Coverage Report

Created: 2026-01-23 18:48

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/exec/rowid_fetcher.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
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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
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// "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
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
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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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#include "exec/rowid_fetcher.h"
19
20
#include <brpc/callback.h>
21
#include <butil/endpoint.h>
22
#include <fmt/format.h>
23
#include <gen_cpp/data.pb.h>
24
#include <gen_cpp/internal_service.pb.h>
25
#include <gen_cpp/olap_file.pb.h>
26
#include <gen_cpp/types.pb.h>
27
#include <glog/logging.h>
28
#include <stddef.h>
29
#include <stdint.h>
30
31
#include <algorithm>
32
#include <cstdint>
33
#include <memory>
34
#include <ostream>
35
#include <string>
36
#include <unordered_map>
37
#include <utility>
38
#include <vector>
39
40
#include "bthread/countdown_event.h"
41
#include "cloud/cloud_storage_engine.h"
42
#include "cloud/cloud_tablet.h"
43
#include "cloud/cloud_tablet_mgr.h"
44
#include "cloud/config.h"
45
#include "common/config.h"
46
#include "common/consts.h"
47
#include "common/exception.h"
48
#include "common/signal_handler.h"
49
#include "exec/tablet_info.h" // DorisNodesInfo
50
#include "olap/olap_common.h"
51
#include "olap/rowset/beta_rowset.h"
52
#include "olap/storage_engine.h"
53
#include "olap/tablet_fwd.h"
54
#include "olap/tablet_manager.h"
55
#include "olap/tablet_schema.h"
56
#include "olap/utils.h"
57
#include "runtime/descriptors.h"
58
#include "runtime/exec_env.h"      // ExecEnv
59
#include "runtime/fragment_mgr.h"  // FragmentMgr
60
#include "runtime/runtime_state.h" // RuntimeState
61
#include "runtime/types.h"
62
#include "runtime/workload_group/workload_group_manager.h"
63
#include "semaphore"
64
#include "util/brpc_client_cache.h" // BrpcClientCache
65
#include "util/defer_op.h"
66
#include "vec/columns/column.h"
67
#include "vec/columns/column_nullable.h"
68
#include "vec/columns/column_string.h"
69
#include "vec/common/assert_cast.h"
70
#include "vec/common/string_ref.h"
71
#include "vec/core/block.h" // Block
72
#include "vec/data_types/data_type_factory.hpp"
73
#include "vec/data_types/data_type_struct.h"
74
#include "vec/data_types/serde/data_type_serde.h"
75
#include "vec/exec/format/orc/vorc_reader.h"
76
#include "vec/exec/format/parquet/vparquet_reader.h"
77
#include "vec/exec/scan/file_scanner.h"
78
#include "vec/functions/function_helpers.h"
79
#include "vec/jsonb/serialize.h"
80
81
namespace doris {
82
83
#include "common/compile_check_begin.h"
84
85
0
Status RowIDFetcher::init() {
86
0
    DorisNodesInfo nodes_info;
87
0
    nodes_info.setNodes(_fetch_option.t_fetch_opt.nodes_info);
88
0
    for (auto [node_id, node_info] : nodes_info.nodes_info()) {
89
0
        auto client = ExecEnv::GetInstance()->brpc_internal_client_cache()->get_client(
90
0
                node_info.host, node_info.brpc_port);
91
0
        if (!client) {
92
0
            LOG(WARNING) << "Get rpc stub failed, host=" << node_info.host
93
0
                         << ", port=" << node_info.brpc_port;
94
0
            return Status::InternalError("RowIDFetcher failed to init rpc client, host={}, port={}",
95
0
                                         node_info.host, node_info.brpc_port);
96
0
        }
97
0
        _stubs.push_back(client);
98
0
    }
99
0
    return Status::OK();
100
0
}
101
102
0
PMultiGetRequest RowIDFetcher::_init_fetch_request(const vectorized::ColumnString& row_locs) const {
103
0
    PMultiGetRequest mget_req;
104
0
    _fetch_option.desc->to_protobuf(mget_req.mutable_desc());
105
0
    for (SlotDescriptor* slot : _fetch_option.desc->slots()) {
106
        // ignore rowid
107
0
        if (slot->col_name() == BeConsts::ROWID_COL) {
108
0
            continue;
109
0
        }
110
0
        slot->to_protobuf(mget_req.add_slots());
111
0
    }
112
0
    for (size_t i = 0; i < row_locs.size(); ++i) {
113
0
        PRowLocation row_loc;
114
0
        StringRef row_id_rep = row_locs.get_data_at(i);
115
        // TODO: When transferring data between machines with different byte orders (endianness),
116
        // not performing proper handling may lead to issues in parsing and exchanging the data.
117
0
        auto location = reinterpret_cast<const GlobalRowLoacation*>(row_id_rep.data);
118
0
        row_loc.set_tablet_id(location->tablet_id);
119
0
        row_loc.set_rowset_id(location->row_location.rowset_id.to_string());
120
0
        row_loc.set_segment_id(location->row_location.segment_id);
121
0
        row_loc.set_ordinal_id(location->row_location.row_id);
122
0
        *mget_req.add_row_locs() = std::move(row_loc);
123
0
    }
124
    // Set column desc
125
0
    for (const TColumn& tcolumn : _fetch_option.t_fetch_opt.column_desc) {
126
0
        TabletColumn column(tcolumn);
127
0
        column.to_schema_pb(mget_req.add_column_desc());
128
0
    }
129
0
    PUniqueId& query_id = *mget_req.mutable_query_id();
130
0
    query_id.set_hi(_fetch_option.runtime_state->query_id().hi);
131
0
    query_id.set_lo(_fetch_option.runtime_state->query_id().lo);
132
0
    mget_req.set_be_exec_version(_fetch_option.runtime_state->be_exec_version());
133
0
    mget_req.set_fetch_row_store(_fetch_option.t_fetch_opt.fetch_row_store);
134
0
    return mget_req;
135
0
}
136
137
Status RowIDFetcher::_merge_rpc_results(const PMultiGetRequest& request,
138
                                        const std::vector<PMultiGetResponse>& rsps,
139
                                        const std::vector<brpc::Controller>& cntls,
140
                                        vectorized::Block* output_block,
141
0
                                        std::vector<PRowLocation>* rows_id) const {
142
0
    output_block->clear();
143
0
    for (const auto& cntl : cntls) {
144
0
        if (cntl.Failed()) {
145
0
            LOG(WARNING) << "Failed to fetch meet rpc error:" << cntl.ErrorText()
146
0
                         << ", host:" << cntl.remote_side();
147
0
            return Status::InternalError(cntl.ErrorText());
148
0
        }
149
0
    }
150
0
    vectorized::DataTypeSerDeSPtrs serdes;
151
0
    std::unordered_map<uint32_t, uint32_t> col_uid_to_idx;
152
0
    std::vector<std::string> default_values;
153
0
    default_values.resize(_fetch_option.desc->slots().size());
154
