be/src/storage/segment/segment.cpp
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1 | | // Licensed to the Apache Software Foundation (ASF) under one |
2 | | // or more contributor license agreements. See the NOTICE file |
3 | | // distributed with this work for additional information |
4 | | // regarding copyright ownership. The ASF licenses this file |
5 | | // to you under the Apache License, Version 2.0 (the |
6 | | // "License"); you may not use this file except in compliance |
7 | | // with the License. You may obtain a copy of the License at |
8 | | // |
9 | | // http://www.apache.org/licenses/LICENSE-2.0 |
10 | | // |
11 | | // Unless required by applicable law or agreed to in writing, |
12 | | // software distributed under the License is distributed on an |
13 | | // "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY |
14 | | // KIND, either express or implied. See the License for the |
15 | | // specific language governing permissions and limitations |
16 | | // under the License. |
17 | | |
18 | | #include "storage/segment/segment.h" |
19 | | |
20 | | #include <crc32c/crc32c.h> |
21 | | #include <gen_cpp/Descriptors_types.h> |
22 | | #include <gen_cpp/PlanNodes_types.h> |
23 | | #include <gen_cpp/olap_file.pb.h> |
24 | | #include <gen_cpp/segment_v2.pb.h> |
25 | | |
26 | | #include <cstring> |
27 | | #include <memory> |
28 | | #include <sstream> |
29 | | #include <utility> |
30 | | |
31 | | #include "cloud/config.h" |
32 | | #include "common/exception.h" |
33 | | #include "common/logging.h" |
34 | | #include "common/status.h" |
35 | | #include "core/column/column.h" |
36 | | #include "core/data_type/data_type.h" |
37 | | #include "core/data_type/data_type_factory.hpp" |
38 | | #include "core/data_type/data_type_nullable.h" |
39 | | #include "core/data_type/data_type_variant.h" |
40 | | #include "core/field.h" |
41 | | #include "core/string_ref.h" |
42 | | #include "cpp/sync_point.h" |
43 | | #include "io/cache/block_file_cache.h" |
44 | | #include "io/cache/block_file_cache_factory.h" |
45 | | #include "io/cache/cached_remote_file_reader.h" |
46 | | #include "io/fs/file_reader.h" |
47 | | #include "io/fs/file_system.h" |
48 | | #include "io/io_common.h" |
49 | | #include "runtime/exec_env.h" |
50 | | #include "runtime/query_context.h" |
51 | | #include "runtime/runtime_predicate.h" |
52 | | #include "runtime/runtime_state.h" |
53 | | #include "storage/index/index_file_reader.h" |
54 | | #include "storage/index/indexed_column_reader.h" |
55 | | #include "storage/index/primary_key_index.h" |
56 | | #include "storage/index/short_key_index.h" |
57 | | #include "storage/iterator/vgeneric_iterators.h" |
58 | | #include "storage/iterators.h" |
59 | | #include "storage/olap_common.h" |
60 | | #include "storage/predicate/block_column_predicate.h" |
61 | | #include "storage/predicate/column_predicate.h" |
62 | | #include "storage/rowset/rowset_reader_context.h" |
63 | | #include "storage/schema.h" |
64 | | #include "storage/segment/column_meta_accessor.h" |
65 | | #include "storage/segment/column_reader.h" |
66 | | #include "storage/segment/column_reader_cache.h" |
67 | | #include "storage/segment/empty_segment_iterator.h" |
68 | | #include "storage/segment/page_io.h" |
