Coverage Report

Created: 2025-09-15 19:48

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/runtime/load_stream.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
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// 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,
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
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// under the License.
17
18
#include "runtime/load_stream.h"
19
20
#include <brpc/stream.h>
21
#include <bthread/bthread.h>
22
#include <bthread/condition_variable.h>
23
#include <bthread/mutex.h>
24
#include <olap/rowset/rowset_factory.h>
25
#include <olap/rowset/rowset_meta.h>
26
#include <olap/storage_engine.h>
27
#include <olap/tablet_manager.h>
28
#include <runtime/exec_env.h>
29
30
#include <memory>
31
#include <sstream>
32
33
#include "bvar/bvar.h"
34
#include "cloud/config.h"
35
#include "common/signal_handler.h"
36
#include "exec/tablet_info.h"
37
#include "olap/tablet.h"
38
#include "olap/tablet_fwd.h"
39
#include "olap/tablet_schema.h"
40
#include "runtime/exec_env.h"
41
#include "runtime/fragment_mgr.h"
42
#include "runtime/load_channel.h"
43
#include "runtime/load_stream_mgr.h"
44
#include "runtime/load_stream_writer.h"
45
#include "runtime/workload_group/workload_group_manager.h"
46
#include "util/debug_points.h"
47
#include "util/runtime_profile.h"
48
#include "util/thrift_util.h"
49
#include "util/uid_util.h"
50
51
#define UNKNOWN_ID_FOR_TEST 0x7c00
52
53
namespace doris {
54
#include "common/compile_check_begin.h"
55
56
bvar::Adder<int64_t> g_load_stream_cnt("load_stream_count");
57
bvar::LatencyRecorder g_load_stream_flush_wait_ms("load_stream_flush_wait_ms");
58
bvar::Adder<int> g_load_stream_flush_running_threads("load_stream_flush_wait_threads");
59
60
TabletStream::TabletStream(const PUniqueId& load_id, int64_t id, int64_t txn_id,
61
                           LoadStreamMgr* load_stream_mgr, RuntimeProfile* profile)
62
14
        : _id(id),
63
14
          _next_segid(0),
64
14
          _load_id(load_id),
65
14
          _txn_id(txn_id),
66
14
          _load_stream_mgr(load_stream_mgr) {
67
14
    load_stream_mgr->create_token(_flush_token);
68
14
    _profile = profile->create_child(fmt::format("TabletStream {}", id), true, true);
69
14
    _append_data_timer = ADD_TIMER(_profile, "AppendDataTime");
70
14
    _add_segment_timer = ADD_TIMER(_profile, "AddSegmentTime");
71
14
    _close_wait_timer = ADD_TIMER(_profile, "CloseWaitTime");
72
14
}
73
74
10
inline std::ostream& operator<<(std::ostream& ostr, const TabletStream& tablet_stream) {
75
10
    ostr << "load_id=" << print_id(tablet_stream._load_id) << ", txn_id=" << tablet_stream._txn_id
76
10
         << ", tablet_id=" << tablet_stream._id << ", status=" << tablet_stream._status.status();
77
10
    return ostr;
78
10
}
79
80
Status TabletStream::init(std::shared_ptr<OlapTableSchemaParam> schema, int64_t index_id,
81
14
                          int64_t partition_id) {
82
14
    WriteRequest req {
83
14
            .tablet_id = _id,
84
14
            .txn_id = _txn_id,
85
14
            .index_id = index_id,
86
14
            .partition_id = partition_id,
87
14
            .load_id = _load_id,
88
14
            .table_schema_param = schema,
89
            // TODO(plat1ko): write_file_cache
90
14
            .storage_vault_id {},
91
14
    };
92
93
14
    _load_stream_writer = std::make_shared<LoadStreamWriter>(&req, _profile);
94
14
    DBUG_EXECUTE_IF("TabletStream.init.uninited_writer", {
95
14
        _status.update(Status::Uninitialized("fault injection"));
96
14
        return _status.status();
97
14
    });
98
14
    _status.update(_load_stream_writer->init());
99
14
    if (!_status.ok()) {
100
1
        LOG(INFO) << "failed to init rowset builder due to " << *this;
101
1
    }
102
14
    return _status.status();
103
14
}
104
105
27
Status TabletStream::append_data(const PStreamHeader& header, butil::IOBuf* data) {
106
27
    if (!_status.ok()) {
107
1
        return _status.status();
108
1
    }
109
110
    // dispatch add_segment request
111
26
    if (header.opcode() == PStreamHeader::ADD_SEGMENT) {
112
0
        return add_segment(header, data);
113
0
    }
114
115
26
    SCOPED_TIMER(_append_data_timer);
116
117
26
    int64_t src_id = header.src_id();
118
26
    uint32_t segid = header.segment_id();
119
    // Ensure there are enough space and mapping are built.