0
    auto merge_function = [&](const PMultiGetResponse& resp) {
155
0
        Status st(Status::create(resp.status()));
156
0
        if (!st.ok()) {
157
0
            LOG(WARNING) << "Failed to fetch " << st.to_string();
158
0
            return st;
159
0
        }
160
0
        for (const PRowLocation& row_id : resp.row_locs()) {
161
0
            rows_id->push_back(row_id);
162
0
        }
163
        // Merge binary rows
164
0
        if (request.fetch_row_store()) {
165
0
            CHECK(resp.row_locs().size() == resp.binary_row_data_size());
166
0
            if (output_block->is_empty_column()) {
167
0
                *output_block = vectorized::Block(_fetch_option.desc->slots(), 1);
168
0
            }
169
0
            if (serdes.empty() && col_uid_to_idx.empty()) {
170
0
                serdes = vectorized::create_data_type_serdes(_fetch_option.desc->slots());
171
0
                for (int i = 0; i < _fetch_option.desc->slots().size(); ++i) {
172
0
                    col_uid_to_idx[_fetch_option.desc->slots()[i]->col_unique_id()] = i;
173
0
                    default_values[i] = _fetch_option.desc->slots()[i]->col_default_value();
174
0
                }
175
0
            }
176
0
            for (int i = 0; i < resp.binary_row_data_size(); ++i) {
177
0
                RETURN_IF_ERROR(vectorized::JsonbSerializeUtil::jsonb_to_block(
178
0
                        serdes, resp.binary_row_data(i).data(), resp.binary_row_data(i).size(),
179
0
                        col_uid_to_idx, *output_block, default_values, {}));
180
0
            }
181
0
            return Status::OK();
182
0
        }
183
        // Merge partial blocks
184
0
        vectorized::Block partial_block;
185
0
        [[maybe_unused]] size_t uncompressed_size = 0;
186
0
        [[maybe_unused]] int64_t uncompressed_time = 0;
187
188
0
        RETURN_IF_ERROR(
189
0
                partial_block.deserialize(resp.block(), &uncompressed_size, &uncompressed_time));
190
0
        if (partial_block.is_empty_column()) {
191
0
            return Status::OK();
192
0
        }
193
0
        CHECK(resp.row_locs().size() == partial_block.rows());
194
0
        if (output_block->is_empty_column()) {
195
0
            output_block->swap(partial_block);
196
0
        } else if (partial_block.columns() != output_block->columns()) {
197
0
            return Status::Error<ErrorCode::INTERNAL_ERROR>(
198
0
                    "Merge block not match, self:[{}], input:[{}], ", output_block->dump_types(),
199
0
                    partial_block.dump_types());
200
0
        } else {
201
0
            for (int i = 0; i < output_block->columns(); ++i) {
202
0
                output_block->get_by_position(i).column->assume_mutable()->insert_range_from(
203
0
                        *partial_block.get_by_position(i)
204
0
                                 .column->convert_to_full_column_if_const()
205
0
                                 .get(),
206
0
                        0, partial_block.rows());
207
0
            }
208
0
        }
209
0
        return Status::OK();
210
0
    };
211
212
0
    for (const auto& resp : rsps) {
213
0
        RETURN_IF_ERROR(merge_function(resp));
214
0
    }
215
0
    return Status::OK();
216
0
}
217
218
0
bool _has_char_type(const vectorized::DataTypePtr& type) {
219
0
    switch (type->get_primitive_type()) {
220
0
    case TYPE_CHAR: {
221
0
        return true;
222
0
    }
223
0
    case TYPE_ARRAY: {
224
0
        const auto* arr_type =
225
0
                assert_cast<const vectorized::DataTypeArray*>(remove_nullable(type).get());
226
0
        return _has_char_type(arr_type->get_nested_type());
227
0
    }
228
0
    case TYPE_MAP: {
229
0
        const auto* map_type =
230
0
                assert_cast<const vectorized::DataTypeMap*>(remove_nullable(type).get());
231
0
        return _has_char_type(map_type->get_key_type()) ||
232
0
               _has_char_type(map_type->get_value_type());
233
0
    }
234
0
    case TYPE_STRUCT: {
235
0
        const auto* struct_type =
236
0
                assert_cast<const vectorized::DataTypeStruct*>(remove_nullable(type).get());
237
0
        return std::any_of(
238
0
                struct_type->get_elements().begin(), struct_type->get_elements().end(),
239
0
                [&](const vectorized::DataTypePtr& dt) -> bool { return _has_char_type(dt); });
240
0
    }
241
0
    default:
242
0
        return false;
243
0
    }
244
0
}
245
246
Status RowIDFetcher::fetch(const vectorized::ColumnPtr& column_row_ids,
247
0
                           vectorized::Block* res_block) {
248
0
    CHECK(!_stubs.empty());
249
0
    PMultiGetRequest mget_req = _init_fetch_request(assert_cast<const vectorized::ColumnString&>(
250
0
            *vectorized::remove_nullable(column_row_ids).get()));
251
0
    std::vector<PMultiGetResponse> resps(_stubs.size());
252
0
    std::vector<brpc::Controller> cntls(_stubs.size());
253
0
    bthread::CountdownEvent counter(cast_set<int>(_stubs.size()));
254
0
    for (size_t i = 0; i < _stubs.size(); ++i) {
255
0
        cntls[i].set_timeout_ms(_fetch_option.runtime_state->execution_timeout() * 1000);
256
0
        auto callback = brpc::NewCallback(fetch_callback, &counter);
257
0
        _stubs[i]->multiget_data(&cntls[i], &mget_req, &resps[i], callback);
258
0
    }
259
0
    counter.wait();
260
261
    // Merge
262
0
    std::vector<PRowLocation> rows_locs;
263
0
    rows_locs.reserve(rows_locs.size());
264
0
    RETURN_IF_ERROR(_merge_rpc_results(mget_req, resps, cntls, res_block, &rows_locs));
265
0
    if (rows_locs.size() < column_row_ids->size()) {
266
0
        return Status::InternalError("Miss matched return row loc count {}, expected {}, input {}",
267
0
                                     rows_locs.size(), res_block->rows(), column_row_ids->size());
268
0
    }
269
    // Final sort by row_ids sequence, since row_ids is already sorted if need
270
0
    std::map<GlobalRowLoacation, size_t> positions;
271
0
    for (size_t i = 0; i < rows_locs.size(); ++i) {
272
0
        RowsetId rowset_id;
273
0
        rowset_id.init(rows_locs[i].rowset_id());
274
0
        GlobalRowLoacation grl(rows_locs[i].tablet_id(), rowset_id,
275
0
                               cast_set<uint32_t>(rows_locs[i].segment_id()),
276
0
                               cast_set<uint32_t>(rows_locs[i].ordinal_id()));
277
0
        positions[grl] = i;
278
0
    };
279
    // TODO remove this warning code
280
0
    if (positions.size() < rows_locs.size()) {
281
0
        LOG(WARNING) << "cwntains duplicated row entry";
282
0
    }
283
0