69 | | #include "storage/segment/page_pointer.h" |
70 | | #include "storage/segment/segment_iterator.h" |
71 | | #include "storage/segment/segment_writer.h" // k_segment_magic_length |
72 | | #include "storage/segment/stream_reader.h" |
73 | | #include "storage/segment/variant/variant_column_reader.h" |
74 | | #include "storage/tablet/tablet_schema.h" |
75 | | #include "storage/types.h" |
76 | | #include "storage/utils.h" |
77 | | #include "util/coding.h" |
78 | | #include "util/json/path_in_data.h" |
79 | | #include "util/slice.h" // Slice |
80 | | |
81 | | namespace doris::segment_v2 { |
82 | | #include "common/compile_check_begin.h" |
83 | | |
84 | | class InvertedIndexIterator; |
85 | | |
86 | | Status Segment::open(io::FileSystemSPtr fs, const std::string& path, int64_t tablet_id, |
87 | | uint32_t segment_id, RowsetId rowset_id, TabletSchemaSPtr tablet_schema, |
88 | | const io::FileReaderOptions& reader_options, std::shared_ptr<Segment>* output, |
89 | 6.08k | InvertedIndexFileInfo idx_file_info, OlapReaderStatistics* stats) { |
90 | 6.08k | auto s = _open(fs, path, segment_id, rowset_id, tablet_schema, reader_options, output, |
91 | 6.08k | idx_file_info, stats); |
92 | 6.08k | if (!s.ok()) { |
93 | 5 | if (!config::is_cloud_mode()) { |
94 | 5 | auto res = ExecEnv::get_tablet(tablet_id); |
95 | 5 | TabletSharedPtr tablet = |
96 | 5 | res.has_value() ? std::dynamic_pointer_cast<Tablet>(res.value()) : nullptr; |
97 | 5 | if (tablet) { |
98 | 0 | tablet->report_error(s); |
99 | 0 | } |
100 | 5 | } |
101 | 5 | } |
102 | | |
103 | 6.08k | return s; |
104 | 6.08k | } |
105 | | |
106 | | Status Segment::_open(io::FileSystemSPtr fs, const std::string& path, uint32_t segment_id, |
107 | | RowsetId rowset_id, TabletSchemaSPtr tablet_schema, |
108 | | const io::FileReaderOptions& reader_options, std::shared_ptr<Segment>* output, |
109 | 6.08k | InvertedIndexFileInfo idx_file_info, OlapReaderStatistics* stats) { |
110 | 6.08k | io::FileReaderSPtr file_reader; |
111 | 6.08k | auto st = fs->open_file(path, &file_reader, &reader_options); |
112 | 6.08k | TEST_INJECTION_POINT_CALLBACK("Segment::open:corruption", &st); |
113 | 6.08k | std::shared_ptr<Segment> segment( |
114 | 6.08k | new Segment(segment_id, rowset_id, std::move(tablet_schema), idx_file_info)); |
115 | 6.08k | if (st) { |
116 | 6.07k | segment->_fs = fs; |
117 | 6.07k | segment->_file_reader = std::move(file_reader); |
118 | 6.07k | st = segment->_open(stats); |
119 | 6.07k | } |
120 | | |
121 | | // Three-tier retry for CORRUPTION errors when file cache is enabled. |
122 | | // This handles CORRUPTION from both open_file() and _parse_footer() (via _open()). |
123 | 6.08k | if (st.is<ErrorCode::CORRUPTION>() && |
124 | 6.08k | reader_options.cache_type == io::FileCachePolicy::FILE_BLOCK_CACHE) { |
125 | | // Tier 1: Clear file cache and retry with cache support (re-downloads from remote). |
126 | 2 | LOG(WARNING) << "bad segment file may be read from file cache, try to read remote source " |
127 | 2 | "file directly, file path: " |
128 | 2 | << path << " cache_key: " << file_cache_key_str(path); |
129 | 2 | auto file_key = file_cache_key_from_path(path); |
130 | 2 | auto* file_cache = io::FileCacheFactory::instance()->get_by_path(file_key); |