120
26
    SegIdMapping* mapping = nullptr;
121
26
    {
122
26
        std::lock_guard lock_guard(_lock);
123
26
        if (!_segids_mapping.contains(src_id)) {
124
14
            _segids_mapping[src_id] = std::make_unique<SegIdMapping>();
125
14
        }
126
26
        mapping = _segids_mapping[src_id].get();
127
26
    }
128
26
    if (segid + 1 > mapping->size()) {
129
        // TODO: Each sender lock is enough.
130
15
        std::lock_guard lock_guard(_lock);
131
15
        ssize_t origin_size = mapping->size();
132
15
        if (segid + 1 > origin_size) {
133
15
            mapping->resize(segid + 1, std::numeric_limits<uint32_t>::max());
134
39
            for (size_t index = origin_size; index <= segid; index++) {
135
24
                mapping->at(index) = _next_segid;
136
24
                _next_segid++;
137
24
                VLOG_DEBUG << "src_id=" << src_id << ", segid=" << index << " to "
138
0
                           << " segid=" << _next_segid - 1 << ", " << *this;
139
24
            }
140
15
        }
141
15
    }
142
143
    // Each sender sends data in one segment sequential, so we also do not
144
    // need a lock here.
145
26
    bool eos = header.segment_eos();
146
26
    FileType file_type = header.file_type();
147
26
    uint32_t new_segid = mapping->at(segid);
148
26
    DCHECK(new_segid != std::numeric_limits<uint32_t>::max());
149
26
    butil::IOBuf buf = data->movable();
150
26
    auto flush_func = [this, new_segid, eos, buf, header, file_type]() mutable {
151
26
        signal::set_signal_task_id(_load_id);
152
26
        g_load_stream_flush_running_threads << -1;
153
26
        auto st = _load_stream_writer->append_data(new_segid, header.offset(), buf, file_type);
154
26
        if (!st.ok() && !config::is_cloud_mode()) {
155
1
            auto res = ExecEnv::get_tablet(_id);
156
1
            TabletSharedPtr tablet =
157
1
                    res.has_value() ? std::dynamic_pointer_cast<Tablet>(res.value()) : nullptr;
158
1
            if (tablet) {
159
1
                tablet->report_error(st);
160
1
            }
161
1
        }
162
26
        if (eos && st.ok()) {
163
21
            DBUG_EXECUTE_IF("TabletStream.append_data.unknown_file_type",
164
21
                            { file_type = static_cast<FileType>(-1); });
165
21
            if (file_type == FileType::SEGMENT_FILE || file_type == FileType::INVERTED_INDEX_FILE) {
166
21
                st = _load_stream_writer->close_writer(new_segid, file_type);
167
21
            } else {
168
0
                st = Status::InternalError(
169
0
                        "appent data failed, file type error, file type = {}, "
170
0
                        "segment_id={}",
171
0
                        file_type, new_segid);
172
0
            }
173
21
        }
174
26
        DBUG_EXECUTE_IF("TabletStream.append_data.append_failed",
175
26
                        { st = Status::InternalError("fault injection"); });
176
26
        if (!st.ok()) {
177
2
            _status.update(st);
178
2
            LOG(WARNING) << "write data failed " << st << ", " << *this;
179
2
        }
180
26
    };
181
26
    auto load_stream_flush_token_max_tasks = config::load_stream_flush_token_max_tasks;
182
26
    auto load_stream_max_wait_flush_token_time_ms =
183
26
            config::load_stream_max_wait_flush_token_time_ms;
184
26
    DBUG_EXECUTE_IF("TabletStream.append_data.long_wait", {
185
26
        load_stream_flush_token_max_tasks = 0;
186
26
        load_stream_max_wait_flush_token_time_ms = 1000;
187
26
    });
188
26
    MonotonicStopWatch timer;
189
26
    timer.start();
190
26
    while (_flush_token->num_tasks() >= load_stream_flush_token_max_tasks) {
191
0
        if (timer.elapsed_time() / 1000 / 1000 >= load_stream_max_wait_flush_token_time_ms) {
192
0
            _status.update(
193
0
                    Status::Error<true>("wait flush token back pressure time is more than "
194
0
                                        "load_stream_max_wait_flush_token_time {}",
195
0
                                        load_stream_max_wait_flush_token_time_ms));
196
0
            return _status.status();
197
0
        }
198
0
        bthread_usleep(2 * 1000); // 2ms
199
0
    }
200
26
    timer.stop();
201
26
    int64_t time_ms = timer.elapsed_time() / 1000 / 1000;
202
26
    g_load_stream_flush_wait_ms << time_ms;
203
26
    g_load_stream_flush_running_threads << 1;