    vectorized::IColumn::Permutation permutation;
284
0
    permutation.reserve(column_row_ids->size());
285
0
    for (size_t i = 0; i < column_row_ids->size(); ++i) {
286
0
        auto location =
287
0
                reinterpret_cast<const GlobalRowLoacation*>(column_row_ids->get_data_at(i).data);
288
0
        permutation.push_back(positions[*location]);
289
0
    }
290
0
    for (size_t i = 0; i < res_block->columns(); ++i) {
291
0
        res_block->get_by_position(i).column =
292
0
                res_block->get_by_position(i).column->permute(permutation, permutation.size());
293
0
    }
294
    // Check row consistency
295
0
    RETURN_IF_CATCH_EXCEPTION(res_block->check_number_of_rows());
296
    // shrink for char type
297
0
    std::vector<size_t> char_type_idx;
298
0
    for (size_t i = 0; i < _fetch_option.desc->slots().size(); i++) {
299
0
        const auto& column_desc = _fetch_option.desc->slots()[i];
300
0
        const auto type = column_desc->type();
301
0
        if (_has_char_type(type)) {
302
0
            char_type_idx.push_back(i);
303
0
        }
304
0
    }
305
0
    res_block->shrink_char_type_column_suffix_zero(char_type_idx);
306
0
    VLOG_DEBUG << "dump block:" << res_block->dump_data(0, 10);
307
0
    return Status::OK();
308
0
}
309
310
struct IteratorKey {
311
    int64_t tablet_id;
312
    RowsetId rowset_id;
313
    uint64_t segment_id;
314
    int slot_id;
315
316
    // unordered map std::equal_to
317
0
    bool operator==(const IteratorKey& rhs) const {
318
0
        return tablet_id == rhs.tablet_id && rowset_id == rhs.rowset_id &&
319
0
               segment_id == rhs.segment_id && slot_id == rhs.slot_id;
320
0
    }
321
};
322
323
struct SegKey {
324
    int64_t tablet_id;
325
    RowsetId rowset_id;
326
    uint64_t segment_id;
327
328
    // unordered map std::equal_to
329
0
    bool operator==(const SegKey& rhs) const {
330
0
        return tablet_id == rhs.tablet_id && rowset_id == rhs.rowset_id &&
331
0
               segment_id == rhs.segment_id;
332
0
    }
333
};
334
335
struct HashOfSegKey {
336
0
    size_t operator()(const SegKey& key) const {
337
0
        size_t seed = 0;
338
0
        seed = HashUtil::hash64(&key.tablet_id, sizeof(key.tablet_id), seed);
339
0
        seed = HashUtil::hash64(&key.rowset_id.hi, sizeof(key.rowset_id.hi), seed);
340
0
        seed = HashUtil::hash64(&key.rowset_id.mi, sizeof(key.rowset_id.mi), seed);
341
0
        seed = HashUtil::hash64(&key.rowset_id.lo, sizeof(key.rowset_id.lo), seed);
342
0
        seed = HashUtil::hash64(&key.segment_id, sizeof(key.segment_id), seed);
343
0
        return seed;
344
0
    }
345
};
346
347
struct HashOfIteratorKey {
348
0
    size_t operator()(const IteratorKey& key) const {
349
0
        size_t seed = 0;
350
0
        seed = HashUtil::hash64(&key.tablet_id, sizeof(key.tablet_id), seed);
351
0
        seed = HashUtil::hash64(&key.rowset_id.hi, sizeof(key.rowset_id.hi), seed);
352
0
        seed = HashUtil::hash64(&key.rowset_id.mi, sizeof(key.rowset_id.mi), seed);
353
0
        seed = HashUtil::hash64(&key.rowset_id.lo, sizeof(key.rowset_id.lo), seed);
354
0
        seed = HashUtil::hash64(&key.segment_id, sizeof(key.segment_id), seed);
355
0
        seed = HashUtil::hash64(&key.slot_id, sizeof(key.slot_id), seed);
356
0
        return seed;
357
0
    }
358
};
359
360
struct IteratorItem {
361
    std::unique_ptr<ColumnIterator> iterator;
362
    SegmentSharedPtr segment;
363
    // for holding the reference of storage read options to avoid use after release
364
    StorageReadOptions storage_read_options;
365
};
366
367
struct SegItem {
368
    BaseTabletSPtr tablet;
369
    BetaRowsetSharedPtr rowset;
370
    // for holding the reference of segment to avoid use after release
371
    SegmentSharedPtr segment;
372
};
373
374
Status RowIdStorageReader::read_by_rowids(const PMultiGetRequest& request,
375
0
                                          PMultiGetResponse* response) {
376
    // read from storage engine row id by row id
377
0
    OlapReaderStatistics stats;
378
0
    vectorized::Block result_block;
379
0
    int64_t acquire_tablet_ms = 0;
380
0
    int64_t acquire_rowsets_ms = 0;
381
0
    int64_t acquire_segments_ms = 0;
382
0
    int64_t lookup_row_data_ms = 0;
383
384
    // init desc
385
0
    std::vector<SlotDescriptor> slots;
386
0
    slots.reserve(request.slots().size());
387
0
    for (const auto& pslot : request.slots()) {
388
0
        slots.push_back(SlotDescriptor(pslot));
389
0
    }
390
391
    // init read schema
392
0
    TabletSchema full_read_schema;
393
0
    for (const ColumnPB& column_pb : request.column_desc()) {
394
0
        full_read_schema.append_column(TabletColumn(column_pb));
395
0
    }
396
397
0
    std::unordered_map<IteratorKey, IteratorItem, HashOfIteratorKey> iterator_map;
398
    // read row by row
399
0
    for (int i = 0; i < request.row_locs_size(); ++i) {
400
0
        const auto& row_loc = request.row_locs(i);
401
0
        MonotonicStopWatch watch;
402
0
        watch.start();
403
0
        BaseTabletSPtr tablet = scope_timer_run(
404
0
                [&]() {
405
0
                    auto res = ExecEnv::get_tablet(row_loc.tablet_id(), nullptr, true);
406
0
                    return !res.has_value() ? nullptr
407
0
                                            : std::dynamic_pointer_cast<BaseTablet>(res.value());
408
0
                },
409
0
                &acquire_tablet_ms);
410
0
        RowsetId rowset_id;
411
0
        rowset_id.init(row_loc.rowset_id());
412
0
        if (!tablet) {
413
0
            continue;
414
0
        }
415
        // We ensured it's rowset is not released when init Tablet reader param, rowset->update_delayed_expired_timestamp();
416
0
        BetaRowsetSharedPtr rowset = std::static_pointer_cast<BetaRowset>(scope_timer_run(
417
0
                [&]() {
418
0
                    return ExecEnv::GetInstance()->storage_engine().get_quering_rowset(rowset_id);
419
0
                },
420
0
                &acquire_rowsets_ms));
421
0
        if (!rowset) {
422
0
            LOG(INFO) << "no such rowset " << rowset_id;
423
0
            continue;
424
0
        }
425
0
        size_t row_size = 0;
426
0
        Defer _defer([&]() {
427
0
            LOG_EVERY_N(INFO, 100)
428
0
                    << "multiget_data single_row, cost(us):" << watch.elapsed_time() / 1000
429
0
                    << ", row_size:" << row_size;
430
0
            *response->add_row_locs() = row_loc;
431
0
        });
432
        // TODO: supoort session variable enable_page_cache and disable_file_cache if necessary.
