Coverage Report

Created: 2026-06-03 15:40

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/runtime/exec_env_init.cpp
Line
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
3
// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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
//
11
// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
// IWYU pragma: no_include <bthread/errno.h>
19
#include <gen_cpp/HeartbeatService_types.h>
20
#include <gen_cpp/Metrics_types.h>
21
#include <simdjson.h>
22
#include <sys/resource.h>
23
24
#include <cerrno> // IWYU pragma: keep
25
#include <cstdint>
26
#include <cstdlib>
27
#include <cstring>
28
#include <limits>
29
#include <memory>
30
#include <ostream>
31
#include <string>
32
#include <vector>
33
34
#include "cloud/cloud_cluster_info.h"
35
#include "cloud/cloud_meta_mgr.h"
36
#include "cloud/cloud_ms_rpc_rate_limit_services.h"
37
#include "cloud/cloud_ms_rpc_rate_limiters.h"
38
#include "cloud/cloud_storage_engine.h"
39
#include "cloud/cloud_stream_load_executor.h"
40
#include "cloud/cloud_tablet_hotspot.h"
41
#include "cloud/cloud_warm_up_manager.h"
42
#include "cloud/config.h"
43
#include "common/cast_set.h"
44
#include "common/config.h"
45
#include "common/kerberos/kerberos_ticket_mgr.h"
46
#include "common/logging.h"
47
#include "common/metrics/doris_metrics.h"
48
#include "common/multi_version.h"
49
#include "common/status.h"
50
#include "cpp/token_bucket_rate_limiter.h"
51
#include "exec/exchange/vdata_stream_mgr.h"
52
#include "exec/pipeline/task_queue.h"
53
#include "exec/pipeline/task_scheduler.h"
54
#include "exec/scan/scanner_scheduler.h"
55
#include "exec/sink/delta_writer_v2_pool.h"
56
#include "exec/sink/load_stream_map_pool.h"
57
#include "exec/spill/spill_file_manager.h"
58
#include "exprs/function/dictionary_factory.h"
59
#include "format/orc/orc_memory_pool.h"
60
#include "format/parquet/arrow_memory_pool.h"
61
#include "io/cache/block_file_cache_downloader.h"
62
#include "io/cache/block_file_cache_factory.h"
63
#include "io/cache/fs_file_cache_storage.h"
64
#include "io/fs/file_meta_cache.h"
65
#include "io/fs/local_file_reader.h"
66
#include "load/channel/load_channel_mgr.h"
67
#include "load/channel/load_stream_mgr.h"
68
#include "load/group_commit/group_commit_mgr.h"
69
#include "load/group_commit/wal/wal_manager.h"
70
#include "load/load_path_mgr.h"
71
#include "load/memtable/memtable_memory_limiter.h"
72
#include "load/routine_load/routine_load_task_executor.h"
73
#include "load/stream_load/new_load_stream_mgr.h"
74
#include "load/stream_load/stream_load_executor.h"
75
#include "load/stream_load/stream_load_recorder_manager.h"
76
#include "runtime/broker_mgr.h"
77
#include "runtime/cache/result_cache.h"
78
#include "runtime/cdc_client_mgr.h"
79
#include "runtime/exec_env.h"
80
#include "runtime/external_scan_context_mgr.h"
81
#include "runtime/fragment_mgr.h"
82
#include "runtime/heartbeat_flags.h"
83
#include "runtime/index_policy/index_policy_mgr.h"
84
#include "runtime/memory/cache_manager.h"
85
#include "runtime/memory/heap_profiler.h"
86
#include "runtime/memory/mem_tracker.h"
87
#include "runtime/memory/mem_tracker_limiter.h"
88
#include "runtime/memory/thread_mem_tracker_mgr.h"
89
#include "runtime/process_profile.h"
90
#include "runtime/query_cache/query_cache.h"
91
#include "runtime/result_buffer_mgr.h"
92
#include "runtime/result_queue_mgr.h"
93
#include "runtime/runtime_query_statistics_mgr.h"
94
#include "runtime/small_file_mgr.h"
95
#include "runtime/thread_context.h"
96
#include "runtime/user_function_cache.h"
97
#include "runtime/workload_group/workload_group_manager.h"
98
#include "runtime/workload_management/workload_sched_policy_mgr.h"
99
#include "service/backend_options.h"
100
#include "service/backend_service.h"
101
#include "service/point_query_executor.h"
102
#include "storage/cache/ann_index_ivf_list_cache.h"
103
#include "storage/cache/page_cache.h"
104
#include "storage/id_manager.h"
105
#include "storage/index/ann/ann_index_result_cache/ann_index_result_cache.h"
106
#include "storage/index/inverted/inverted_index_cache.h"
107
#include "storage/olap_define.h"
108
#include "storage/options.h"
109
#include "storage/segment/condition_cache.h"
110
#include "storage/segment/encoding_info.h"
111
#include "storage/segment/segment_loader.h"
112
#include "storage/storage_engine.h"
113
#include "storage/storage_policy.h"
114
#include "storage/tablet/tablet_column_object_pool.h"
115
#include "storage/tablet/tablet_meta.h"
116
#include "storage/tablet/tablet_schema_cache.h"
117
#include "udf/python/python_server.h"
118
#include "util/bfd_parser.h"
119
#include "util/bit_util.h"
120
#include "util/brpc_client_cache.h"
121
#include "util/client_cache.h"
122
#include "util/cpu_info.h"
123
#include "util/disk_info.h"
124
#include "util/dns_cache.h"
125
#include "util/mem_info.h"
126
#include "util/parse_util.h"
127
#include "util/pretty_printer.h"
128
#include "util/threadpool.h"
129
#include "util/thrift_rpc_helper.h"
130
#include "util/timezone_utils.h"
131
132
// clang-format off
133
// this must after util/brpc_client_cache.h
134
// /doris/thirdparty/installed/include/brpc/errno.pb.h:69:3: error: expected identifier
135
//  EINTERNAL = 2001,
136
//   ^
137
//  /doris/thirdparty/installed/include/hadoop_hdfs/hdfs.h:61:19: note: expanded from macro 'EINTERNAL'
138
//  #define EINTERNAL 255
139
#include "io/fs/hdfs/hdfs_mgr.h"
140
#include "io/fs/packed_file_manager.h"
141
// clang-format on
142
143
namespace doris {
144
145
class PBackendService_Stub;
146
class PFunctionService_Stub;
147
148
// Warmup download rate limiter metrics
149
bvar::LatencyRecorder warmup_download_rate_limit_latency("warmup_download_rate_limit_latency");
150
bvar::Adder<int64_t> warmup_download_rate_limit_ns("warmup_download_rate_limit_ns");
151
bvar::Adder<int64_t> warmup_download_rate_limit_exceed_req_num(
152
        "warmup_download_rate_limit_exceed_req_num");
153
154
4
static void init_doris_metrics(const std::vector<StorePath>& store_paths) {
155
4
    bool init_system_metrics = config::enable_system_metrics;
156
4
    std::set<std::string> disk_devices;
157
4
    std::vector<std::string> network_interfaces;
158
4
    std::vector<std::string> paths;
159
6
    for (const auto& store_path : store_paths) {
160
6
        paths.emplace_back(store_path.path);
161
6
    }
162
4
    if (init_system_metrics) {
163
3
        auto st = DiskInfo::get_disk_devices(paths, &disk_devices);
164
3
        if (!st.ok()) {
165
0
            LOG(WARNING) << "get disk devices failed, status=" << st;
166
0
            return;
167
0
        }
168
3
        st = get_inet_interfaces(&network_interfaces, BackendOptions::is_bind_ipv6());
169
3
        if (!st.ok()) {
170
0
            LOG(WARNING) << "get inet interfaces failed, status=" << st;
171
0
            return;
172
0
        }
173
3
    }
174
4
    DorisMetrics::instance()->initialize(init_system_metrics, disk_devices, network_interfaces);
175
4
}
176
177
// Used to calculate the num of min thread and max thread based on the passed config
178
8
static std::pair<size_t, size_t> get_num_threads(size_t min_num, size_t max_num) {
179
8
    auto num_cores = doris::CpuInfo::num_cores();
180
8
