Coverage Report

Created: 2026-07-31 14:54

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/task/index_builder.cpp
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Source
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// Licensed to the Apache Software Foundation (ASF) under one
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// 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
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#include "storage/task/index_builder.h"
19
20
#include <mutex>
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22
#include "common/logging.h"
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#include "common/status.h"
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#include "storage/index/index_file_reader.h"
25
#include "storage/index/index_file_writer.h"
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#include "storage/index/index_writer.h" // IndexColumnWriter, complete type for member calls
27
#include "storage/index/inverted/inverted_index_desc.h"
28
#include "storage/index/inverted/inverted_index_fs_directory.h"
29
#include "storage/olap_define.h"
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#include "storage/rowset/beta_rowset.h"
31
#include "storage/rowset/rowset_writer_context.h"
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#include "storage/segment/segment_loader.h"
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#include "storage/storage_engine.h"
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#include "storage/tablet/tablet_schema.h"
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#include "util/debug_points.h"
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#include "util/trace.h"
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38
namespace doris {
39
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IndexBuilder::IndexBuilder(StorageEngine& engine, TabletSharedPtr tablet,
41
                           const std::vector<TColumn>& columns,
42
                           const std::vector<doris::TOlapTableIndex>& alter_inverted_indexes,
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                           bool is_drop_op)
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25
        : _engine(engine),
45
25
          _tablet(std::move(tablet)),
46
25
          _columns(columns),
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25
          _alter_inverted_indexes(alter_inverted_indexes),
48
25
          _is_drop_op(is_drop_op) {
49
25
    _olap_data_convertor = std::make_unique<OlapBlockDataConvertor>();
50
25
}
51
52
25
IndexBuilder::~IndexBuilder() {
53
25
    _olap_data_convertor.reset();
54
25
    _index_column_writers.clear();
55
25
}
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57
25
Status IndexBuilder::init() {
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27
    for (auto inverted_index : _alter_inverted_indexes) {
59
27
        _alter_index_ids.insert(inverted_index.index_id);
60
27
    }
61
25
    return Status::OK();
62
25
}
63
64
21
Status IndexBuilder::update_inverted_index_info() {
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    // just do link files
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21
    LOG(INFO) << "begin to update_inverted_index_info, tablet=" << _tablet->tablet_id()
67
21
              << ", is_drop_op=" << _is_drop_op;
68
    // index ids that will not be linked
69
21
    std::set<int64_t> without_index_uids;
70
21
    _output_rowsets.reserve(_input_rowsets.size());
71
21
    _pending_rs_guards.reserve(_input_rowsets.size());
72
22
    for (auto&& input_rowset : _input_rowsets) {
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22
        bool is_local_rowset = input_rowset->is_local();
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22
        DBUG_EXECUTE_IF("IndexBuilder::update_inverted_index_info_is_local_rowset",
75
22
                        { is_local_rowset = false; })
76
22
        if (!is_local_rowset) [[unlikely]] {
77
            // DCHECK(false) << _tablet->tablet_id() << ' ' << input_rowset->rowset_id();
78
0
            return Status::InternalError("should be local rowset. tablet_id={} rowset_id={}",
79
0
                                         _tablet->tablet_id(),
80
0
                                         input_rowset->rowset_id().to_string());
81
0
        }
82
83
22
        TabletSchemaSPtr output_rs_tablet_schema = std::make_shared<TabletSchema>();
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        const auto& input_rs_tablet_schema = input_rowset->tablet_schema();
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        output_rs_tablet_schema->copy_from(*input_rs_tablet_schema);
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22
        int64_t total_index_size = 0;
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        auto* beta_rowset = reinterpret_cast<BetaRowset*>(input_rowset.get());
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        auto size_st = beta_rowset->get_inverted_index_size(&total_index_size);
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        DBUG_EXECUTE_IF("IndexBuilder::update_inverted_index_info_size_st_not_ok", {
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            size_st = Status::Error<ErrorCode::INIT_FAILED>("debug point: get fs failed");
91
22
        })
92
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        if (!size_st.ok() && !size_st.is<ErrorCode::INVERTED_INDEX_FILE_NOT_FOUND>() &&
93
22
            !size_st.is<ErrorCode::NOT_FOUND>()) {
94
0
            return size_st;
95
0
        }
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22
        auto num_segments = input_rowset->num_segments();
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22
        size_t drop_index_size = 0;
98
99
22
        if (_is_drop_op) {
100
6
            for (const auto& t_inverted_index : _alter_inverted_indexes) {
101
6
                DCHECK_EQ(t_inverted_index.columns.size(), 1);
102
6
                auto column_name = t_inverted_index.columns[0];
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6
                auto column_idx = output_rs_tablet_schema->field_index(column_name);
104
6
                if (column_idx < 0) {
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0
                    if (!t_inverted_index.column_unique_ids.empty()) {
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0
                        auto column_unique_id = t_inverted_index.column_unique_ids[0];
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0
                        column_idx = output_rs_tablet_schema->field_index(column_unique_id);
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0
                    }
109
0
                    if (column_idx < 0) {
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0
                        LOG(WARNING) << "referenced column was missing. "
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0
                                     << "[column=" << column_name
112
0
                                     << " referenced_column=" << column_idx << "]";
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0
                        continue;
114
0
                    }
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0
                }
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6
                auto column = output_rs_tablet_schema->column(column_idx);
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                // inverted index
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6
                auto index_metas = output_rs_tablet_schema->inverted_indexs(column);
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6
                for (const auto& index_meta : index_metas) {
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                    // Only drop the index that matches the requested index_id,
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                    // not all indexes on this column
123
6
                    if (index_meta->index_id() != t_inverted_index.index_id) {
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1
                        continue;
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1
                    }
126
5
                    if (output_rs_tablet_schema->get_inverted_index_storage_format() ==
127
5
                        InvertedIndexStorageFormatPB::V1) {
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1
                        const auto& fs = io::global_local_filesystem();
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130
2
                        for (int seg_id = 0; seg_id < num_segments; seg_id++) {
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1
                            auto seg_path = local_segment_path(
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1
                                    _tablet->tablet_path(), input_rowset->rowset_id().to_string(),
133
1
                                    seg_id);
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1
                            auto index_path = InvertedIndexDescriptor::get_index_file_path_v1(
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1
                                    InvertedIndexDescriptor::get_index_file_path_prefix(seg_path),
136
1
                                    index_meta->index_id(), index_meta->get_index_suffix());
137
1
                            int64_t index_size = 0;
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1
                            RETURN_IF_ERROR(fs->file_size(index_path, &index_size));
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1
                            VLOG_DEBUG << "inverted index file:" << index_path
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0
                                       << " size:" << index_size;
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1
                            drop_index_size += index_size;
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1
                        }
143
1
                    }
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5
                    _dropped_inverted_indexes.push_back(*index_meta);
145
                    // ATTN: DO NOT REMOVE INDEX AFTER OUTPUT_ROWSET_WRITER CREATED.
