Coverage Report

Created: 2026-03-20 10:04

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exec/scan/scanner_scheduler.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
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
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//
9
//   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
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// under the License.
17
18
#include "exec/scan/scanner_scheduler.h"
19
20
#include <algorithm>
21
#include <cstdint>
22
#include <functional>
23
#include <list>
24
#include <memory>
25
#include <ostream>
26
#include <string>
27
#include <utility>
28
29
#include "common/compiler_util.h" // IWYU pragma: keep
30
#include "common/config.h"
31
#include "common/exception.h"
32
#include "common/logging.h"
33
#include "common/status.h"
34
#include "core/block/block.h"
35
#include "exec/pipeline/pipeline_task.h"
36
#include "exec/scan/file_scanner.h"
37
#include "exec/scan/olap_scanner.h" // IWYU pragma: keep
38
#include "exec/scan/scan_node.h"
39
#include "exec/scan/scanner.h"
40
#include "exec/scan/scanner_context.h"
41
#include "runtime/exec_env.h"
42
#include "runtime/runtime_state.h"
43
#include "runtime/thread_context.h"
44
#include "runtime/workload_group/workload_group_manager.h"
45
#include "storage/tablet/tablet.h"
46
#include "util/async_io.h" // IWYU pragma: keep
47
#include "util/cpu_info.h"
48
#include "util/defer_op.h"
49
#include "util/thread.h"
50
#include "util/threadpool.h"
51
52
namespace doris {
53
54
Status ScannerScheduler::submit(std::shared_ptr<ScannerContext> ctx,
55
1.02M
                                std::shared_ptr<ScanTask> scan_task) {
56
1.02M
    if (ctx->done()) {
57
0
        return Status::OK();
58
0
    }
59
1.02M
    auto task_lock = ctx->task_exec_ctx();
60
1.02M
    if (task_lock == nullptr) {
61
18
        LOG(INFO) << "could not lock task execution context, query " << ctx->debug_string()
62
18
                  << " maybe finished";
63
18
        return Status::OK();
64
18
    }
65
1.02M
    std::shared_ptr<ScannerDelegate> scanner_delegate = scan_task->scanner.lock();
66
1.02M
    if (scanner_delegate == nullptr) {
67
0
        return Status::OK();
68
0
    }
69
70
1.02M
    scanner_delegate->_scanner->start_wait_worker_timer();
71
1.02M
    TabletStorageType type = scanner_delegate->_scanner->get_storage_type();
72
1.02M
    auto sumbit_task = [&]() {
73
1.02M
        auto work_func = [scanner_ref = scan_task, ctx]() {
74
1.02M
            auto status = [&] {
75
1.02M
                RETURN_IF_CATCH_EXCEPTION(_scanner_scan(ctx, scanner_ref));
76
1.02M
                return Status::OK();
77
1.02M
            }();
78
79
1.02M
            if (!status.ok()) {
80
0
                scanner_ref->set_status(status);
81
0
                ctx->push_back_scan_task(scanner_ref);
82
0
                return true;
83
0
            }
84
1.02M
            return scanner_ref->is_eos();
85
1.02M
        };
86
1.02M
        SimplifiedScanTask simple_scan_task = {work_func, ctx, scan_task};
87
1.02M
        return this->submit_scan_task(simple_scan_task);
88
1.02M
    };
89
90
1.02M
    Status submit_status = sumbit_task();
91
1.02M
    if (!submit_status.ok()) {
92
        // User will see TooManyTasks error. It looks like a more reasonable error.