204
26
    Status st = Status::OK();
205
26
    DBUG_EXECUTE_IF("TabletStream.append_data.submit_func_failed",
206
26
                    { st = Status::InternalError("fault injection"); });
207
26
    if (st.ok()) {
208
26
        st = _flush_token->submit_func(flush_func);
209
26
    }
210
26
    if (!st.ok()) {
211
0
        _status.update(st);
212
0
    }
213
26
    return _status.status();
214
26
}
215
216
0
Status TabletStream::add_segment(const PStreamHeader& header, butil::IOBuf* data) {
217
0
    if (!_status.ok()) {
218
0
        return _status.status();
219
0
    }
220
221
0
    SCOPED_TIMER(_add_segment_timer);
222
0
    DCHECK(header.has_segment_statistics());
223
0
    SegmentStatistics stat(header.segment_statistics());
224
225
0
    int64_t src_id = header.src_id();
226
0
    uint32_t segid = header.segment_id();
227
0
    uint32_t new_segid;
228
0
    DBUG_EXECUTE_IF("TabletStream.add_segment.unknown_segid", { segid = UNKNOWN_ID_FOR_TEST; });
229
0
    {
230
0
        std::lock_guard lock_guard(_lock);
231
0
        if (!_segids_mapping.contains(src_id)) {
232
0
            _status.update(Status::InternalError(
233
0
                    "add segment failed, no segment written by this src be yet, src_id={}, "
234
0
                    "segment_id={}",
235
0
                    src_id, segid));
236
0
            return _status.status();
237
0
        }
238
0
        DBUG_EXECUTE_IF("TabletStream.add_segment.segid_never_written",
239
0
                        { segid = static_cast<uint32_t>(_segids_mapping[src_id]->size()); });
240
0
        if (segid >= _segids_mapping[src_id]->size()) {
241
0
            _status.update(Status::InternalError(
242
0
                    "add segment failed, segment is never written, src_id={}, segment_id={}",
243
0
                    src_id, segid));
244
0
            return _status.status();
245
0
        }
246
0
        new_segid = _segids_mapping[src_id]->at(segid);
247
0
    }
248
0
    DCHECK(new_segid != std::numeric_limits<uint32_t>::max());
249
250
0
    auto add_segment_func = [this, new_segid, stat]() {
251
0
        signal::set_signal_task_id(_load_id);
252
0
        auto st = _load_stream_writer->add_segment(new_segid, stat);
253
0
        DBUG_EXECUTE_IF("TabletStream.add_segment.add_segment_failed",
254
0
                        { st = Status::InternalError("fault injection"); });
255
0
        if (!st.ok()) {
256
0
            _status.update(st);
257
0
            LOG(INFO) << "add segment failed " << *this;
258
0
        }
259
0
    };
260
0
    Status st = Status::OK();
261
0
    DBUG_EXECUTE_IF("TabletStream.add_segment.submit_func_failed",
262
0
                    { st = Status::InternalError("fault injection"); });
263
0
    if (st.ok()) {
264
0
        st = _flush_token->submit_func(add_segment_func);
265
0
    }
266
0
    if (!st.ok()) {
267
0
        _status.update(st);
268
0
    }
269
0
    return _status.status();
270
0
}
271
272
30
Status TabletStream::_run_in_heavy_work_pool(std::function<Status()> fn) {
273
30
    bthread::Mutex mu;
274
30
    std::unique_lock<bthread::Mutex> lock(mu);
275
30
    bthread::ConditionVariable cv;
276
30
    auto st = Status::OK();
277
30
    auto func = [this, &mu, &cv, &st, &fn] {
278
30
        signal::set_signal_task_id(_load_id);
279
30
        st = fn();
280
30
        std::lock_guard<bthread::Mutex> lock(mu);
281
30
        cv.notify_one();
282
30
    };
283
30
    bool ret = _load_stream_mgr->heavy_work_pool()->try_offer(func);
284
30
    if (!ret) {
285
0
        return Status::Error<ErrorCode::INTERNAL_ERROR>(
286
0
                "there is not enough thread resource for close load");
287
0
    }
288
30
    cv.wait(lock);
289
30
    return st;
290
30
}
291
292
14
void TabletStream::pre_close() {
293
14
    if (!_status.ok()) {
294
        // cancel all pending tasks, wait all running tasks to finish
295
1
        _flush_token->shutdown();
296
1
        return;
297
1
    }
298
299
13
    SCOPED_TIMER(_close_wait_timer);
300
13
    _status.update(_run_in_heavy_work_pool([this]() {
301
13
        _flush_token->wait();
302
13
        return Status::OK();
303
13
    }));
304
    // it is necessary to check status after wait_func,
305
    // for create_rowset could fail during add_segment when loading to MOW table,
306
    // in this case, should skip close to avoid submit_calc_delete_bitmap_task which could cause coredump.
