Coverage Report

Created: 2025-07-27 23:24

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/runtime/exec_env.h
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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
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
8
//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
14
// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
16
// under the License.
17
18
#pragma once
19
20
#include <common/multi_version.h>
21
22
#include <atomic>
23
#include <map>
24
#include <memory>
25
#include <mutex>
26
#include <string>
27
#include <vector>
28
29
#include "common/status.h"
30
#include "io/cache/fs_file_cache_storage.h"
31
#include "olap/memtable_memory_limiter.h"
32
#include "olap/options.h"
33
#include "olap/rowset/segment_v2/inverted_index_writer.h"
34
#include "olap/tablet_fwd.h"
35
#include "pipeline/pipeline_tracing.h"
36
#include "runtime/cluster_info.h"
37
#include "runtime/frontend_info.h" // TODO(zhiqiang): find a way to remove this include header
38
#include "util/threadpool.h"
39
40
namespace orc {
41
class MemoryPool;
42
}
43
namespace arrow {
44
class MemoryPool;
45
}
46
47
namespace doris {
48
namespace vectorized {
49
class VDataStreamMgr;
50
class ScannerScheduler;
51
class SpillStreamManager;
52
class DeltaWriterV2Pool;
53
class DictionaryFactory;
54
} // namespace vectorized
55
namespace pipeline {
56
class TaskScheduler;
57
struct RuntimeFilterTimerQueue;
58
} // namespace pipeline
59
class WorkloadGroupMgr;
60
struct WriteCooldownMetaExecutors;
61
namespace io {
62
class FileCacheFactory;
63
class HdfsMgr;
64
} // namespace io
65
namespace segment_v2 {
66
class InvertedIndexSearcherCache;
67
class InvertedIndexQueryCache;
68
class TmpFileDirs;
69
70
namespace inverted_index {
71
class AnalysisFactoryMgr;
72
}
73
74
} // namespace segment_v2
75
76
namespace kerberos {
77
class KerberosTicketMgr;
78
}
79
80
class QueryCache;
81
class WorkloadSchedPolicyMgr;
82
class BfdParser;
83
class BrokerMgr;
84
template <class T>
85
class BrpcClientCache;
86
class ExternalScanContextMgr;
87
class FragmentMgr;
88
class ResultCache;
89
class LoadPathMgr;
90
class NewLoadStreamMgr;
91
class MemTrackerLimiter;
92
class MemTracker;
93
struct TrackerLimiterGroup;
94
class BaseStorageEngine;
95
class ResultBufferMgr;
96
class ResultQueueMgr;
97
class RuntimeQueryStatisticsMgr;
98
class LoadChannelMgr;
99
class LoadStreamMgr;
100
class LoadStreamMapPool;
101
class StreamLoadExecutor;
102
class RoutineLoadTaskExecutor;
103
class SmallFileMgr;
104
class BackendServiceClient;
105
class TPaloBrokerServiceClient;
106
class PBackendService_Stub;
107
class PFunctionService_Stub;
108
template <class T>
109
class ClientCache;
110
class HeartbeatFlags;
111
class FrontendServiceClient;
112
class FileMetaCache;
113
class GroupCommitMgr;
114
class TabletSchemaCache;
115
class TabletColumnObjectPool;
116
class UserFunctionCache;
117
class SchemaCache;
118
class StoragePageCache;
119
class SegmentLoader;
120
class LookupConnectionCache;
121
class RowCache;
122
class DummyLRUCache;
123
class CacheManager;
124
class IdManager;
125
class ProcessProfile;
126
class HeapProfiler;
127
class WalManager;
128
class DNSCache;
129
class IndexPolicyMgr;
130
struct SyncRowsetStats;
131
class DeleteBitmapAggCache;
132
133
inline bool k_doris_exit = false;
134
135
// Execution environment for queries/plan fragments.
136
// Contains all required global structures, and handles to
137
// singleton services. Clients must call StartServices exactly
138
// once to properly initialise service state.
139
class ExecEnv {
140
public:
141
    // Empty destructor because the compiler-generated one requires full
142
    // declarations for classes in scoped_ptrs.