93
0
        Status scan_task_status = Status::TooManyTasks(
94
0
                "Failed to submit scanner to scanner pool reason:" +
95
0
                std::string(submit_status.msg()) + "|type:" + std::to_string(type));
96
0
        scan_task->set_status(scan_task_status);
97
0
        return scan_task_status;
98
0
    }
99
100
1.02M
    return Status::OK();
101
1.02M
}
102
103
void handle_reserve_memory_failure(RuntimeState* state, std::shared_ptr<ScannerContext> ctx,
104
0
                                   const Status& st, size_t reserve_size) {
105
0
    ctx->clear_free_blocks();
106
0
    auto* local_state = ctx->local_state();
107
108
0
    auto debug_msg = fmt::format(
109
0
            "Query: {} , scanner try to reserve: {}, operator name {}, "
110
0
            "operator "
111
0
            "id: {}, "
112
0
            "task id: "
113
0
            "{}, failed: {}",
114
0
            print_id(state->query_id()), PrettyPrinter::print_bytes(reserve_size),
115
0
            local_state->get_name(), local_state->parent()->node_id(), state->task_id(),
116
0
            st.to_string());
117
    // PROCESS_MEMORY_EXCEEDED error msg alread contains process_mem_log_str
118
0
    if (!st.is<ErrorCode::PROCESS_MEMORY_EXCEEDED>()) {
119
0
        debug_msg += fmt::format(", debug info: {}", GlobalMemoryArbitrator::process_mem_log_str());
120
0
    }
121
0
    VLOG_DEBUG << debug_msg;
122
123
0
    state->get_query_ctx()->set_low_memory_mode();
124
0
}
125
126
void ScannerScheduler::_scanner_scan(std::shared_ptr<ScannerContext> ctx,
127
1.02M
                                     std::shared_ptr<ScanTask> scan_task) {
128
1.02M
    auto task_lock = ctx->task_exec_ctx();
129
1.02M
    if (task_lock == nullptr) {
130
0
        return;
131
0
    }
132
1.02M
    SCOPED_ATTACH_TASK(ctx->state());
133
134
1.02M
    ctx->update_peak_running_scanner(1);
135
1.02M
    Defer defer([&] { ctx->update_peak_running_scanner(-1); });
136
137
1.02M
    std::shared_ptr<ScannerDelegate> scanner_delegate = scan_task->scanner.lock();
138
1.02M
    if (scanner_delegate == nullptr) {
139
2
        return;
140
2
    }
141
142
1.02M
    ScannerSPtr& scanner = scanner_delegate->_scanner;
143
    // for cpu hard limit, thread name should not be reset
144
1.02M
    if (ctx->_should_reset_thread_name) {
145
0
        Thread::set_self_name("_scanner_scan");
146
0
    }
147
148
1.02M
#ifndef __APPLE__
149
    // The configuration item is used to lower the priority of the scanner thread,
150
    // typically employed to ensure CPU scheduling for write operations.
151
1.02M
    if (config::scan_thread_nice_value != 0 && scanner->get_name() != FileScanner::NAME) {
152
0
        Thread::set_thread_nice_value();
153
0
    }
154
1.02M
#endif
155
156
    // we set and get counter according below order, to make sure the counter is updated before get_block, and the time of get_block is recorded in the counter.
157
    // 1. update_wait_worker_timer to make sure the time of waiting for worker thread is recorded in the timer
158
    // 2. start_scan_cpu_timer to make sure the cpu timer include the time of open and get_block, which is the real cpu time of scanner
159
    // 3. update_scan_cpu_timer when defer, to make sure the cpu timer include the time of open and get_block, which is the real cpu time of scanner
160
    // 4. start_wait_worker_timer when defer, to make sure the time of waiting for worker thread is recorded in the timer
161
162
1.02M
    MonotonicStopWatch max_run_time_watch;
163
1.02M
    max_run_time_watch.start();
164
1.02M
    scanner->update_wait_worker_timer();
165
1.02M
    scanner->start_scan_cpu_timer();
166
167
1.02M
    bool need_update_profile = true;
168
1.02M
    auto update_scanner_profile = [&]() {
169
1.01M
        if (need_update_profile) {
170
1.01M
            scanner->update_scan_cpu_timer();
171
1.01M
            scanner->update_realtime_counters();
172
1.01M
            need_update_profile = false;
173
1.01M
        }
174
1.01M
    };
175
176
1.02M
    Status status = Status::OK();
177
1.02M
    bool eos = false;
178
1.02M
    Defer defer_scanner([&] {
179
1.02M
        if (status.ok() && !eos) {
180
            // if status is not ok, it means the scanner is failed, and the counter may be not updated correctly, so no need to update counter again. if eos is true, it means the scanner is finished successfully, and the counter is updated correctly, so no need to update counter again.
181
4.86k
            scanner->start_wait_worker_timer();
182
4.86k
        }
183
1.02M
    });
184
185
1.02M
    ASSIGN_STATUS_IF_CATCH_EXCEPTION(
186
1.02M
            RuntimeState* state = ctx->state(); DCHECK(nullptr != state);
187
            // scanner->open may alloc plenty amount of memory(read blocks of data),
188
            // so better to also check low memory and clear free blocks here.
