Coverage Report

Created: 2025-07-23 22:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/runtime/runtime_state.cpp
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Count
Source
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// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
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
// This file is copied from
18
// https://github.com/apache/impala/blob/branch-2.9.0/be/src/runtime/runtime-state.cpp
19
// and modified by Doris
20
21
#include "runtime/runtime_state.h"
22
23
#include <fmt/format.h>
24
#include <gen_cpp/PaloInternalService_types.h>
25
#include <gen_cpp/Types_types.h>
26
#include <glog/logging.h>
27
28
#include <fstream>
29
#include <memory>
30
#include <string>
31
32
#include "cloud/cloud_storage_engine.h"
33
#include "cloud/config.h"
34
#include "common/config.h"
35
#include "common/logging.h"
36
#include "common/object_pool.h"
37
#include "common/status.h"
38
#include "io/fs/s3_file_system.h"
39
#include "olap/id_manager.h"
40
#include "olap/storage_engine.h"
41
#include "pipeline/exec/operator.h"
42
#include "pipeline/pipeline_task.h"
43
#include "runtime/exec_env.h"
44
#include "runtime/fragment_mgr.h"
45
#include "runtime/load_path_mgr.h"
46
#include "runtime/memory/mem_tracker_limiter.h"
47
#include "runtime/memory/thread_mem_tracker_mgr.h"
48
#include "runtime/query_context.h"
49
#include "runtime/thread_context.h"
50
#include "runtime_filter/runtime_filter_mgr.h"
51
#include "util/timezone_utils.h"
52
#include "util/uid_util.h"
53
#include "vec/runtime/vdatetime_value.h"
54
55
namespace doris {
56
#include "common/compile_check_begin.h"
57
using namespace ErrorCode;
58
59
RuntimeState::RuntimeState(const TPlanFragmentExecParams& fragment_exec_params,
60
                           const TQueryOptions& query_options, const TQueryGlobals& query_globals,
61
                           ExecEnv* exec_env, QueryContext* ctx,
62
                           const std::shared_ptr<MemTrackerLimiter>& query_mem_tracker)
63
0
        : _profile("Fragment " + print_id(fragment_exec_params.fragment_instance_id)),
64
0
          _load_channel_profile("<unnamed>"),
65
0
          _obj_pool(new ObjectPool()),
66
0
          _unreported_error_idx(0),
67
0
          _query_id(fragment_exec_params.query_id),
68
0
          _per_fragment_instance_idx(0),
69
0
          _num_rows_load_total(0),
70
0
          _num_rows_load_filtered(0),
71
0
          _num_rows_load_unselected(0),
72
0
          _num_print_error_rows(0),
73
0
          _num_bytes_load_total(0),
74
0
          _num_finished_scan_range(0),
75
0
          _error_row_number(0),
76
0
          _query_ctx(ctx) {
77
0
    Status status =
78
0
            init(fragment_exec_params.fragment_instance_id, query_options, query_globals, exec_env);
79
0
    DCHECK(status.ok());
80
0
    _query_mem_tracker = query_mem_tracker;
81
0
    DCHECK(_query_mem_tracker != nullptr);
82
0
}
83
84
RuntimeState::RuntimeState(const TUniqueId& instance_id, const TUniqueId& query_id,
85
                           int32_t fragment_id, const TQueryOptions& query_options,
86
                           const TQueryGlobals& query_globals, ExecEnv* exec_env, QueryContext* ctx)
87
49
        : _profile("Fragment " + print_id(instance_id)),
88
49
          _load_channel_profile("<unnamed>"),
89
49
          _obj_pool(new ObjectPool()),
90
49
          _unreported_error_idx(0),
91
49