143
    ~ExecEnv();
144
145
8.88k
    BaseStorageEngine& storage_engine() { return *_storage_engine; }
146
147
    // Initial exec environment. must call this to init all
148
    [[nodiscard]] static Status init(ExecEnv* env, const std::vector<StorePath>& store_paths,
149
                                     const std::vector<StorePath>& spill_store_paths,
150
                                     const std::set<std::string>& broken_paths);
151
152
    // Stop all threads and delete resources.
153
    void destroy();
154
155
    /// Returns the first created exec env instance. In a normal doris, this is
156
    /// the only instance. In test setups with multiple ExecEnv's per process,
157
    /// we return the most recently created instance.
158
1.24M
    static ExecEnv* GetInstance() {
159
1.24M
        static ExecEnv s_exec_env;
160
1.24M
        return &s_exec_env;
161
1.24M
    }
162
163
    // Requires ExenEnv ready
164
    static Result<BaseTabletSPtr> get_tablet(int64_t tablet_id,
165
                                             SyncRowsetStats* sync_stats = nullptr,
166
                                             bool force_use_cache = false);
167
168
452k
    static bool ready() { return _s_ready.load(std::memory_order_acquire); }
169
94
    static bool tracking_memory() { return _s_tracking_memory.load(std::memory_order_acquire); }
170
3
    static bool get_is_upgrading() { return _s_upgrading.load(std::memory_order_acquire); }
171
0
    static void set_is_upgrading() { _s_upgrading = true; }
172
    const std::string& token() const;
173
0
    ExternalScanContextMgr* external_scan_context_mgr() { return _external_scan_context_mgr; }
174
8
    vectorized::VDataStreamMgr* vstream_mgr() { return _vstream_mgr; }
175
0
    ResultBufferMgr* result_mgr() { return _result_mgr; }
176
1
    ResultQueueMgr* result_queue_mgr() { return _result_queue_mgr; }
177
0
    ClientCache<BackendServiceClient>* client_cache() { return _backend_client_cache; }
178
0
    ClientCache<FrontendServiceClient>* frontend_client_cache() { return _frontend_client_cache; }
179
0
    ClientCache<TPaloBrokerServiceClient>* broker_client_cache() { return _broker_client_cache; }
180
181
1.79k
    WorkloadGroupMgr* workload_group_mgr() { return _workload_group_manager; }
182
0
    WorkloadSchedPolicyMgr* workload_sched_policy_mgr() { return _workload_sched_mgr; }
183
0
    RuntimeQueryStatisticsMgr* runtime_query_statistics_mgr() {
184
0
        return _runtime_query_statistics_mgr;
185
0
    }
186
187
    // using template to simplify client cache management
188
    template <typename T>
189
    inline ClientCache<T>* get_client_cache() {
190
        return nullptr;
191
    }
192
193
    // Save all MemTrackerLimiters in use.
194
    // Each group corresponds to several MemTrackerLimiters and has a lock.
195
    // Multiple groups are used to reduce the impact of locks.
196
    std::vector<TrackerLimiterGroup> mem_tracker_limiter_pool;
197
    void init_mem_tracker();
198
701k
    std::shared_ptr<MemTrackerLimiter> orphan_mem_tracker() { return _orphan_mem_tracker; }
199
0
    std::shared_ptr<MemTrackerLimiter> brpc_iobuf_block_memory_tracker() {
200
0
        return _brpc_iobuf_block_memory_tracker;
201
0
    }
202
0
    std::shared_ptr<MemTrackerLimiter> segcompaction_mem_tracker() {
203
0
        return _segcompaction_mem_tracker;
204
0
    }
205
8
    std::shared_ptr<MemTrackerLimiter> stream_load_pipe_tracker() {
206
8
        return _stream_load_pipe_tracker;
207
8
    }
208
0
    std::shared_ptr<MemTrackerLimiter> tablets_no_cache_mem_tracker() {
209
0
        return _tablets_no_cache_mem_tracker;
210
0
    }
211
0
    std::shared_ptr<MemTrackerLimiter> rowsets_no_cache_mem_tracker() {
212
0