    min_num = (min_num == 0) ? num_cores : min_num;
181
8
    max_num = (max_num == 0) ? num_cores : max_num;
182
8
    auto factor = max_num / min_num;
183
8
    min_num = std::min(num_cores * factor, min_num);
184
8
    max_num = std::min(min_num * factor, max_num);
185
8
    return {min_num, max_num};
186
8
}
187
188
18.4k
ThreadPool* ExecEnv::non_block_close_thread_pool() {
189
18.4k
    return _non_block_close_thread_pool.get();
190
18.4k
}
191
192
11
ExecEnv::ExecEnv() = default;
193
194
7
ExecEnv::~ExecEnv() {
195
7
    destroy();
196
7
}
197
198
Status ExecEnv::init(ExecEnv* env, const std::vector<StorePath>& store_paths,
199
                     const std::vector<StorePath>& spill_store_paths,
200
4
                     const std::set<std::string>& broken_paths) {
201
4
    return env->_init(store_paths, spill_store_paths, broken_paths);
202
4
}
203
204
// pick simdjson implementation based on CPU capabilities
205
4
inline void init_simdjson_parser() {
206
    // haswell: AVX2 (2013 Intel Haswell or later, all AMD Zen processors)
207
4
    const auto* haswell_implementation = simdjson::get_available_implementations()["haswell"];
208
4
    if (!haswell_implementation || !haswell_implementation->supported_by_runtime_system()) {
209
        // pick available implementation
210
0
        for (const auto* implementation : simdjson::get_available_implementations()) {
211
0
            if (implementation->supported_by_runtime_system()) {
212
0
                LOG(INFO) << "Using SimdJSON implementation : " << implementation->name() << ": "
213
0
                          << implementation->description();
214
0
                simdjson::get_active_implementation() = implementation;
215
0
                return;
216
0
            }
217
0
        }
218
0
        LOG(WARNING) << "No available SimdJSON implementation found.";
219
4
    } else {
220
4
        LOG(INFO) << "Using SimdJSON Haswell implementation";
221
4
    }
222
4
}
223
224
Status ExecEnv::_init(const std::vector<StorePath>& store_paths,
225
                      const std::vector<StorePath>& spill_store_paths,
226
4
                      const std::set<std::string>& broken_paths) {
227
    //Only init once before be destroyed
228
4
    if (ready()) {
229
0
        return Status::OK();
230
0
    }
231
4
    std::unordered_map<std::string, std::unique_ptr<SpillDataDir>> spill_store_map;
232
6
    for (const auto& spill_path : spill_store_paths) {
233
6
        spill_store_map.emplace(spill_path.path, std::make_unique<SpillDataDir>(
234
6
                                                         spill_path.path, spill_path.capacity_bytes,
235
6
                                                         spill_path.storage_medium));
236
6
    }
237
4
    init_doris_metrics(store_paths);
238
4
    _store_paths = store_paths;
239
4
    _tmp_file_dirs = std::make_unique<segment_v2::TmpFileDirs>(_store_paths);
240
4
    RETURN_IF_ERROR(_tmp_file_dirs->init());
241
4
    _user_function_cache = new UserFunctionCache();
242
4
    static_cast<void>(_user_function_cache->init(doris::config::user_function_dir));
243
4
    _external_scan_context_mgr = new ExternalScanContextMgr(this);
244
4
    set_stream_mgr(new doris::VDataStreamMgr());
245
4
    _result_mgr = new ResultBufferMgr();
246
4
    _result_queue_mgr = new ResultQueueMgr();
247
4
    _backend_client_cache = new BackendServiceClientCache(config::max_client_cache_size_per_host);
248
4
    _frontend_client_cache = new FrontendServiceClientCache(config::max_client_cache_size_per_host);
249
4
    _broker_client_cache = new BrokerServiceClientCache(config::max_client_cache_size_per_host);
250
251
4
    TimezoneUtils::load_timezones_to_cache();
252
253
4
    static_cast<void>(ThreadPoolBuilder("SendBatchThreadPool")
254
4
                              .set_min_threads(config::send_batch_thread_pool_thread_num)
255
4
                              .set_max_threads(config::send_batch_thread_pool_thread_num)
256
4
                              .set_max_queue_size(config::send_batch_thread_pool_queue_size)
257
4
                              .build(&_send_batch_thread_pool));
258
259
4
    static_cast<void>(ThreadPoolBuilder("UDFCloseWorkers")
260
4
                              .set_min_threads(4)
261
4
                              .set_max_threads(std::min(32, CpuInfo::num_cores()))
262
4
                              .build(&_udf_close_workers_thread_pool));
263
264
4
    auto [buffered_reader_min_threads, buffered_reader_max_threads] =
265
4
            get_num_threads(config::num_buffered_reader_prefetch_thread_pool_min_thread,
266
4
                            config::num_buffered_reader_prefetch_thread_pool_max_thread);
267
4
    static_cast<void>(ThreadPoolBuilder("BufferedReaderPrefetchThreadPool")
268
4
                              .set_min_threads(cast_set<int>(buffered_reader_min_threads))
269
4
                              .set_max_threads(cast_set<int>(buffered_reader_max_threads))
270
4
                              .build(&_buffered_reader_prefetch_thread_pool));
271
272
4
    static_cast<void>(ThreadPoolBuilder("SegmentPrefetchThreadPool")
273
4
                              .set_min_threads(cast_set<int>(
274
4
                                      config::segment_prefetch_thread_pool_thread_num_min))
275
4
                              .set_max_threads(cast_set<int>(
276
4
                                      config::segment_prefetch_thread_pool_thread_num_max))
277
4
                              .build(&_segment_prefetch_thread_pool));
278
279
4
    static_cast<void>(ThreadPoolBuilder("SendTableStatsThreadPool")
280
4
                              .set_min_threads(8)
281
4
                              .set_max_threads(32)
282
4
                              .build(&_send_table_stats_thread_pool));
283
284
4
    auto [s3_file_upload_min_threads, s3_file_upload_max_threads] =
285
4
            get_num_threads(config::num_s3_file_upload_thread_pool_min_thread,
286
4
                            config::num_s3_file_upload_thread_pool_max_thread);
287
4
    static_cast<void>(ThreadPoolBuilder("S3FileUploadThreadPool")
288
4
                              .set_min_threads(cast_set<int>(s3_file_upload_min_threads))
289
4
                              .set_max_threads(cast_set<int>(s3_file_upload_max_threads))
290
4
                              .build(&_s3_file_upload_thread_pool));
291
292
    // min num equal to fragment pool's min num
293
    // max num is useless because it will start as many as requested in the past
294
    // queue size is useless because the max thread num is very large
295
4
    static_cast<void>(ThreadPoolBuilder("LazyReleaseMemoryThreadPool")
296
4
                              .set_min_threads(1)
297
4
                              .set_max_threads(1)
298
4
                              .set_max_queue_size(1000000)
299
4
                              .build(&_lazy_release_obj_pool));
300
4
    static_cast<void>(ThreadPoolBuilder("NonBlockCloseThreadPool")
301
4
                              .set_min_threads(cast_set<int>(config::min_nonblock_close_thread_num))
302
4
                              .set_max_threads(cast_set<int>(config::max_nonblock_close_thread_num))
303
4