131 | 2 | file_cache->remove_if_cached(file_key); |
132 | | |
133 | 2 | st = fs->open_file(path, &file_reader, &reader_options); |
134 | 2 | if (st) { |
135 | 2 | segment->_fs = fs; |
136 | 2 | segment->_file_reader = std::move(file_reader); |
137 | 2 | st = segment->_open(stats); |
138 | 2 | } |
139 | 2 | TEST_INJECTION_POINT_CALLBACK("Segment::open:corruption1", &st); |
140 | 2 | if (st.is<ErrorCode::CORRUPTION>()) { // corrupt again |
141 | | // Tier 2: Bypass cache entirely and read directly from remote storage. |
142 | 0 | LOG(WARNING) << "failed to try to read remote source file again with cache support," |
143 | 0 | << " try to read from remote directly, " |
144 | 0 | << " file path: " << path << " cache_key: " << file_cache_key_str(path); |
145 | 0 | file_cache = io::FileCacheFactory::instance()->get_by_path(file_key); |
146 | 0 | file_cache->remove_if_cached(file_key); |
147 | |
|
148 | 0 | io::FileReaderOptions opt = reader_options; |
149 | 0 | opt.cache_type = io::FileCachePolicy::NO_CACHE; // skip cache |
150 | 0 | RETURN_IF_ERROR(fs->open_file(path, &file_reader, &opt)); |
151 | 0 | segment->_fs = fs; |
152 | 0 | segment->_file_reader = std::move(file_reader); |
153 | 0 | st = segment->_open(stats); |
154 | 0 | if (!st.ok()) { |
155 | | // Tier 3: Remote source itself is corrupt. |
156 | 0 | LOG(WARNING) << "failed to try to read remote source file directly," |
157 | 0 | << " file path: " << path |
158 | 0 | << " cache_key: " << file_cache_key_str(path); |
159 | 0 | } |
160 | 0 | } |
161 | 2 | } |
162 | 6.08k | RETURN_IF_ERROR(st); |
163 | 6.08k | DCHECK(segment->_fs != nullptr) << "file system is nullptr after segment open"; |
164 | 6.07k | *output = std::move(segment); |
165 | 6.07k | return Status::OK(); |
166 | 6.08k | } |
167 | | |
168 | | Segment::Segment(uint32_t segment_id, RowsetId rowset_id, TabletSchemaSPtr tablet_schema, |
169 | | InvertedIndexFileInfo idx_file_info) |
170 | 6.09k | : _segment_id(segment_id), |
171 | 6.09k | _meta_mem_usage(0), |
172 | 6.09k | _rowset_id(rowset_id), |
173 | 6.09k | _tablet_schema(std::move(tablet_schema)), |
174 | 6.09k | _idx_file_info(std::move(idx_file_info)) {} |
175 | | |
176 | 6.09k | Segment::~Segment() { |
177 | 6.09k | g_segment_estimate_mem_bytes << -_tracked_meta_mem_usage; |
178 | | // if failed, fix `_tracked_meta_mem_usage` accuracy |
179 | 6.09k | DCHECK(_tracked_meta_mem_usage == meta_mem_usage()); |
180 | 6.09k | } |
181 | | |
182 | 0 | io::UInt128Wrapper Segment::file_cache_key(std::string_view rowset_id, uint32_t seg_id) { |
183 | 0 | return io::BlockFileCache::hash(fmt::format("{}_{}.dat", rowset_id, seg_id)); |
184 | 0 | } |
185 | | |
186 | 6.07k | int64_t Segment::get_metadata_size() const { |
187 | 6.07k | std::shared_ptr<SegmentFooterPB> footer_pb_shared = _footer_pb.lock(); |
188 | 6.07k | return sizeof(Segment) + (_pk_index_meta ? _pk_index_meta->ByteSizeLong() : 0) + |
189 | 6.07k | (footer_pb_shared ? footer_pb_shared->ByteSizeLong() : 0); |
190 | 6.07k | } |
191 | | |
192 | 6.07k | void Segment::update_metadata_size() { |
193 | 6.07k | MetadataAdder::update_metadata_size(); |
194 | 6.07k | g_segment_estimate_mem_bytes << _meta_mem_usage - _tracked_meta_mem_usage; |
