Coverage Report

Created: 2026-04-09 13:35

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/runtime/query_context.h
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
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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18
#pragma once
19
20
#include <gen_cpp/PaloInternalService_types.h>
21
#include <gen_cpp/RuntimeProfile_types.h>
22
#include <gen_cpp/Types_types.h>
23
#include <glog/logging.h>
24
25
#include <atomic>
26
#include <cstdint>
27
#include <memory>
28
#include <mutex>
29
#include <string>
30
#include <unordered_map>
31
32
#include "common/config.h"
33
#include "common/factory_creator.h"
34
#include "common/object_pool.h"
35
#include "common/status.h"
36
#include "exec/common/memory.h"
37
#include "exec/runtime_filter/runtime_filter_mgr.h"
38
#include "exec/scan/scanner_scheduler.h"
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#include "runtime/exec_env.h"
40
#include "runtime/memory/mem_tracker_limiter.h"
41
#include "runtime/runtime_predicate.h"
42
#include "runtime/workload_group/workload_group.h"
43
#include "runtime/workload_management/resource_context.h"
44
#include "util/hash_util.hpp"
45
#include "util/threadpool.h"
46
47
namespace doris {
48
49
class PipelineFragmentContext;
50
class PipelineTask;
51
class Dependency;
52
class RecCTEScanLocalState;
53
54
struct ReportStatusRequest {
55
    const Status status;
56
    std::vector<RuntimeState*> runtime_states;
57
    bool done;
58
    TNetworkAddress coord_addr;
59
    TUniqueId query_id;
60
    int fragment_id;
61
    TUniqueId fragment_instance_id;
62
    int backend_num;
63
    RuntimeState* runtime_state;
64
    std::string load_error_url;
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    std::string first_error_msg;
66
    std::function<void(const Status&)> cancel_fn;
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};
68
69
enum class QuerySource {
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    INTERNAL_FRONTEND,
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    STREAM_LOAD,
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    GROUP_COMMIT_LOAD,
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    ROUTINE_LOAD,
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    EXTERNAL_CONNECTOR,
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    EXTERNAL_FRONTEND
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};
77
78
const std::string toString(QuerySource query_source);
79
80
// Save the common components of fragments in a query.
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// Some components like DescriptorTbl may be very large
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// that will slow down each execution of fragments when DeSer them every time.
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class DescriptorTbl;
84
class QueryContext : public std::enable_shared_from_this<QueryContext> {
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    ENABLE_FACTORY_CREATOR(QueryContext);
86
87
public:
88
    static std::shared_ptr<QueryContext> create(TUniqueId query_id, ExecEnv* exec_env,
89
                                                const TQueryOptions& query_options,
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                                                TNetworkAddress coord_addr, bool is_nereids,
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                                                TNetworkAddress current_connect_fe,
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                                                QuerySource query_type);
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94
    // use QueryContext::create, cannot be made private because of ENABLE_FACTORY_CREATOR::create_shared.
95
    QueryContext(TUniqueId query_id, ExecEnv* exec_env, const TQueryOptions& query_options,
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                 TNetworkAddress coord_addr, bool is_nereids, TNetworkAddress current_connect_fe,
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                 QuerySource query_type);
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    ~QueryContext();
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101
    void init_query_task_controller();
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103
15.1k
    ExecEnv* exec_env() const { return _exec_env; }
104
105
46.1k
    bool is_timeout(timespec now) const {
106
46.1k
        if (_timeout_second <= 0) {
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0
            return false;
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0
        }
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46.1k
        return _query_watcher.elapsed_time_seconds(now) > _timeout_second;
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46.1k
    }
111
112
531k
    bool is_single_backend_query() const { return _is_single_backend_query; }
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114
319k
    void set_single_backend_query(bool is_single_backend_query) {
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319k
        _is_single_backend_query = is_single_backend_query;
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319k
    }
117
118
0
    int64_t get_remaining_query_time_seconds() const {
119
0
        timespec now;
120
0
        clock_gettime(CLOCK_MONOTONIC, &now);
121
0
        if (is_timeout(now)) {
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0
            return -1;
123
0
        }
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0
        int64_t elapsed_seconds = _query_watcher.elapsed_time_seconds(now);
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0
        return _timeout_second - elapsed_seconds;
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0
    }