                              .build(&_non_block_close_thread_pool));
304
4
    static_cast<void>(ThreadPoolBuilder("S3FileSystemThreadPool")
305
4
                              .set_min_threads(config::min_s3_file_system_thread_num)
306
4
                              .set_max_threads(config::max_s3_file_system_thread_num)
307
4
                              .build(&_s3_file_system_thread_pool));
308
4
    RETURN_IF_ERROR(init_mem_env());
309
310
    // NOTE: runtime query statistics mgr could be visited by query and daemon thread
311
    // so it should be created before all query begin and deleted after all query and daemon thread stoppped
312
4
    _runtime_query_statistics_mgr = new RuntimeQueryStatisticsMgr();
313
4
    CgroupCpuCtl::init_doris_cgroup_path();
314
4
    _file_cache_open_fd_cache = std::make_unique<io::FDCache>();
315
4
    _file_cache_factory = new io::FileCacheFactory();
316
4
    std::vector<doris::CachePath> cache_paths;
317
4
    init_file_cache_factory(cache_paths);
318
4
    doris::io::BeConfDataDirReader::init_be_conf_data_dir(store_paths, spill_store_paths,
319
4
                                                          cache_paths);
320
4
    _init_runtime_filter_timer_queue();
321
322
4
    _workload_group_manager = new WorkloadGroupMgr();
323
324
4
    _fragment_mgr = new FragmentMgr(this);
325
4
    _result_cache = new ResultCache(config::query_cache_max_size_mb,
326
4
                                    config::query_cache_elasticity_size_mb);
327
4
    if (config::is_cloud_mode()) {
328
1
        _cluster_info = new CloudClusterInfo();
329
3
    } else {
330
3
        _cluster_info = new ClusterInfo();
331
3
    }
332
333
4
    _load_path_mgr = new LoadPathMgr(this);
334
4
    _bfd_parser = BfdParser::create();
335
4
    _broker_mgr = new BrokerMgr(this);
336
4
    _load_channel_mgr = new LoadChannelMgr();
337
4
    auto num_flush_threads = std::min(
338
4
            _store_paths.size() * config::flush_thread_num_per_store,
339
4
            static_cast<size_t>(CpuInfo::num_cores()) * config::max_flush_thread_num_per_cpu);
340
4
    _load_stream_mgr = std::make_unique<LoadStreamMgr>(num_flush_threads);
341
4
    _new_load_stream_mgr = NewLoadStreamMgr::create_unique();
342
4
    _internal_client_cache = new BrpcClientCache<PBackendService_Stub>();
343
4
    _streaming_client_cache =
344
4
            new BrpcClientCache<PBackendService_Stub>("baidu_std", "single", "streaming");
345
4
    _function_client_cache =
346
4
            new BrpcClientCache<PFunctionService_Stub>(config::function_service_protocol);
347
4
    if (config::is_cloud_mode()) {
348
1
        _stream_load_executor = CloudStreamLoadExecutor::create_unique(this);
349
3
    } else {
350
3
        _stream_load_executor = StreamLoadExecutor::create_unique(this);
351
3
    }
352
4
    _routine_load_task_executor = new RoutineLoadTaskExecutor(this);
353
4
    RETURN_IF_ERROR(_routine_load_task_executor->init(MemInfo::mem_limit()));
354
4
    _small_file_mgr = new SmallFileMgr(this, config::small_file_dir);
355
4
    _group_commit_mgr = new GroupCommitMgr(this);
356
4
    _cdc_client_mgr = new CdcClientMgr();
357
4
    _memtable_memory_limiter = std::make_unique<MemTableMemoryLimiter>();
358
4
    _load_stream_map_pool = std::make_unique<LoadStreamMapPool>();
359
4
    _delta_writer_v2_pool = std::make_unique<DeltaWriterV2Pool>();
360
4
    _wal_manager = WalManager::create_unique(this, config::group_commit_wal_path);
361
4
    _dns_cache = new DNSCache();
362
4
    _write_cooldown_meta_executors = std::make_unique<WriteCooldownMetaExecutors>();
363
364
4
    _spill_file_mgr = new SpillFileManager(std::move(spill_store_map));
365
4
    _kerberos_ticket_mgr = new kerberos::KerberosTicketMgr(config::kerberos_ccache_path);
366
4
    _hdfs_mgr = new io::HdfsMgr();
367
4
    _backend_client_cache->init_metrics("backend");
368
4
    _frontend_client_cache->init_metrics("frontend");
369
4
    _broker_client_cache->init_metrics("broker");
370
4
    static_cast<void>(_result_mgr->init());
371
4
    Status status = _load_path_mgr->init();
372
4
    if (!status.ok()) {
373
0
        LOG(ERROR) << "Load path mgr init failed. " << status;
374
0
        return status;
375
0
    }
376
4
    _broker_mgr->init();
377
4
    static_cast<void>(_small_file_mgr->init());
378
4
    if (!status.ok()) {
379
0
        LOG(ERROR) << "Scanner scheduler init failed. " << status;
380
0
        return status;
381
0
    }
382
383
4
    RETURN_IF_ERROR(_memtable_memory_limiter->init(MemInfo::mem_limit()));
384
4
    RETURN_IF_ERROR(_load_channel_mgr->init(MemInfo::mem_limit()));
385
4
    RETURN_IF_ERROR(_wal_manager->init());
386
4
    _heartbeat_flags = new HeartbeatFlags();
387
388
4
    _tablet_schema_cache =
389
4
            TabletSchemaCache::create_global_schema_cache(config::tablet_schema_cache_capacity);
390
391
4
    _tablet_column_object_pool = TabletColumnObjectPool::create_global_column_cache(
392
4
            config::tablet_schema_cache_capacity);
393
394
    // Storage engine
395
4
    doris::EngineOptions options;
396
4
    options.store_paths = store_paths;
397
4
    options.broken_paths = broken_paths;
398
4
    options.backend_uid = doris::UniqueId::gen_uid();
399
    // Check if the startup mode has been modified
400
4
    RETURN_IF_ERROR(_check_deploy_mode());
401
4
    if (config::is_cloud_mode()) {
402
1
        std::cout << "start BE in cloud mode, cloud_unique_id: " << config::cloud_unique_id
403
1
                  << ", meta_service_endpoint: " << config::meta_service_endpoint << std::endl;
404
1
        _storage_engine = std::make_unique<CloudStorageEngine>(options);
405
3
    } else {
406
3
        std::cout << "start BE in local mode" << std::endl;
407
3
        _storage_engine = std::make_unique<StorageEngine>(options);
408
3
    }
409
4
    auto st = _storage_engine->open();
410
4
    if (!st.ok()) {
411
0
        LOG(ERROR) << "Fail to open StorageEngine, res=" << st;
412
0
        return st;
413
0
    }
414
4
    _storage_engine->set_heartbeat_flags(this->heartbeat_flags());
415
4
    if (st = _storage_engine->start_bg_threads(nullptr); !st.ok()) {
416
0
        LOG(ERROR) << "Failed to starge bg threads of storage engine, res=" << st;
417
0
        return st;
418
0
    }
419
420
    // should start after storage_engine->open()
421
4
    _stream_load_recorder_manager = new StreamLoadRecorderManager();
422
4
    _stream_load_recorder_manager->start();
423
424
    // create internal workload group should be after storage_engin->open()
425
4
    RETURN_IF_ERROR(_create_internal_workload_group());
426
4
    _workload_sched_mgr = new WorkloadSchedPolicyMgr();
427
4
    _workload_sched_mgr->start(this);
428
429
    // Initialize packed file manager
430
4
    _packed_file_manager = io::PackedFileManager::instance();
431
4
    if (config::is_cloud_mode()) {
432
1
        RETURN_IF_ERROR(_packed_file_manager->init());
433
1
        _packed_file_manager->start_background_manager();
434
435
        // Start cluster info background worker for compaction read-write separation
436
1
        static_cast<CloudClusterInfo*>(_cluster_info)->start_bg_worker();
437
438
        // Initialize MS RPC rate limiters and table-level backpressure handling.