189
1.02M
            if (ctx->low_memory_mode()) { ctx->clear_free_blocks(); }
190
191
1.02M
            if (!scanner->has_prepared()) {
192
1.02M
                status = scanner->prepare();
193
1.02M
                if (!status.ok()) {
194
1.02M
                    eos = true;
195
1.02M
                }
196
1.02M
            }
197
198
1.02M
            if (!eos && !scanner->is_open()) {
199
1.02M
                status = scanner->open(state);
200
1.02M
                if (!status.ok()) {
201
1.02M
                    eos = true;
202
1.02M
                }
203
1.02M
                scanner->set_opened();
204
1.02M
            }
205
206
1.02M
            Status rf_status = scanner->try_append_late_arrival_runtime_filter();
207
1.02M
            if (!rf_status.ok()) {
208
1.02M
                LOG(WARNING) << "Failed to append late arrival runtime filter: "
209
1.02M
                             << rf_status.to_string();
210
1.02M
            }
211
212
1.02M
            size_t raw_bytes_threshold = config::doris_scanner_row_bytes;
213
1.02M
            if (ctx->low_memory_mode()) {
214
1.02M
                ctx->clear_free_blocks();
215
1.02M
                if (raw_bytes_threshold > ctx->low_memory_mode_scan_bytes_per_scanner()) {
216
1.02M
                    raw_bytes_threshold = ctx->low_memory_mode_scan_bytes_per_scanner();
217
1.02M
                }
218
1.02M
            }
219
220
1.02M
            size_t raw_bytes_read = 0;
221
1.02M
            bool first_read = true; int64_t limit = scanner->limit();
222
            // If the first block is full, then it is true. Or the first block + second block > batch_size
223
1.02M
            bool has_first_full_block = false;
224
225
            // During low memory mode, every scan task will return at most 2 block to reduce memory usage.
226
1.02M
            while (!eos && raw_bytes_read < raw_bytes_threshold &&
227
1.02M
                   (!ctx->low_memory_mode() || !has_first_full_block) &&
228
1.02M
                   (!has_first_full_block || doris::thread_context()
229
1.02M
                                                     ->thread_mem_tracker_mgr->limiter_mem_tracker()
230
1.02M
                                                     ->check_limit(1))) {
231
1.02M
                if (UNLIKELY(ctx->done())) {
232
1.02M
                    eos = true;
233
1.02M
                    break;
234
1.02M
                }
235
1.02M
                if (max_run_time_watch.elapsed_time() >
236
1.02M
                    config::doris_scanner_max_run_time_ms * 1e6) {
237
1.02M
                    break;
238
1.02M
                }
239
1.02M
                DEFER_RELEASE_RESERVED();
240
1.02M
                BlockUPtr free_block;
241
1.02M
                if (first_read) {
242
1.02M
                    free_block = ctx->get_free_block(first_read);
243
1.02M
                } else {
244
1.02M
                    if (state->get_query_ctx()
245
1.02M
                                ->resource_ctx()
246
1.02M
                                ->task_controller()
247
1.02M
                                ->is_enable_reserve_memory()) {
248
1.02M
                        size_t block_avg_bytes = scanner->get_block_avg_bytes();
249
1.02M
                        auto st = thread_context()->thread_mem_tracker_mgr->try_reserve(
250
1.02M
                                block_avg_bytes);
251
1.02M
                        if (!st.ok()) {
252
1.02M
                            handle_reserve_memory_failure(state, ctx, st, block_avg_bytes);
253
1.02M
                            break;
254
1.02M
                        }
255
1.02M
                    }
256
1.02M
                    free_block = ctx->get_free_block(first_read);
257
1.02M
                }
258
1.02M
                if (free_block == nullptr) {
259
1.02M
                    break;
260
1.02M
                }
261
                // We got a new created block or a reused block.
262
1.02M
                status = scanner->get_block_after_projects(state, free_block.get(), &eos);
263
1.02M
                first_read = false;
264
1.02M
                if (!status.ok()) {
265
1.02M
                    LOG(WARNING) << "Scan thread read Scanner failed: " << status.to_string();
266
1.02M
                    break;
267
1.02M
                }
268
                // Check column type only after block is read successfully.
269
                // Or it may cause a crash when the block is not normal.
270
1.02M
                _make_sure_virtual_col_is_materialized(scanner, free_block.get());
271
                // Projection will truncate useless columns, makes block size change.