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128
    void set_ready_to_execute(Status reason);
129
130
44.0M
    [[nodiscard]] bool is_cancelled() const { return !_exec_status.ok(); }
131
132
    void cancel_all_pipeline_context(const Status& reason, int fragment_id = -1);
133
    std::string print_all_pipeline_context();
134
    void set_pipeline_context(const int fragment_id,
135
                              std::shared_ptr<PipelineFragmentContext> pip_ctx);
136
    void cancel(Status new_status, int fragment_id = -1);
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138
649k
    [[nodiscard]] Status exec_status() { return _exec_status.status(); }
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140
    void set_execution_dependency_ready();
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142
    void set_memory_sufficient(bool sufficient);
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    void set_ready_to_execute_only();
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146
190k
    bool has_runtime_predicate(int source_node_id) {
147
190k
        return _runtime_predicates.contains(source_node_id);
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190k
    }
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150
23.0k
    RuntimePredicate& get_runtime_predicate(int source_node_id) {
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23.0k
        DCHECK(has_runtime_predicate(source_node_id));
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23.0k
        return _runtime_predicates.find(source_node_id)->second;
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23.0k
    }
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155
428
    void init_runtime_predicates(const std::vector<TTopnFilterDesc>& topn_filter_descs) {
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435
        for (auto desc : topn_filter_descs) {
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435
            _runtime_predicates.try_emplace(desc.source_node_id, desc);
158
435
        }
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428
    }
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    Status set_workload_group(WorkloadGroupPtr& wg);
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51.0k
    int execution_timeout() const {
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51.0k
        return _query_options.__isset.execution_timeout ? _query_options.execution_timeout
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18.4E
                                                        : _query_options.query_timeout;
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51.0k
    }
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168
2.49k
    int32_t runtime_filter_wait_time_ms() const {
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2.49k
        return _query_options.runtime_filter_wait_time_ms;
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2.49k
    }
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0
    int be_exec_version() const {
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0
        if (!_query_options.__isset.be_exec_version) {
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0
            return 0;
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0
        }
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0
        return _query_options.be_exec_version;
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0
    }
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179
46.1k
    [[nodiscard]] int64_t get_fe_process_uuid() const {
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46.1k
        return _query_options.__isset.fe_process_uuid ? _query_options.fe_process_uuid : 0;
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46.1k
    }
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183
1.28k
    bool ignore_runtime_filter_error() const {
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1.28k
        return _query_options.__isset.ignore_runtime_filter_error
185
1.28k
                       ? _query_options.ignore_runtime_filter_error
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1.28k
                       : false;
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1.28k
    }
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189
0
    bool enable_force_spill() const {
190
0
        return _query_options.__isset.enable_force_spill && _query_options.enable_force_spill;
191
0
    }
192
13.4M
    const TQueryOptions& query_options() const { return _query_options; }
193
3.47k
    bool should_be_shuffled_agg(int node_id) const {
194
3.47k
        return _query_options.__isset.shuffled_agg_ids &&
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3.47k
               std::any_of(_query_options.shuffled_agg_ids.begin(),
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3.47k
                           _query_options.shuffled_agg_ids.end(),
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3.47k
                           [&](const int id) -> bool { return id == node_id; });
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3.47k
    }
199
200
    // global runtime filter mgr, the runtime filter have remote target or
201
    // need local merge should regist here. before publish() or push_to_remote()
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    // the runtime filter should do the local merge work
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362k
    RuntimeFilterMgr* runtime_filter_mgr() { return _runtime_filter_mgr.get(); }
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205
615k
    TUniqueId query_id() const { return _query_id; }
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207
424k
    ScannerScheduler* get_scan_scheduler() { return _scan_task_scheduler; }