439
1
        _ms_rpc_rate_limit_services = std::make_unique<MSRpcRateLimitServices>();
440
1
        static_cast<CloudStorageEngine*>(_storage_engine.get())
441
1
                ->meta_mgr()
442
1
                .set_host_level_ms_rpc_rate_limiters(
443
1
                        _ms_rpc_rate_limit_services->host_level_ms_rpc_rate_limiters());
444
1
        static_cast<CloudStorageEngine*>(_storage_engine.get())
445
1
                ->meta_mgr()
446
1
                .set_ms_backpressure_handler(
447
1
                        _ms_rpc_rate_limit_services->ms_backpressure_handler());
448
1
    }
449
450
4
    _index_policy_mgr = new IndexPolicyMgr();
451
452
    // Initialize warmup download rate limiter for cloud mode
453
    // Always create the rate limiter in cloud mode to support dynamic rate limit changes
454
4
    if (config::is_cloud_mode()) {
455
1
        int64_t rate_limit = config::file_cache_warmup_download_rate_limit_bytes_per_second;
456
        // When rate_limit <= 0, pass 0 to disable rate limiting
457
1
        int64_t rate = rate_limit > 0 ? rate_limit : 0;
458
        // max_burst is the same as rate (1 second burst)
459
        // limit is 0 which means no total limit
460
        // When rate is 0, S3RateLimiter will not throttle (no rate limiting)
461
1.73k
        _warmup_download_rate_limiter = new S3RateLimiterHolder(rate, rate, 0, [&](int64_t ns) {
462
1.73k
            if (ns > 0) {
463
0
                warmup_download_rate_limit_latency << ns / 1000;
464
0
                warmup_download_rate_limit_ns << ns;
465
0
                warmup_download_rate_limit_exceed_req_num << 1;
466
0
            }
467
1.73k
        });
468
1
    }
469
470
4
    RETURN_IF_ERROR(_spill_file_mgr->init());
471
4
    RETURN_IF_ERROR(_runtime_query_statistics_mgr->start_report_thread());
472
4
    _dict_factory = new doris::DictionaryFactory();
473
4
    _s_ready = true;
474
475
4
    init_simdjson_parser();
476
477
    // Make aws-sdk-cpp InitAPI and ShutdownAPI called in the same thread
478
4
    S3ClientFactory::instance();
479
4
    return Status::OK();
480
4
}
481
482
// when user not sepcify a workload group in FE, then query could
483
// use dummy workload group.
484
4
Status ExecEnv::_create_internal_workload_group() {
485
4
    LOG(INFO) << "begin create internal workload group.";
486
487
4
    RETURN_IF_ERROR(_workload_group_manager->create_internal_wg());
488
4
    return Status::OK();
489
4
}
490
491
6
void ExecEnv::_init_runtime_filter_timer_queue() {
492
6
    _runtime_filter_timer_queue = new doris::RuntimeFilterTimerQueue();
493
6
    _runtime_filter_timer_queue->run();
494
6
}
495
496
4
void ExecEnv::init_file_cache_factory(std::vector<doris::CachePath>& cache_paths) {
497
    // Load file cache before starting up daemon threads to make sure StorageEngine is read.
498
4
    if (!config::enable_file_cache) {
499
2
        if (config::is_cloud_mode()) {
500
0
            LOG(FATAL) << "Cloud mode requires to enable file cache, plz set "
501
0
                          "config::enable_file_cache "
502
0
                          "= true";
503
0
            exit(-1);
504
0
        }
505
2
        return;
506
2
    }
507
2
    if (config::file_cache_each_block_size > config::s3_write_buffer_size ||
508
2
        config::s3_write_buffer_size % config::file_cache_each_block_size != 0) {
509
0
        LOG_FATAL(
510
0
                "The config file_cache_each_block_size {} must less than or equal to config "
511
0
                "s3_write_buffer_size {} and config::s3_write_buffer_size % "
512
0
                "config::file_cache_each_block_size must be zero",
513
0
                config::file_cache_each_block_size, config::s3_write_buffer_size);
514
0
        exit(-1);
515
0
    }
516
2
    std::unordered_set<std::string> cache_path_set;
517
2
    Status rest = doris::parse_conf_cache_paths(doris::config::file_cache_path, cache_paths);
518
2
    if (!rest) {
519
0
        throw Exception(
520
0
                Status::FatalError("parse config file cache path failed, path={}, reason={}",
521
0
                                   doris::config::file_cache_path, rest.msg()));
522
0
    }
523
524
2
    doris::Status cache_status;
525
3
    for (auto& cache_path : cache_paths) {
526
3
        if (cache_path_set.find(cache_path.path) != cache_path_set.end()) {
527
0
            LOG(WARNING) << fmt::format("cache path {} is duplicate", cache_path.path);
528
0
            continue;
529
0
        }
530
531
3
        cache_status = doris::io::FileCacheFactory::instance()->create_file_cache(
532
3
                cache_path.path, cache_path.init_settings());
533
3
        if (!cache_status.ok()) {
534
0
            if (!doris::config::ignore_broken_disk) {
535
0
                throw Exception(
536
0
                        Status::FatalError("failed to init file cache, err: {}", cache_status));
537
0
            }
538
0
            LOG(WARNING) << "failed to init file cache, err: " << cache_status;
539
0
        }
540
3
        cache_path_set.emplace(cache_path.path);
541
3
    }
542
2
}
543
544
4
Status ExecEnv::init_mem_env() {
545
4
    bool is_percent = false;
546
4
    std::stringstream ss;
547
    // 1. init mem tracker
548
4
    _process_profile = ProcessProfile::create_global_instance();
549
4
    _heap_profiler = HeapProfiler::create_global_instance();
550
4
    init_mem_tracker();
551
4
    thread_context()->thread_mem_tracker_mgr->init();
552
553
4
    if (!BitUtil::IsPowerOf2(config::min_buffer_size)) {
554
0
        ss << "Config min_buffer_size must be a power-of-two: " << config::min_buffer_size;
555
0
        return Status::InternalError(ss.str());
556
0
    }
557
558
4
    _id_manager = new IdManager();
559
4
    _cache_manager = CacheManager::create_global_instance();
560
561
4
    int64_t storage_cache_limit =
562
4
            ParseUtil::parse_mem_spec(config::storage_page_cache_limit, MemInfo::mem_limit(),
563
4
                                      MemInfo::physical_mem(), &is_percent);
564
4
    while (!is_percent && storage_cache_limit > MemInfo::mem_limit() / 2) {
565
0
        storage_cache_limit = storage_cache_limit / 2;
566
0
    }
567
4
    int32_t index_percentage = config::index_page_cache_percentage;
568
4
    int32_t num_shards = config::storage_page_cache_shard_size;
569
4
    if ((num_shards & (num_shards - 1)) != 0) {
570
0
        int old_num_shards = num_shards;
571
0
        num_shards = cast_set<int>(BitUtil::RoundUpToPowerOfTwo(num_shards));
572
0
        LOG(WARNING) << "num_shards should be power of two, but got " << old_num_shards
573
0
                     << ". Rounded up to " << num_shards
574
0
                     << ". Please modify the 'storage_page_cache_shard_size' parameter in your "
575
0
                        "conf file to be a power of two for better performance.";
576
0
    }
577
4
    if (storage_cache_limit < num_shards * 2) {
578
0
        LOG(WARNING) << "storage_cache_limit(" << storage_cache_limit << ") less than num_shards("
579
0
                     << num_shards
580
0
                     << ") * 2, cache capacity will be 0, continuing to use "
581
0
                        "cache will only have negative effects, will be disabled.";
582
0
    }
583
4