195 | 6.07k | _tracked_meta_mem_usage = _meta_mem_usage; |
196 | 6.07k | } |
197 | | |
198 | 6.07k | Status Segment::_open(OlapReaderStatistics* stats) { |
199 | 6.07k | std::shared_ptr<SegmentFooterPB> footer_pb_shared; |
200 | 6.07k | RETURN_IF_ERROR(_get_segment_footer(footer_pb_shared, stats)); |
201 | | |
202 | 6.07k | _pk_index_meta.reset( |
203 | 6.07k | footer_pb_shared->has_primary_key_index_meta() |
204 | 6.07k | ? new PrimaryKeyIndexMetaPB(footer_pb_shared->primary_key_index_meta()) |
205 | 6.07k | : nullptr); |
206 | | // delete_bitmap_calculator_test.cpp |
207 | | // DCHECK(footer.has_short_key_index_page()); |
208 | 6.07k | _sk_index_page = footer_pb_shared->short_key_index_page(); |
209 | 6.07k | _num_rows = footer_pb_shared->num_rows(); |
210 | | |
211 | | // An estimated memory usage of a segment |
212 | | // Footer is seperated to StoragePageCache so we don't need to add it to _meta_mem_usage |
213 | | // _meta_mem_usage += footer_pb_shared->ByteSizeLong(); |
214 | 6.07k | if (_pk_index_meta != nullptr) { |
215 | 74 | _meta_mem_usage += _pk_index_meta->ByteSizeLong(); |
216 | 74 | } |
217 | | |
218 | 6.07k | _meta_mem_usage += sizeof(*this); |
219 | 6.07k | _meta_mem_usage += std::min(static_cast<int>(_tablet_schema->num_columns()), |
220 | 6.07k | config::max_segment_partial_column_cache_size) * |
221 | 6.07k | config::estimated_mem_per_column_reader; |
222 | | |
223 | | // 1024 comes from SegmentWriterOptions |
224 | 6.07k | _meta_mem_usage += (_num_rows + 1023) / 1024 * (36 + 4); |
225 | | // 0.01 comes from PrimaryKeyIndexBuilder::init |
226 | 6.07k | _meta_mem_usage += BloomFilter::optimal_bit_num(_num_rows, 0.01) / 8; |
227 | | |
228 | 6.07k | update_metadata_size(); |
229 | | |
230 | 6.07k | return Status::OK(); |
231 | 6.07k | } |
232 | | |
233 | 653 | Status Segment::_open_index_file_reader() { |
234 | 653 | _index_file_reader = std::make_shared<IndexFileReader>( |
235 | 653 | _fs, |
236 | 653 | std::string {InvertedIndexDescriptor::get_index_file_path_prefix( |
237 | 653 | _file_reader->path().native())}, |
238 | 653 | _tablet_schema->get_inverted_index_storage_format(), _idx_file_info); |
239 | 653 | return Status::OK(); |
240 | 653 | } |
241 | | |
242 | | Status Segment::new_iterator(SchemaSPtr schema, const StorageReadOptions& read_options, |
243 | 5.63k | std::unique_ptr<RowwiseIterator>* iter) { |
244 | 5.63k | if (read_options.runtime_state != nullptr) { |
245 | 0 | _be_exec_version = read_options.runtime_state->be_exec_version(); |
246 | 0 | } |
247 | 5.63k | RETURN_IF_ERROR(_create_column_meta_once(read_options.stats)); |
248 | | |
249 | 5.63k | read_options.stats->total_segment_number++; |
250 | | // trying to prune the current segment by segment-level zone map |
251 | 5.63k | for (const auto& entry : read_options.col_id_to_predicates) { |
252 | 0 | int32_t column_id = entry.first; |
253 | | // schema change |
254 | 0 | if (_tablet_schema->num_columns() <= column_id) { |
255 | 0 | continue; |
256 | 0 | } |
257 | 0 | const TabletColumn& col = read_options.tablet_schema->column(column_id); |
258 | 0 | std::shared_ptr<ColumnReader> reader; |
259 | 0 | Status st = get_column_reader(col, &reader, read_options.stats); |
260 | | // not found in this segment, skip |