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2.63k
    ScannerScheduler* get_remote_scan_scheduler() { return _remote_scan_task_scheduler; }
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1.78M
    Dependency* get_execution_dependency() { return _execution_dependency.get(); }
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2.66M
    Dependency* get_memory_sufficient_dependency() { return _memory_sufficient_dependency.get(); }
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214
    doris::TaskScheduler* get_pipe_exec_scheduler();
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216
    void set_merge_controller_handler(
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207k
            std::shared_ptr<RuntimeFilterMergeControllerEntity>& handler) {
218
207k
        _merge_controller_handler = handler;
219
207k
    }
220
3.93k
    std::shared_ptr<RuntimeFilterMergeControllerEntity> get_merge_controller_handler() const {
221
3.93k
        return _merge_controller_handler;
222
3.93k
    }
223
224
10.8M
    bool is_nereids() const { return _is_nereids; }
225
169k
    std::shared_ptr<MemShareArbitrator> mem_arb() const { return _mem_arb; }
226
227
5.52M
    WorkloadGroupPtr workload_group() const { return _resource_ctx->workload_group(); }
228
10.4M
    std::shared_ptr<MemTrackerLimiter> query_mem_tracker() const {
229
10.4M
        DCHECK(_resource_ctx->memory_context()->mem_tracker() != nullptr);
230
10.4M
        return _resource_ctx->memory_context()->mem_tracker();
231
10.4M
    }
232
233
808k
    int32_t get_slot_count() const {
234
808k
        return _query_options.__isset.query_slot_count ? _query_options.query_slot_count : 1;
235
808k
    }
236
237
    DescriptorTbl* desc_tbl = nullptr;
238
    bool set_rsc_info = false;
239
    std::string user;
240
    std::string group;
241
    TNetworkAddress coord_addr;
242
    TNetworkAddress current_connect_fe;
243
    TQueryGlobals query_globals;
244
13
    const TQueryGlobals get_query_globals() const { return query_globals; }
245
246
    ObjectPool obj_pool;
247
248
30.9M
    std::shared_ptr<ResourceContext> resource_ctx() { return _resource_ctx; }
249
250
    // plan node id -> TFileScanRangeParams
251
    // only for file scan node
252
    std::map<int, TFileScanRangeParams> file_scan_range_params_map;
253
254
    void add_using_brpc_stub(const TNetworkAddress& network_address,
255
1.95M
                             std::shared_ptr<PBackendService_Stub> brpc_stub) {
256
1.95M
        if (network_address.port == 0) {
257
566
            return;
258
566
        }
259
1.95M
        std::lock_guard<std::mutex> lock(_brpc_stubs_mutex);
260
1.95M
        if (!_using_brpc_stubs.contains(network_address)) {
261
46.2k
            _using_brpc_stubs.emplace(network_address, brpc_stub);
262
46.2k
        }
263
264
1.95M
        DCHECK_EQ(_using_brpc_stubs[network_address].get(), brpc_stub.get());
265
1.95M
    }
266
267
280k
    void set_ai_resources(std::map<std::string, TAIResource> ai_resources) {
268
280k
        _ai_resources =
269
280k
                std::make_shared<std::map<std::string, TAIResource>>(std::move(ai_resources));
270
280k
    }
271
272
63
    const std::shared_ptr<std::map<std::string, TAIResource>>& get_ai_resources() const {
273
63
        return _ai_resources;
274
63
    }
275
276
    std::unordered_map<TNetworkAddress, std::shared_ptr<PBackendService_Stub>>
277
46.1k
    get_using_brpc_stubs() {
278
46.1k
        std::lock_guard<std::mutex> lock(_brpc_stubs_mutex);
279
46.1k
        return _using_brpc_stubs;
280
46.1k
    }
281
282
0
    void set_low_memory_mode() {
283
        // will not return from low memory mode to non-low memory mode.
284
0
        _resource_ctx->task_controller()->set_low_memory_mode(true);
285
0
    }
286
12.9M
    bool low_memory_mode() { return _resource_ctx->task_controller()->low_memory_mode(); }
287
288
2.08M
    bool is_pure_load_task() {
289
2.08M
        return _query_source == QuerySource::STREAM_LOAD ||
290
2.08M
               _query_source == QuerySource::ROUTINE_LOAD ||
291
2.08M
               _query_source == QuerySource::GROUP_COMMIT_LOAD;
292
2.08M
    }
293
294
    void set_load_error_url(std::string error_url);
295
    std::string get_load_error_url();
296
    void set_first_error_msg(std::string error_msg);
297
    std::string get_first_error_msg();
298
299
    Status send_block_to_cte_scan(const TUniqueId& instance_id, int node_id,
300
                                  const google::protobuf::RepeatedPtrField<doris::PBlock>& pblocks,
301
                                  bool eos);
302
    void registe_cte_scan(const TUniqueId& instance_id, int node_id, RecCTEScanLocalState* scan);
303
    void deregiste_cte_scan(const TUniqueId& instance_id, int node_id);
304
305
0
    std::vector<int> get_fragment_ids() {
306
0
        std::vector<int> fragment_ids;
307
0
        for (const auto& it : _fragment_id_to_pipeline_ctx) {
308
0
            fragment_ids.push_back(it.first);
309
0
        }
310
0
        return fragment_ids;
311
0
    }
312
313
    Status reset_global_rf(const google::protobuf::RepeatedField<int32_t>& filter_ids);
314
315
private:
316
    friend class QueryTaskController;
317
318
    int _timeout_second;
319
    TUniqueId _query_id;
320
    ExecEnv* _exec_env = nullptr;
321
    MonotonicStopWatch _query_watcher;
322
    bool _is_nereids = false;
323
324
    std::shared_ptr<ResourceContext> _resource_ctx;
325
326
    void _init_resource_context();
327
    void _init_query_mem_tracker();
328
329
    std::unordered_map<int, RuntimePredicate> _runtime_predicates;
330
331
    std::unique_ptr<RuntimeFilterMgr> _runtime_filter_mgr;
332
    const TQueryOptions _query_options;
333
334
    // All pipeline tasks use the same query context to report status. So we need a `_exec_status`
335
    // to report the real message if failed.
