1462
0
    std::unique_ptr<std::map<RowsetSharedPtr, RowLocationPairList>> location_map;
1463
0
    if (config::enable_rowid_conversion_correctness_check &&
1464
0
        tablet_schema()->cluster_key_uids().empty()) {
1465
0
        location_map = std::make_unique<std::map<RowsetSharedPtr, RowLocationPairList>>();
1466
0
        LOG(INFO) << "Location Map inited succ for tablet:" << tablet_id();
1467
0
    }
1468
1469
    // 1. calc delete bitmap for historical data
1470
0
    RETURN_IF_ERROR(_engine.meta_mgr().sync_tablet_rowsets(this));
1471
0
    Version version = max_version();
1472
0
    std::size_t missed_rows_size = 0;
1473
0
    calc_compaction_output_rowset_delete_bitmap(
1474
0
            input_rowsets, rowid_conversion, 0, version.second + 1, missed_rows.get(),
1475
0
            location_map.get(), tablet_meta()->delete_bitmap(), output_rowset_delete_bitmap.get());
1476
0
    if (missed_rows) {
1477
0
        missed_rows_size = missed_rows->size();
1478
0
        if (!allow_delete_in_cumu_compaction) {
1479
0
            if ((compaction_type == ReaderType::READER_CUMULATIVE_COMPACTION ||
1480
0
                 !config::enable_prune_delete_sign_when_base_compaction) &&
1481
0
                tablet_state() == TABLET_RUNNING) {
1482
0
                if (merged_rows + filtered_rows >= 0 &&
1483
0
                    merged_rows + filtered_rows != missed_rows_size) {
1484
0
                    std::string err_msg = fmt::format(
1485
0
                            "cumulative compaction: the merged rows({}), the filtered rows({}) is "
1486
0
                            "not equal to missed rows({}) in rowid conversion, tablet_id: {}, "
1487
0
                            "table_id:{}",
1488
0
                            merged_rows, filtered_rows, missed_rows_size, tablet_id(), table_id());
1489
0
                    LOG(WARNING) << err_msg;
1490
0
                    if (config::enable_mow_compaction_correctness_check_core) {
1491
0
                        CHECK(false) << err_msg;
1492
0
                    } else if (config::enable_mow_compaction_correctness_check_fail) {
1493
0
                        return Status::InternalError<false>(err_msg);
1494
0
                    } else {
1495
0
                        DCHECK(false) << err_msg;
1496
0
                    }
1497
0
                }
1498
0
            }
1499
0
        }
1500
0
    }
1501
0
    if (location_map) {
1502
0
        RETURN_IF_ERROR(check_rowid_conversion(output_rowset, *location_map));
1503
0
        location_map->clear();
1504
0
    }
1505
1506
    // 2. calc delete bitmap for incremental data
1507
0
    int64_t t1 = MonotonicMicros();
1508
0
    RETURN_IF_ERROR(_engine.meta_mgr().get_delete_bitmap_update_lock(
1509
0
            *this, COMPACTION_DELETE_BITMAP_LOCK_ID, initiator));
1510
0
    int64_t t2 = MonotonicMicros();
1511
0
    if (compaction_type == ReaderType::READER_CUMULATIVE_COMPACTION) {
1512
0
        g_cu_compaction_get_delete_bitmap_lock_time_ms << (t2 - t1) / 1000;
1513
0
    } else if (compaction_type == ReaderType::READER_BASE_COMPACTION) {
1514
0
        g_base_compaction_get_delete_bitmap_lock_time_ms << (t2 - t1) / 1000;
1515
0
    }
1516
0
    get_delete_bitmap_lock_start_time = t2;
1517
0
    RETURN_IF_ERROR(_engine.meta_mgr().sync_tablet_rowsets(this));
1518
0
    int64_t t3 = MonotonicMicros();
1519
1520
0
    calc_compaction_output_rowset_delete_bitmap(
1521
0
            input_rowsets, rowid_conversion, version.second, UINT64_MAX, missed_rows.get(),
1522
0
            location_map.get(), tablet_meta()->delete_bitmap(), output_rowset_delete_bitmap.get());
1523
0
    int64_t t4 = MonotonicMicros();
1524
0
    if (location_map) {
1525
0
        RETURN_IF_ERROR(check_rowid_conversion(output_rowset, *location_map));
1526
0
    }
1527
0
    int64_t t5 = MonotonicMicros();
1528
1529
    // 3. store delete bitmap
1530
0
    DeleteBitmapPtr delete_bitmap_v2 = nullptr;
1531
0
    auto delete_bitmap_size = output_rowset_delete_bitmap->delete_bitmap.size();
1532
0