    int64_t pk_storage_page_cache_limit =
584
4
            ParseUtil::parse_mem_spec(config::pk_storage_page_cache_limit, MemInfo::mem_limit(),
585
4
                                      MemInfo::physical_mem(), &is_percent);
586
4
    while (!is_percent && pk_storage_page_cache_limit > MemInfo::mem_limit() / 2) {
587
0
        pk_storage_page_cache_limit = storage_cache_limit / 2;
588
0
    }
589
4
    _storage_page_cache = StoragePageCache::create_global_cache(
590
4
            storage_cache_limit, index_percentage, pk_storage_page_cache_limit, num_shards);
591
4
    LOG(INFO) << "Storage page cache memory limit: "
592
4
              << PrettyPrinter::print(storage_cache_limit, TUnit::BYTES)
593
4
              << ", origin config value: " << config::storage_page_cache_limit;
594
595
    // Init ANN index IVF list cache (dedicated cache for IVF on disk)
596
4
    {
597
4
        int64_t ann_cache_limit = ParseUtil::parse_mem_spec(config::ann_index_ivf_list_cache_limit,
598
4
                                                            MemInfo::mem_limit(),
599
4
                                                            MemInfo::physical_mem(), &is_percent);
600
4
        while (!is_percent && ann_cache_limit > MemInfo::mem_limit() / 2) {
601
0
            ann_cache_limit = ann_cache_limit / 2;
602
0
        }
603
4
        _ann_index_ivf_list_cache = AnnIndexIVFListCache::create_global_cache(ann_cache_limit);
604
4
        LOG(INFO) << "ANN index IVF list cache memory limit: "
605
4
                  << PrettyPrinter::print(ann_cache_limit, TUnit::BYTES)
606
4
                  << ", origin config value: " << config::ann_index_ivf_list_cache_limit;
607
4
    }
608
609
    // Init row cache
610
4
    int64_t row_cache_mem_limit =
611
4
            ParseUtil::parse_mem_spec(config::row_cache_mem_limit, MemInfo::mem_limit(),
612
4
                                      MemInfo::physical_mem(), &is_percent);
613
4
    while (!is_percent && row_cache_mem_limit > MemInfo::mem_limit() / 2) {
614
        // Reason same as buffer_pool_limit
615
0
        row_cache_mem_limit = row_cache_mem_limit / 2;
616
0
    }
617
4
    _row_cache = RowCache::create_global_cache(row_cache_mem_limit);
618
4
    LOG(INFO) << "Row cache memory limit: "
619
4
              << PrettyPrinter::print(row_cache_mem_limit, TUnit::BYTES)
620
4
              << ", origin config value: " << config::row_cache_mem_limit;
621
622
4
    uint64_t fd_number = config::min_file_descriptor_number;
623
4
    struct rlimit l;
624
4
    int ret = getrlimit(RLIMIT_NOFILE, &l);
625
4
    if (ret != 0) {
626
0
        LOG(WARNING) << "call getrlimit() failed. errno=" << strerror(errno)
627
0
                     << ", use default configuration instead.";
628
4
    } else {
629
4
        fd_number = static_cast<uint64_t>(l.rlim_cur);
630
4
    }
631
632
4
    int64_t segment_cache_capacity = 0;
633
4
    if (config::is_cloud_mode()) {
634
        // when in cloud mode, segment cache hold no system FD
635
        // thus the FD num limit makes no sense
636
        // cloud mode use FDCache to control FD
637
1
        segment_cache_capacity = UINT32_MAX;
638
3
    } else {
639
        // SegmentLoader caches segments in rowset granularity. So the size of
640
        // opened files will greater than segment_cache_capacity.
641
3
        segment_cache_capacity = config::segment_cache_capacity;
642
3
        int64_t segment_cache_fd_limit = fd_number / 100 * config::segment_cache_fd_percentage;
643
3
        if (segment_cache_capacity < 0 || segment_cache_capacity > segment_cache_fd_limit) {
644
3
            segment_cache_capacity = segment_cache_fd_limit;
645
3
        }
646
3
    }
647
648
4
    int64_t segment_cache_mem_limit =
649
4
            MemInfo::mem_limit() / 100 * config::segment_cache_memory_percentage;
650
651
4
    _segment_loader = new SegmentLoader(segment_cache_mem_limit, segment_cache_capacity);
652
4
    LOG(INFO) << "segment_cache_capacity <= fd_number * 1 / 5, fd_number: " << fd_number
653
4
              << " segment_cache_capacity: " << segment_cache_capacity
654
4
              << " min_segment_cache_mem_limit " << segment_cache_mem_limit;
655
656
4
    size_t block_file_cache_fd_cache_size =
657
4
            std::min((uint64_t)config::file_cache_max_file_reader_cache_size, fd_number / 3);
658
4
    LOG(INFO) << "max file reader cache size is: " << block_file_cache_fd_cache_size
659
4
              << ", resource hard limit is: " << fd_number
660
4
              << ", config file_cache_max_file_reader_cache_size is: "
661
4
              << config::file_cache_max_file_reader_cache_size;
662
4
    config::file_cache_max_file_reader_cache_size = block_file_cache_fd_cache_size;
663
664
4
    _file_meta_cache = new FileMetaCache(config::max_external_file_meta_cache_num);
665
666
4
    _lookup_connection_cache =
667
4
            LookupConnectionCache::create_global_instance(config::lookup_connection_cache_capacity);
668
669
    // use memory limit
670
4
    int64_t inverted_index_cache_limit =
671
4
            ParseUtil::parse_mem_spec(config::inverted_index_searcher_cache_limit,
672
4
                                      MemInfo::mem_limit(), MemInfo::physical_mem(), &is_percent);
673
4
    while (!is_percent && inverted_index_cache_limit > MemInfo::mem_limit() / 2) {
674
        // Reason same as buffer_pool_limit
675
0
        inverted_index_cache_limit = inverted_index_cache_limit / 2;
676
0
    }
677
4
    _inverted_index_searcher_cache =
678
4
            InvertedIndexSearcherCache::create_global_instance(inverted_index_cache_limit, 256);
679
4
    LOG(INFO) << "Inverted index searcher cache memory limit: "
680
4
              << PrettyPrinter::print(inverted_index_cache_limit, TUnit::BYTES)
681
4
              << ", origin config value: " << config::inverted_index_searcher_cache_limit;
682
683
    // use memory limit
684
4
    int64_t inverted_index_query_cache_limit =
685
4
            ParseUtil::parse_mem_spec(config::inverted_index_query_cache_limit,
686
4
                                      MemInfo::mem_limit(), MemInfo::physical_mem(), &is_percent);
687
4
    while (!is_percent && inverted_index_query_cache_limit > MemInfo::mem_limit() / 2) {
688
        // Reason same as buffer_pool_limit
689
0
        inverted_index_query_cache_limit = inverted_index_query_cache_limit / 2;
690
0
    }
691
4
    _inverted_index_query_cache = InvertedIndexQueryCache::create_global_cache(
692
4
            inverted_index_query_cache_limit, config::inverted_index_query_cache_shards);
693
4
    LOG(INFO) << "Inverted index query match cache memory limit: "
694
4
              << PrettyPrinter::print(inverted_index_query_cache_limit, TUnit::BYTES)
695
4
              << ", origin config value: " << config::inverted_index_query_cache_limit;
696
697
    // ANN index topn result cache
698
4
    int64_t ann_topn_cache_limit =
699
4
            ParseUtil::parse_mem_spec(config::ann_index_result_cache_limit, MemInfo::mem_limit(),
700
4
                                      MemInfo::physical_mem(), &is_percent);
701
4
    _ann_index_result_cache =
702
4
            segment_v2::AnnIndexResultCache::create_global_cache(ann_topn_cache_limit);
703
4
    LOG(INFO) << "ANN index topn result cache memory limit: "