307
13
    if (!_status.ok()) {
308
2
        return;
309
2
    }
310
311
11
    DBUG_EXECUTE_IF("TabletStream.close.segment_num_mismatch", { _num_segments++; });
312
11
    if (_check_num_segments && (_next_segid.load() != _num_segments)) {
313
2
        _status.update(Status::Corruption(
314
2
                "segment num mismatch in tablet {}, expected: {}, actual: {}, load_id: {}", _id,
315
2
                _num_segments, _next_segid.load(), print_id(_load_id)));
316
2
        return;
317
2
    }
318
319
9
    _status.update(_run_in_heavy_work_pool([this]() { return _load_stream_writer->pre_close(); }));
320
9
}
321
322
14
Status TabletStream::close() {
323
14
    if (!_status.ok()) {
324
6
        return _status.status();
325
6
    }
326
327
8
    SCOPED_TIMER(_close_wait_timer);
328
8
    _status.update(_run_in_heavy_work_pool([this]() { return _load_stream_writer->close(); }));
329
8
    return _status.status();
330
14
}
331
332
IndexStream::IndexStream(const PUniqueId& load_id, int64_t id, int64_t txn_id,
333
                         std::shared_ptr<OlapTableSchemaParam> schema,
334
                         LoadStreamMgr* load_stream_mgr, RuntimeProfile* profile)
335
28
        : _id(id),
336
28
          _load_id(load_id),
337
28
          _txn_id(txn_id),
338
28
          _schema(schema),
339
28
          _load_stream_mgr(load_stream_mgr) {
340
28
    _profile = profile->create_child(fmt::format("IndexStream {}", id), true, true);
341
28
    _append_data_timer = ADD_TIMER(_profile, "AppendDataTime");
342
28
    _close_wait_timer = ADD_TIMER(_profile, "CloseWaitTime");
343
28
}
344
345
27
Status IndexStream::append_data(const PStreamHeader& header, butil::IOBuf* data) {
346
27
    SCOPED_TIMER(_append_data_timer);
347
27
    int64_t tablet_id = header.tablet_id();
348
27
    TabletStreamSharedPtr tablet_stream;
349
27
    {
350
27
        std::lock_guard lock_guard(_lock);
351
27
        auto it = _tablet_streams_map.find(tablet_id);
352
27
        if (it == _tablet_streams_map.end()) {
353
13
            _init_tablet_stream(tablet_stream, tablet_id, header.partition_id());
354
14
        } else {
355
14
            tablet_stream = it->second;
356
14
        }
357
27
    }
358
359
27
    return tablet_stream->append_data(header, data);
360
27
}
361
362
void IndexStream::_init_tablet_stream(TabletStreamSharedPtr& tablet_stream, int64_t tablet_id,
363
14
                                      int64_t partition_id) {
364
14
    tablet_stream = std::make_shared<TabletStream>(_load_id, tablet_id, _txn_id, _load_stream_mgr,
365
14
                                                   _profile);
366
14
    _tablet_streams_map[tablet_id] = tablet_stream;
367
14
    auto st = tablet_stream->init(_schema, _id, partition_id);
368
14
    if (!st.ok()) {
369
1
        LOG(WARNING) << "tablet stream init failed " << *tablet_stream;
370
1
    }
371
14
}
372
373
void IndexStream::close(const std::vector<PTabletID>& tablets_to_commit,
374
28
                        std::vector<int64_t>* success_tablet_ids, FailedTablets* failed_tablets) {
375
28
    std::lock_guard lock_guard(_lock);
376
28
    SCOPED_TIMER(_close_wait_timer);
377
    // open all need commit tablets
378
34
    for (const auto& tablet : tablets_to_commit) {
379
34
        if (_id != tablet.index_id()) {
380
18
            continue;
381
18
        }
382
16
        TabletStreamSharedPtr tablet_stream;
383
16
        auto it = _tablet_streams_map.find(tablet.tablet_id());
384
16
        if (it == _tablet_streams_map.end()) {
385
1
            _init_tablet_stream(tablet_stream, tablet.tablet_id(), tablet.partition_id());
386
15
        } else {
387
15
            tablet_stream = it->second;
388
15
        }
389
16
        if (tablet.has_num_segments()) {