          _query_id(query_id),
92
49
          _fragment_id(fragment_id),
93
49
          _per_fragment_instance_idx(0),
94
49
          _num_rows_load_total(0),
95
49
          _num_rows_load_filtered(0),
96
49
          _num_rows_load_unselected(0),
97
49
          _num_rows_filtered_in_strict_mode_partial_update(0),
98
49
          _num_print_error_rows(0),
99
49
          _num_bytes_load_total(0),
100
49
          _num_finished_scan_range(0),
101
49
          _error_row_number(0),
102
49
          _query_ctx(ctx) {
103
49
    [[maybe_unused]] auto status = init(instance_id, query_options, query_globals, exec_env);
104
49
    DCHECK(status.ok());
105
49
    _query_mem_tracker = ctx->query_mem_tracker();
106
49
}
107
108
RuntimeState::RuntimeState(const TUniqueId& query_id, int32_t fragment_id,
109
                           const TQueryOptions& query_options, const TQueryGlobals& query_globals,
110
                           ExecEnv* exec_env, QueryContext* ctx)
111
102
        : _profile("PipelineX  " + std::to_string(fragment_id)),
112
102
          _load_channel_profile("<unnamed>"),
113
102
          _obj_pool(new ObjectPool()),
114
102
          _unreported_error_idx(0),
115
102
          _query_id(query_id),
116
102
          _fragment_id(fragment_id),
117
102
          _per_fragment_instance_idx(0),
118
102
          _num_rows_load_total(0),
119
102
          _num_rows_load_filtered(0),
120
102
          _num_rows_load_unselected(0),
121
102
          _num_rows_filtered_in_strict_mode_partial_update(0),
122
102
          _num_print_error_rows(0),
123
102
          _num_bytes_load_total(0),
124
102
          _num_finished_scan_range(0),
125
102
          _error_row_number(0),
126
102
          _query_ctx(ctx) {
127
    // TODO: do we really need instance id?
128
102
    Status status = init(TUniqueId(), query_options, query_globals, exec_env);
129
102
    DCHECK(status.ok());
130
102
    _query_mem_tracker = ctx->query_mem_tracker();
131
102
}
132
133
RuntimeState::RuntimeState(const TUniqueId& query_id, int32_t fragment_id,
134
                           const TQueryOptions& query_options, const TQueryGlobals& query_globals,
135
                           ExecEnv* exec_env,
136
                           const std::shared_ptr<MemTrackerLimiter>& query_mem_tracker)
137
0
        : _profile("PipelineX  " + std::to_string(fragment_id)),
138
0
          _load_channel_profile("<unnamed>"),
139
0
          _obj_pool(new ObjectPool()),
140
0
          _unreported_error_idx(0),
141
0
          _query_id(query_id),
142
0
          _fragment_id(fragment_id),
143
0
          _per_fragment_instance_idx(0),
144
0
          _num_rows_load_total(0),
145
0
          _num_rows_load_filtered(0),
146
0
          _num_rows_load_unselected(0),
147
0
          _num_rows_filtered_in_strict_mode_partial_update(0),
148
0
          _num_print_error_rows(0),
149
0
          _num_bytes_load_total(0),
150
0
          _num_finished_scan_range(0),
151
0
          _error_row_number(0) {
152
0
    Status status = init(TUniqueId(), query_options, query_globals, exec_env);
153
0
    DCHECK(status.ok());
154
0
    _query_mem_tracker = query_mem_tracker;
155
0
    DCHECK(_query_mem_tracker != nullptr);
156
0
}
157
158
RuntimeState::RuntimeState(const TQueryGlobals& query_globals)
159
259k
        : _profile("<unnamed>"),
160
259k
          _load_channel_profile("<unnamed>"),
161
259k
          _obj_pool(new ObjectPool()),
162