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                    // remove dropped index_meta from output rowset tablet schema
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5
                    output_rs_tablet_schema->remove_index(index_meta->index_id());
148
5
                }
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150
                // ann index
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6
                const auto* ann_index = output_rs_tablet_schema->ann_index(column);
152
6
                if (!ann_index) {
153
5
                    continue;
154
5
                }
155
                // Only drop the ann index that matches the requested index_id
156
1
                if (ann_index->index_id() != t_inverted_index.index_id) {
157
0
                    continue;
158
0
                }
159
1
                DCHECK(output_rs_tablet_schema->get_inverted_index_storage_format() !=
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1
                       InvertedIndexStorageFormatPB::V1);
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1
                _dropped_inverted_indexes.push_back(*ann_index);
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                // ATTN: DO NOT REMOVE INDEX AFTER OUTPUT_ROWSET_WRITER CREATED.
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                // remove dropped index_meta from output rowset tablet schema
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1
                output_rs_tablet_schema->remove_index(ann_index->index_id());
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1
            }
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6
            DBUG_EXECUTE_IF("index_builder.update_inverted_index_info.drop_index", {
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                auto indexes_count = DebugPoints::instance()->get_debug_param_or_default<int32_t>(
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                        "index_builder.update_inverted_index_info.drop_index", "indexes_count", 0);
170
6
                if (indexes_count < 0) {
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6
                    return Status::Error<ErrorCode::INTERNAL_ERROR>(
172
6
                            "indexes count cannot be negative");
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6
                }
174
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                auto indexes_size = output_rs_tablet_schema->inverted_indexes().size();
175
6
                if (indexes_count != indexes_size) {
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6
                    return Status::Error<ErrorCode::INTERNAL_ERROR>(
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                            "indexes count not equal to expected");
178
6
                }
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6
            })
180
16
        } else {
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            // base on input rowset's tablet_schema to build
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            // output rowset's tablet_schema which only add
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            // the indexes specified in this build index request
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18
            for (auto t_inverted_index : _alter_inverted_indexes) {
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                TabletIndex index;
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                index.init_from_thrift(t_inverted_index, *input_rs_tablet_schema);
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                auto column_uid = index.col_unique_ids()[0];
188
18
                if (column_uid < 0) {
189
3
                    LOG(WARNING) << "referenced column was missing. "
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3
                                 << "[column=" << t_inverted_index.columns[0]
191
3
                                 << " referenced_column=" << column_uid << "]";
192
3
                    continue;
193
3
                }
194
15
                const TabletColumn& col = output_rs_tablet_schema->column_by_uid(column_uid);
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196
                // inverted index
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15
                auto exist_indexs = output_rs_tablet_schema->inverted_indexs(col);
198
15
                for (const auto& exist_index : exist_indexs) {
199
0
                    if (exist_index->index_id() != index.index_id()) {
200
0
                        if (exist_index->is_same_except_id(&index)) {
201
0
                            LOG(WARNING) << fmt::format(
202
0
                                    "column: {} has a exist inverted index, but the index id not "
203
0
                                    "equal "
204
0
                                    "request's index id, , exist index id: {}, request's index id: "
205
0
                                    "{}, "
206
0
                                    "remove exist index in new output_rs_tablet_schema",
207
0
                                    column_uid, exist_index->index_id(), index.index_id());
208
0
                            without_index_uids.insert(exist_index->index_id());
209
0
                            output_rs_tablet_schema->remove_index(exist_index->index_id());
210
0
                        }
211
0
                    }
212
0
                }
213
214
                // ann index
215
15
                const auto* exist_index = output_rs_tablet_schema->ann_index(col);
216
15
                if (exist_index && exist_index->index_id() != index.index_id()) {
217
0
                    if (exist_index->is_same_except_id(&index)) {
218
0
                        LOG(WARNING) << fmt::format(
219
0
                                "column: {} has a exist ann index, but the index id not "
220
0
                                "equal request's index id, , exist index id: {}, request's index "
221
0
                                "id: {}, remove exist index in new output_rs_tablet_schema",
222
0
                                column_uid, exist_index->index_id(), index.index_id());
223
0
                        without_index_uids.insert(exist_index->index_id());
224
0
                        output_rs_tablet_schema->remove_index(exist_index->index_id());
225
0
                    }
226
0
                }
227
228
15
                output_rs_tablet_schema->append_index(std::move(index));
229
15
            }
230
16
        }
231
        // construct input rowset reader
232
22
        RowsetReaderSharedPtr input_rs_reader;
233
22
        RETURN_IF_ERROR(input_rowset->create_reader(&input_rs_reader));
234
        // construct output rowset writer
235
22
        RowsetWriterContext context;
236
22
        context.version = input_rs_reader->version();
237
22
        context.rowset_state = VISIBLE;
238
22
        context.segments_overlap = input_rowset->rowset_meta()->segments_overlap();
239
22
        context.tablet_schema = output_rs_tablet_schema;
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22
        context.newest_write_timestamp = input_rs_reader->newest_write_timestamp();
241
22
        auto output_rs_writer = DORIS_TRY(_tablet->create_rowset_writer(context, false));
242
22
        _pending_rs_guards.push_back(_engine.add_pending_rowset(context));
243
244
        // if without_index_uids is not empty, copy _alter_index_ids to it