    auto store_version = config::delete_bitmap_store_write_version;
1533
0
    if (store_version == 2 || store_version == 3) {
1534
0
        delete_bitmap_v2 = std::make_shared<DeleteBitmap>(*output_rowset_delete_bitmap);
1535
0
        std::vector<std::pair<RowsetId, int64_t>> retained_rowsets_to_seg_num;
1536
0
        {
1537
0
            std::shared_lock rlock(get_header_lock());
1538
0
            for (const auto& [rowset_version, rowset_ptr] : rowset_map()) {
1539
0
                if (rowset_version.second < output_rowset->start_version()) {
1540
0
                    retained_rowsets_to_seg_num.emplace_back(
1541
0
                            std::make_pair(rowset_ptr->rowset_id(), rowset_ptr->num_segments()));
1542
0
                }
1543
0
            }
1544
0
        }
1545
0
        if (config::enable_agg_delta_delete_bitmap_for_store_v2) {
1546
0
            tablet_meta()->delete_bitmap().subset_and_agg(
1547
0
                    retained_rowsets_to_seg_num, output_rowset->start_version(),
1548
0
                    output_rowset->end_version(), delete_bitmap_v2.get());
1549
0
        } else {
1550
0
            tablet_meta()->delete_bitmap().subset(
1551
0
                    retained_rowsets_to_seg_num, output_rowset->start_version(),
1552
0
                    output_rowset->end_version(), delete_bitmap_v2.get());
1553
0
        }
1554
0
    }
1555
0
    std::optional<StorageResource> storage_resource;
1556
0
    auto storage_resource_result = output_rowset->rowset_meta()->remote_storage_resource();
1557
0
    if (storage_resource_result) {
1558
0
        storage_resource = *storage_resource_result.value();
1559
0
    }
1560
0
    auto st = _engine.meta_mgr().update_delete_bitmap(
1561
0
            *this, -1, initiator, output_rowset_delete_bitmap.get(), delete_bitmap_v2.get(),
1562
0
            output_rowset->rowset_id().to_string(), storage_resource, store_version);
1563
0
    int64_t t6 = MonotonicMicros();
1564
0
    LOG(INFO) << "calc_delete_bitmap_for_compaction, tablet_id=" << tablet_id()
1565
0
              << ", get lock cost " << (t2 - t1) << " us, sync rowsets cost " << (t3 - t2)
1566
0
              << " us, calc delete bitmap cost " << (t4 - t3) << " us, check rowid conversion cost "
1567
0
              << (t5 - t4) << " us, store delete bitmap cost " << (t6 - t5)
1568
0
              << " us, st=" << st.to_string() << ". store_version=" << store_version
1569
0
              << ", calculated delete bitmap size=" << delete_bitmap_size
1570
0
              << ", update delete bitmap size="
1571
0
              << output_rowset_delete_bitmap->delete_bitmap.size();
1572
0
    return st;
1573
0
}
1574
1575
void CloudTablet::agg_delete_bitmap_for_compaction(
1576
        int64_t start_version, int64_t end_version, const std::vector<RowsetSharedPtr>& pre_rowsets,
1577
        DeleteBitmapPtr& new_delete_bitmap,
1578
0
        std::map<std::string, int64_t>& pre_rowset_to_versions) {
1579
0
    for (auto& rowset : pre_rowsets) {
1580
0
        for (uint32_t seg_id = 0; seg_id < rowset->num_segments(); ++seg_id) {
1581
0
            auto d = tablet_meta()->delete_bitmap().get_agg_without_cache(
1582
0
                    {rowset->rowset_id(), seg_id, end_version}, start_version);
1583
0
            if (d->isEmpty()) {
1584
0
                continue;
1585
0
            }
1586
0
            VLOG_DEBUG << "agg delete bitmap for tablet_id=" << tablet_id()
1587
0
                       << ", rowset_id=" << rowset->rowset_id() << ", seg_id=" << seg_id
1588
0
                       << ", rowset_version=" << rowset->version().to_string()
1589
0
                       << ". compaction start_version=" << start_version
1590
0
                       << ", end_version=" << end_version
1591
0
                       << ". delete_bitmap cardinality=" << d->cardinality();
1592
0
            DeleteBitmap::BitmapKey end_key {rowset->rowset_id(), seg_id, end_version};
1593
0
            new_delete_bitmap->set(end_key, *d);
1594
0
            pre_rowset_to_versions[rowset->rowset_id().to_string()] = rowset->version().second;