433
0
        SegmentCacheHandle segment_cache;
434
0
        RETURN_IF_ERROR(scope_timer_run(
435
0
                [&]() {
436
0
                    return SegmentLoader::instance()->load_segments(rowset, &segment_cache, true);
437
0
                },
438
0
                &acquire_segments_ms));
439
        // find segment
440
0
        auto it = std::find_if(segment_cache.get_segments().cbegin(),
441
0
                               segment_cache.get_segments().cend(),
442
0
                               [&row_loc](const segment_v2::SegmentSharedPtr& seg) {
443
0
                                   return seg->id() == row_loc.segment_id();
444
0
                               });
445
0
        if (it == segment_cache.get_segments().end()) {
446
0
            continue;
447
0
        }
448
0
        segment_v2::SegmentSharedPtr segment = *it;
449
0
        GlobalRowLoacation row_location(row_loc.tablet_id(), rowset->rowset_id(),
450
0
                                        cast_set<uint32_t>(row_loc.segment_id()),
451
0
                                        cast_set<uint32_t>(row_loc.ordinal_id()));
452
        // fetch by row store, more effcient way
453
0
        if (request.fetch_row_store()) {
454
0
            if (!tablet->tablet_schema()->has_row_store_for_all_columns()) {
455
0
                return Status::InternalError("Tablet {} does not have row store for all columns",
456
0
                                             tablet->tablet_id());
457
0
            }
458
0
            RowLocation loc(rowset_id, segment->id(), cast_set<uint32_t>(row_loc.ordinal_id()));
459
0
            std::string* value = response->add_binary_row_data();
460
0
            RETURN_IF_ERROR(scope_timer_run(
461
0
                    [&]() { return tablet->lookup_row_data({}, loc, rowset, stats, *value); },
462
0
                    &lookup_row_data_ms));
463
0
            row_size = value->size();
464
0
            continue;
465
0
        }
466
467
        // fetch by column store
468
0
        if (result_block.is_empty_column()) {
469
0
            result_block = vectorized::Block(slots, request.row_locs().size());
470
0
        }
471
0
        VLOG_DEBUG << "Read row location "
472
0
                   << fmt::format("{}, {}, {}, {}", row_location.tablet_id,
473
0
                                  row_location.row_location.rowset_id.to_string(),
474
0
                                  row_location.row_location.segment_id,
475
0
                                  row_location.row_location.row_id);
476
0
        for (int x = 0; x < slots.size(); ++x) {
477
0
            auto row_id = static_cast<segment_v2::rowid_t>(row_loc.ordinal_id());
478
0
            vectorized::MutableColumnPtr column =
479
0
                    result_block.get_by_position(x).column->assume_mutable();
480
0
            IteratorKey iterator_key {.tablet_id = tablet->tablet_id(),
481
0
                                      .rowset_id = rowset_id,
482
0
                                      .segment_id = row_loc.segment_id(),
483
0
                                      .slot_id = slots[x].id()};
484
0
            IteratorItem& iterator_item = iterator_map[iterator_key];
485
0
            if (iterator_item.segment == nullptr) {
486
                // hold the reference
487
0
                iterator_map[iterator_key].segment = segment;
488
0
                iterator_item.storage_read_options.stats = &stats;
489
0
                iterator_item.storage_read_options.io_ctx.reader_type = ReaderType::READER_QUERY;
490
0
            }
491
0
            segment = iterator_item.segment;
492
0
            RETURN_IF_ERROR(segment->seek_and_read_by_rowid(
493
0
                    full_read_schema, &slots[x], row_id, column, iterator_item.storage_read_options,
494
0
                    iterator_item.iterator));
495
0
        }
496
0
    }
497
    // serialize block if not empty
498
0
    if (!result_block.is_empty_column()) {
499
0
        VLOG_DEBUG << "dump block:" << result_block.dump_data(0, 10)
500
0
                   << ", be_exec_version:" << request.be_exec_version();
501
0
        [[maybe_unused]] size_t compressed_size = 0;
502
0
        [[maybe_unused]] size_t uncompressed_size = 0;
503
0
        [[maybe_unused]] int64_t compress_time = 0;
504
0
        int be_exec_version = request.has_be_exec_version() ? request.be_exec_version() : 0;
505
0
        RETURN_IF_ERROR(result_block.serialize(be_exec_version, response->mutable_block(),
506
0
                                               &uncompressed_size, &compressed_size, &compress_time,
507
0
                                               segment_v2::CompressionTypePB::LZ4));
508
0
    }
509
510
0
    LOG(INFO) << "Query stats: "
511
0
              << fmt::format(
512
0
                         "query_id:{}, "
513
0
                         "hit_cached_pages:{}, total_pages_read:{}, compressed_bytes_read:{}, "
514
0
                         "io_latency:{}ns, "
515
0
                         "uncompressed_bytes_read:{},"
516
0
                         "bytes_read:{},"
517
0
                         "acquire_tablet_ms:{}, acquire_rowsets_ms:{}, acquire_segments_ms:{}, "
518
0
                         "lookup_row_data_ms:{}",
519
0
                         print_id(request.query_id()), stats.cached_pages_num,
520
0
                         stats.total_pages_num, stats.compressed_bytes_read, stats.io_ns,
521
0
                         stats.uncompressed_bytes_read, stats.bytes_read, acquire_tablet_ms,
522
0
                         acquire_rowsets_ms, acquire_segments_ms, lookup_row_data_ms);
523
0
    return Status::OK();
524
0
}
525
526
Status RowIdStorageReader::read_by_rowids(const PMultiGetRequestV2& request,
527
0
                                          PMultiGetResponseV2* response) {
528
0
    if (request.request_block_descs_size()) {
529
0
        auto tquery_id = ((UniqueId)request.query_id()).to_thrift();
530
        // todo: use mutableBlock instead of block
531
0
        std::vector<vectorized::Block> result_blocks(request.request_block_descs_size());
532
533
0
        OlapReaderStatistics stats;
534
0
        int64_t acquire_tablet_ms = 0;
535
0
        int64_t acquire_rowsets_ms = 0;
536
0
        int64_t acquire_segments_ms = 0;
537
0
        int64_t lookup_row_data_ms = 0;
538
539
0
        int64_t external_init_reader_avg_ms = 0;
540
0
        int64_t external_get_block_avg_ms = 0;
541
0
        size_t external_scan_range_cnt = 0;
542
543
        // Add counters for different file mapping types
544
0
        std::unordered_map<FileMappingType, int64_t> file_type_counts;
545
546
0
        auto id_file_map =
547
0
                ExecEnv::GetInstance()->get_id_manager()->get_id_file_map(request.query_id());
548
        // if id_file_map is null, means the BE not have scan range, just return ok
549
0
        if (!id_file_map) {
550
            // padding empty block to response
551
0
            for (int i = 0; i < request.request_block_descs_size(); ++i) {
552
0
                response->add_blocks();
553
0
            }
554
0
            return Status::OK();
555
0
        }
556
557
0
        for (int i = 0; i < request.request_block_descs_size(); ++i) {
558
0
            const auto& request_block_desc = request.request_block_descs(i);
559
0
            PMultiGetBlockV2* pblock = response->add_blocks();
560
0
            if (request_block_desc.row_id_size() >= 1) {
561
                // Since this block belongs to the same table, we only need to take the first type for judgment.