        return _rowsets_no_cache_mem_tracker;
213
0
    }
214
0
    std::shared_ptr<MemTrackerLimiter> segments_no_cache_mem_tracker() {
215
0
        return _segments_no_cache_mem_tracker;
216
0
    }
217
2.09k
    std::shared_ptr<MemTrackerLimiter> point_query_executor_mem_tracker() {
218
2.09k
        return _point_query_executor_mem_tracker;
219
2.09k
    }
220
12
    std::shared_ptr<MemTrackerLimiter> query_cache_mem_tracker() {
221
12
        return _query_cache_mem_tracker;
222
12
    }
223
20.0k
    std::shared_ptr<MemTrackerLimiter> block_compression_mem_tracker() {
224
20.0k
        return _block_compression_mem_tracker;
225
20.0k
    }
226
0
    std::shared_ptr<MemTrackerLimiter> rowid_storage_reader_tracker() {
227
0
        return _rowid_storage_reader_tracker;
228
0
    }
229
0
    std::shared_ptr<MemTrackerLimiter> subcolumns_tree_tracker() {
230
0
        return _subcolumns_tree_tracker;
231
0
    }
232
536
    std::shared_ptr<MemTrackerLimiter> s3_file_buffer_tracker() { return _s3_file_buffer_tracker; }
233
50
    std::shared_ptr<MemTrackerLimiter> parquet_meta_tracker() { return _parquet_meta_tracker; }
234
235
0
    ThreadPool* send_batch_thread_pool() { return _send_batch_thread_pool.get(); }
236
4
    ThreadPool* buffered_reader_prefetch_thread_pool() {
237
4
        return _buffered_reader_prefetch_thread_pool.get();
238
4
    }
239
0
    ThreadPool* send_table_stats_thread_pool() { return _send_table_stats_thread_pool.get(); }
240
263
    ThreadPool* s3_file_upload_thread_pool() { return _s3_file_upload_thread_pool.get(); }
241
0
    ThreadPool* lazy_release_obj_pool() { return _lazy_release_obj_pool.get(); }
242
    ThreadPool* non_block_close_thread_pool();
243
0
    ThreadPool* s3_file_system_thread_pool() { return _s3_file_system_thread_pool.get(); }
244
245
    void init_file_cache_factory(std::vector<doris::CachePath>& cache_paths);
246
116
    io::FileCacheFactory* file_cache_factory() { return _file_cache_factory; }
247
0
    UserFunctionCache* user_function_cache() { return _user_function_cache; }
248
33
    FragmentMgr* fragment_mgr() { return _fragment_mgr; }
249
0
    ResultCache* result_cache() { return _result_cache; }
250
12
    ClusterInfo* cluster_info() { return _cluster_info; }
251
1
    LoadPathMgr* load_path_mgr() { return _load_path_mgr; }
252
1
    BfdParser* bfd_parser() const { return _bfd_parser; }
253
0
    BrokerMgr* broker_mgr() const { return _broker_mgr; }
254
0
    BrpcClientCache<PBackendService_Stub>* brpc_internal_client_cache() const {
255
0
        return _internal_client_cache;
256
0
    }
257
0
    BrpcClientCache<PBackendService_Stub>* brpc_streaming_client_cache() const {
258
0
        return _streaming_client_cache;
259
0
    }
260
0
    BrpcClientCache<PFunctionService_Stub>* brpc_function_client_cache() const {
261
0
        return _function_client_cache;
262
0
    }
263
0
    LoadChannelMgr* load_channel_mgr() { return _load_channel_mgr; }
264
0
    LoadStreamMgr* load_stream_mgr() { return _load_stream_mgr.get(); }
265
3
    NewLoadStreamMgr* new_load_stream_mgr() { return _new_load_stream_mgr.get(); }
266
0
    SmallFileMgr* small_file_mgr() { return _small_file_mgr; }
267
805
    doris::vectorized::SpillStreamManager* spill_stream_mgr() { return _spill_stream_mgr; }
268
0
    GroupCommitMgr* group_commit_mgr() { return _group_commit_mgr; }
269
270
3
    const std::vector<StorePath>& store_paths() const { return _store_paths; }
271
272
1
    StreamLoadExecutor* stream_load_executor() { return _stream_load_executor.get(); }
273
0
    RoutineLoadTaskExecutor* routine_load_task_executor() { return _routine_load_task_executor; }
274
0
    HeartbeatFlags* heartbeat_flags() { return _heartbeat_flags; }
275
14