704
4
              << PrettyPrinter::print(ann_topn_cache_limit, TUnit::BYTES)
705
4
              << ", origin config value: " << config::ann_index_result_cache_limit;
706
707
    // use memory limit
708
4
    int64_t condition_cache_limit = config::condition_cache_limit * 1024L * 1024L;
709
4
    _condition_cache = ConditionCache::create_global_cache(condition_cache_limit);
710
4
    LOG(INFO) << "Condition cache memory limit: "
711
4
              << PrettyPrinter::print(condition_cache_limit, TUnit::BYTES)
712
4
              << ", origin config value: " << config::condition_cache_limit;
713
714
    // Initialize encoding info resolver
715
4
    _encoding_info_resolver = new segment_v2::EncodingInfoResolver();
716
717
    // init orc memory pool
718
4
    _orc_memory_pool = new doris::ORCMemoryPool();
719
4
    _arrow_memory_pool = new doris::ArrowMemoryPool();
720
721
4
    _query_cache = QueryCache::create_global_cache(config::query_cache_size * 1024L * 1024L);
722
4
    LOG(INFO) << "query cache memory limit: " << config::query_cache_size << "MB";
723
724
    // The default delete bitmap cache is set to 100MB,
725
    // which can be insufficient and cause performance issues when the amount of user data is large.
726
    // To mitigate the problem of an inadequate cache,
727
    // we will take the larger of 0.5% of the total memory and 100MB as the delete bitmap cache size.
728
4
    int64_t delete_bitmap_agg_cache_cache_limit =
729
4
            ParseUtil::parse_mem_spec(config::delete_bitmap_dynamic_agg_cache_limit,
730
4
                                      MemInfo::mem_limit(), MemInfo::physical_mem(), &is_percent);
731
4
    _delete_bitmap_agg_cache = DeleteBitmapAggCache::create_instance(std::max(
732
4
            delete_bitmap_agg_cache_cache_limit, config::delete_bitmap_agg_cache_capacity));
733
734
4
    return Status::OK();
735
4
}
736
737
5
void ExecEnv::init_mem_tracker() {
738
5
    mem_tracker_limiter_pool.resize(MEM_TRACKER_GROUP_NUM,
739
5
                                    TrackerLimiterGroup()); // before all mem tracker init.
740
5
    _s_tracking_memory = true;
741
5
    _orphan_mem_tracker =
742
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::GLOBAL, "Orphan");
743
5
    _brpc_iobuf_block_memory_tracker =
744
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::GLOBAL, "IOBufBlockMemory");
745
5
    _segcompaction_mem_tracker =
746
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::COMPACTION, "SegCompaction");
747
5
    _tablets_no_cache_mem_tracker = MemTrackerLimiter::create_shared(
748
5
            MemTrackerLimiter::Type::METADATA, "Tablets(not in TabletSchemaCache)");
749
5
    _segments_no_cache_mem_tracker = MemTrackerLimiter::create_shared(
750
5
            MemTrackerLimiter::Type::METADATA, "Segments(not in SegmentCache)");
751
5
    _rowsets_no_cache_mem_tracker =
752
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::METADATA, "Rowsets");
753
5
    _point_query_executor_mem_tracker =
754
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::GLOBAL, "PointQueryExecutor");
755
5
    _query_cache_mem_tracker =
756
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::CACHE, "QueryCache");
757
5
    _block_compression_mem_tracker =
758
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::GLOBAL, "BlockCompression");
759
5
    _rowid_storage_reader_tracker =
760
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::GLOBAL, "RowIdStorageReader");
761
5
    _subcolumns_tree_tracker =
762
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::GLOBAL, "SubcolumnsTree");
763
5
    _s3_file_buffer_tracker =
764
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::GLOBAL, "S3FileBuffer");
765
5
    _stream_load_pipe_tracker =
766
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::LOAD, "StreamLoadPipe");
767
5
    _parquet_meta_tracker =
768
5
            MemTrackerLimiter::create_shared(MemTrackerLimiter::Type::METADATA, "ParquetMeta");
769
5
}
770
771
4
Status ExecEnv::_check_deploy_mode() {
772
6
    for (auto _path : _store_paths) {
773
6
        auto deploy_mode_path = fmt::format("{}/{}", _path.path, DEPLOY_MODE_PREFIX);
774
6
        std::string expected_mode = doris::config::is_cloud_mode() ? "cloud" : "local";
775
6
        bool exists = false;
776
6
        RETURN_IF_ERROR(io::global_local_filesystem()->exists(deploy_mode_path, &exists));
777
6
        if (exists) {
778
            // check if is ok
779
5
            io::FileReaderSPtr reader;
780
5
            RETURN_IF_ERROR(io::global_local_filesystem()->open_file(deploy_mode_path, &reader));
781
5
            size_t fsize = reader->size();
782
5
            if (fsize > 0) {
783
5
                std::string actual_mode;
784
5
                actual_mode.resize(fsize, '\0');
785
5
                size_t bytes_read = 0;
786
5
                RETURN_IF_ERROR(reader->read_at(0, {actual_mode.data(), fsize}, &bytes_read));
787
5
                DCHECK_EQ(fsize, bytes_read);
788
5
                if (expected_mode != actual_mode) {
789
0
                    return Status::InternalError(
790
0
                            "You can't switch deploy mode from {} to {}, "
791
0
                            "maybe you need to check be.conf\n",
792
0
                            actual_mode.c_str(), expected_mode.c_str());
793
0
                }
794
5
                LOG(INFO) << "The current deployment mode is " << expected_mode << ".";
795
5
            }
796
5
        } else {
797
1
            io::FileWriterPtr file_writer;
798
1
            RETURN_IF_ERROR(
799
1
                    io::global_local_filesystem()->create_file(deploy_mode_path, &file_writer));
800
1
            RETURN_IF_ERROR(file_writer->append(expected_mode));
801
1
            RETURN_IF_ERROR(file_writer->close());
802
1
            LOG(INFO) << "The file deploy_mode doesn't exist, create it.";
803
1
            auto cluster_id_path = fmt::format("{}/{}", _path.path, CLUSTER_ID_PREFIX);
804
1
            RETURN_IF_ERROR(io::global_local_filesystem()->exists(cluster_id_path, &exists));
805
1
            if (exists) {
806
0
                LOG(WARNING) << "This may be an upgrade from old version,"
807
0
                             << "or the deploy_mode file has been manually deleted";
808
0
            }
809
1
        }
810
6
    }
811
4
    return Status::OK();
812
4
}
813
814
#ifdef BE_TEST
815
void ExecEnv::set_new_load_stream_mgr(std::unique_ptr<NewLoadStreamMgr>&& new_load_stream_mgr) {
816
    this->_new_load_stream_mgr = std::move(new_load_stream_mgr);
817
}
818
819
void ExecEnv::clear_new_load_stream_mgr() {
820
    this->_new_load_stream_mgr.reset();
821
}
822
823
void ExecEnv::set_stream_load_executor(std::unique_ptr<StreamLoadExecutor>&& stream_load_executor) {
824
    this->_stream_load_executor = std::move(stream_load_executor);
825
}
826
827
void ExecEnv::clear_stream_load_executor() {
828
    this->_stream_load_executor.reset();
829
}
830
831
void ExecEnv::set_wal_mgr(std::unique_ptr<WalManager>&& wm) {
832
    this->_wal_manager = std::move(wm);
833
}
834
void ExecEnv::clear_wal_mgr() {
835
    this->_wal_manager.reset();
836
}
837
#endif
838
// TODO(zhiqiang): Need refactor all thread pool. Each thread pool must have a Stop method.