259k
          _unreported_error_idx(0),
163
259k
          _per_fragment_instance_idx(0) {
164
259k
    _query_options.batch_size = DEFAULT_BATCH_SIZE;
165
259k
    if (query_globals.__isset.time_zone && query_globals.__isset.nano_seconds) {
166
0
        _timezone = query_globals.time_zone;
167
0
        _timestamp_ms = query_globals.timestamp_ms;
168
0
        _nano_seconds = query_globals.nano_seconds;
169
259k
    } else if (query_globals.__isset.time_zone) {
170
259k
        _timezone = query_globals.time_zone;
171
259k
        _timestamp_ms = query_globals.timestamp_ms;
172
259k
        _nano_seconds = 0;
173
259k
    } else if (!query_globals.now_string.empty()) {
174
0
        _timezone = TimezoneUtils::default_time_zone;
175
0
        VecDateTimeValue dt;
176
0
        dt.from_date_str(query_globals.now_string.c_str(), query_globals.now_string.size());
177
0
        int64_t timestamp;
178
0
        dt.unix_timestamp(&timestamp, _timezone);
179
0
        _timestamp_ms = timestamp * 1000;
180
0
        _nano_seconds = 0;
181
32
    } else {
182
        //Unit test may set into here
183
32
        _timezone = TimezoneUtils::default_time_zone;
184
32
        _timestamp_ms = 0;
185
32
        _nano_seconds = 0;
186
32
    }
187
259k
    TimezoneUtils::find_cctz_time_zone(_timezone, _timezone_obj);
188
259k
    init_mem_trackers("<unnamed>");
189
259k
}
190
191
RuntimeState::RuntimeState()
192
86.6k
        : _profile("<unnamed>"),
193
86.6k
          _load_channel_profile("<unnamed>"),
194
86.6k
          _obj_pool(new ObjectPool()),
195
86.6k
          _unreported_error_idx(0),
196
86.6k
          _per_fragment_instance_idx(0) {
197
86.6k
    _query_options.batch_size = DEFAULT_BATCH_SIZE;
198
86.6k
    _query_options.be_exec_version = BeExecVersionManager::get_newest_version();
199
86.6k
    _timezone = TimezoneUtils::default_time_zone;
200
86.6k
    _timestamp_ms = 0;
201
86.6k
    _nano_seconds = 0;
202
86.6k
    TimezoneUtils::find_cctz_time_zone(_timezone, _timezone_obj);
203
86.6k
    _exec_env = ExecEnv::GetInstance();
204
86.6k
    init_mem_trackers("<unnamed>");
205
86.6k
}
206
207
346k
RuntimeState::~RuntimeState() {
208
346k
    SCOPED_SWITCH_THREAD_MEM_TRACKER_LIMITER(_query_mem_tracker);
209
    // close error log file
210
346k
    if (_error_log_file != nullptr && _error_log_file->is_open()) {
211
0
        _error_log_file->close();
212
0
    }
213
214
346k
    _obj_pool->clear();
215
346k
}
216
217
Status RuntimeState::init(const TUniqueId& fragment_instance_id, const TQueryOptions& query_options,
218
155
                          const TQueryGlobals& query_globals, ExecEnv* exec_env) {
219
155
    _fragment_instance_id = fragment_instance_id;
220
155
    _query_options = query_options;
221
155
    if (query_globals.__isset.time_zone && query_globals.__isset.nano_seconds) {
222
0
        _timezone = query_globals.time_zone;
223
0
        _timestamp_ms = query_globals.timestamp_ms;
224
0
        _nano_seconds = query_globals.nano_seconds;
225
155
    } else if (query_globals.__isset.time_zone) {
226
0
        _timezone = query_globals.time_zone;
227
0
        _timestamp_ms = query_globals.timestamp_ms;
228
0
        _nano_seconds = 0;
229
155
    } else if (!query_globals.now_string.empty()) {
230
0
        _timezone = TimezoneUtils::default_time_zone;
231
0
        VecDateTimeValue dt;
232
0
        dt.from_date_str(query_globals.now_string.c_str(), query_globals.now_string.size());