562
0
                auto first_file_id = request_block_desc.file_id(0);
563
0
                auto first_file_mapping = id_file_map->get_file_mapping(first_file_id);
564
0
                if (!first_file_mapping) {
565
0
                    return Status::InternalError(
566
0
                            "Backend:{} file_mapping not found, query_id: {}, file_id: {}",
567
0
                            BackendOptions::get_localhost(), print_id(request.query_id()),
568
0
                            first_file_id);
569
0
                }
570
0
                file_type_counts[first_file_mapping->type] += request_block_desc.row_id_size();
571
572
                // prepare slots to build block
573
0
                std::vector<SlotDescriptor> slots;
574
0
                slots.reserve(request_block_desc.slots_size());
575
0
                for (const auto& pslot : request_block_desc.slots()) {
576
0
                    slots.push_back(SlotDescriptor(pslot));
577
0
                }
578
                // prepare block char vector shrink for char type
579
0
                std::vector<size_t> char_type_idx;
580
0
                for (int j = 0; j < slots.size(); ++j) {
581
0
                    auto slot = slots[j];
582
0
                    if (_has_char_type(slot.type())) {
583
0
                        char_type_idx.push_back(j);
584
0
                    }
585
0
                }
586
587
0
                try {
588
0
                    if (first_file_mapping->type == FileMappingType::INTERNAL) {
589
0
                        RETURN_IF_ERROR(read_batch_doris_format_row(
590
0
                                request_block_desc, id_file_map, slots, tquery_id, result_blocks[i],
591
0
                                stats, &acquire_tablet_ms, &acquire_rowsets_ms,
592
0
                                &acquire_segments_ms, &lookup_row_data_ms));
593
0
                    } else {
594
0
                        RETURN_IF_ERROR(read_batch_external_row(
595
0
                                request.wg_id(), request_block_desc, id_file_map, slots,
596
0
                                first_file_mapping, tquery_id, result_blocks[i],
597
0
                                pblock->mutable_profile(), &external_init_reader_avg_ms,
598
0
                                &external_get_block_avg_ms, &external_scan_range_cnt));
599
0
                    }
600
0
                } catch (const Exception& e) {
601
0
                    return Status::Error<false>(e.code(), "Row id fetch failed because {}",
602
0
                                                e.what());
603
0
                }
604
605
                // after read the block, shrink char type block
606
0
                result_blocks[i].shrink_char_type_column_suffix_zero(char_type_idx);
607
0
            }
608
609
0
            [[maybe_unused]] size_t compressed_size = 0;
610
0
            [[maybe_unused]] size_t uncompressed_size = 0;
611
0
            [[maybe_unused]] int64_t compress_time = 0;
612
0
            int be_exec_version = request.has_be_exec_version() ? request.be_exec_version() : 0;
613
0
            RETURN_IF_ERROR(result_blocks[i].serialize(
614
0
                    be_exec_version, pblock->mutable_block(), &uncompressed_size, &compressed_size,
615
0
                    &compress_time, segment_v2::CompressionTypePB::LZ4));
616
0
        }
617
618
        // Build file type statistics string
619
0
        std::string file_type_stats;
620
0
        for (const auto& [type, count] : file_type_counts) {
621
0
            if (!file_type_stats.empty()) {
622
0
                file_type_stats += ", ";
623
0
            }
624
0
            file_type_stats += fmt::format("{}:{}", type, count);
625
0
        }
626
627
0
        LOG(INFO) << "Query stats: "
628
0
                  << fmt::format(
629
0
                             "query_id:{}, "
630
0
                             "Internal table:"
631
0
                             "hit_cached_pages:{}, total_pages_read:{}, compressed_bytes_read:{}, "
632
0
                             "io_latency:{}ns, uncompressed_bytes_read:{}, bytes_read:{}, "
633
0
                             "acquire_tablet_ms:{}, acquire_rowsets_ms:{}, acquire_segments_ms:{}, "
634
0
                             "lookup_row_data_ms:{}, file_types:[{}]; "
635
0
                             "External table : init_reader_ms:{}, get_block_ms:{}, "
636
0
                             "external_scan_range_cnt:{}",
637
0
                             print_id(request.query_id()), stats.cached_pages_num,
638
0
                             stats.total_pages_num, stats.compressed_bytes_read, stats.io_ns,
639
0
                             stats.uncompressed_bytes_read, stats.bytes_read, acquire_tablet_ms,
640
0
                             acquire_rowsets_ms, acquire_segments_ms, lookup_row_data_ms,
641
0
                             file_type_stats, external_init_reader_avg_ms,
642
0
                             external_get_block_avg_ms, external_scan_range_cnt);
643
0
    }
644
645
0
    if (request.has_gc_id_map() && request.gc_id_map()) {
646
0
        ExecEnv::GetInstance()->get_id_manager()->remove_id_file_map(request.query_id());
647
0
    }
648
649
0
    return Status::OK();
650
0
}
651
652
Status RowIdStorageReader::read_batch_doris_format_row(
653
        const PRequestBlockDesc& request_block_desc, std::shared_ptr<IdFileMap> id_file_map,
654
        std::vector<SlotDescriptor>& slots, const TUniqueId& query_id,
655
        vectorized::Block& result_block, OlapReaderStatistics& stats, int64_t* acquire_tablet_ms,
656
0
        int64_t* acquire_rowsets_ms, int64_t* acquire_segments_ms, int64_t* lookup_row_data_ms) {
657
0
    if (result_block.is_empty_column()) [[likely]] {
658
0
        result_block = vectorized::Block(slots, request_block_desc.row_id_size());
659
0
    }
660
0
    TabletSchema full_read_schema;
661
0
    for (const ColumnPB& column_pb : request_block_desc.column_descs()) {
662
0
        full_read_schema.append_column(TabletColumn(column_pb));
663
0
    }
664
665
0
    std::unordered_map<IteratorKey, IteratorItem, HashOfIteratorKey> iterator_map;
666
0
    std::unordered_map<SegKey, SegItem, HashOfSegKey> seg_map;
667
0
    std::string row_store_buffer;
668
0
    RowStoreReadStruct row_store_read_struct(row_store_buffer);
669
0
    if (request_block_desc.fetch_row_store()) {
670
0
        for (int i = 0; i < request_block_desc.slots_size(); ++i) {
671
0
            row_store_read_struct.serdes.emplace_back(slots[i].get_data_type_ptr()->get_serde());
672
0
            row_store_read_struct.col_uid_to_idx[slots[i].col_unique_id()] = i;
673
0
            row_store_read_struct.default_values.emplace_back(slots[i].col_default_value());
674
0
        }
675
0
    }
676
677
0
    std::vector<uint32_t> row_ids;
678
0
    int k = 1;
679
0
    auto max_k = 0;
680
0
    for (int j = 0; j < request_block_desc.row_id_size();) {
681
0
        auto file_id = request_block_desc.file_id(j);
682
0
        row_ids.emplace_back(request_block_desc.row_id(j));
683
0
        auto file_mapping = id_file_map->get_file_mapping(file_id);
684
0
        if (!file_mapping) {
685
0
            return Status::InternalError(
686
0
                    "Backend:{} file_mapping not found, query_id: {}, file_id: {}",
687
0
                    BackendOptions::get_localhost(), print_id(query_id), file_id);
688
0
        }
689
0
        for (k = 1; j + k < request_block_desc.row_id_size(); ++k) {
690
0
            if (request_block_desc.file_id(j + k) == file_id) {
691
0
                row_ids.emplace_back(request_block_desc.row_id(j + k));
692
0
            } else {
693
0
                break;
694
0
            }
695
0
        }
696
697
0
        RETURN_IF_ERROR(read_doris_format_row(
698
0
                id_file_map, file_mapping, row_ids, slots, full_read_schema, row_store_read_struct,
699
0
                stats, acquire_tablet_ms, acquire_rowsets_ms, acquire_segments_ms,
700
0
                lookup_row_data_ms, seg_map, iterator_map, result_block));
701
702
0
        j += k;
703
0
        max_k = std::max(max_k, k);
704
0
        row_ids.clear();
705
0
    }
706
707
0
    return Status::OK();
708
0
}
709
710
const std::string RowIdStorageReader::ScannersRunningTimeProfile = "ScannersRunningTime";
711
const std::string RowIdStorageReader::InitReaderAvgTimeProfile = "InitReaderAvgTime";
712
const std::string RowIdStorageReader::GetBlockAvgTimeProfile = "GetBlockAvgTime";
713
const std::string RowIdStorageReader::FileReadLinesProfile = "FileReadLines";
714
715
Status RowIdStorageReader::read_batch_external_row(
716
        const uint64_t workload_group_id, const PRequestBlockDesc& request_block_desc,
717
        std::shared_ptr<IdFileMap> id_file_map, std::vector<SlotDescriptor>& slots,
718
        std::shared_ptr<FileMapping> first_file_mapping, const TUniqueId& query_id,
719
        vectorized::Block& result_block, PRuntimeProfileTree* pprofile, int64_t* init_reader_avg_ms,
720
0
        int64_t* get_block_avg_ms, size_t* scan_range_cnt) {
721
0
    TFileScanRangeParams rpc_scan_params;
722
0
    TupleDescriptor tuple_desc(request_block_desc.desc(), false);
723
0
    std::unordered_map<std::string, int> colname_to_slot_id;
724
0
    std::shared_ptr<RuntimeState> runtime_state = nullptr;
725
726
0
    int max_file_scanners = 0;
727
0
    {
728
0
        if (result_block.is_empty_column()) [[likely]] {
729
0
            result_block = vectorized::Block(slots, request_block_desc.row_id_size());
730
0
        }
731
732
0
        auto& external_info = first_file_mapping->get_external_file_info();
733
0
        int plan_node_id = external_info.plan_node_id;
734
0
        const auto& first_scan_range_desc = external_info.scan_range_desc;
735
736
0
        DCHECK(id_file_map->get_external_scan_params().contains(plan_node_id));
737
0
        const auto* old_scan_params = &(id_file_map->get_external_scan_params().at(plan_node_id));
738
0
        rpc_scan_params = *old_scan_params;
739
740
0
        rpc_scan_params.required_slots.clear();
741
0
        rpc_scan_params.column_idxs.clear();
742
0
        rpc_scan_params.slot_name_to_schema_pos.clear();
743
744
0
        std::set partition_name_set(first_scan_range_desc.columns_from_path_keys.begin(),
745
0
                                    first_scan_range_desc.columns_from_path_keys.end());
746
0
        for (auto slot_idx = 0; slot_idx < slots.size(); ++slot_idx) {
747
0
            auto& slot = slots[slot_idx];
748
0
            tuple_desc.add_slot(&slot);
749
0
            colname_to_slot_id.emplace(slot.col_name(), slot.id());
750
0
            TFileScanSlotInfo slot_info;
751
0
            slot_info.slot_id = slot.id();
752
0
            auto column_idx = request_block_desc.column_idxs(slot_idx);
753
0
            if (partition_name_set.contains(slot.col_name())) {
754
                //This is partition column.