1595
0
        }
1596
0
    }
1597
0
}
1598
1599
5
Status CloudTablet::sync_meta() {
1600
5
    if (!config::enable_file_cache) {
1601
1
        return Status::OK();
1602
1
    }
1603
1604
4
    TabletMetaSharedPtr tablet_meta;
1605
4
    auto st = _engine.meta_mgr().get_tablet_meta(tablet_id(), &tablet_meta);
1606
4
    if (!st.ok()) {
1607
0
        if (st.is<ErrorCode::NOT_FOUND>()) {
1608
0
            clear_cache();
1609
0
        }
1610
0
        return st;
1611
0
    }
1612
1613
4
    auto old_creation_time = _tablet_meta->creation_time();
1614
4
    auto new_creation_time = tablet_meta->creation_time();
1615
4
    bool creation_time_changed = old_creation_time != new_creation_time;
1616
4
    if (creation_time_changed) {
1617
0
        _tablet_meta->set_creation_time(new_creation_time);
1618
0
    }
1619
1620
4
    auto old_ttl_seconds = _tablet_meta->ttl_seconds();
1621
4
    auto new_ttl_seconds = tablet_meta->ttl_seconds();
1622
4
    bool ttl_changed = old_ttl_seconds != new_ttl_seconds;
1623
4
    if (ttl_changed) {
1624
0
        _tablet_meta->set_ttl_seconds(new_ttl_seconds);
1625
0
    }
1626
1627
4
    if (creation_time_changed || ttl_changed) {
1628
0
        int64_t new_expiration_time =
1629
0
                io::calc_file_cache_expiration_time(new_creation_time, new_ttl_seconds);
1630
0
        std::shared_lock rlock(_meta_lock);
1631
0
        for (auto& [_, rs] : _rs_version_map) {
1632
0
            for (int seg_id = 0; seg_id < rs->num_segments(); ++seg_id) {
1633
0
                auto file_key = Segment::file_cache_key(rs->rowset_id().to_string(), seg_id);
1634
0
                auto* file_cache = io::FileCacheFactory::instance()->get_by_path(file_key);
1635
0
                if (file_cache != nullptr) {
1636
0
                    file_cache->modify_expiration_time(file_key, new_expiration_time);
1637
0
                }
1638
0
            }
1639
0
            for (const auto& file_name : rs->get_index_file_names()) {
1640
0
                auto file_key = io::BlockFileCache::hash(file_name);
1641
0
                auto* file_cache = io::FileCacheFactory::instance()->get_by_path(file_key);
1642
0
                if (file_cache != nullptr) {
1643
0
                    file_cache->modify_expiration_time(file_key, new_expiration_time);
1644
0
                }
1645
0
            }
1646
0
        }
1647
0
    }
1648
1649
4
    auto new_compaction_policy = tablet_meta->compaction_policy();
1650
4
    if (_tablet_meta->compaction_policy() != new_compaction_policy) {
1651
1
        _tablet_meta->set_compaction_policy(new_compaction_policy);
1652
1
    }
1653
4
    auto new_time_series_compaction_goal_size_mbytes =
1654
4
            tablet_meta->time_series_compaction_goal_size_mbytes();
1655
4
    if (_tablet_meta->time_series_compaction_goal_size_mbytes() !=
1656
4
        new_time_series_compaction_goal_size_mbytes) {
1657
0
        _tablet_meta->set_time_series_compaction_goal_size_mbytes(
1658
0
                new_time_series_compaction_goal_size_mbytes);
1659
0
    }
1660
4
    auto new_time_series_compaction_file_count_threshold =
1661
4
            tablet_meta->time_series_compaction_file_count_threshold();
1662
4
    if (_tablet_meta->time_series_compaction_file_count_threshold() !=
1663
4
        new_time_series_compaction_file_count_threshold) {
1664
0
        _tablet_meta->set_time_series_compaction_file_count_threshold(
1665
0
                new_time_series_compaction_file_count_threshold);
1666
0
    }
1667
4
    auto new_time_series_compaction_time_threshold_seconds =
1668
4
            tablet_meta->time_series_compaction_time_threshold_seconds();
1669
4
    if (_tablet_meta->time_series_compaction_time_threshold_seconds() !=
1670
4
        new_time_series_compaction_time_threshold_seconds) {
1671
0
        _tablet_meta->set_time_series_compaction_time_threshold_seconds(
1672
0
                new_time_series_compaction_time_threshold_seconds);
1673
0
    }
1674
4
    auto new_time_series_compaction_empty_rowsets_threshold =
1675
4