    vectorized::ScannerScheduler* scanner_scheduler() { return _scanner_scheduler; }
276
0
    FileMetaCache* file_meta_cache() { return _file_meta_cache; }
277
141
    MemTableMemoryLimiter* memtable_memory_limiter() { return _memtable_memory_limiter.get(); }
278
47
    WalManager* wal_mgr() { return _wal_manager.get(); }
279
8
    DNSCache* dns_cache() { return _dns_cache; }
280
5
    WriteCooldownMetaExecutors* write_cooldown_meta_executors() {
281
5
        return _write_cooldown_meta_executors.get();
282
5
    }
283
284
0
    kerberos::KerberosTicketMgr* kerberos_ticket_mgr() { return _kerberos_ticket_mgr; }
285
0
    io::HdfsMgr* hdfs_mgr() { return _hdfs_mgr; }
286
0
    IndexPolicyMgr* index_policy_mgr() { return _index_policy_mgr; }
287
288
#ifdef BE_TEST
289
185
    void set_tmp_file_dir(std::unique_ptr<segment_v2::TmpFileDirs> tmp_file_dirs) {
290
185
        this->_tmp_file_dirs = std::move(tmp_file_dirs);
291
185
    }
292
4
    void set_ready() { this->_s_ready = true; }
293
0
    void set_not_ready() { this->_s_ready = false; }
294
36
    void set_memtable_memory_limiter(MemTableMemoryLimiter* limiter) {
295
36
        _memtable_memory_limiter.reset(limiter);
296
36
    }
297
5
    void set_cluster_info(ClusterInfo* cluster_info) { this->_cluster_info = cluster_info; }
298
    void set_new_load_stream_mgr(std::unique_ptr<NewLoadStreamMgr>&& new_load_stream_mgr);
299
    void clear_new_load_stream_mgr();
300
    void set_stream_load_executor(std::unique_ptr<StreamLoadExecutor>&& stream_load_executor);
301
    void clear_stream_load_executor();
302
303
    void set_storage_engine(std::unique_ptr<BaseStorageEngine>&& engine);
304
    void set_inverted_index_searcher_cache(
305
            segment_v2::InvertedIndexSearcherCache* inverted_index_searcher_cache);
306
1
    void set_cache_manager(CacheManager* cm) { this->_cache_manager = cm; }
307
1
    void set_process_profile(ProcessProfile* pp) { this->_process_profile = pp; }
308
1
    void set_tablet_schema_cache(TabletSchemaCache* c) { this->_tablet_schema_cache = c; }
309
1
    void set_delete_bitmap_agg_cache(DeleteBitmapAggCache* c) { _delete_bitmap_agg_cache = c; }
310
1
    void set_tablet_column_object_pool(TabletColumnObjectPool* c) {
311
1
        this->_tablet_column_object_pool = c;
312
1
    }
313
1
    void set_storage_page_cache(StoragePageCache* c) { this->_storage_page_cache = c; }
314
1
    void set_segment_loader(SegmentLoader* sl) { this->_segment_loader = sl; }
315
0
    void set_routine_load_task_executor(RoutineLoadTaskExecutor* r) {
316
0
        this->_routine_load_task_executor = r;
317
0
    }
318
    void set_wal_mgr(std::unique_ptr<WalManager>&& wm);
319
    void clear_wal_mgr();
320
321
    void set_write_cooldown_meta_executors();
322
1
    static void set_tracking_memory(bool tracking_memory) {
323
1
        _s_tracking_memory.store(tracking_memory, std::memory_order_release);
324
1
    }
325
1
    void set_orc_memory_pool(orc::MemoryPool* pool) { _orc_memory_pool = pool; }
326
2
    void set_non_block_close_thread_pool(std::unique_ptr<ThreadPool>&& pool) {
327
2
        _non_block_close_thread_pool = std::move(pool);
328
2
    }
329
#endif
330
0
    LoadStreamMapPool* load_stream_map_pool() { return _load_stream_map_pool.get(); }
331
332
0
    vectorized::DeltaWriterV2Pool* delta_writer_v2_pool() { return _delta_writer_v2_pool.get(); }
333
334
    void wait_for_all_tasks_done();
335
336
    void update_frontends(const std::vector<TFrontendInfo>& new_infos);
337
    std::vector<TFrontendInfo> get_frontends();
338
    std::map<TNetworkAddress, FrontendInfo> get_running_frontends();
339
340
7.29k
    TabletSchemaCache* get_tablet_schema_cache() { return _tablet_schema_cache; }
341
740