390
16
            tablet_stream->add_num_segments(tablet.num_segments());
391
16
        } else {
392
            // for compatibility reasons (sink from old version BE)
393
0
            tablet_stream->disable_num_segments_check();
394
0
        }
395
16
    }
396
397
28
    for (auto& [_, tablet_stream] : _tablet_streams_map) {
398
14
        tablet_stream->pre_close();
399
14
    }
400
401
28
    for (auto& [_, tablet_stream] : _tablet_streams_map) {
402
14
        auto st = tablet_stream->close();
403
14
        if (st.ok()) {
404
8
            success_tablet_ids->push_back(tablet_stream->id());
405
8
        } else {
406
6
            LOG(INFO) << "close tablet stream " << *tablet_stream << ", status=" << st;
407
6
            failed_tablets->emplace_back(tablet_stream->id(), st);
408
6
        }
409
14
    }
410
28
}
411
412
// TODO: Profile is temporary disabled, because:
413
// 1. It's not being processed by the upstream for now
414
// 2. There are some problems in _profile->to_thrift()
415
LoadStream::LoadStream(const PUniqueId& load_id, LoadStreamMgr* load_stream_mgr,
416
                       bool enable_profile)
417
14
        : _load_id(load_id), _enable_profile(false), _load_stream_mgr(load_stream_mgr) {
418
14
    g_load_stream_cnt << 1;
419
14
    _profile = std::make_unique<RuntimeProfile>("LoadStream");
420
14
    _append_data_timer = ADD_TIMER(_profile, "AppendDataTime");
421
14
    _close_wait_timer = ADD_TIMER(_profile, "CloseWaitTime");
422
14
    TUniqueId load_tid = ((UniqueId)load_id).to_thrift();
423
#ifndef BE_TEST
424
    std::shared_ptr<QueryContext> query_context =
425
            ExecEnv::GetInstance()->fragment_mgr()->get_query_ctx(load_tid);
426
    if (query_context != nullptr) {
427
        _resource_ctx = query_context->resource_ctx();
428
    } else {
429
        _resource_ctx = ResourceContext::create_shared();
430
        _resource_ctx->task_controller()->set_task_id(load_tid);
431
        std::shared_ptr<MemTrackerLimiter> mem_tracker = MemTrackerLimiter::create_shared(
432
                MemTrackerLimiter::Type::LOAD,
433
                fmt::format("(FromLoadStream)Load#Id={}", ((UniqueId)load_id).to_string()));
434
        _resource_ctx->memory_context()->set_mem_tracker(mem_tracker);
435
    }
436
#else
437
14
    _resource_ctx = ResourceContext::create_shared();
438
14
    _resource_ctx->task_controller()->set_task_id(load_tid);
439
14
    std::shared_ptr<MemTrackerLimiter> mem_tracker = MemTrackerLimiter::create_shared(
440
14
            MemTrackerLimiter::Type::LOAD,
441
14
            fmt::format("(FromLoadStream)Load#Id={}", ((UniqueId)load_id).to_string()));
442
14
    _resource_ctx->memory_context()->set_mem_tracker(mem_tracker);
443
14
#endif
444
14
}
445
446
14
LoadStream::~LoadStream() {
447
14
    g_load_stream_cnt << -1;
448
14
    LOG(INFO) << "load stream is deconstructed " << *this;
449
14
}
450
451
14
Status LoadStream::init(const POpenLoadStreamRequest* request) {
452
14
    _txn_id = request->txn_id();
453
14
    _total_streams = static_cast<int32_t>(request->total_streams());
454
14
    _is_incremental = (_total_streams == 0);
455
456
14
    _schema = std::make_shared<OlapTableSchemaParam>();
457
14
    RETURN_IF_ERROR(_schema->init(request->schema()));
458
28
    for (auto& index : request->schema().indexes()) {
459
28
        _index_streams_map[index.id()] = std::make_shared<IndexStream>(
460
28
                _load_id, index.id(), _txn_id, _schema, _load_stream_mgr, _profile.get());
461
28
    }
462
14
    LOG(INFO) << "succeed to init load stream " << *this;
463
14
    return Status::OK();
464
14
}
465
466
void LoadStream::close(int64_t src_id, const std::vector<PTabletID>& tablets_to_commit,
467
16