839
// We need to stop all threads before releasing resource.
840
12
void ExecEnv::destroy() {
841
    //Only destroy once after init
842
12
    if (!ready()) {
843
8
        return;
844
8
    }
845
    // Memory barrier to prevent other threads from accessing destructed resources
846
4
    _s_ready = false;
847
848
4
    SAFE_STOP(_wal_manager);
849
4
    _wal_manager.reset();
850
4
    SAFE_STOP(_load_channel_mgr);
851
4
    SAFE_STOP(_broker_mgr);
852
4
    SAFE_STOP(_load_path_mgr);
853
4
    SAFE_STOP(_result_mgr);
854
4
    SAFE_STOP(_group_commit_mgr);
855
    // _routine_load_task_executor should be stopped before _new_load_stream_mgr.
856
4
    SAFE_STOP(_routine_load_task_executor);
857
4
    SAFE_STOP(_stream_load_recorder_manager);
858
    // stop workload scheduler
859
4
    SAFE_STOP(_workload_sched_mgr);
860
    // stop pipline step 2, cgroup execution
861
4
    SAFE_STOP(_workload_group_manager);
862
863
4
    SAFE_STOP(_external_scan_context_mgr);
864
4
    SAFE_STOP(_fragment_mgr);
865
4
    SAFE_STOP(_runtime_filter_timer_queue);
866
    // NewLoadStreamMgr should be destoried before storage_engine & after fragment_mgr stopped.
867
4
    _load_stream_mgr.reset();
868
4
    _new_load_stream_mgr.reset();
869
4
    _stream_load_executor.reset();
870
4
    _memtable_memory_limiter.reset();
871
4
    _delta_writer_v2_pool.reset();
872
4
    _load_stream_map_pool.reset();
873
4
    SAFE_STOP(_write_cooldown_meta_executors);
874
875
    // _id_manager must be destoried before tablet schema cache
876
4
    SAFE_DELETE(_id_manager);
877
878
    // Stop cluster info background worker before storage engine is destroyed
879
4
    if (config::is_cloud_mode() && _cluster_info) {
880
0
        static_cast<CloudClusterInfo*>(_cluster_info)->stop_bg_worker();
881
0
    }
882
883
    // StorageEngine must be destoried before _cache_manager destory.
884
4
    SAFE_STOP(_storage_engine);
885
4
    _storage_engine.reset();
886
887
4
    SAFE_STOP(_spill_file_mgr);
888
4
    if (_runtime_query_statistics_mgr) {
889
0
        _runtime_query_statistics_mgr->stop_report_thread();
890
0
    }
891
4
    SAFE_SHUTDOWN(_buffered_reader_prefetch_thread_pool);
892
4
    SAFE_SHUTDOWN(_segment_prefetch_thread_pool);
893
4
    SAFE_SHUTDOWN(_s3_file_upload_thread_pool);
894
4
    SAFE_SHUTDOWN(_lazy_release_obj_pool);
895
4
    SAFE_SHUTDOWN(_non_block_close_thread_pool);
896
4
    SAFE_SHUTDOWN(_s3_file_system_thread_pool);
897
4
    SAFE_SHUTDOWN(_send_batch_thread_pool);
898
4
    SAFE_SHUTDOWN(_udf_close_workers_thread_pool);
899
4
    SAFE_SHUTDOWN(_send_table_stats_thread_pool);
900
901
4
    SAFE_DELETE(_load_channel_mgr);
902
903
4
    SAFE_DELETE(_inverted_index_query_cache);
904
4
    SAFE_DELETE(_inverted_index_searcher_cache);
905
4
    SAFE_DELETE(_condition_cache);
906
4
    SAFE_DELETE(_encoding_info_resolver);
907
4
    SAFE_DELETE(_lookup_connection_cache);
908
4
    SAFE_DELETE(_segment_loader);
909
4
    SAFE_DELETE(_row_cache);
910
4
    SAFE_DELETE(_query_cache);
911
4
    SAFE_DELETE(_delete_bitmap_agg_cache);
912
913
    // Free resource after threads are stopped.
914
    // Some threads are still running, like threads created by _new_load_stream_mgr ...
915
4
    SAFE_DELETE(_tablet_schema_cache);
916
4
    SAFE_DELETE(_tablet_column_object_pool);
917
918
    // _storage_page_cache must be destoried before _cache_manager
919
4
    SAFE_DELETE(_ann_index_ivf_list_cache);
920
4
    SAFE_DELETE(_storage_page_cache);
921
922
4
    SAFE_DELETE(_small_file_mgr);
923
4
    SAFE_DELETE(_broker_mgr);
924
4
    SAFE_DELETE(_load_path_mgr);
925
4
    SAFE_DELETE(_result_mgr);
926
4
    SAFE_DELETE(_file_meta_cache);
927
4
    SAFE_DELETE(_group_commit_mgr);
928
4
    SAFE_DELETE(_cdc_client_mgr);
929
4
    SAFE_DELETE(_routine_load_task_executor);
930
4
    SAFE_DELETE(_stream_load_recorder_manager);
931
    // _stream_load_executor
932
4
    SAFE_DELETE(_function_client_cache);
933
4
    SAFE_DELETE(_streaming_client_cache);
934
4
    SAFE_DELETE(_internal_client_cache);
935
936
4
    SAFE_DELETE(_bfd_parser);
937
4
    SAFE_DELETE(_result_cache);
938
4
    SAFE_DELETE(_vstream_mgr);
939
    // When _vstream_mgr is deconstructed, it will try call query context's dctor and will
940
    // access spill stream mgr, so spill stream mgr should be deconstructed after data stream manager
941
4
    SAFE_DELETE(_spill_file_mgr);
942
4
    SAFE_DELETE(_fragment_mgr);
943
4
    SAFE_DELETE(_workload_sched_mgr);
944
4
    SAFE_DELETE(_workload_group_manager);
945
4
    SAFE_DELETE(_file_cache_factory);
946
4
    SAFE_DELETE(_runtime_filter_timer_queue);
947
4
    SAFE_DELETE(_dict_factory);
948
    // TODO(zhiqiang): Maybe we should call shutdown before release thread pool?