    TabletColumnObjectPool* get_tablet_column_object_pool() { return _tablet_column_object_pool; }
342
0
    SchemaCache* schema_cache() { return _schema_cache; }
343
41.6k
    StoragePageCache* get_storage_page_cache() { return _storage_page_cache; }
344
27.6k
    SegmentLoader* segment_loader() { return _segment_loader; }
345
0
    LookupConnectionCache* get_lookup_connection_cache() { return _lookup_connection_cache; }
346
0
    RowCache* get_row_cache() { return _row_cache; }
347
1.49k
    CacheManager* get_cache_manager() { return _cache_manager; }
348
0
    IdManager* get_id_manager() { return _id_manager; }
349
2
    ProcessProfile* get_process_profile() { return _process_profile; }
350
0
    HeapProfiler* get_heap_profiler() { return _heap_profiler; }
351
259
    segment_v2::InvertedIndexSearcherCache* get_inverted_index_searcher_cache() {
352
259
        return _inverted_index_searcher_cache;
353
259
    }
354
188
    segment_v2::InvertedIndexQueryCache* get_inverted_index_query_cache() {
355
188
        return _inverted_index_query_cache;
356
188
    }
357
3
    QueryCache* get_query_cache() { return _query_cache; }
358
359
1
    pipeline::RuntimeFilterTimerQueue* runtime_filter_timer_queue() {
360
1
        return _runtime_filter_timer_queue;
361
1
    }
362
363
2
    vectorized::DictionaryFactory* dict_factory() { return _dict_factory; }
364
365
0
    pipeline::PipelineTracerContext* pipeline_tracer_context() {
366
0
        return _pipeline_tracer_ctx.get();
367
0
    }
368
369
437
    segment_v2::TmpFileDirs* get_tmp_file_dirs() { return _tmp_file_dirs.get(); }
370
3.76k
    io::FDCache* file_cache_open_fd_cache() const { return _file_cache_open_fd_cache.get(); }
371
372
32
    orc::MemoryPool* orc_memory_pool() { return _orc_memory_pool; }
373
0
    arrow::MemoryPool* arrow_memory_pool() { return _arrow_memory_pool; }
374
375
    bool check_auth_token(const std::string& auth_token);
376
3
    void set_stream_mgr(vectorized::VDataStreamMgr* vstream_mgr) { _vstream_mgr = vstream_mgr; }
377
    void clear_stream_mgr();
378
379
135
    DeleteBitmapAggCache* delete_bitmap_agg_cache() { return _delete_bitmap_agg_cache; }
380
381
private:
382
    ExecEnv();
383
384
    [[nodiscard]] Status _init(const std::vector<StorePath>& store_paths,
385
                               const std::vector<StorePath>& spill_store_paths,
386
                               const std::set<std::string>& broken_paths);
387
    void _destroy();
388
389
    Status _init_mem_env();
390
    Status _check_deploy_mode();
391
392
    Status _create_internal_workload_group();
393
    void _init_runtime_filter_timer_queue();
394
395
    inline static std::atomic_bool _s_ready {false};
396
    inline static std::atomic_bool _s_tracking_memory {false};
397
    std::vector<StorePath> _store_paths;
398
    std::vector<StorePath> _spill_store_paths;
399
    inline static std::atomic_bool _s_upgrading {false};
400
401
    io::FileCacheFactory* _file_cache_factory = nullptr;
402
    UserFunctionCache* _user_function_cache = nullptr;
403
    // Leave protected so that subclasses can override
404
    ExternalScanContextMgr* _external_scan_context_mgr = nullptr;
405
    vectorized::VDataStreamMgr* _vstream_mgr = nullptr;
406
    ResultBufferMgr* _result_mgr = nullptr;
407
    ResultQueueMgr* _result_queue_mgr = nullptr;
408
    ClientCache<BackendServiceClient>* _backend_client_cache = nullptr;
409
    ClientCache<FrontendServiceClient>* _frontend_client_cache = nullptr;
410
    ClientCache<TPaloBrokerServiceClient>* _broker_client_cache = nullptr;
411
412
    // The default tracker consumed by mem hook. If the thread does not attach other trackers,
413
    // by default all consumption will be passed to the process tracker through the orphan tracker.