755
0
                slot_info.is_file_slot = false;
756
0
            } else {
757
0
                rpc_scan_params.column_idxs.emplace_back(column_idx);
758
0
                slot_info.is_file_slot = true;
759
0
            }
760
0
            rpc_scan_params.default_value_of_src_slot.emplace(slot.id(), TExpr {});
761
0
            rpc_scan_params.required_slots.emplace_back(slot_info);
762
0
            rpc_scan_params.slot_name_to_schema_pos.emplace(slot.col_name(), column_idx);
763
0
        }
764
765
0
        const auto& query_options = id_file_map->get_query_options();
766
0
        const auto& query_globals = id_file_map->get_query_globals();
767
        /*
768
         * The scan stage needs the information in query_options to generate different behaviors according to the specific variables:
769
         *  query_options.hive_parquet_use_column_names, query_options.truncate_char_or_varchar_columns,query_globals.time_zone ...
770
         *
771
         * To ensure the same behavior as the scan stage, I get query_options query_globals from id_file_map, then create runtime_state
772
         * and pass it to vfile_scanner so that the runtime_state information is the same as the scan stage and the behavior is also consistent.
773
         */
774
0
        runtime_state = RuntimeState::create_shared(
775
0
                query_id, -1, query_options, query_globals, ExecEnv::GetInstance(),
776
0
                ExecEnv::GetInstance()->rowid_storage_reader_tracker());
777
778
0
        max_file_scanners = id_file_map->get_max_file_scanners();
779
0
    }
780
781
    // Hash(TFileRangeDesc) => { all the rows that need to be read and their positions in the result block. } +  file mapping
782
    // std::multimap<segment_v2::rowid_t, size_t> : The reason for using multimap is: may need the same row of data multiple times.
783
0
    std::map<std::string,
784
0
             std::pair<std::multimap<segment_v2::rowid_t, size_t>, std::shared_ptr<FileMapping>>>
785
0
            scan_rows;
786
787
    // Block corresponding to the order of `scan_rows` map.
788
0
    std::vector<vectorized::Block> scan_blocks;
789
790
    // row_id (Indexing of vectors) => < In which block, which line in the block >
791
0
    std::vector<std::pair<size_t, size_t>> row_id_block_idx;
792
793
    // Count the time/bytes it takes to read each TFileRangeDesc. (for profile)
794
0
    std::vector<ExternalFetchStatistics> fetch_statistics;
795
796
0
    auto hash_file_range = [](const TFileRangeDesc& file_range_desc) {
797
0
        std::string value;
798
0
        value.resize(file_range_desc.path.size() + sizeof(file_range_desc.start_offset));
799
0
        auto* ptr = value.data();
800
801
0
        memcpy(ptr, &file_range_desc.start_offset, sizeof(file_range_desc.start_offset));
802
0
        ptr += sizeof(file_range_desc.start_offset);
803
0
        memcpy(ptr, file_range_desc.path.data(), file_range_desc.path.size());
804
0
        return value;
805
0
    };
806
807
0
    for (int j = 0; j < request_block_desc.row_id_size(); ++j) {
808
0
        auto file_id = request_block_desc.file_id(j);
809
0
        auto file_mapping = id_file_map->get_file_mapping(file_id);
810
0
        if (!file_mapping) {
811
0
            return Status::InternalError(
812
0
                    "Backend:{} file_mapping not found, query_id: {}, file_id: {}",
813
0
                    BackendOptions::get_localhost(), print_id(query_id), file_id);
814
0
        }
815
816
0
        const auto& external_info = file_mapping->get_external_file_info();
817
0
        const auto& scan_range_desc = external_info.scan_range_desc;
818
819
0
        auto scan_range_hash = hash_file_range(scan_range_desc);
820
0
        if (scan_rows.contains(scan_range_hash)) {
821
0
            scan_rows.at(scan_range_hash).first.emplace(request_block_desc.row_id(j), j);
822
0
        } else {
823
0
            std::multimap<segment_v2::rowid_t, size_t> tmp {{request_block_desc.row_id(j), j}};
824
0
            scan_rows.emplace(scan_range_hash, std::make_pair(tmp, file_mapping));
825
0
        }
826
0
    }
827
828
0
    scan_blocks.resize(scan_rows.size());
829
0
    row_id_block_idx.resize(request_block_desc.row_id_size());
830
0
    fetch_statistics.resize(scan_rows.size());
831
832
    // Get the workload group for subsequent scan task submission.
833
0
    std::vector<uint64_t> workload_group_ids;
834
0
    workload_group_ids.emplace_back(workload_group_id);
835
0
    auto wg = ExecEnv::GetInstance()->workload_group_mgr()->get_group(workload_group_ids);
836
0
    doris::pipeline::TaskScheduler* exec_sched = nullptr;
837
0
    vectorized::ScannerScheduler* scan_sched = nullptr;
838
0
    vectorized::ScannerScheduler* remote_scan_sched = nullptr;
839
0
    wg->get_query_scheduler(&exec_sched, &scan_sched, &remote_scan_sched);
840
0
    DCHECK(remote_scan_sched);
841
842
0
    int64_t scan_running_time = 0;
843
0
    RETURN_IF_ERROR(scope_timer_run(
844
0
            [&]() -> Status {
845
                // Make sure to insert data into result_block only after all scan tasks have been executed.
846
0
                std::atomic<int> producer_count {0};
847
0
                std::condition_variable cv;
848
0
                std::mutex mtx;
849
850
                //semaphore: Limit the number of scan tasks submitted at one time
851
0
                std::counting_semaphore semaphore {max_file_scanners};
852
853
0
                size_t idx = 0;
854
0
                for (const auto& [_, scan_info] : scan_rows) {
855
0
                    semaphore.acquire();
856
0
                    RETURN_IF_ERROR(remote_scan_sched->submit_scan_task(
857
0
                            vectorized::SimplifiedScanTask(
858
0
                                    [&, scan_info, idx]() {
859
0
                                        auto& row_ids = scan_info.first;
860
0
                                        auto& file_mapping = scan_info.second;
861
862
0
                                        SCOPED_ATTACH_TASK(
863
0
                                                ExecEnv::GetInstance()
864
0
                                                        ->rowid_storage_reader_tracker());
865
0
                                        signal::set_signal_task_id(query_id);
866
867
0
                                        std::list<int64_t> read_ids;
868
                                        //Generate an ordered list with the help of the orderliness of the map.