                       std::vector<int64_t>* success_tablet_ids, FailedTablets* failed_tablets) {
468
16
    std::lock_guard<bthread::Mutex> lock_guard(_lock);
469
16
    SCOPED_TIMER(_close_wait_timer);
470
471
    // we do nothing until recv CLOSE_LOAD from all stream to ensure all data are handled before ack
472
16
    _open_streams[src_id]--;
473
16
    if (_open_streams[src_id] == 0) {
474
16
        _open_streams.erase(src_id);
475
16
    }
476
16
    _close_load_cnt++;
477
16
    LOG(INFO) << "received CLOSE_LOAD from sender " << src_id << ", remaining "
478
16
              << _total_streams - _close_load_cnt << " senders, " << *this;
479
480
16
    _tablets_to_commit.insert(_tablets_to_commit.end(), tablets_to_commit.begin(),
481
16
                              tablets_to_commit.end());
482
483
16
    if (_close_load_cnt < _total_streams) {
484
        // do not return commit info if there is remaining streams.
485
2
        return;
486
2
    }
487
488
28
    for (auto& [_, index_stream] : _index_streams_map) {
489
28
        index_stream->close(_tablets_to_commit, success_tablet_ids, failed_tablets);
490
28
    }
491
14
    LOG(INFO) << "close load " << *this << ", success_tablet_num=" << success_tablet_ids->size()
492
14
              << ", failed_tablet_num=" << failed_tablets->size();
493
14
}
494
495
void LoadStream::_report_result(StreamId stream, const Status& status,
496
                                const std::vector<int64_t>& success_tablet_ids,
497
36
                                const FailedTablets& failed_tablets, bool eos) {
498
36
    LOG(INFO) << "report result " << *this << ", success tablet num " << success_tablet_ids.size()
499
36
              << ", failed tablet num " << failed_tablets.size();
500
36
    butil::IOBuf buf;
501
36
    PLoadStreamResponse response;
502
36
    response.set_eos(eos);
503
36
    status.to_protobuf(response.mutable_status());
504
36
    for (auto& id : success_tablet_ids) {
505
8
        response.add_success_tablet_ids(id);
506
8
    }
507
36
    for (auto& [id, st] : failed_tablets) {
508
10
        auto pb = response.add_failed_tablets();
509
10
        pb->set_id(id);
510
10
        st.to_protobuf(pb->mutable_status());
511
10
    }
512
513
36
    if (_enable_profile && _close_load_cnt == _total_streams) {
514
0
        TRuntimeProfileTree tprofile;
515
0
        ThriftSerializer ser(false, 4096);
516
0
        uint8_t* profile_buf = nullptr;
517
0
        uint32_t len = 0;
518
0
        std::unique_lock<bthread::Mutex> l(_lock);
519
520
0
        _profile->to_thrift(&tprofile);
521
0
        auto st = ser.serialize(&tprofile, &len, &profile_buf);
522
0
        if (st.ok()) {
523
0
            response.set_load_stream_profile(profile_buf, len);
524
0
        } else {
525
0
            LOG(WARNING) << "TRuntimeProfileTree serialize failed, errmsg=" << st << ", " << *this;
526
0
        }
527
0
    }
528
529
36
    buf.append(response.SerializeAsString());
530
36
    auto wst = _write_stream(stream, buf);
531
36
    if (!wst.ok()) {
532
0
        LOG(WARNING) << " report result failed with " << wst << ", " << *this;
533
0
    }
534
36
}
535
536
0
void LoadStream::_report_schema(StreamId stream, const PStreamHeader& hdr) {
537
0
    butil::IOBuf buf;
538
0
    PLoadStreamResponse response;
539
0
    Status st = Status::OK();
540
0
    for (const auto& req : hdr.tablets()) {
541
0
        BaseTabletSPtr tablet;
542
0
        if (auto res = ExecEnv::get_tablet(req.tablet_id()); res.has_value()) {
543
0
            tablet = std::move(res).value();
544
0
        } else {
545
0
            st = std::move(res).error();
546
0
            break;
547
0
        }
548
0
        auto* resp = response.add_tablet_schemas();
549
0
        resp->set_index_id(req.index_id());