            tablet_meta->time_series_compaction_empty_rowsets_threshold();
1676
4
    if (_tablet_meta->time_series_compaction_empty_rowsets_threshold() !=
1677
4
        new_time_series_compaction_empty_rowsets_threshold) {
1678
0
        _tablet_meta->set_time_series_compaction_empty_rowsets_threshold(
1679
0
                new_time_series_compaction_empty_rowsets_threshold);
1680
0
    }
1681
4
    auto new_time_series_compaction_level_threshold =
1682
4
            tablet_meta->time_series_compaction_level_threshold();
1683
4
    if (_tablet_meta->time_series_compaction_level_threshold() !=
1684
4
        new_time_series_compaction_level_threshold) {
1685
0
        _tablet_meta->set_time_series_compaction_level_threshold(
1686
0
                new_time_series_compaction_level_threshold);
1687
0
    }
1688
    // Sync disable_auto_compaction (stored in tablet_schema)
1689
4
    auto new_disable_auto_compaction = tablet_meta->tablet_schema()->disable_auto_compaction();
1690
4
    if (_tablet_meta->tablet_schema()->disable_auto_compaction() != new_disable_auto_compaction) {
1691
3
        _tablet_meta->mutable_tablet_schema()->set_disable_auto_compaction(
1692
3
                new_disable_auto_compaction);
1693
3
    }
1694
1695
4
    return Status::OK();
1696
4
}
1697
1698
0
void CloudTablet::build_tablet_report_info(TTabletInfo* tablet_info) {
1699
0
    std::shared_lock rdlock(_meta_lock);
1700
0
    tablet_info->__set_total_version_count(_tablet_meta->version_count());
1701
0
    tablet_info->__set_tablet_id(_tablet_meta->tablet_id());
1702
    // Currently, this information will not be used by the cloud report,
1703
    // but it may be used in the future.
1704
0
}
1705
1706
Status CloudTablet::check_delete_bitmap_cache(int64_t txn_id,
1707
0
                                              DeleteBitmap* expected_delete_bitmap) {
1708
0
    DeleteBitmapPtr cached_delete_bitmap;
1709
0
    CloudStorageEngine& engine = ExecEnv::GetInstance()->storage_engine().to_cloud();
1710
0
    Status st = engine.txn_delete_bitmap_cache().get_delete_bitmap(
1711
0
            txn_id, tablet_id(), &cached_delete_bitmap, nullptr, nullptr);
1712
0
    if (st.ok()) {
1713
0
        bool res = (expected_delete_bitmap->cardinality() == cached_delete_bitmap->cardinality());
1714
0
        auto msg = fmt::format(
1715
0
                "delete bitmap cache check failed, cur_cardinality={}, cached_cardinality={}"
1716
0
                "txn_id={}, tablet_id={}",
1717
0
                expected_delete_bitmap->cardinality(), cached_delete_bitmap->cardinality(), txn_id,
1718
0
                tablet_id());
1719
0
        if (!res) {
1720
0
            DCHECK(res) << msg;
1721
0
            return Status::InternalError<false>(msg);
1722
0
        }
1723
0
    }
1724
0
    return Status::OK();
1725
0
}
1726
1727
35
WarmUpState CloudTablet::get_rowset_warmup_state(RowsetId rowset_id) {
1728
35
    std::shared_lock rlock(_meta_lock);
1729
35
    if (!_rowset_warm_up_states.contains(rowset_id)) {
1730
1
        return {.trigger_source = WarmUpTriggerSource::NONE, .progress = WarmUpProgress::NONE};
1731
1
    }
1732
34
    auto& warmup_info = _rowset_warm_up_states[rowset_id];
1733
34
    warmup_info.update_state();
1734
34
    return warmup_info.state;
1735
35
}
1736
1737
bool CloudTablet::add_rowset_warmup_state(const RowsetMeta& rowset, WarmUpTriggerSource source,
1738
34
                                          std::chrono::steady_clock::time_point start_tp) {
1739
34
    std::lock_guard wlock(_meta_lock);
1740
34
    return add_rowset_warmup_state_unlocked(rowset, source, start_tp);
1741
34
}
1742
1743
bool CloudTablet::update_rowset_warmup_state_inverted_idx_num(WarmUpTriggerSource source,
1744
5
                                                              RowsetId rowset_id, int64_t delta) {
1745
5
    std::lock_guard wlock(_meta_lock);
1746
5
    return update_rowset_warmup_state_inverted_idx_num_unlocked(source, rowset_id, delta);
1747
5
}
1748
1749
bool CloudTablet::update_rowset_warmup_state_inverted_idx_num_unlocked(WarmUpTriggerSource source,