949
4
    _lazy_release_obj_pool.reset(nullptr);
950
4
    _non_block_close_thread_pool.reset(nullptr);
951
4
    _s3_file_system_thread_pool.reset(nullptr);
952
4
    _send_table_stats_thread_pool.reset(nullptr);
953
4
    _buffered_reader_prefetch_thread_pool.reset(nullptr);
954
4
    _segment_prefetch_thread_pool.reset(nullptr);
955
4
    _s3_file_upload_thread_pool.reset(nullptr);
956
4
    _send_batch_thread_pool.reset(nullptr);
957
4
    _udf_close_workers_thread_pool.reset(nullptr);
958
4
    _write_cooldown_meta_executors.reset(nullptr);
959
960
4
    SAFE_DELETE(_broker_client_cache);
961
4
    SAFE_DELETE(_frontend_client_cache);
962
4
    SAFE_DELETE(_backend_client_cache);
963
4
    SAFE_DELETE(_result_queue_mgr);
964
965
4
    SAFE_DELETE(_external_scan_context_mgr);
966
4
    SAFE_DELETE(_user_function_cache);
967
968
    // cache_manager must be destoried after all cache.
969
    // https://github.com/apache/doris/issues/24082#issuecomment-1712544039
970
4
    SAFE_DELETE(_cache_manager);
971
4
    _file_cache_open_fd_cache.reset(nullptr);
972
973
    // _heartbeat_flags must be destoried after staroge engine
974
4
    SAFE_DELETE(_heartbeat_flags);
975
976
    // Master Info is a thrift object, it could be the last one to deconstruct.
977
    // Master info should be deconstruct later than fragment manager, because fragment will
978
    // access cluster_info.backend_id to access some info. If there is a running query and master
979
    // info is deconstructed then BE process will core at coordinator back method in fragment mgr.
980
4
    SAFE_DELETE(_cluster_info);
981
982
    // NOTE: runtime query statistics mgr could be visited by query and daemon thread
983
    // so it should be created before all query begin and deleted after all query and daemon thread stoppped
984
4
    SAFE_DELETE(_runtime_query_statistics_mgr);
985
986
4
    SAFE_DELETE(_arrow_memory_pool);
987
988
4
    SAFE_DELETE(_orc_memory_pool);
989
990
    // dns cache is a global instance and need to be released at last
991
4
    SAFE_DELETE(_dns_cache);
992
4
    SAFE_DELETE(_kerberos_ticket_mgr);
993
4
    SAFE_DELETE(_hdfs_mgr);
994
    // PackedFileManager is a singleton, just stop its background thread
995
4
    if (_packed_file_manager) {
996
0
        _packed_file_manager->stop_background_manager();
997
0
        _packed_file_manager = nullptr;
998
0
    }
999
1000
4
    SAFE_DELETE(_process_profile);
1001
4
    SAFE_DELETE(_heap_profiler);
1002
1003
4
    SAFE_DELETE(_index_policy_mgr);
1004
4
    SAFE_DELETE(_warmup_download_rate_limiter);
1005
1006
4
    _s_tracking_memory = false;
1007
1008
4
    clear_storage_resource();
1009
4
    PythonServerManager::instance().shutdown();
1010
4
    LOG(INFO) << "Doris exec envorinment is destoried.";
1011
4
}
1012
1013
} // namespace doris
1014
1015
namespace doris::config {
1016
namespace {
1017
1018
0
void refresh_ms_rpc_rate_limiters() {
1019
0
    auto* services = ExecEnv::GetInstance()->ms_rpc_rate_limit_services();
1020
0
    if (services != nullptr) {
1021
0
        services->reset_host_level_rate_limiters();
1022
0
    }
1023
0
}
1024
1025
0
void refresh_ms_backpressure_throttle_params() {
1026
0
    auto* services = ExecEnv::GetInstance()->ms_rpc_rate_limit_services();
1027
0
    if (services != nullptr) {
1028
0
        services->update_backpressure_throttle_params(ms_backpressure_upgrade_top_k,
1029
0
                                                      ms_backpressure_throttle_ratio,
1030
0
                                                      ms_rpc_table_qps_limit_floor);
1031
0
    }
1032
0
}
1033
1034
0
void refresh_ms_backpressure_coordinator_params() {
1035
0
    auto* services = ExecEnv::GetInstance()->ms_rpc_rate_limit_services();
1036
0
    if (services != nullptr) {
1037
0
        services->update_backpressure_coordinator_params(ms_backpressure_upgrade_interval_ms,
1038
0
                                                         ms_backpressure_downgrade_interval_ms);
1039
0
    }
1040
0
}
1041
1042
} // namespace
1043
1044
// Callback to update warmup download rate limiter when config changes is registered
1045
DEFINE_ON_UPDATE(file_cache_warmup_download_rate_limit_bytes_per_second,
1046
                 [](int64_t old_val, int64_t new_val) {
1047
                     auto* rate_limiter = ExecEnv::GetInstance()->warmup_download_rate_limiter();
1048
                     if (rate_limiter != nullptr && new_val != old_val) {
1049
                         // Reset rate limiter with new rate limit value
1050
                         // When new_val <= 0, pass 0 to disable rate limiting
1051
                         int64_t rate = new_val > 0 ? new_val : 0;
1052
                         rate_limiter->reset(rate, rate, 0);
1053
                         if (rate > 0) {
1054
                             LOG(INFO) << "Warmup download rate limiter updated from " << old_val
1055
                                       << " to " << new_val << " bytes/s";
1056
                         } else {
1057
                             LOG(INFO) << "Warmup download rate limiter disabled";
1058
                         }
1059
                     }
1060
                 });
1061
1062
DEFINE_ON_UPDATE(ms_rpc_qps_default, [](int32_t old_val, int32_t new_val) {
1063
    if (old_val != new_val) {
1064
        refresh_ms_rpc_rate_limiters();
1065
    }
1066
});
1067
1068
#define DEFINE_MS_RPC_QPS_ON_UPDATE(enum_name, config_suffix, display_name)             \
1069
    DEFINE_ON_UPDATE(ms_rpc_qps_##config_suffix, [](int32_t old_val, int32_t new_val) { \
1070
        if (old_val != new_val) {                                                       \
1071
            refresh_ms_rpc_rate_limiters();                                             \
1072
        }                                                                               \
1073
    });
1074
META_SERVICE_RPC_TYPES(DEFINE_MS_RPC_QPS_ON_UPDATE)
1075
#undef DEFINE_MS_RPC_QPS_ON_UPDATE
1076
1077
DEFINE_ON_UPDATE(ms_backpressure_upgrade_interval_ms, [](int32_t old_val, int32_t new_val) {
1078
    if (old_val != new_val) {
1079
        refresh_ms_backpressure_coordinator_params();
1080
    }
1081
});
1082
DEFINE_ON_UPDATE(ms_backpressure_downgrade_interval_ms, [](int32_t old_val, int32_t new_val) {
1083
    if (old_val != new_val) {
1084
        refresh_ms_backpressure_coordinator_params();
1085
    }
1086
});
1087
DEFINE_ON_UPDATE(ms_backpressure_upgrade_top_k, [](int32_t old_val, int32_t new_val) {
1088
    if (old_val != new_val) {
1089
        refresh_ms_backpressure_throttle_params();
1090
    }
1091
});
1092
DEFINE_ON_UPDATE(ms_backpressure_throttle_ratio, [](double old_val, double new_val) {
1093
    if (old_val != new_val) {
1094
        refresh_ms_backpressure_throttle_params();
1095
    }
1096
});
1097
DEFINE_ON_UPDATE(ms_rpc_table_qps_limit_floor, [](double old_val, double new_val) {
1098
    if (old_val != new_val) {
1099
        refresh_ms_backpressure_throttle_params();
1100
    }
1101
});
1102
} // namespace doris::config