550
0
        resp->set_enable_unique_key_merge_on_write(tablet->enable_unique_key_merge_on_write());
551
0
        tablet->tablet_schema()->to_schema_pb(resp->mutable_tablet_schema());
552
0
    }
553
0
    st.to_protobuf(response.mutable_status());
554
555
0
    buf.append(response.SerializeAsString());
556
0
    auto wst = _write_stream(stream, buf);
557
0
    if (!wst.ok()) {
558
0
        LOG(WARNING) << " report result failed with " << wst << ", " << *this;
559
0
    }
560
0
}
561
562
36
Status LoadStream::_write_stream(StreamId stream, butil::IOBuf& buf) {
563
36
    for (;;) {
564
36
        int ret = 0;
565
36
        DBUG_EXECUTE_IF("LoadStream._write_stream.EAGAIN", { ret = EAGAIN; });
566
36
        if (ret == 0) {
567
36
            ret = brpc::StreamWrite(stream, buf);
568
36
        }
569
36
        switch (ret) {
570
36
        case 0:
571
36
            return Status::OK();
572
0
        case EAGAIN: {
573
0
            const timespec time = butil::seconds_from_now(config::load_stream_eagain_wait_seconds);
574
0
            int wait_ret = brpc::StreamWait(stream, &time);
575
0
            if (wait_ret != 0) {
576
0
                return Status::InternalError("StreamWait failed, err={}", wait_ret);
577
0
            }
578
0
            break;
579
0
        }
580
0
        default:
581
0
            return Status::InternalError("StreamWrite failed, err={}", ret);
582
36
        }
583
36
    }
584
0
    return Status::OK();
585
36
}
586
587
62
void LoadStream::_parse_header(butil::IOBuf* const message, PStreamHeader& hdr) {
588
62
    butil::IOBufAsZeroCopyInputStream wrapper(*message);
589
62
    hdr.ParseFromZeroCopyStream(&wrapper);
590
62
    VLOG_DEBUG << "header parse result: " << hdr.DebugString();
591
62
}
592
593
28
Status LoadStream::_append_data(const PStreamHeader& header, butil::IOBuf* data) {
594
28
    SCOPED_TIMER(_append_data_timer);
595
28
    IndexStreamSharedPtr index_stream;
596
597
28
    int64_t index_id = header.index_id();
598
28
    DBUG_EXECUTE_IF("TabletStream._append_data.unknown_indexid",
599
28
                    { index_id = UNKNOWN_ID_FOR_TEST; });
600
28
    auto it = _index_streams_map.find(index_id);
601
28
    if (it == _index_streams_map.end()) {
602
1
        return Status::Error<ErrorCode::INVALID_ARGUMENT>("unknown index_id {}", index_id);
603
27
    } else {
604
27
        index_stream = it->second;
605
27
    }
606
607
27
    return index_stream->append_data(header, data);
608
28
}
609
610
49
int LoadStream::on_received_messages(StreamId id, butil::IOBuf* const messages[], size_t size) {
611
49
    VLOG_DEBUG << "on_received_messages " << id << " " << size;
612
111
    for (size_t i = 0; i < size; ++i) {
613
124
        while (messages[i]->size() > 0) {
614
            // step 1: parse header
615
62
            size_t hdr_len = 0;
616
62
            messages[i]->cutn((void*)&hdr_len, sizeof(size_t));
617
62
            butil::IOBuf hdr_buf;
618
62
            PStreamHeader hdr;
619
62
            messages[i]->cutn(&hdr_buf, hdr_len);
620
62
            _parse_header(&hdr_buf, hdr);
621
622
            // step 2: cut data
623
62
            size_t data_len = 0;
624
62
            messages[i]->cutn((void*)&data_len, sizeof(size_t));
625
62
            butil::IOBuf data_buf;
626
62
            PStreamHeader data;
627
62
            messages[i]->cutn(&data_buf, data_len);
628
629
            // step 3: dispatch
630
62
            _dispatch(id, hdr, &data_buf);
631
62
        }
632
62
    }
633
49
    return 0;
634
49
}
635
636
62
void LoadStream::_dispatch(StreamId id, const PStreamHeader& hdr, butil::IOBuf* data) {
637
62
    VLOG_DEBUG << PStreamHeader_Opcode_Name(hdr.opcode()) << " from " << hdr.src_id()
638
0
               << " with tablet " << hdr.tablet_id();