272
1.02M
                auto free_block_bytes = free_block->allocated_bytes();
273
1.02M
                raw_bytes_read += free_block_bytes;
274
1.02M
                if (!scan_task->cached_blocks.empty() &&
275
1.02M
                    scan_task->cached_blocks.back().first->rows() + free_block->rows() <=
276
1.02M
                            ctx->batch_size()) {
277
1.02M
                    size_t block_size = scan_task->cached_blocks.back().first->allocated_bytes();
278
1.02M
                    MutableBlock mutable_block(scan_task->cached_blocks.back().first.get());
279
1.02M
                    status = mutable_block.merge(*free_block);
280
1.02M
                    if (!status.ok()) {
281
1.02M
                        LOG(WARNING) << "Block merge failed: " << status.to_string();
282
1.02M
                        break;
283
1.02M
                    }
284
1.02M
                    scan_task->cached_blocks.back().second = mutable_block.allocated_bytes();
285
1.02M
                    scan_task->cached_blocks.back().first.get()->set_columns(
286
1.02M
                            std::move(mutable_block.mutable_columns()));
287
288
                    // Return block succeed or not, this free_block is not used by this scan task any more.
289
                    // If block can be reused, its memory usage will be added back.
290
1.02M
                    ctx->return_free_block(std::move(free_block));
291
1.02M
                    ctx->inc_block_usage(scan_task->cached_blocks.back().first->allocated_bytes() -
292
1.02M
                                         block_size);
293
1.02M
                } else {
294
1.02M
                    if (!scan_task->cached_blocks.empty()) {
295
1.02M
                        has_first_full_block = true;
296
1.02M
                    }
297
1.02M
                    ctx->inc_block_usage(free_block->allocated_bytes());
298
1.02M
                    scan_task->cached_blocks.emplace_back(std::move(free_block), free_block_bytes);
299
1.02M
                }
300
301
1.02M
                if (limit > 0 && limit < ctx->batch_size()) {
302
                    // If this scanner has limit, and less than batch size,
303
                    // return immediately and no need to wait raw_bytes_threshold.
304
                    // This can save time that each scanner may only return a small number of rows,
305
                    // but rows are enough from all scanners.
306
                    // If not break, the query like "select * from tbl where id=1 limit 10"
307
                    // may scan a lot data when the "id=1"'s filter ratio is high.
308
                    // If limit is larger than batch size, this rule is skipped,
309
                    // to avoid user specify a large limit and causing too much small blocks.
310
1.02M
                    break;
311
1.02M
                }
312
313
1.02M
                if (scan_task->cached_blocks.back().first->rows() > 0) {
314
1.02M
                    auto block_avg_bytes = (scan_task->cached_blocks.back().first->bytes() +
315
1.02M
                                            scan_task->cached_blocks.back().first->rows() - 1) /
316
1.02M
                                           scan_task->cached_blocks.back().first->rows() *
317
1.02M
                                           ctx->batch_size();
318
1.02M
                    scanner->update_block_avg_bytes(block_avg_bytes);
319
1.02M
                }
320
1.02M
                if (ctx->low_memory_mode()) {
321
1.02M
                    ctx->clear_free_blocks();
322
1.02M
                    if (raw_bytes_threshold > ctx->low_memory_mode_scan_bytes_per_scanner()) {
323
1.02M
                        raw_bytes_threshold = ctx->low_memory_mode_scan_bytes_per_scanner();
324
1.02M
                    }
325
1.02M
                }
326
1.02M
            } // end for while
327
328
1.02M
            if (UNLIKELY(!status.ok())) {
329
1.02M
                scan_task->set_status(status);
330
1.02M
                eos = true;
331
1.02M
            },
332
1.02M
            status);
333
334
1.01M
    if (UNLIKELY(!status.ok())) {
335
1.30k
        scan_task->set_status(status);
336
1.30k
        eos = true;
337
1.30k
    }
338
339
1.01M
    if (eos) {
340
        // If eos, scanner will call _collect_profile_before_close to update profile,
341
        // so we need update_scanner_profile here
342
1.01M
        update_scanner_profile();
343
1.01M
        scanner->mark_to_need_to_close();
344
1.01M
    }
345
1.01M
    scan_task->set_eos(eos);
346
347
18.4E