1750
                                                                       RowsetId rowset_id,
1751
5
                                                                       int64_t delta) {
1752
5
    auto it = _rowset_warm_up_states.find(rowset_id);
1753
5
    if (it == _rowset_warm_up_states.end()) {
1754
0
        return false;
1755
0
    }
1756
5
    if (it->second.state.trigger_source != source) {
1757
        // Only the same trigger source can update the state
1758
2
        return false;
1759
2
    }
1760
3
    it->second.num_inverted_idx += delta;
1761
3
    return true;
1762
5
}
1763
1764
bool CloudTablet::add_rowset_warmup_state_unlocked(const RowsetMeta& rowset,
1765
                                                   WarmUpTriggerSource source,
1766
34
                                                   std::chrono::steady_clock::time_point start_tp) {
1767
34
    auto rowset_id = rowset.rowset_id();
1768
1769
    // Check if rowset already has warmup state
1770
34
    if (_rowset_warm_up_states.contains(rowset_id)) {
1771
10
        auto existing_state = _rowset_warm_up_states[rowset_id].state;
1772
1773
        // For job-triggered warmup (one-time and periodic warmup), allow it to proceed
1774
        // except when there's already another job-triggered warmup in progress
1775
10
        if (source == WarmUpTriggerSource::JOB) {
1776
5
            if (existing_state.trigger_source == WarmUpTriggerSource::JOB &&
1777
5
                existing_state.progress == WarmUpProgress::DOING) {
1778
                // Same job type already in progress, skip to avoid duplicate warmup
1779
1
                return false;
1780
1
            }
1781
5
        } else {
1782
            // For non-job warmup (EVENT_DRIVEN, SYNC_ROWSET), skip if any warmup exists
1783
5
            return false;
1784
5
        }
1785
10
    }
1786
1787
28
    if (source == WarmUpTriggerSource::JOB) {
1788
9
        g_file_cache_warm_up_rowset_triggered_by_job_num << 1;
1789
19
    } else if (source == WarmUpTriggerSource::SYNC_ROWSET) {
1790
6
        g_file_cache_warm_up_rowset_triggered_by_sync_rowset_num << 1;
1791
13
    } else if (source == WarmUpTriggerSource::EVENT_DRIVEN) {
1792
13
        g_file_cache_warm_up_rowset_triggered_by_event_driven_num << 1;
1793
13
    }
1794
28
    _rowset_warm_up_states[rowset_id] = {
1795
28
            .state = {.trigger_source = source,
1796
28
                      .progress = (rowset.num_segments() == 0 ? WarmUpProgress::DONE
1797
28
                                                              : WarmUpProgress::DOING)},
1798
28
            .num_segments = rowset.num_segments(),
1799
28
            .start_tp = start_tp};
1800
28
    return true;
1801
34
}
1802
1803
52
void CloudTablet::RowsetWarmUpInfo::update_state() {
1804
52
    if (has_finished()) {
1805
14
        g_file_cache_warm_up_rowset_complete_num << 1;
1806
14
        auto cost = std::chrono::duration_cast<std::chrono::milliseconds>(
1807
14
                            std::chrono::steady_clock::now() - start_tp)
1808
14
                            .count();
1809
14
        g_file_cache_warm_up_rowset_all_segments_latency << cost;
1810
14
        state.progress = WarmUpProgress::DONE;
1811
14
    }
1812
52
}
1813
1814
WarmUpState CloudTablet::complete_rowset_segment_warmup(WarmUpTriggerSource trigger_source,
1815
                                                        RowsetId rowset_id, Status status,
1816
                                                        int64_t segment_num,
1817
21
                                                        int64_t inverted_idx_num) {
1818
21
    std::lock_guard wlock(_meta_lock);
1819
21
    auto it = _rowset_warm_up_states.find(rowset_id);
1820
21
    if (it == _rowset_warm_up_states.end()) {
1821
1
        return {.trigger_source = WarmUpTriggerSource::NONE, .progress = WarmUpProgress::NONE};
1822
1
    }
1823
20
    auto& warmup_info = it->second;
1824
20
    if (warmup_info.state.trigger_source != trigger_source) {
1825