414
    // In real time, `consumption of all limiter trackers` + `orphan tracker consumption` = `process tracker consumption`.
415
    // Ideally, all threads are expected to attach to the specified tracker, so that "all memory has its own ownership",
416
    // and the consumption of the orphan mem tracker is close to 0, but greater than 0.
417
    std::shared_ptr<MemTrackerLimiter> _orphan_mem_tracker;
418
    std::shared_ptr<MemTrackerLimiter> _brpc_iobuf_block_memory_tracker;
419
    // Count the memory consumption of segment compaction tasks.
420
    std::shared_ptr<MemTrackerLimiter> _segcompaction_mem_tracker;
421
    std::shared_ptr<MemTrackerLimiter> _stream_load_pipe_tracker;
422
423
    std::shared_ptr<MemTrackerLimiter> _tablets_no_cache_mem_tracker;
424
    std::shared_ptr<MemTrackerLimiter> _rowsets_no_cache_mem_tracker;
425
    std::shared_ptr<MemTrackerLimiter> _segments_no_cache_mem_tracker;
426
427
    // Tracking memory may be shared between multiple queries.
428
    std::shared_ptr<MemTrackerLimiter> _point_query_executor_mem_tracker;
429
    std::shared_ptr<MemTrackerLimiter> _block_compression_mem_tracker;
430
    std::shared_ptr<MemTrackerLimiter> _query_cache_mem_tracker;
431
432
    // TODO, looking forward to more accurate tracking.
433
    std::shared_ptr<MemTrackerLimiter> _rowid_storage_reader_tracker;
434
    std::shared_ptr<MemTrackerLimiter> _subcolumns_tree_tracker;
435
    std::shared_ptr<MemTrackerLimiter> _s3_file_buffer_tracker;
436
437
    // Tracking memory consumption of parquet meta
438
    std::shared_ptr<MemTrackerLimiter> _parquet_meta_tracker;
439
440
    std::unique_ptr<ThreadPool> _send_batch_thread_pool;
441
    // Threadpool used to prefetch remote file for buffered reader
442
    std::unique_ptr<ThreadPool> _buffered_reader_prefetch_thread_pool;
443
    // Threadpool used to send TableStats to FE
444
    std::unique_ptr<ThreadPool> _send_table_stats_thread_pool;
445
    // Threadpool used to upload local file to s3
446
    std::unique_ptr<ThreadPool> _s3_file_upload_thread_pool;
447
    // Pool used by join node to build hash table
448
    // Pool to use a new thread to release object
449
    std::unique_ptr<ThreadPool> _lazy_release_obj_pool;
450
    std::unique_ptr<ThreadPool> _non_block_close_thread_pool;
451
    std::unique_ptr<ThreadPool> _s3_file_system_thread_pool;
452
453
    FragmentMgr* _fragment_mgr = nullptr;
454
    WorkloadGroupMgr* _workload_group_manager = nullptr;
455
456
    ResultCache* _result_cache = nullptr;
457
    ClusterInfo* _cluster_info = nullptr;
458
    LoadPathMgr* _load_path_mgr = nullptr;
459
460
    BfdParser* _bfd_parser = nullptr;
461
    BrokerMgr* _broker_mgr = nullptr;
462
    LoadChannelMgr* _load_channel_mgr = nullptr;
463
    std::unique_ptr<LoadStreamMgr> _load_stream_mgr;
464
    std::unique_ptr<NewLoadStreamMgr> _new_load_stream_mgr;
465
    BrpcClientCache<PBackendService_Stub>* _internal_client_cache = nullptr;
466
    BrpcClientCache<PBackendService_Stub>* _streaming_client_cache = nullptr;
467
    BrpcClientCache<PFunctionService_Stub>* _function_client_cache = nullptr;
468
469
    std::unique_ptr<StreamLoadExecutor> _stream_load_executor;
470
    RoutineLoadTaskExecutor* _routine_load_task_executor = nullptr;
471
    SmallFileMgr* _small_file_mgr = nullptr;
472
    HeartbeatFlags* _heartbeat_flags = nullptr;
473
    vectorized::ScannerScheduler* _scanner_scheduler = nullptr;
474
475
    // To save meta info of external file, such as parquet footer.