869
0
                                        for (const auto& [row_id, result_block_idx] : row_ids) {
870
0
                                            if (read_ids.empty() || read_ids.back() != row_id) {
871
0
                                                read_ids.emplace_back(row_id);
872
0
                                            }
873
0
                                            row_id_block_idx[result_block_idx] =
874
0
                                                    std::make_pair(idx, read_ids.size() - 1);
875
0
                                        }
876
877
0
                                        scan_blocks[idx] =
878
0
                                                vectorized::Block(slots, read_ids.size());
879
880
0
                                        auto& external_info =
881
0
                                                file_mapping->get_external_file_info();
882
0
                                        auto& scan_range_desc = external_info.scan_range_desc;
883
884
                                        // Clear to avoid reading iceberg position delete file...
885
0
                                        scan_range_desc.table_format_params.iceberg_params =
886
0
                                                TIcebergFileDesc {};
887
888
                                        // Clear to avoid reading hive transactional delete delta file...
889
0
                                        scan_range_desc.table_format_params
890
0
                                                .transactional_hive_params =
891
0
                                                TTransactionalHiveDesc {};
892
893
0
                                        std::unique_ptr<RuntimeProfile> sub_runtime_profile =
894
0
                                                std::make_unique<RuntimeProfile>(
895
0
                                                        "ExternalRowIDFetcher");
896
0
                                        {
897
0
                                            std::unique_ptr<vectorized::FileScanner>
898
0
                                                    vfile_scanner_ptr =
899
0
                                                            vectorized::FileScanner::create_unique(
900
0
                                                                    runtime_state.get(),
901
0
                                                                    sub_runtime_profile.get(),
902
0
                                                                    &rpc_scan_params,
903
0
                                                                    &colname_to_slot_id,
904
0
                                                                    &tuple_desc);
905
906
0
                                            RETURN_IF_ERROR(
907
0
                                                    vfile_scanner_ptr->prepare_for_read_lines(
908
0
                                                            scan_range_desc));
909
0
                                            RETURN_IF_ERROR(
910
0
                                                    vfile_scanner_ptr->read_lines_from_range(
911
0
                                                            scan_range_desc, read_ids,
912
0
                                                            &scan_blocks[idx], external_info,
913
0
                                                            &fetch_statistics[idx].init_reader_ms,
914
0
                                                            &fetch_statistics[idx].get_block_ms));
915
0
                                        }
916
917
0
                                        auto file_read_bytes_counter =
918
0
                                                sub_runtime_profile->get_counter(
919
0
                                                        vectorized::FileScanner::
920
0
                                                                FileReadBytesProfile);
921
922
0
                                        if (file_read_bytes_counter != nullptr) {
923
0
                                            fetch_statistics[idx].file_read_bytes =
924
0
                                                    PrettyPrinter::print(
925
0
                                                            file_read_bytes_counter->value(),
926
0
                                                            file_read_bytes_counter->type());
927
0
                                        }
928
929
0
                                        auto file_read_times_counter =
930
0
                                                sub_runtime_profile->get_counter(
931
0
                                                        vectorized::FileScanner::
932
0
                                                                FileReadTimeProfile);
933
0
                                        if (file_read_times_counter != nullptr) {
934
0
                                            fetch_statistics[idx].file_read_times =
935
0
                                                    PrettyPrinter::print(
936
0
                                                            file_read_times_counter->value(),
937
0
                                                            file_read_times_counter->type());
938
0
                                        }
939
940
0
                                        semaphore.release();
941
0
                                        if (++producer_count == scan_rows.size()) {
942
0
                                            std::lock_guard<std::mutex> lock(mtx);
943
0
                                            cv.notify_one();
944
0
                                        }
945
0
                                        return Status::OK();
946
0
                                    },
947
0
                                    nullptr, nullptr),
948
0
                            fmt::format("{}-read_batch_external_row-{}", print_id(query_id), idx)));
949
0
                    idx++;
950
0
                }
951
952
0
                {
953
0
                    std::unique_lock<std::mutex> lock(mtx);
954
0
                    cv.wait(lock, [&] { return producer_count == scan_rows.size(); });
955
0
                }
956
0
                return Status::OK();
957
0
            },
958
0
            &scan_running_time));
959
960
    // Insert the read data into result_block.
961
0
    for (size_t column_id = 0; column_id < result_block.get_columns().size(); column_id++) {
962
        // The non-const Block(result_block) is passed in read_by_rowids, but columns[i] in get_columns
963
        // is at bottom an immutable_ptr of Cow<IColumn>, so use const_cast
964
0
        auto dst_col =
965
0
                const_cast<vectorized::IColumn*>(result_block.get_columns()[column_id].get());
966
967
0
        std::vector<const vectorized::IColumn*> scan_src_columns;
968
0
        scan_src_columns.reserve(row_id_block_idx.size());
969
0
        std::vector<size_t> scan_positions;
970
0
        scan_positions.reserve(row_id_block_idx.size());
971
0
        for (const auto& [pos_block, block_idx] : row_id_block_idx) {
972
0
            DCHECK(scan_blocks.size() > pos_block);
973
0
            DCHECK(scan_blocks[pos_block].get_columns().size() > column_id);
974
0
            scan_src_columns.emplace_back(scan_blocks[pos_block].get_columns()[column_id].get());
975
0
            scan_positions.emplace_back(block_idx);
976
0
        }
977
0
        dst_col->insert_from_multi_column(scan_src_columns, scan_positions);
978
0
    }
979
980
    // Statistical runtime profile information.