245
        // else just use _alter_index_ids to avoid copy
246
22
        if (!without_index_uids.empty()) {
247
0
            without_index_uids.insert(_alter_index_ids.begin(), _alter_index_ids.end());
248
0
        }
249
250
        // build output rowset
251
22
        RETURN_IF_ERROR(input_rowset->link_files_to(
252
22
                _tablet->tablet_path(), output_rs_writer->rowset_id(), 0,
253
22
                without_index_uids.empty() ? &_alter_index_ids : &without_index_uids));
254
255
22
        auto input_rowset_meta = input_rowset->rowset_meta();
256
22
        RowsetMetaSharedPtr rowset_meta = std::make_shared<RowsetMeta>();
257
22
        rowset_meta->set_num_rows(input_rowset_meta->num_rows());
258
22
        if (output_rs_tablet_schema->get_inverted_index_storage_format() ==
259
22
            InvertedIndexStorageFormatPB::V1) {
260
4
            if (_is_drop_op) {
261
1
                VLOG_DEBUG << "data_disk_size:" << input_rowset_meta->data_disk_size()
262
0
                           << " total_disk_size:" << input_rowset_meta->total_disk_size()
263
0
                           << " index_disk_size:" << input_rowset_meta->index_disk_size()
264
0
                           << " drop_index_size:" << drop_index_size;
265
1
                rowset_meta->set_total_disk_size(input_rowset_meta->total_disk_size() -
266
1
                                                 drop_index_size);
267
1
                rowset_meta->set_data_disk_size(input_rowset_meta->data_disk_size());
268
1
                rowset_meta->set_index_disk_size(input_rowset_meta->index_disk_size() -
269
1
                                                 drop_index_size);
270
3
            } else {
271
3
                rowset_meta->set_total_disk_size(input_rowset_meta->total_disk_size());
272
3
                rowset_meta->set_data_disk_size(input_rowset_meta->data_disk_size());
273
3
                rowset_meta->set_index_disk_size(input_rowset_meta->index_disk_size());
274
3
            }
275
18
        } else {
276
39
            for (int seg_id = 0; seg_id < num_segments; seg_id++) {
277
21
                auto seg_path = DORIS_TRY(input_rowset->segment_path(seg_id));
278
21
                auto idx_file_reader = std::make_unique<IndexFileReader>(
279
21
                        context.fs(),
280
21
                        std::string {InvertedIndexDescriptor::get_index_file_path_prefix(seg_path)},
281
21
                        output_rs_tablet_schema->get_inverted_index_storage_format(),
282
21
                        InvertedIndexFileInfo(), _tablet->tablet_id());
283
21
                auto st = idx_file_reader->init();
284
21
                DBUG_EXECUTE_IF(
285
21
                        "IndexBuilder::update_inverted_index_info_index_file_reader_init_not_ok", {
286
21
                            st = Status::Error<ErrorCode::INIT_FAILED>(
287
21
                                    "debug point: reader init error");
288
21
                        })
289
21
                if (!st.ok() && !st.is<ErrorCode::INVERTED_INDEX_FILE_NOT_FOUND>()) {
290
0
                    return st;
291
0
                }
292
21
                _index_file_readers.emplace(
293
21
                        std::make_pair(output_rs_writer->rowset_id().to_string(), seg_id),
294
21
                        std::move(idx_file_reader));
295
21
            }
296
18
            rowset_meta->set_total_disk_size(input_rowset_meta->total_disk_size() -
297
18
                                             total_index_size);
298
18
            rowset_meta->set_data_disk_size(input_rowset_meta->data_disk_size());
299
18
            rowset_meta->set_index_disk_size(input_rowset_meta->index_disk_size() -
300
18
                                             total_index_size);
301
18
        }
302
22
        rowset_meta->set_empty(input_rowset_meta->empty());
303
22
        rowset_meta->set_num_segments(input_rowset_meta->num_segments());
304
22
        rowset_meta->set_segments_overlap(input_rowset_meta->segments_overlap());
305
22
        rowset_meta->set_rowset_state(input_rowset_meta->rowset_state());
306
22
        std::vector<KeyBoundsPB> key_bounds;
307
22
        RETURN_IF_ERROR(input_rowset->get_segments_key_bounds(&key_bounds));
308
22
        rowset_meta->set_segments_key_bounds_truncated(
309
22
                input_rowset_meta->is_segments_key_bounds_truncated());
310
        // preserve aggregated layout via the setter so the aggregated flag is not
311
        // clobbered by set_segments_key_bounds's default reset path.
312
22
        rowset_meta->set_segments_key_bounds(
313
22
                key_bounds, input_rowset_meta->is_segments_key_bounds_aggregated());
314
22
        std::vector<uint32_t> num_segment_rows;
315
22
        input_rowset_meta->get_num_segment_rows(&num_segment_rows);
316
22
        rowset_meta->set_num_segment_rows(num_segment_rows);
317
22
        auto output_rowset = output_rs_writer->manual_build(rowset_meta);
318
22
        if (input_rowset_meta->has_delete_predicate()) {
319
0
            output_rowset->rowset_meta()->set_delete_predicate(
320
0
                    input_rowset_meta->delete_predicate());
321
0
        }
322
22
        _output_rowsets.push_back(output_rowset);
323
22
    }
324
325
21
    return Status::OK();
326
21
}
327
328
Status IndexBuilder::handle_single_rowset(RowsetMetaSharedPtr output_rowset_meta,
329
20
                                          std::vector<segment_v2::SegmentSharedPtr>& segments) {
330
20
    bool is_local_rowset = output_rowset_meta->is_local();
331
20
    DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_is_local_rowset",
332
20
                    { is_local_rowset = false; })
333
20
    if (!is_local_rowset) [[unlikely]] {
334
        // DCHECK(false) << _tablet->tablet_id() << ' ' << output_rowset_meta->rowset_id();
335
0
        return Status::InternalError("should be local rowset. tablet_id={} rowset_id={}",
336
0
                                     _tablet->tablet_id(),
337
0
                                     output_rowset_meta->rowset_id().to_string());
338
0
    }
339
340
20
    if (_is_drop_op) {
341
6
        const auto& output_rs_tablet_schema = output_rowset_meta->tablet_schema();
342
6
        if (output_rs_tablet_schema->get_inverted_index_storage_format() !=
343
6
            InvertedIndexStorageFormatPB::V1) {
344
5
            const auto& fs = output_rowset_meta->fs();
345
346
5
            const auto& output_rowset_schema = output_rowset_meta->tablet_schema();
347
5
            size_t inverted_index_size = 0;
348
5
            for (auto& seg_ptr : segments) {
349
5
                auto idx_file_reader_iter = _index_file_readers.find(
350
5
                        std::make_pair(output_rowset_meta->rowset_id().to_string(), seg_ptr->id()));
351
5
                DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_can_not_find_reader_drop_op",
352
5
                                { idx_file_reader_iter = _index_file_readers.end(); })
353
5
                if (idx_file_reader_iter == _index_file_readers.end()) {
354
0
                    LOG(ERROR) << "idx_file_reader_iter" << output_rowset_meta->rowset_id() << ":"
355
0
                               << seg_ptr->id() << " cannot be found";
356
0
                    continue;
357
0
                }
358
5
                auto dirs = DORIS_TRY(idx_file_reader_iter->second->get_all_directories());
359
360
5
                std::string index_path_prefix {
361
5
                        InvertedIndexDescriptor::get_index_file_path_prefix(local_segment_path(