    VLOG_DEBUG << fmt::format(
348
18.4E
            "Scanner context {} has finished task, cached_block {} current scheduled task is "
349
18.4E
            "{}, eos: {}, status: {}",
350
18.4E
            ctx->ctx_id, scan_task->cached_blocks.size(), ctx->num_scheduled_scanners(), eos,
351
18.4E
            status.to_string());
352
353
1.01M
    ctx->push_back_scan_task(scan_task);
354
1.01M
}
355
16.7k
int ScannerScheduler::default_local_scan_thread_num() {
356
16.7k
    return config::doris_scanner_thread_pool_thread_num > 0
357
16.7k
                   ? config::doris_scanner_thread_pool_thread_num
358
16.7k
                   : std::max(48, CpuInfo::num_cores() * 2);
359
16.7k
}
360
11.0k
int ScannerScheduler::default_remote_scan_thread_num() {
361
11.0k
    int num = config::doris_max_remote_scanner_thread_pool_thread_num > 0
362
11.0k
                      ? config::doris_max_remote_scanner_thread_pool_thread_num
363
11.0k
                      : std::max(512, CpuInfo::num_cores() * 10);
364
11.0k
    return std::max(num, default_local_scan_thread_num());
365
11.0k
}
366
367
37
int ScannerScheduler::get_remote_scan_thread_queue_size() {
368
37
    return config::doris_remote_scanner_thread_pool_queue_size;
369
37
}
370
371
5.71k
int ScannerScheduler::default_min_active_scan_threads() {
372
5.71k
    return config::min_active_scan_threads > 0
373
5.71k
                   ? config::min_active_scan_threads
374
5.71k
                   : config::min_active_scan_threads = CpuInfo::num_cores() * 2;
375
5.71k
}
376
377
5.71k
int ScannerScheduler::default_min_active_file_scan_threads() {
378
5.71k
    return config::min_active_file_scan_threads > 0
379
5.71k
                   ? config::min_active_file_scan_threads
380
5.71k
                   : config::min_active_file_scan_threads = CpuInfo::num_cores() * 8;
381
5.71k
}
382
383
void ScannerScheduler::_make_sure_virtual_col_is_materialized(
384
1.06M
        const std::shared_ptr<Scanner>& scanner, Block* free_block) {
385
1.06M
#ifndef NDEBUG
386
    // Currently, virtual column can only be used on olap table.
387
1.06M
    std::shared_ptr<OlapScanner> olap_scanner = std::dynamic_pointer_cast<OlapScanner>(scanner);
388
1.06M
    if (olap_scanner == nullptr) {
389
13.3k
        return;
390
13.3k
    }
391
392
1.05M
    if (free_block->rows() == 0) {
393
829k
        return;
394
829k
    }
395
396
220k
    size_t idx = 0;
397
697k
    for (const auto& entry : *free_block) {
398
        // Virtual column must be materialized on the end of SegmentIterator's next batch method.
399
697k
        const ColumnNothing* column_nothing =
400
697k
                check_and_get_column<ColumnNothing>(entry.column.get());
401
697k
        if (column_nothing == nullptr) {
402
697k
            idx++;
403
697k
            continue;
404
697k
        }
405
406
18.4E
        std::vector<std::string> vcid_to_idx;
407
408
18.4E
        for (const auto& pair : olap_scanner->_vir_cid_to_idx_in_block) {
409
0
            vcid_to_idx.push_back(fmt::format("{}-{}", pair.first, pair.second));
410
0
        }
411
412
18.4E
        std::string error_msg = fmt::format(
413
18.4E
                "Column in idx {} is nothing, block columns {}, normal_columns "
414
18.4E
                "{}, "
415
18.4E
                "vir_cid_to_idx_in_block_msg {}",
416
18.4E
                idx, free_block->columns(), olap_scanner->_return_columns.size(),
417
18.4E
                fmt::format("_vir_cid_to_idx_in_block:[{}]", fmt::join(vcid_to_idx, ",")));
418
18.4E
        throw doris::Exception(ErrorCode::INTERNAL_ERROR, error_msg);
419
697k
    }
420
220k
#endif
421
220k
}
422
423
1.02M
Result<SharedListenableFuture<Void>> ScannerSplitRunner::process_for(std::chrono::nanoseconds) {
424
1.02M
    _started = true;
425
1.02M
    bool is_completed = _scan_func();
426
1.02M
    if (is_completed) {
427
1.01M
        _completion_future.set_value(Void {});
428
1.01M
    }
429
1.02M
    return SharedListenableFuture<Void>::create_ready(Void {});
430
1.02M
}
431
432
1.02M
bool ScannerSplitRunner::is_finished() {
433
1.02M
    return _completion_future.is_done();
434
1.02M
}
435
436
1.01M
Status ScannerSplitRunner::finished_status() {
437
1.01M
    return _completion_future.get_status();
438
1.01M
}
439
440
0
bool ScannerSplitRunner::is_started() const {
441
0
    return _started.load();
442
0
}
443
444
4.86k
bool ScannerSplitRunner::is_auto_reschedule() const {
445
4.86k
    return false;
446
4.86k
}
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448
} // namespace doris