233
0
        int64_t timestamp;
234
0
        dt.unix_timestamp(&timestamp, _timezone);
235
0
        _timestamp_ms = timestamp * 1000;
236
0
        _nano_seconds = 0;
237
155
    } else {
238
        //Unit test may set into here
239
155
        _timezone = TimezoneUtils::default_time_zone;
240
155
        _timestamp_ms = 0;
241
155
        _nano_seconds = 0;
242
155
    }
243
155
    TimezoneUtils::find_cctz_time_zone(_timezone, _timezone_obj);
244
245
155
    if (query_globals.__isset.load_zero_tolerance) {
246
155
        _load_zero_tolerance = query_globals.load_zero_tolerance;
247
155
    }
248
249
155
    _exec_env = exec_env;
250
251
155
    if (_query_options.max_errors <= 0) {
252
        // TODO: fix linker error and uncomment this
253
        //_query_options.max_errors = config::max_errors;
254
155
        _query_options.max_errors = 100;
255
155
    }
256
257
155
    if (_query_options.batch_size <= 0) {
258
113
        _query_options.batch_size = DEFAULT_BATCH_SIZE;
259
113
    }
260
261
155
    _db_name = "insert_stmt";
262
155
    _import_label = print_id(fragment_instance_id);
263
264
155
    _profile_level = query_options.__isset.profile_level ? query_options.profile_level : 2;
265
266
155
    return Status::OK();
267
155
}
268
269
0
std::weak_ptr<QueryContext> RuntimeState::get_query_ctx_weak() {
270
0
    return _exec_env->fragment_mgr()->get_query_ctx(_query_ctx->query_id());
271
0
}
272
273
346k
void RuntimeState::init_mem_trackers(const std::string& name, const TUniqueId& id) {
274
346k
    _query_mem_tracker = MemTrackerLimiter::create_shared(
275
346k
            MemTrackerLimiter::Type::OTHER, fmt::format("{}#Id={}", name, print_id(id)));
276
346k
}
277
278
175
std::shared_ptr<MemTrackerLimiter> RuntimeState::query_mem_tracker() const {
279
175
    CHECK(_query_mem_tracker != nullptr);
280
175
    return _query_mem_tracker;
281
175
}
282
283
11
WorkloadGroupPtr RuntimeState::workload_group() {
284
11
    return _query_ctx->workload_group();
285
11
}
286
287
0
bool RuntimeState::log_error(const std::string& error) {
288
0
    std::lock_guard<std::mutex> l(_error_log_lock);
289
290
0
    if (_error_log.size() < _query_options.max_errors) {
291
0
        _error_log.push_back(error);
292
0
        return true;
293
0
    }
294
295
0
    return false;
296
0
}
297
298
0
void RuntimeState::get_unreported_errors(std::vector<std::string>* new_errors) {
299
0
    std::lock_guard<std::mutex> l(_error_log_lock);
300
301
0
    if (_unreported_error_idx < _error_log.size()) {
302
0
        new_errors->assign(_error_log.begin() + _unreported_error_idx, _error_log.end());
303
0
        _unreported_error_idx = (int)_error_log.size();
304
0
    }
305
0
}
306
307
1.10M
bool RuntimeState::is_cancelled() const {
308
    // Maybe we should just return _is_cancelled.load()
309
1.10M
    return !_exec_status.ok() || (_query_ctx && _query_ctx->is_cancelled());
310
1.10M
}
311
312
0
Status RuntimeState::cancel_reason() const {
313
0
    if (!_exec_status.ok()) {
314
0
        return _exec_status.status();
315
0
    }
316
317
0
    if (_query_ctx) {
318
0
        return _query_ctx->exec_status();
319
0
    }
320
321
0
    return Status::Cancelled("Query cancelled");
322
0
}
323
324
const int64_t MAX_ERROR_NUM = 50;
325
326
0
Status RuntimeState::create_error_log_file() {
327
0
    if (config::save_load_error_log_to_s3 && config::is_cloud_mode()) {
328
0