476
    FileMetaCache* _file_meta_cache = nullptr;
477
    std::unique_ptr<MemTableMemoryLimiter> _memtable_memory_limiter;
478
    std::unique_ptr<LoadStreamMapPool> _load_stream_map_pool;
479
    std::unique_ptr<vectorized::DeltaWriterV2Pool> _delta_writer_v2_pool;
480
    std::unique_ptr<WalManager> _wal_manager;
481
    DNSCache* _dns_cache = nullptr;
482
    std::unique_ptr<WriteCooldownMetaExecutors> _write_cooldown_meta_executors;
483
484
    std::mutex _frontends_lock;
485
    // ip:brpc_port -> frontend_indo
486
    std::map<TNetworkAddress, FrontendInfo> _frontends;
487
    GroupCommitMgr* _group_commit_mgr = nullptr;
488
489
    // Maybe we should use unique_ptr, but it need complete type, which means we need
490
    // to include many headers, and for some cpp file that do not need class like TabletSchemaCache,
491
    // these redundancy header could introduce potential bug, at least, more header means slow compile.
492
    // So we choose to use raw pointer, please remember to delete these pointer in deconstructor.
493
    TabletSchemaCache* _tablet_schema_cache = nullptr;
494
    TabletColumnObjectPool* _tablet_column_object_pool = nullptr;
495
    std::unique_ptr<BaseStorageEngine> _storage_engine;
496
    SchemaCache* _schema_cache = nullptr;
497
    StoragePageCache* _storage_page_cache = nullptr;
498
    SegmentLoader* _segment_loader = nullptr;
499
    LookupConnectionCache* _lookup_connection_cache = nullptr;
500
    RowCache* _row_cache = nullptr;
501
    CacheManager* _cache_manager = nullptr;
502
    IdManager* _id_manager = nullptr;
503
    ProcessProfile* _process_profile = nullptr;
504
    HeapProfiler* _heap_profiler = nullptr;
505
    segment_v2::InvertedIndexSearcherCache* _inverted_index_searcher_cache = nullptr;
506
    segment_v2::InvertedIndexQueryCache* _inverted_index_query_cache = nullptr;
507
    QueryCache* _query_cache = nullptr;
508
    std::unique_ptr<io::FDCache> _file_cache_open_fd_cache;
509
    DeleteBitmapAggCache* _delete_bitmap_agg_cache {nullptr};
510
511
    pipeline::RuntimeFilterTimerQueue* _runtime_filter_timer_queue = nullptr;
512
    vectorized::DictionaryFactory* _dict_factory = nullptr;
513
514
    WorkloadSchedPolicyMgr* _workload_sched_mgr = nullptr;
515
    IndexPolicyMgr* _index_policy_mgr = nullptr;
516
517
    RuntimeQueryStatisticsMgr* _runtime_query_statistics_mgr = nullptr;
518
519
    std::unique_ptr<pipeline::PipelineTracerContext> _pipeline_tracer_ctx;
520
    std::unique_ptr<segment_v2::TmpFileDirs> _tmp_file_dirs;
521
    doris::vectorized::SpillStreamManager* _spill_stream_mgr = nullptr;
522
523
    orc::MemoryPool* _orc_memory_pool = nullptr;
524
    arrow::MemoryPool* _arrow_memory_pool = nullptr;
525
526
    kerberos::KerberosTicketMgr* _kerberos_ticket_mgr = nullptr;
527
    io::HdfsMgr* _hdfs_mgr = nullptr;
528
};
529
530
template <>
531
0
inline ClientCache<BackendServiceClient>* ExecEnv::get_client_cache<BackendServiceClient>() {
532
0
    return _backend_client_cache;
533
0
}
534
template <>
535
0
inline ClientCache<FrontendServiceClient>* ExecEnv::get_client_cache<FrontendServiceClient>() {
536
0
    return _frontend_client_cache;
537
0
}
538
template <>
539
inline ClientCache<TPaloBrokerServiceClient>*
540
0
ExecEnv::get_client_cache<TPaloBrokerServiceClient>() {
541
0
    return _broker_client_cache;
542
0
}
543
544
0
inline segment_v2::InvertedIndexQueryCache* GetInvertedIndexQueryCache() {
545
0
    return ExecEnv::GetInstance()->get_inverted_index_query_cache();
546
0
}
547
548
} // namespace doris