362
5
                                _tablet->tablet_path(), output_rowset_meta->rowset_id().to_string(),
363
5
                                seg_ptr->id()))};
364
365
5
                std::string index_path =
366
5
                        InvertedIndexDescriptor::get_index_file_path_v2(index_path_prefix);
367
5
                io::FileWriterPtr file_writer;
368
5
                Status st = fs->create_file(index_path, &file_writer);
369
5
                if (!st.ok()) {
370
0
                    LOG(WARNING) << "failed to create writable file. path=" << index_path
371
0
                                 << ", err: " << st;
372
0
                    return st;
373
0
                }
374
5
                auto index_file_writer = std::make_unique<IndexFileWriter>(
375
5
                        fs, std::move(index_path_prefix),
376
5
                        output_rowset_meta->rowset_id().to_string(), seg_ptr->id(),
377
5
                        output_rowset_schema->get_inverted_index_storage_format(),
378
5
                        std::move(file_writer), true /* can_use_ram_dir */, _tablet->tablet_id());
379
5
                RETURN_IF_ERROR(index_file_writer->initialize(dirs));
380
                // create inverted index writer
381
5
                for (auto& index_meta : _dropped_inverted_indexes) {
382
5
                    RETURN_IF_ERROR(index_file_writer->delete_index(&index_meta));
383
5
                }
384
5
                _index_file_writers.emplace(seg_ptr->id(), std::move(index_file_writer));
385
5
            }
386
5
            for (auto&& [seg_id, index_file_writer] : _index_file_writers) {
387
5
                auto st = index_file_writer->begin_close();
388
5
                if (!st.ok()) {
389
0
                    LOG(ERROR) << "close index_file_writer error:" << st;
390
0
                    return st;
391
0
                }
392
5
                inverted_index_size += index_file_writer->get_index_file_total_size();
393
5
            }
394
5
            for (auto&& [seg_id, index_file_writer] : _index_file_writers) {
395
5
                auto st = index_file_writer->finish_close();
396
5
                if (!st.ok()) {
397
0
                    LOG(ERROR) << "wait close index_file_writer error:" << st;
398
0
                    return st;
399
0
                }
400
5
            }
401
5
            _index_file_writers.clear();
402
5
            output_rowset_meta->set_data_disk_size(output_rowset_meta->data_disk_size());
403
5
            output_rowset_meta->set_total_disk_size(output_rowset_meta->total_disk_size() +
404
5
                                                    inverted_index_size);
405
5
            output_rowset_meta->set_index_disk_size(output_rowset_meta->index_disk_size() +
406
5
                                                    inverted_index_size);
407
5
        }
408
6
        LOG(INFO) << "all row nums. source_rows=" << output_rowset_meta->num_rows();
409
6
        return Status::OK();
410
14
    } else {
411
        // create inverted or ann index writer
412
14
        const auto& fs = output_rowset_meta->fs();
413
14
        auto output_rowset_schema = output_rowset_meta->tablet_schema();
414
14
        size_t inverted_index_size = 0;
415
17
        for (auto& seg_ptr : segments) {
416
17
            std::string index_path_prefix {
417
17
                    InvertedIndexDescriptor::get_index_file_path_prefix(local_segment_path(
418
17
                            _tablet->tablet_path(), output_rowset_meta->rowset_id().to_string(),
419
17
                            seg_ptr->id()))};
420
17
            std::vector<ColumnId> return_columns;
421
17
            std::vector<std::pair<int64_t, int64_t>> inverted_index_writer_signs;
422
17
            _olap_data_convertor->reserve(_alter_inverted_indexes.size());
423
424
17
            std::unique_ptr<IndexFileWriter> index_file_writer = nullptr;
425
17
            if (output_rowset_schema->get_inverted_index_storage_format() >=
426
17
                InvertedIndexStorageFormatPB::V2) {
427
14
                auto idx_file_reader_iter = _index_file_readers.find(
428
14
                        std::make_pair(output_rowset_meta->rowset_id().to_string(), seg_ptr->id()));
429
14
                DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_can_not_find_reader",
430
14
                                { idx_file_reader_iter = _index_file_readers.end(); })
431
14
                if (idx_file_reader_iter == _index_file_readers.end()) {
432
0
                    LOG(ERROR) << "idx_file_reader_iter" << output_rowset_meta->rowset_id() << ":"
433
0
                               << seg_ptr->id() << " cannot be found";
434
0
                    continue;
435
0
                }
436
14
                std::string index_path =
437
14
                        InvertedIndexDescriptor::get_index_file_path_v2(index_path_prefix);
438
14
                io::FileWriterPtr file_writer;
439
14
                Status st = fs->create_file(index_path, &file_writer);
440
14
                if (!st.ok()) {
441
0
                    LOG(WARNING) << "failed to create writable file. path=" << index_path
442
0
                                 << ", err: " << st;
443
0
                    return st;
444
0
                }
445
14
                auto dirs = DORIS_TRY(idx_file_reader_iter->second->get_all_directories());
446
14
                index_file_writer = std::make_unique<IndexFileWriter>(
447
14
                        fs, index_path_prefix, output_rowset_meta->rowset_id().to_string(),
448
14
                        seg_ptr->id(), output_rowset_schema->get_inverted_index_storage_format(),
449
14
                        std::move(file_writer), true /* can_use_ram_dir */, _tablet->tablet_id());
450
14
                RETURN_IF_ERROR(index_file_writer->initialize(dirs));
451
14
            } else {
452
3
                index_file_writer = std::make_unique<IndexFileWriter>(
453
3
                        fs, index_path_prefix, output_rowset_meta->rowset_id().to_string(),
454
3
                        seg_ptr->id(), output_rowset_schema->get_inverted_index_storage_format(),
455
3
                        nullptr, true /* can_use_ram_dir */, _tablet->tablet_id());
456
3
            }
457
            // create inverted index writer, or ann index writer
458
21
            for (auto inverted_index : _alter_inverted_indexes) {
459
21
                DCHECK(inverted_index.index_type == TIndexType::INVERTED ||
460
21
                       inverted_index.index_type == TIndexType::ANN);
461
21
                DCHECK_EQ(inverted_index.columns.size(), 1);
462
21
                auto index_id = inverted_index.index_id;
463
21
                auto column_name = inverted_index.columns[0];
464
21
                auto column_idx = output_rowset_schema->field_index(column_name);
465
21
                if (column_idx < 0) {
466
4
                    if (inverted_index.__isset.column_unique_ids &&
467
4
                        !inverted_index.column_unique_ids.empty()) {
468
1
                        column_idx = output_rowset_schema->field_index(
469
1
                                inverted_index.column_unique_ids[0]);
470
1
                    }
471
4
                    if (column_idx < 0) {
472
3
                        LOG(WARNING) << "referenced column was missing. "
473
3
                                     << "[column=" << column_name
474
3
                                     << " referenced_column=" << column_idx << "]";
475
3