        _s3_error_fs = std::dynamic_pointer_cast<io::S3FileSystem>(
329
0
                ExecEnv::GetInstance()->storage_engine().to_cloud().latest_fs());
330
0
        if (_s3_error_fs) {
331
0
            std::stringstream ss;
332
            // https://dev.mysql.com/doc/dev/mysql-server/latest/page_protocol_basic_err_packet.html
333
            // shorten the path as much as possible to prevent the length of the presigned URL from
334
            // exceeding the MySQL error packet size limit
335
0
            ss << "error_log/" << std::hex << _fragment_instance_id.lo;
336
0
            _s3_error_log_file_path = ss.str();
337
0
        }
338
0
    }
339
340
0
    static_cast<void>(_exec_env->load_path_mgr()->get_load_error_file_name(
341
0
            _db_name, _import_label, _fragment_instance_id, &_error_log_file_path));
342
0
    std::string error_log_absolute_path =
343
0
            _exec_env->load_path_mgr()->get_load_error_absolute_path(_error_log_file_path);
344
0
    _error_log_file = std::make_unique<std::ofstream>(error_log_absolute_path, std::ifstream::out);
345
0
    if (!_error_log_file->is_open()) {
346
0
        std::stringstream error_msg;
347
0
        error_msg << "Fail to open error file: [" << _error_log_file_path << "].";
348
0
        LOG(WARNING) << error_msg.str();
349
0
        return Status::InternalError(error_msg.str());
350
0
    }
351
0
    LOG(INFO) << "create error log file: " << _error_log_file_path
352
0
              << ", query id: " << print_id(_query_id)
353
0
              << ", fragment instance id: " << print_id(_fragment_instance_id);
354
355
0
    return Status::OK();
356
0
}
357
358
Status RuntimeState::append_error_msg_to_file(std::function<std::string()> line,
359
                                              std::function<std::string()> error_msg,
360
0
                                              bool is_summary) {
361
0
    if (query_type() != TQueryType::LOAD) {
362
0
        return Status::OK();
363
0
    }
364
    // If file haven't been opened, open it here
365
0
    if (_error_log_file == nullptr) {
366
0
        Status status = create_error_log_file();
367
0
        if (!status.ok()) {
368
0
            LOG(WARNING) << "Create error file log failed. because: " << status;
369
0
            if (_error_log_file != nullptr) {
370
0
                _error_log_file->close();
371
0
            }
372
0
            return status;
373
0
        }
374
0
    }
375
376
    // if num of printed error row exceeds the limit, and this is not a summary message,
377
    // if _load_zero_tolerance, return Error to stop the load process immediately.
378
0
    if (_num_print_error_rows.fetch_add(1, std::memory_order_relaxed) > MAX_ERROR_NUM &&
379
0
        !is_summary) {
380
0
        if (_load_zero_tolerance) {
381
0
            return Status::DataQualityError(
382
0
                    "Encountered unqualified data, stop processing. Please check if the source "
383
0
                    "data matches the schema, and consider disabling strict mode or increasing "
384
0
                    "max_filter_ratio.");
385
0
        }
386
0
        return Status::OK();
387
0
    }
388
389
0
    fmt::memory_buffer out;
390
0
    if (is_summary) {
391
0
        fmt::format_to(out, "Summary: {}", error_msg());
392
0
    } else {
393
0
        if (_error_row_number < MAX_ERROR_NUM) {
394
            // Note: export reason first in case src line too long and be truncated.