        // Only the same trigger source can update the state
1826
2
        return warmup_info.state;
1827
2
    }
1828
18
    VLOG_DEBUG << "complete rowset segment warmup for rowset " << rowset_id << ", " << status;
1829
18
    if (segment_num > 0) {
1830
16
        g_file_cache_warm_up_segment_complete_num << segment_num;
1831
16
        if (!status.ok()) {
1832
1
            g_file_cache_warm_up_segment_failed_num << segment_num;
1833
1
        }
1834
16
    }
1835
18
    if (inverted_idx_num > 0) {
1836
2
        g_file_cache_warm_up_inverted_idx_complete_num << inverted_idx_num;
1837
2
        if (!status.ok()) {
1838
0
            g_file_cache_warm_up_inverted_idx_failed_num << inverted_idx_num;
1839
0
        }
1840
2
    }
1841
18
    warmup_info.done(segment_num, inverted_idx_num);
1842
18
    return warmup_info.state;
1843
20
}
1844
1845
222
bool CloudTablet::is_rowset_warmed_up(const RowsetId& rowset_id) const {
1846
222
    auto it = _rowset_warm_up_states.find(rowset_id);
1847
222
    if (it == _rowset_warm_up_states.end()) {
1848
        // The rowset is not in warmup state, which means the rowset has never been warmed up.
1849
        // This may happen when the upstream BE tried to warm up rowsets on this BE but this BE
1850
        // was restarting so the warmup failed, and _rowset_warm_up_states has no entry for it.
1851
        //
1852
        // Normally the startup_timepoint check in rowset_is_warmed_up_unlocked() would filter out
1853
        // such rowsets (visible_timestamp < startup_timepoint → assumed warmed up). However,
1854
        // compaction-produced rowsets have their visible_timestamp set at rowset builder
1855
        // initialization time rather than the final transaction commit time on meta-service,
1856
        // so their visible_timestamp can be earlier than startup_timepoint, causing the
1857
        // startup_timepoint check to NOT filter them out and reaching here with no warmup entry.
1858
        //
1859
        // If such a rowset is before the cumulative compaction point and base compaction never
1860
        // happens, returning false here would cause the version path algorithm to exclude it,
1861
        // leading to a persistently low path_max_version. With continuous upstream ingestion,
1862
        // the freshness tolerance fallback check would keep triggering, making every query on
1863
        // this tablet fall back to reading all data from remote storage.
1864
        //
1865
        // Returning true (optimistically treating it as warmed up) allows the version path to
1866
        // include it. On cache miss the data is transparently read from remote storage per-segment
1867
        // and cached locally in 1MB blocks, so the problem self-heals through subsequent queries.
1868
7
        g_rowset_warmup_state_missing_count << 1;
1869
7
        LOG_EVERY_N(WARNING, 100) << fmt::format(
1870
1
                "rowset warmup state missing, considering it as warmed up. tablet_id={}, "
1871
1
                "rowset_id={}",
1872
1
                tablet_id(), rowset_id.to_string());
1873
7
        return true;
1874
7
    }
1875
215
    return it->second.state.progress == WarmUpProgress::DONE;
1876
222
}
1877
1878
675
void CloudTablet::add_warmed_up_rowset(const RowsetId& rowset_id) {
1879
675
    _rowset_warm_up_states[rowset_id] = {
1880
675
            .state = {.trigger_source = WarmUpTriggerSource::SYNC_ROWSET,
1881
675
                      .progress = WarmUpProgress::DONE},
1882
675
            .num_segments = 1,
1883
675
            .start_tp = std::chrono::steady_clock::now()};
1884
675
}
1885
1886
93
void CloudTablet::add_not_warmed_up_rowset(const RowsetId& rowset_id) {
1887
93
    _rowset_warm_up_states[rowset_id] = {
1888
93
            .state = {.trigger_source = WarmUpTriggerSource::SYNC_ROWSET,
1889
93
                      .progress = WarmUpProgress::DOING},
1890
93
            .num_segments = 1,
1891
93
            .start_tp = std::chrono::steady_clock::now()};
1892
93
}
1893
1894
#include "common/compile_check_end.h"
1895
} // namespace doris