                        continue;
476
3
                    }
477
4
                }
478
18
                auto column = output_rowset_schema->column(column_idx);
479
                // variant column is not support for building index
480
18
                auto is_support_inverted_index =
481
18
                        IndexColumnWriter::check_support_inverted_index(column);
482
18
                auto is_support_ann_index = IndexColumnWriter::check_support_ann_index(column);
483
18
                DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_support_inverted_index",
484
18
                                { is_support_inverted_index = false; })
485
18
                if (!is_support_inverted_index && !is_support_ann_index) {
486
0
                    continue;
487
0
                }
488
18
                DCHECK(output_rowset_schema->has_inverted_index_with_index_id(index_id));
489
18
                _olap_data_convertor->add_column_data_convertor(column);
490
18
                return_columns.emplace_back(column_idx);
491
492
18
                if (inverted_index.index_type == TIndexType::INVERTED) {
493
                    // inverted index
494
17
                    auto index_metas = output_rowset_schema->inverted_indexs(column);
495
17
                    for (const auto& index_meta : index_metas) {
496
17
                        if (index_meta->index_id() != index_id) {
497
0
                            continue;
498
0
                        }
499
17
                        std::unique_ptr<segment_v2::IndexColumnWriter> inverted_index_builder;
500
17
                        try {
501
17
                            RETURN_IF_ERROR(segment_v2::IndexColumnWriter::create(
502
17
                                    &column, &inverted_index_builder, index_file_writer.get(),
503
17
                                    index_meta));
504
17
                            DBUG_EXECUTE_IF(
505
17
                                    "IndexBuilder::handle_single_rowset_index_column_writer_create_"
506
17
                                    "error",
507
17
                                    {
508
17
                                        _CLTHROWA(CL_ERR_IO,
509
17
                                                  "debug point: "
510
17
                                                  "handle_single_rowset_index_column_writer_create_"
511
17
                                                  "error");
512
17
                                    })
513
17
                        } catch (const std::exception& e) {
514
0
                            return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
515
0
                                    "CLuceneError occurred: {}", e.what());
516
0
                        }
517
518
17
                        if (inverted_index_builder) {
519
17
                            auto writer_sign = std::make_pair(seg_ptr->id(), index_id);
520
17
                            _index_column_writers.insert(
521
17
                                    std::make_pair(writer_sign, std::move(inverted_index_builder)));
522
17
                            inverted_index_writer_signs.emplace_back(writer_sign);
523
17
                        }
524
17
                    }
525
17
                } else if (inverted_index.index_type == TIndexType::ANN) {
526
                    // ann index
527
1
                    const auto* index_meta = output_rowset_schema->ann_index(column);
528
1
                    if (index_meta && index_meta->index_id() == index_id) {
529
1
                        std::unique_ptr<segment_v2::IndexColumnWriter> index_writer;
530
1
                        try {
531
1
                            RETURN_IF_ERROR(segment_v2::IndexColumnWriter::create(
532
1
                                    &column, &index_writer, index_file_writer.get(), index_meta));
533
1
                            DBUG_EXECUTE_IF(
534
1
                                    "IndexBuilder::handle_single_rowset_index_column_writer_create_"
535
1
                                    "error",
536
1
                                    {
537
1
                                        _CLTHROWA(CL_ERR_IO,
538
1
                                                  "debug point: "
539
1
                                                  "handle_single_rowset_index_column_writer_create_"
540
1
                                                  "error");
541
1
                                    })
542
1
                        } catch (const std::exception& e) {
543
0
                            return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
544
0
                                    "CLuceneError occurred: {}", e.what());
545
0
                        }
546
547
1
                        if (index_writer) {
548
1
                            auto writer_sign = std::make_pair(seg_ptr->id(), index_id);
549
1
                            _index_column_writers.insert(
550
1
                                    std::make_pair(writer_sign, std::move(index_writer)));
551
1
                            inverted_index_writer_signs.emplace_back(writer_sign);
552
1
                        }
553
1
                    }
554
1
                }
555
18
            }
556
557
            // DO NOT forget index_file_writer for the segment, otherwise, original inverted index will be deleted.
558
17
            _index_file_writers.emplace(seg_ptr->id(), std::move(index_file_writer));
559
17
            if (return_columns.empty()) {
560
                // no columns to read
561
3
                continue;
562
3
            }
563
            // create iterator for each segment
564
14
            StorageReadOptions read_options;
565
14
            OlapReaderStatistics stats;
566
14
            read_options.stats = &stats;
567
14
            read_options.tablet_schema = output_rowset_schema;
568
14
            std::shared_ptr<Schema> schema =
569
14
                    std::make_shared<Schema>(output_rowset_schema->columns(), return_columns);
570
14
            std::unique_ptr<RowwiseIterator> iter;
571
14
            auto res = seg_ptr->new_iterator(schema, read_options, &iter);
572
14
            DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_create_iterator_error", {
573
14
                res = Status::Error<ErrorCode::INTERNAL_ERROR>(
574
14
                        "debug point: handle_single_rowset_create_iterator_error");
575
14
            })
576
14
            if (!res.ok()) {
577
0
                LOG(WARNING) << "failed to create iterator[" << seg_ptr->id()
578
0
                             << "]: " << res.to_string();
579
0
                return Status::Error<ErrorCode::ROWSET_READER_INIT>(res.to_string());
580
0
            }
581
582
14
            auto block = Block::create_unique(output_rowset_schema->create_block(return_columns));
583
28
            while (true) {
584
28
                auto status = iter->next_batch(block.get());
585
28
                DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_iterator_next_batch_error", {
586
28
                    status = Status::Error<ErrorCode::SCHEMA_CHANGE_INFO_INVALID>(
587
28
                            "next_batch fault injection");
588
28
                });
589
28
                if (!status.ok()) {
590
14
                    if (status.is<ErrorCode::END_OF_FILE>()) {
591
14
                        break;
592
14
                    }
593
14
                    LOG(WARNING)
594
0
                            << "failed to read next block when schema change for inverted index."