395
0
            fmt::format_to(out, "Reason: {}. src line [{}]; ", error_msg(), line());
396
0
        } else if (_error_row_number == MAX_ERROR_NUM) {
397
0
            fmt::format_to(out, "TOO MUCH ERROR! already reach {}. show no more next error.",
398
0
                           MAX_ERROR_NUM);
399
0
        }
400
0
    }
401
402
0
    size_t error_row_size = out.size();
403
0
    if (error_row_size > 0) {
404
0
        if (error_row_size > config::load_error_log_limit_bytes) {
405
0
            fmt::memory_buffer limit_byte_out;
406
0
            limit_byte_out.append(out.data(), out.data() + config::load_error_log_limit_bytes);
407
0
            (*_error_log_file) << fmt::to_string(limit_byte_out) + "error log is too long"
408
0
                               << std::endl;
409
0
        } else {
410
0
            (*_error_log_file) << fmt::to_string(out) << std::endl;
411
0
        }
412
0
    }
413
0
    return Status::OK();
414
0
}
415
416
0
std::string RuntimeState::get_error_log_file_path() {
417
0
    DBUG_EXECUTE_IF("RuntimeState::get_error_log_file_path.block", {
418
0
        if (!_error_log_file_path.empty()) {
419
0
            std::this_thread::sleep_for(std::chrono::seconds(1));
420
0
        }
421
0
    });
422
0
    std::lock_guard<std::mutex> l(_s3_error_log_file_lock);
423
0
    if (_s3_error_fs && _error_log_file && _error_log_file->is_open()) {
424
        // close error log file
425
0
        _error_log_file->close();
426
0
        std::string error_log_absolute_path =
427
0
                _exec_env->load_path_mgr()->get_load_error_absolute_path(_error_log_file_path);
428
        // upload error log file to s3
429
0
        Status st = _s3_error_fs->upload(error_log_absolute_path, _s3_error_log_file_path);
430
0
        if (!st.ok()) {
431
            // upload failed and return local error log file path
432
0
            LOG(WARNING) << "Fail to upload error file to s3, error_log_file_path="
433
0
                         << _error_log_file_path << ", error=" << st;
434
0
            return _error_log_file_path;
435
0
        }
436
        // expiration must be less than a week (in seconds) for presigned url
437
0
        static const unsigned EXPIRATION_SECONDS = 7 * 24 * 60 * 60 - 1;
438
        // We should return a public endpoint to user.
439
0
        _error_log_file_path = _s3_error_fs->generate_presigned_url(_s3_error_log_file_path,
440
0
                                                                    EXPIRATION_SECONDS, true);
441
0
    }
442
0
    return _error_log_file_path;
443
0
}
444
445
78.3k
void RuntimeState::resize_op_id_to_local_state(int operator_size) {
446
78.3k
    _op_id_to_local_state.resize(-operator_size);
447
78.3k
}
448
449
void RuntimeState::emplace_local_state(
450
26.2k
        int id, std::unique_ptr<doris::pipeline::PipelineXLocalStateBase> state) {
451
26.2k
    id = -id;
452
26.2k
    DCHECK_LT(id, _op_id_to_local_state.size())
453
0
            << state->parent()->get_name() << " node id = " << state->parent()->node_id();
454
26.2k
    DCHECK(!_op_id_to_local_state[id]);
455
26.2k
    _op_id_to_local_state[id] = std::move(state);
456
26.2k
}
457
458
913k
doris::pipeline::PipelineXLocalStateBase* RuntimeState::get_local_state(int id) {
459
913k
    id = -id;
460
913k
    return _op_id_to_local_state[id].get();
461
913k
}
462
463
26.0k
Result<RuntimeState::LocalState*> RuntimeState::get_local_state_result(int id) {
464
26.0k
    id = -id;
465
26.0k
    if (id >= _op_id_to_local_state.size()) {
466
1
        return ResultError(Status::InternalError("get_local_state out of range size:{} , id:{}",
467
1
                                                 _op_id_to_local_state.size(), id));
468
1
    }
469
26.0k
    if (!_op_id_to_local_state[id]) {
470
0
        return ResultError(Status::InternalError("get_local_state id:{} is null", id));
471
0
    }
472
26.0k
    return _op_id_to_local_state[id].get();
473
26.0k
};
474
475
void RuntimeState::emplace_sink_local_state(
476
78.2k
        int id, std::unique_ptr<doris::pipeline::PipelineXSinkLocalStateBase> state) {
477
78.2k
    DCHECK(!_sink_local_state) << " id=" << id << " state: " << state->debug_string(0);
478
78.2k
    _sink_local_state = std::move(state);
479
78.2k
}
480
481
438k
doris::pipeline::PipelineXSinkLocalStateBase* RuntimeState::get_sink_local_state() {
482
438k
    return _sink_local_state.get();
483
438k
}
484
485
569k
Result<RuntimeState::SinkLocalState*> RuntimeState::get_sink_local_state_result() {
486
569k
    if (!_sink_local_state) {
487
0
        return ResultError(Status::InternalError("_op_id_to_sink_local_state not exist"));
488
0
    }
489
569k
    return _sink_local_state.get();
490
569k
}
491
492
0
bool RuntimeState::enable_page_cache() const {
493
0
    return !config::disable_storage_page_cache &&
494
0
           (_query_options.__isset.enable_page_cache && _query_options.enable_page_cache);
495
0
}
496
497
59
RuntimeFilterMgr* RuntimeState::global_runtime_filter_mgr() {
498
59
    return _query_ctx->runtime_filter_mgr();
499
59
}
500
501
Status RuntimeState::register_producer_runtime_filter(
502
29
        const TRuntimeFilterDesc& desc, std::shared_ptr<RuntimeFilterProducer>* producer_filter) {
503
    // Producers are created by local runtime filter mgr and shared by global runtime filter manager.