639
62
    SCOPED_ATTACH_TASK(_resource_ctx);
640
    // CLOSE_LOAD message should not be fault injected,
641
    // otherwise the message will be ignored and causing close wait timeout
642
62
    if (hdr.opcode() != PStreamHeader::CLOSE_LOAD) {
643
30
        DBUG_EXECUTE_IF("LoadStream._dispatch.unknown_loadid", {
644
30
            PStreamHeader& t_hdr = const_cast<PStreamHeader&>(hdr);
645
30
            PUniqueId* load_id = t_hdr.mutable_load_id();
646
30
            load_id->set_hi(UNKNOWN_ID_FOR_TEST);
647
30
            load_id->set_lo(UNKNOWN_ID_FOR_TEST);
648
30
        });
649
30
        DBUG_EXECUTE_IF("LoadStream._dispatch.unknown_srcid", {
650
30
            PStreamHeader& t_hdr = const_cast<PStreamHeader&>(hdr);
651
30
            t_hdr.set_src_id(UNKNOWN_ID_FOR_TEST);
652
30
        });
653
30
    }
654
62
    if (UniqueId(hdr.load_id()) != UniqueId(_load_id)) {
655
1
        Status st = Status::Error<ErrorCode::INVALID_ARGUMENT>(
656
1
                "invalid load id {}, expected {}", print_id(hdr.load_id()), print_id(_load_id));
657
1
        _report_failure(id, st, hdr);
658
1
        return;
659
1
    }
660
661
61
    {
662
61
        std::lock_guard lock_guard(_lock);
663
61
        if (!_open_streams.contains(hdr.src_id())) {
664
17
            Status st = Status::Error<ErrorCode::INVALID_ARGUMENT>("no open stream from source {}",
665
17
                                                                   hdr.src_id());
666
17
            _report_failure(id, st, hdr);
667
17
            return;
668
17
        }
669
61
    }
670
671
44
    switch (hdr.opcode()) {
672
0
    case PStreamHeader::ADD_SEGMENT: // ADD_SEGMENT will be dispatched inside TabletStream
673
28
    case PStreamHeader::APPEND_DATA: {
674
28
        auto st = _append_data(hdr, data);
675
28
        if (!st.ok()) {
676
2
            _report_failure(id, st, hdr);
677
2
        }
678
28
    } break;
679
16
    case PStreamHeader::CLOSE_LOAD: {
680
16
        std::vector<int64_t> success_tablet_ids;
681
16
        FailedTablets failed_tablets;
682
16
        std::vector<PTabletID> tablets_to_commit(hdr.tablets().begin(), hdr.tablets().end());
683
16
        close(hdr.src_id(), tablets_to_commit, &success_tablet_ids, &failed_tablets);
684
16
        _report_result(id, Status::OK(), success_tablet_ids, failed_tablets, true);
685
16
        brpc::StreamClose(id);
686
16
    } break;
687
0
    case PStreamHeader::GET_SCHEMA: {
688
0
        _report_schema(id, hdr);
689
0
    } break;
690
0
    default:
691
0
        LOG(WARNING) << "unexpected stream message " << hdr.opcode() << ", " << *this;
692
0
        DCHECK(false);
693
44
    }
694
44
}
695
696
0
void LoadStream::on_idle_timeout(StreamId id) {
697
0
    LOG(WARNING) << "closing load stream on idle timeout, " << *this;
698
0
    brpc::StreamClose(id);
699
0
}
700
701
16
void LoadStream::on_closed(StreamId id) {
702
    // `this` may be freed by other threads after increasing `_close_rpc_cnt`,
703
    // format string first to prevent use-after-free
704
16
    std::stringstream ss;
705
16
    ss << *this;
706
16
    auto remaining_streams = _total_streams - _close_rpc_cnt.fetch_add(1) - 1;
707
16
    LOG(INFO) << "stream " << id << " on_closed, remaining streams = " << remaining_streams << ", "
708
16
              << ss.str();
709
16
    if (remaining_streams == 0) {
710
14
        _load_stream_mgr->clear_load(_load_id);
711
14
    }
712
16
}
713
714
110
inline std::ostream& operator<<(std::ostream& ostr, const LoadStream& load_stream) {
715
110
    ostr << "load_id=" << print_id(load_stream._load_id) << ", txn_id=" << load_stream._txn_id;
716
110
    return ostr;
717
110
}
718
719
#include "common/compile_check_end.h"
720
} // namespace doris