595
0
                            << ", err=" << status.to_string();
596
0
                    return status;
597
14
                }
598
599
                // write inverted index data, or ann index data
600
14
                status = _write_inverted_index_data(output_rowset_schema, iter->data_id(),
601
14
                                                    block.get());
602
14
                DBUG_EXECUTE_IF(
603
14
                        "IndexBuilder::handle_single_rowset_write_inverted_index_data_error", {
604
14
                            status = Status::Error<ErrorCode::INTERNAL_ERROR>(
605
14
                                    "debug point: "
606
14
                                    "handle_single_rowset_write_inverted_index_data_error");
607
14
                        })
608
14
                if (!status.ok()) {
609
0
                    return Status::Error<ErrorCode::SCHEMA_CHANGE_INFO_INVALID>(
610
0
                            "failed to write block.");
611
0
                }
612
14
                block->clear_column_data();
613
14
            }
614
615
            // finish write inverted index, flush data to compound file
616
18
            for (auto& writer_sign : inverted_index_writer_signs) {
617
18
                try {
618
18
                    if (_index_column_writers[writer_sign]) {
619
18
                        RETURN_IF_ERROR(_index_column_writers[writer_sign]->finish());
620
18
                    }
621
18
                    DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_index_build_finish_error", {
622
18
                        _CLTHROWA(CL_ERR_IO,
623
18
                                  "debug point: handle_single_rowset_index_build_finish_error");
624
18
                    })
625
18
                } catch (const std::exception& e) {
626
0
                    return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
627
0
                            "CLuceneError occurred: {}", e.what());
628
0
                }
629
18
            }
630
631
14
            _olap_data_convertor->reset();
632
14
        }
633
17
        for (auto&& [seg_id, index_file_writer] : _index_file_writers) {
634
17
            auto st = index_file_writer->begin_close();
635
17
            DBUG_EXECUTE_IF("IndexBuilder::handle_single_rowset_file_writer_close_error", {
636
17
                st = Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
637
17
                        "debug point: handle_single_rowset_file_writer_close_error");
638
17
            })
639
17
            if (!st.ok()) {
640
0
                LOG(ERROR) << "close index_file_writer error:" << st;
641
0
                return st;
642
0
            }
643
17
            inverted_index_size += index_file_writer->get_index_file_total_size();
644
17
        }
645
17
        for (auto&& [seg_id, index_file_writer] : _index_file_writers) {
646
17
            auto st = index_file_writer->finish_close();
647
17
            if (!st.ok()) {
648
0
                LOG(ERROR) << "wait close index_file_writer error:" << st;
649
0
                return st;
650
0
            }
651
17
        }
652
14
        _index_column_writers.clear();
653
14
        _index_file_writers.clear();
654
14
        output_rowset_meta->set_data_disk_size(output_rowset_meta->data_disk_size());
655
14
        output_rowset_meta->set_total_disk_size(output_rowset_meta->total_disk_size() +
656
14
                                                inverted_index_size);
657
14
        output_rowset_meta->set_index_disk_size(output_rowset_meta->index_disk_size() +
658
14
                                                inverted_index_size);
659
14
        LOG(INFO) << "all row nums. source_rows=" << output_rowset_meta->num_rows();
660
14
    }
661
662
14
    return Status::OK();
663
20
}
664
665
Status IndexBuilder::_write_inverted_index_data(TabletSchemaSPtr tablet_schema, int64_t segment_idx,
666
14
                                                Block* block) {
667
14
    VLOG_DEBUG << "begin to write inverted/ann index";
668
    // converter block data
669
14
    _olap_data_convertor->set_source_content(block, 0, block->rows());
670
32
    for (auto i = 0; i < _alter_inverted_indexes.size(); ++i) {
671
18
        auto inverted_index = _alter_inverted_indexes[i];
672
18
        auto index_id = inverted_index.index_id;
673
18
        auto column_name = inverted_index.columns[0];
674
18
        auto column_idx = tablet_schema->field_index(column_name);
675
18
        DBUG_EXECUTE_IF("IndexBuilder::_write_inverted_index_data_column_idx_is_negative",
676
18
                        { column_idx = -1; })
677
18
        if (column_idx < 0) {
678
1
            if (!inverted_index.column_unique_ids.empty()) {
679
1
                auto column_unique_id = inverted_index.column_unique_ids[0];
680
1
                column_idx = tablet_schema->field_index(column_unique_id);
681
1
            }
682
1
            if (column_idx < 0) {
683
0
                LOG(WARNING) << "referenced column was missing. "
684
0
                             << "[column=" << column_name << " referenced_column=" << column_idx
685
0
                             << "]";
686
0
                continue;
687
0
            }
688
1
        }
689
18
        const auto& column = tablet_schema->column(column_idx);
690
18
        auto writer_sign = std::make_pair(segment_idx, index_id);
691
18
        auto converted_result = _olap_data_convertor->convert_column_data(i);
692
18
        DBUG_EXECUTE_IF("IndexBuilder::_write_inverted_index_data_convert_column_data_error", {
693
18
            converted_result.first = Status::Error<ErrorCode::INTERNAL_ERROR>(
694
18
                    "debug point: _write_inverted_index_data_convert_column_data_error");
695
18
        })
696
18
        if (converted_result.first != Status::OK()) {
697
0
            LOG(WARNING) << "failed to convert block, errcode: " << converted_result.first;
698
0
            return converted_result.first;
699
0
        }
700
18
        const auto* ptr = (const uint8_t*)converted_result.second->get_data();
701
18
        const auto* null_map = converted_result.second->get_nullmap();
702
18
        if (null_map) {
703
0
            RETURN_IF_ERROR(_add_nullable(column_name, writer_sign, &column, null_map, &ptr,
704
0
                                          block->rows()));
705
18
        } else {
706
18
            RETURN_IF_ERROR(_add_data(column_name, writer_sign, &column, &ptr, block->rows()));
707
18
        }
708
18
    }
709
14
    _olap_data_convertor->clear_source_content();
710
711
14
    return Status::OK();
712
14
}
713
714
Status IndexBuilder::_add_nullable(const std::string& column_name,
715
                                   const std::pair<int64_t, int64_t>& index_writer_sign,
716
                                   const TabletColumn* column, const uint8_t* null_map,
717
0
                                   const uint8_t** ptr, size_t num_rows) {
718