504
    // When RF is published, consumers in both global and local RF mgr will be found.
505
29
    RETURN_IF_ERROR(local_runtime_filter_mgr()->register_producer_filter(_query_ctx, desc,
506
29
                                                                         producer_filter));
507
29
    RETURN_IF_ERROR(global_runtime_filter_mgr()->register_local_merger_producer_filter(
508
29
            _query_ctx, desc, *producer_filter));
509
29
    return Status::OK();
510
29
}
511
512
Status RuntimeState::register_consumer_runtime_filter(
513
        const TRuntimeFilterDesc& desc, bool need_local_merge, int node_id,
514
6
        std::shared_ptr<RuntimeFilterConsumer>* consumer_filter) {
515
6
    bool need_merge = desc.has_remote_targets || need_local_merge;
516
6
    RuntimeFilterMgr* mgr = need_merge ? global_runtime_filter_mgr() : local_runtime_filter_mgr();
517
6
    return mgr->register_consumer_filter(_query_ctx, desc, node_id, consumer_filter);
518
6
}
519
520
133
bool RuntimeState::is_nereids() const {
521
133
    return _query_ctx->is_nereids();
522
133
}
523
524
0
std::vector<std::shared_ptr<RuntimeProfile>> RuntimeState::pipeline_id_to_profile() {
525
0
    std::shared_lock lc(_pipeline_profile_lock);
526
0
    return _pipeline_id_to_profile;
527
0
}
528
529
std::vector<std::shared_ptr<RuntimeProfile>> RuntimeState::build_pipeline_profile(
530
0
        std::size_t pipeline_size) {
531
0
    std::unique_lock lc(_pipeline_profile_lock);
532
0
    if (!_pipeline_id_to_profile.empty()) {
533
0
        throw Exception(ErrorCode::INTERNAL_ERROR,
534
0
                        "build_pipeline_profile can only be called once.");
535
0
    }
536
0
    _pipeline_id_to_profile.resize(pipeline_size);
537
0
    {
538
0
        size_t pip_idx = 0;
539
0
        for (auto& pipeline_profile : _pipeline_id_to_profile) {
540
0
            pipeline_profile =
541
0
                    std::make_shared<RuntimeProfile>("Pipeline : " + std::to_string(pip_idx));
542
0
            pip_idx++;
543
0
        }
544
0
    }
545
0
    return _pipeline_id_to_profile;
546
0
}
547
548
288k
bool RuntimeState::low_memory_mode() const {
549
288k
#ifdef BE_TEST
550
288k
    if (!_query_ctx) {
551
0
        return false;
552
0
    }
553
288k
#endif
554
288k
    return _query_ctx->low_memory_mode();
555
288k
}
556
557
0
void RuntimeState::set_id_file_map() {
558
0
    _id_file_map = _exec_env->get_id_manager()->add_id_file_map(_query_id, execution_timeout());
559
0
}
560
#include "common/compile_check_end.h"
561
} // end namespace doris