981
0
    std::unique_ptr<RuntimeProfile> runtime_profile =
982
0
            std::make_unique<RuntimeProfile>("ExternalRowIDFetcher");
983
0
    {
984
0
        runtime_profile->add_info_string(ScannersRunningTimeProfile,
985
0
                                         std::to_string(scan_running_time) + "ms");
986
0
        fmt::memory_buffer file_read_lines_buffer;
987
0
        format_to(file_read_lines_buffer, "[");
988
0
        fmt::memory_buffer file_read_bytes_buffer;
989
0
        format_to(file_read_bytes_buffer, "[");
990
0
        fmt::memory_buffer file_read_times_buffer;
991
0
        format_to(file_read_times_buffer, "[");
992
993
0
        size_t idx = 0;
994
0
        for (const auto& [_, scan_info] : scan_rows) {
995
0
            format_to(file_read_lines_buffer, "{}, ", scan_info.first.size());
996
0
            *init_reader_avg_ms = fetch_statistics[idx].init_reader_ms;
997
0
            *get_block_avg_ms += fetch_statistics[idx].get_block_ms;
998
0
            format_to(file_read_bytes_buffer, "{}, ", fetch_statistics[idx].file_read_bytes);
999
0
            format_to(file_read_times_buffer, "{}, ", fetch_statistics[idx].file_read_times);
1000
0
            idx++;
1001
0
        }
1002
1003
0
        format_to(file_read_lines_buffer, "]");
1004
0
        format_to(file_read_bytes_buffer, "]");
1005
0
        format_to(file_read_times_buffer, "]");
1006
1007
0
        *init_reader_avg_ms /= fetch_statistics.size();
1008
0
        *get_block_avg_ms /= fetch_statistics.size();
1009
0
        runtime_profile->add_info_string(InitReaderAvgTimeProfile,
1010
0
                                         std::to_string(*init_reader_avg_ms) + "ms");
1011
0
        runtime_profile->add_info_string(GetBlockAvgTimeProfile,
1012
0
                                         std::to_string(*init_reader_avg_ms) + "ms");
1013
0
        runtime_profile->add_info_string(FileReadLinesProfile,
1014
0
                                         fmt::to_string(file_read_lines_buffer));
1015
0
        runtime_profile->add_info_string(vectorized::FileScanner::FileReadBytesProfile,
1016
0
                                         fmt::to_string(file_read_bytes_buffer));
1017
0
        runtime_profile->add_info_string(vectorized::FileScanner::FileReadTimeProfile,
1018
0
                                         fmt::to_string(file_read_times_buffer));
1019
0
    }
1020
1021
0
    runtime_profile->to_proto(pprofile, 2);
1022
1023
0
    *scan_range_cnt = scan_rows.size();
1024
1025
0
    return Status::OK();
1026
0
}
1027
1028
Status RowIdStorageReader::read_doris_format_row(
1029
        const std::shared_ptr<IdFileMap>& id_file_map,
1030
        const std::shared_ptr<FileMapping>& file_mapping, const std::vector<uint32_t>& row_ids,
1031
        std::vector<SlotDescriptor>& slots, const TabletSchema& full_read_schema,
1032
        RowStoreReadStruct& row_store_read_struct, OlapReaderStatistics& stats,
1033
        int64_t* acquire_tablet_ms, int64_t* acquire_rowsets_ms, int64_t* acquire_segments_ms,
1034
        int64_t* lookup_row_data_ms, std::unordered_map<SegKey, SegItem, HashOfSegKey>& seg_map,
1035
        std::unordered_map<IteratorKey, IteratorItem, HashOfIteratorKey>& iterator_map,
1036
0
        vectorized::Block& result_block) {
1037
0
    auto [tablet_id, rowset_id, segment_id] = file_mapping->get_doris_format_info();
1038
0
    SegKey seg_key {.tablet_id = tablet_id, .rowset_id = rowset_id, .segment_id = segment_id};
1039
1040
0
    BaseTabletSPtr tablet;
1041
0
    BetaRowsetSharedPtr rowset;
1042
0
    SegmentSharedPtr segment;
1043
0
    if (seg_map.find(seg_key) == seg_map.end()) {
1044
0
        tablet = scope_timer_run(
1045
0
                [&]() {
1046
0
                    auto res = ExecEnv::get_tablet(tablet_id);
1047
0
                    return !res.has_value() ? nullptr
1048
0
                                            : std::dynamic_pointer_cast<BaseTablet>(res.value());
1049
0
                },
1050
0
                acquire_tablet_ms);
1051
0
        if (!tablet) {
1052
0
            return Status::InternalError(
1053
0
                    "Backend:{} tablet not found, tablet_id: {}, rowset_id: {}, segment_id: {}, "
1054
0
                    "row_id: {}",
1055
0
                    BackendOptions::get_localhost(), tablet_id, rowset_id.to_string(), segment_id,
1056
0
                    row_ids[0]);
1057
0
        }
1058
1059
0
        rowset = std::static_pointer_cast<BetaRowset>(scope_timer_run(
1060
0
                [&]() { return id_file_map->get_temp_rowset(tablet_id, rowset_id); },
1061
0
                acquire_rowsets_ms));
1062
0
        if (!rowset) {
1063
0
            return Status::InternalError(
1064
0
                    "Backend:{} rowset_id not found, tablet_id: {}, rowset_id: {}, segment_id: {}, "
1065
0
                    "row_id: {}",
1066
0
                    BackendOptions::get_localhost(), tablet_id, rowset_id.to_string(), segment_id,
1067
0
                    row_ids[0]);
1068
0
        }
1069
1070
0
        SegmentCacheHandle segment_cache;
1071
0
        RETURN_IF_ERROR(scope_timer_run(
1072
0
                [&]() {
1073
0
                    return SegmentLoader::instance()->load_segments(rowset, &segment_cache, true);
1074
0
                },
1075
0
                acquire_segments_ms));
1076
1077
0
        auto it = std::find_if(segment_cache.get_segments().cbegin(),
1078
0
                               segment_cache.get_segments().cend(),
1079
0
                               [segment_id](const segment_v2::SegmentSharedPtr& seg) {
1080
0
                                   return seg->id() == segment_id;
1081
0
                               });
1082
0
        if (it == segment_cache.get_segments().end()) {
1083
0
            return Status::InternalError(
1084
0
                    "Backend:{} segment not found, tablet_id: {}, rowset_id: {}, segment_id: {}, "
1085
0
                    "row_id: {}",
1086
0
                    BackendOptions::get_localhost(), tablet_id, rowset_id.to_string(), segment_id,
1087
0
                    row_ids[0]);
1088
0
        }
1089
0
        segment = *it;
1090
0
        seg_map[seg_key] = SegItem {.tablet = tablet, .rowset = rowset, .segment = segment};
1091
0
    } else {
1092
0
        auto& seg_item = seg_map[seg_key];
1093
0
        tablet = seg_item.tablet;
1094
0
        rowset = seg_item.rowset;
1095
0
        segment = seg_item.segment;
1096
0
    }
1097
1098
    // if row_store_read_struct not empty, means the line we should read from row_store
1099
0
    if (!row_store_read_struct.default_values.empty()) {
1100
0
        if (!tablet->tablet_schema()->has_row_store_for_all_columns()) {
1101
0
            return Status::InternalError("Tablet {} does not have row store for all columns",
1102
0
                                         tablet->tablet_id());
1103
0
        }
1104
0
        for (auto row_id : row_ids) {
1105
0
            RowLocation loc(rowset_id, segment->id(), cast_set<uint32_t>(row_id));
1106
0
            row_store_read_struct.row_store_buffer.clear();
1107
0
            RETURN_IF_ERROR(scope_timer_run(
1108
0
                    [&]() {
1109
0
                        return tablet->lookup_row_data({}, loc, rowset, stats,
1110
0
                                                       row_store_read_struct.row_store_buffer);
1111
0
                    },
1112
0
                    lookup_row_data_ms));
1113
1114
0
            RETURN_IF_ERROR(vectorized::JsonbSerializeUtil::jsonb_to_block(
1115
0
                    row_store_read_struct.serdes, row_store_read_struct.row_store_buffer.data(),
1116
0
                    row_store_read_struct.row_store_buffer.size(),
1117
0
                    row_store_read_struct.col_uid_to_idx, result_block,
1118
0
                    row_store_read_struct.default_values, {}));
1119
0
        }
1120
0
    } else {
1121
0
        for (int x = 0; x < slots.size(); ++x) {
1122
0
            vectorized::MutableColumnPtr column =
1123
0
                    result_block.get_by_position(x).column->assume_mutable();
1124
0
            IteratorKey iterator_key {.tablet_id = tablet_id,
1125
0
                                      .rowset_id = rowset_id,
1126
0
                                      .segment_id = segment_id,
1127
0
                                      .slot_id = slots[x].id()};
1128
0
            IteratorItem& iterator_item = iterator_map[iterator_key];
1129
0
            if (iterator_item.segment == nullptr) {
1130
0
                iterator_map[iterator_key].segment = segment;
1131
0
                iterator_item.storage_read_options.stats = &stats;
1132
0
                iterator_item.storage_read_options.io_ctx.reader_type = ReaderType::READER_QUERY;
1133
0
            }
1134
0
            for (auto row_id : row_ids) {
1135
0
                RETURN_IF_ERROR(segment->seek_and_read_by_rowid(
1136
0
                        full_read_schema, &slots[x], row_id, column,
1137
0
                        iterator_item.storage_read_options, iterator_item.iterator));
1138
0
            }
1139
0
        }
1140
0
    }
1141
0
    return Status::OK();
1142
0
}
1143
1144
#include "common/compile_check_end.h"
1145
1146
} // namespace doris