    // TODO: need to process null data for inverted index
719
0
    if (column->type() == FieldType::OLAP_FIELD_TYPE_ARRAY) {
720
0
        DCHECK(column->get_subtype_count() == 1);
721
        // [size, offset_ptr, item_data_ptr, item_nullmap_ptr]
722
0
        const auto* data_ptr = reinterpret_cast<const uint64_t*>(*ptr);
723
        // total number length
724
0
        auto offset_data = *(data_ptr + 1);
725
0
        const auto* offsets_ptr = (const uint8_t*)offset_data;
726
0
        try {
727
0
            auto data = *(data_ptr + 2);
728
0
            auto nested_null_map = *(data_ptr + 3);
729
0
            RETURN_IF_ERROR(_index_column_writers[index_writer_sign]->add_array_values(
730
0
                    field_type_size(column->get_sub_column(0).type()),
731
0
                    reinterpret_cast<const void*>(data),
732
0
                    reinterpret_cast<const uint8_t*>(nested_null_map), offsets_ptr, num_rows));
733
0
            DBUG_EXECUTE_IF("IndexBuilder::_add_nullable_add_array_values_error", {
734
0
                _CLTHROWA(CL_ERR_IO, "debug point: _add_nullable_add_array_values_error");
735
0
            })
736
0
            RETURN_IF_ERROR(
737
0
                    _index_column_writers[index_writer_sign]->add_array_nulls(null_map, num_rows));
738
0
        } catch (const std::exception& e) {
739
0
            return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>(
740
0
                    "CLuceneError occurred: {}", e.what());
741
0
        }
742
743
0
        return Status::OK();
744
0
    }
745
0
    size_t offset = 0;
746
0
    auto next_run_step = [&]() {
747
0
        size_t step = 1;
748
0
        for (auto i = offset + 1; i < num_rows; ++i) {
749
0
            if (null_map[offset] == null_map[i]) {
750
0
                step++;
751
0
            } else {
752
0
                break;
753
0
            }
754
0
        }
755
0
        return step;
756
0
    };
757
0
    try {
758
0
        do {
759
0
            auto step = next_run_step();
760
0
            if (null_map[offset]) {
761
0
                RETURN_IF_ERROR(_index_column_writers[index_writer_sign]->add_nulls(
762
0
                        static_cast<uint32_t>(step)));
763
0
            } else {
764
0
                RETURN_IF_ERROR(_index_column_writers[index_writer_sign]->add_values(column_name,
765
0
                                                                                     *ptr, step));
766
0
            }
767
0
            *ptr += field_type_size(column->type()) * step;
768
0
            offset += step;
769
0
            DBUG_EXECUTE_IF("IndexBuilder::_add_nullable_throw_exception",
770
0
                            { _CLTHROWA(CL_ERR_IO, "debug point: _add_nullable_throw_exception"); })
771
0
        } while (offset < num_rows);
772
0
    } catch (const std::exception& e) {
773
0
        return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>("CLuceneError occurred: {}",
774
0
                                                                      e.what());
775
0
    }
776
777
0
    return Status::OK();
778
0
}
779
780
Status IndexBuilder::_add_data(const std::string& column_name,
781
                               const std::pair<int64_t, int64_t>& index_writer_sign,
782
18
                               const TabletColumn* column, const uint8_t** ptr, size_t num_rows) {
783
18
    try {
784
18
        if (column->type() == FieldType::OLAP_FIELD_TYPE_ARRAY) {
785
2
            DCHECK(column->get_subtype_count() == 1);
786
            // [size, offset_ptr, item_data_ptr, item_nullmap_ptr]
787
2
            const auto* data_ptr = reinterpret_cast<const uint64_t*>(*ptr);
788
            // total number length
789
2
            auto element_cnt = size_t((unsigned long)(*data_ptr));
790
2
            auto offset_data = *(data_ptr + 1);
791
2
            const auto* offsets_ptr = (const uint8_t*)offset_data;
792
2
            if (element_cnt > 0) {
793
2
                auto data = *(data_ptr + 2);
794
2
                auto nested_null_map = *(data_ptr + 3);
795
2
                RETURN_IF_ERROR(_index_column_writers[index_writer_sign]->add_array_values(
796
2
                        field_type_size(column->get_sub_column(0).type()),
797
2
                        reinterpret_cast<const void*>(data),
798
2
                        reinterpret_cast<const uint8_t*>(nested_null_map), offsets_ptr, num_rows));
799
2
            }
800
16
        } else {
801
16
            RETURN_IF_ERROR(_index_column_writers[index_writer_sign]->add_values(column_name, *ptr,
802
16
                                                                                 num_rows));
803
16
        }
804
18
        DBUG_EXECUTE_IF("IndexBuilder::_add_data_throw_exception",
805
18
                        { _CLTHROWA(CL_ERR_IO, "debug point: _add_data_throw_exception"); })
806
18
    } catch (const std::exception& e) {
807
0
        return Status::Error<ErrorCode::INVERTED_INDEX_CLUCENE_ERROR>("CLuceneError occurred: {}",
808
0
                                                                      e.what());
809
0
    }
810
811
18
    return Status::OK();
812
18
}
813
814
20
Status IndexBuilder::handle_inverted_index_data() {
815
20
    LOG(INFO) << "begin to handle_inverted_index_data";
816
20
    DCHECK(_input_rowsets.size() == _output_rowsets.size());
817
21
    for (auto& _output_rowset : _output_rowsets) {
818
21
        SegmentCacheHandle segment_cache_handle;
819
21
        RETURN_IF_ERROR(SegmentLoader::instance()->load_segments(
820
21
                std::static_pointer_cast<BetaRowset>(_output_rowset), &segment_cache_handle));
821
21
        auto output_rowset_meta = _output_rowset->rowset_meta();
822
21
        auto& segments = segment_cache_handle.get_segments();
823
21
        RETURN_IF_ERROR(handle_single_rowset(output_rowset_meta, segments));
824
21
    }
825
19
    return Status::OK();
826
20
}
827
828
24
Status IndexBuilder::do_build_inverted_index() {
829
24
    LOG(INFO) << "begin to do_build_inverted_index, tablet=" << _tablet->tablet_id()
830
24
              << ", is_drop_op=" << _is_drop_op;
831
24
    DBUG_EXECUTE_IF("IndexBuilder::do_build_inverted_index_alter_inverted_indexes_empty",
832
24
                    { _alter_inverted_indexes.clear(); })
833
24
    if (_alter_inverted_indexes.empty()) {
834
0
        return Status::OK();
835
0
    }
836
837
24
    static constexpr long TRY_LOCK_TIMEOUT = 30;
838
24
    std::unique_lock schema_change_lock(_tablet->get_schema_change_lock(), std::defer_lock);
839
24
    bool owns_lock = schema_change_lock.try_lock_for(std::chrono::seconds(TRY_LOCK_TIMEOUT));
840
841
24
    if (!owns_lock) {
842
0
        return Status::ObtainLockFailed(
843
0
                "try schema_change_lock failed. There might be schema change or cooldown running "
844
0
                "on "
845
0
                "tablet={} ",
846
0
                _tablet->tablet_id());
847
0
    }
848
    // Check executing serially with compaction task.