336
    AtomicStatus _exec_status;
337
338
    doris::TaskScheduler* _task_scheduler = nullptr;
339
    ScannerScheduler* _scan_task_scheduler = nullptr;
340
    ScannerScheduler* _remote_scan_task_scheduler = nullptr;
341
    // This dependency indicates if the 2nd phase RPC received from FE.
342
    std::unique_ptr<Dependency> _execution_dependency;
343
    // This dependency indicates if memory is sufficient to execute.
344
    std::unique_ptr<Dependency> _memory_sufficient_dependency;
345
346
    // This shared ptr is never used. It is just a reference to hold the object.
347
    // There is a weak ptr in runtime filter manager to reference this object.
348
    std::shared_ptr<RuntimeFilterMergeControllerEntity> _merge_controller_handler;
349
350
    std::map<int, std::weak_ptr<PipelineFragmentContext>> _fragment_id_to_pipeline_ctx;
351
    std::mutex _pipeline_map_write_lock;
352
353
    std::mutex _profile_mutex;
354
    timespec _query_arrival_timestamp;
355
    // Distinguish the query source, for query that comes from fe, we will have some memory structure on FE to
356
    // help us manage the query.
357
    QuerySource _query_source;
358
359
    std::mutex _brpc_stubs_mutex;
360
    std::unordered_map<TNetworkAddress, std::shared_ptr<PBackendService_Stub>> _using_brpc_stubs;
361
362
    // when fragment of pipeline is closed, it will register its profile to this map by using add_fragment_profile
363
    // flatten profile of one fragment:
364
    // Pipeline 0
365
    //      PipelineTask 0
366
    //              Operator 1
367
    //              Operator 2
368
    //              Scanner
369
    //      PipelineTask 1
370
    //              Operator 1
371
    //              Operator 2
372
    //              Scanner
373
    // Pipeline 1
374
    //      PipelineTask 2
375
    //              Operator 3
376
    //      PipelineTask 3
377
    //              Operator 3
378
    // fragment_id -> list<profile>
379
    std::unordered_map<int, std::vector<std::shared_ptr<TRuntimeProfileTree>>> _profile_map;
380
    std::unordered_map<int, std::shared_ptr<TRuntimeProfileTree>> _load_channel_profile_map;
381
382
    std::shared_ptr<std::map<std::string, TAIResource>> _ai_resources;
383
384
    void _report_query_profile();
385
386
    std::unordered_map<int, std::vector<std::shared_ptr<TRuntimeProfileTree>>>
387
    _collect_realtime_query_profile();
388
389
    std::mutex _error_url_lock;
390
    std::string _load_error_url;
391
    std::string _first_error_msg;
392
393
    bool _is_single_backend_query = false;
394
395
    // file cache context holders
396
    std::vector<io::BlockFileCache::QueryFileCacheContextHolderPtr> _query_context_holders;
397
    // instance id + node id -> cte scan
398
    std::map<std::pair<TUniqueId, int>, RecCTEScanLocalState*> _cte_scan;
399
    std::mutex _cte_scan_lock;
400
    std::shared_ptr<MemShareArbitrator> _mem_arb = nullptr;
401
402
public:
403
    // when fragment of pipeline is closed, it will register its profile to this map by using add_fragment_profile
404
    void add_fragment_profile(
405
            int fragment_id,
406
            const std::vector<std::shared_ptr<TRuntimeProfileTree>>& pipeline_profile,
407
            std::shared_ptr<TRuntimeProfileTree> load_channel_profile);
408
409
    TReportExecStatusParams get_realtime_exec_status();
410
411
654k
    bool enable_profile() const {
412
654k
        return _query_options.__isset.enable_profile && _query_options.enable_profile;
413
654k
    }
414
415
0
    timespec get_query_arrival_timestamp() const { return this->_query_arrival_timestamp; }
416
52.4k
    QuerySource get_query_source() const { return this->_query_source; }
417
418
598k
    TQueryOptions get_query_options() const { return _query_options; }
419
};
420
421
} // namespace doris