849
24
    std::unique_lock<std::mutex> base_compaction_lock(_tablet->get_base_compaction_lock(),
850
24
                                                      std::try_to_lock);
851
24
    if (!base_compaction_lock.owns_lock()) {
852
0
        return Status::ObtainLockFailed("try base_compaction_lock failed. tablet={} ",
853
0
                                        _tablet->tablet_id());
854
0
    }
855
24
    std::unique_lock<std::mutex> cumu_compaction_lock(_tablet->get_cumulative_compaction_lock(),
856
24
                                                      std::try_to_lock);
857
24
    if (!cumu_compaction_lock.owns_lock()) {
858
0
        return Status::ObtainLockFailed("try cumu_compaction_lock failed. tablet={}",
859
0
                                        _tablet->tablet_id());
860
0
    }
861
862
24
    std::unique_lock<std::mutex> cold_compaction_lock(_tablet->get_cold_compaction_lock(),
863
24
                                                      std::try_to_lock);
864
24
    if (!cold_compaction_lock.owns_lock()) {
865
0
        return Status::ObtainLockFailed("try cold_compaction_lock failed. tablet={}",
866
0
                                        _tablet->tablet_id());
867
0
    }
868
869
24
    std::unique_lock<std::mutex> build_inverted_index_lock(_tablet->get_build_inverted_index_lock(),
870
24
                                                           std::try_to_lock);
871
24
    if (!build_inverted_index_lock.owns_lock()) {
872
0
        return Status::ObtainLockFailed("failed to obtain build inverted index lock. tablet={}",
873
0
                                        _tablet->tablet_id());
874
0
    }
875
876
24
    std::shared_lock migration_rlock(_tablet->get_migration_lock(), std::try_to_lock);
877
24
    if (!migration_rlock.owns_lock()) {
878
0
        return Status::ObtainLockFailed("got migration_rlock failed. tablet={}",
879
0
                                        _tablet->tablet_id());
880
0
    }
881
882
24
    DCHECK(!_alter_index_ids.empty());
883
24
    _input_rowsets =
884
24
            _tablet->pick_candidate_rowsets_to_build_inverted_index(_alter_index_ids, _is_drop_op);
885
24
    if (_input_rowsets.empty()) {
886
1
        LOG(INFO) << "_input_rowsets is empty";
887
1
        return Status::OK();
888
1
    }
889
890
23
    auto st = update_inverted_index_info();
891
23
    if (!st.ok()) {
892
3
        LOG(WARNING) << "failed to update_inverted_index_info. "
893
3
                     << "tablet=" << _tablet->tablet_id() << ", error=" << st;
894
3
        gc_output_rowset();
895
3
        return st;
896
3
    }
897
898
    // create inverted index file for output rowset
899
20
    st = handle_inverted_index_data();
900
20
    if (!st.ok()) {
901
1
        LOG(WARNING) << "failed to handle_inverted_index_data. "
902
1
                     << "tablet=" << _tablet->tablet_id() << ", error=" << st;
903
1
        gc_output_rowset();
904
1
        return st;
905
1
    }
906
907
    // modify rowsets in memory
908
19
    st = modify_rowsets();
909
19
    DBUG_EXECUTE_IF("IndexBuilder::do_build_inverted_index_modify_rowsets_status_error", {
910
19
        st = Status::Error<ErrorCode::DELETE_VERSION_ERROR>(
911
19
                "debug point: do_build_inverted_index_modify_rowsets_status_error");
912
19
    })
913
19
    if (!st.ok()) {
914
0
        LOG(WARNING) << "failed to modify rowsets in memory. "
915
0
                     << "tablet=" << _tablet->tablet_id() << ", error=" << st;
916
0
        gc_output_rowset();
917
0
        return st;
918
0
    }
919
19
    return Status::OK();
920
19
}
921
922
19
Status IndexBuilder::modify_rowsets(const Merger::Statistics* stats) {
923
19
    DCHECK(std::ranges::all_of(
924
19
            _output_rowsets.begin(), _output_rowsets.end(), [&engine = _engine](auto&& rs) {
925
19
                if (engine.check_rowset_id_in_unused_rowsets(rs->rowset_id())) {
926
19
                    LOG(ERROR) << "output rowset: " << rs->rowset_id() << " in unused rowsets";
927
19
                    return false;
928
19
                }
929
19
                return true;
930
19
            }));
931
932
19
    if (_tablet->keys_type() == KeysType::UNIQUE_KEYS &&
933
19
        _tablet->enable_unique_key_merge_on_write()) {
934
1
        std::lock_guard<std::mutex> rowset_update_wlock(_tablet->get_rowset_update_lock());
935
1
        std::lock_guard meta_wlock(_tablet->get_header_lock());
936
1
        SCOPED_SIMPLE_TRACE_IF_TIMEOUT(TRACE_TABLET_LOCK_THRESHOLD);
937
1
        DeleteBitmapPtr delete_bitmap = std::make_shared<DeleteBitmap>(_tablet->tablet_id());
938
2
        for (auto i = 0; i < _input_rowsets.size(); ++i) {
939
1
            RowsetId input_rowset_id = _input_rowsets[i]->rowset_id();
940
1
            RowsetId output_rowset_id = _output_rowsets[i]->rowset_id();
941
1
            for (const auto& [k, v] : _tablet->tablet_meta()->delete_bitmap().delete_bitmap) {
942
0
                RowsetId rs_id = std::get<0>(k);
943
0
                if (rs_id == input_rowset_id) {
944
0
                    DeleteBitmap::BitmapKey output_rs_key = {output_rowset_id, std::get<1>(k),
945
0
                                                             std::get<2>(k)};
946
0
                    auto res = delete_bitmap->set(output_rs_key, v);
947
0
                    DCHECK(res > 0) << "delete_bitmap set failed, res=" << res;
948
0
                }
949
0
            }
950
1
        }
951
1
        _tablet->tablet_meta()->delete_bitmap().merge(*delete_bitmap);
952
953
        // modify_rowsets will remove the delete_bitmap for input rowsets,
954
        // should call it after merge delete_bitmap
955
1
        RETURN_IF_ERROR(_tablet->modify_rowsets(_output_rowsets, _input_rowsets, true));
956
18
    } else {
957
18
        std::lock_guard wrlock(_tablet->get_header_lock());
958
18
        RETURN_IF_ERROR(_tablet->modify_rowsets(_output_rowsets, _input_rowsets, true));
959
18
    }
960
961
19
#ifndef BE_TEST
962
19
    {
963
19
        std::shared_lock rlock(_tablet->get_header_lock());
964
19
        _tablet->save_meta();
965
19
    }
966
19
#endif
967
19
    return Status::OK();
968
19
}
969
970
4
void IndexBuilder::gc_output_rowset() {
971
4
    for (auto&& output_rowset : _output_rowsets) {
972
2
        auto is_local_rowset = output_rowset->is_local();
973
2
        DBUG_EXECUTE_IF("IndexBuilder::gc_output_rowset_is_local_rowset",
974
2
                        { is_local_rowset = false; })
975
2
        if (!is_local_rowset) {
976
0
            _tablet->record_unused_remote_rowset(output_rowset->rowset_id(),
977
0
                                                 output_rowset->rowset_meta()->resource_id(),
978
0
                                                 output_rowset->num_segments());
979
0
            return;
980
0
        }
981
2
        _engine.add_unused_rowset(output_rowset);
982
2
    }
983
4
}
984
985
} // namespace doris