261 | 0 | if (st.is<ErrorCode::NOT_FOUND>()) { |
262 | 0 | continue; |
263 | 0 | } |
264 | 0 | RETURN_IF_ERROR(st); |
265 | | // should be OK |
266 | 0 | DCHECK(reader != nullptr); |
267 | 0 | if (!reader->has_zone_map()) { |
268 | 0 | continue; |
269 | 0 | } |
270 | 0 | if (read_options.col_id_to_predicates.contains(column_id) && |
271 | 0 | can_apply_predicate_safely(column_id, *schema, |
272 | 0 | read_options.target_cast_type_for_variants, read_options)) { |
273 | 0 | bool matched = true; |
274 | 0 | RETURN_IF_ERROR(reader->match_condition(entry.second.get(), &matched)); |
275 | 0 | if (!matched) { |
276 | | // any condition not satisfied, return. |
277 | 0 | *iter = std::make_unique<EmptySegmentIterator>(*schema); |
278 | 0 | read_options.stats->filtered_segment_number++; |
279 | 0 | return Status::OK(); |
280 | 0 | } |
281 | 0 | } |
282 | 0 | } |
283 | | |
284 | 5.63k | { |
285 | 5.63k | SCOPED_RAW_TIMER(&read_options.stats->segment_load_index_timer_ns); |
286 | 5.63k | RETURN_IF_ERROR(load_index(read_options.stats)); |
287 | 5.63k | } |
288 | | |
289 | 5.63k | if (read_options.delete_condition_predicates->num_of_column_predicate() == 0 && |
290 | 5.63k | read_options.push_down_agg_type_opt != TPushAggOp::NONE && |
291 | 5.63k | read_options.push_down_agg_type_opt != TPushAggOp::COUNT_ON_INDEX) { |
292 | 0 | iter->reset(new_vstatistics_iterator(this->shared_from_this(), *schema)); |
293 | 5.63k | } else { |
294 | 5.63k | *iter = std::make_unique<SegmentIterator>(this->shared_from_this(), schema); |
295 | 5.63k | } |
296 | | |
297 | | // TODO: Valid the opt not only in ReaderType::READER_QUERY |
298 | 5.63k | if (read_options.io_ctx.reader_type == ReaderType::READER_QUERY && |
299 | 5.63k | !read_options.column_predicates.empty()) { |
300 | 0 | auto pruned_predicates = read_options.column_predicates; |
301 | 0 | auto pruned = false; |
302 | 0 | for (auto& it : _column_reader_cache->get_available_readers(false)) { |
303 | 0 | const auto uid = it.first; |
304 | 0 | const auto column_id = read_options.tablet_schema->field_index(uid); |
305 | 0 | bool tmp_pruned = false; |
306 | 0 | RETURN_IF_ERROR(it.second->prune_predicates_by_zone_map(pruned_predicates, column_id, |
307 | 0 | &tmp_pruned)); |
308 | 0 | pruned |= tmp_pruned; |
309 | 0 | } |
310 | | |
311 | 0 | if (pruned) { |
312 | 0 | auto options_with_pruned_predicates = read_options; |
313 | 0 | options_with_pruned_predicates.column_predicates = pruned_predicates; |
314 | | //because column_predicates is changed, we need to rebuild col_id_to_predicates so that inverted index will not go through it. |
315 | 0 | options_with_pruned_predicates.col_id_to_predicates.clear(); |
316 | 0 | for (auto pred : options_with_pruned_predicates.column_predicates) { |
317 | 0 | if (!options_with_pruned_predicates.col_id_to_predicates.contains( |
318 | 0 | pred->column_id())) { |
319 | 0 | options_with_pruned_predicates.col_id_to_predicates.insert( |
320 | 0 | {pred->column_id(), AndBlockColumnPredicate::create_shared()}); |
321 | 0 | } |
322 | 0 | options_with_pruned_predicates.col_id_to_predicates[pred->column_id()] |
323 | 0 | ->add_column_predicate(SingleColumnBlockPredicate::create_unique(pred)); |
324 | 0 | } |
325 | 0 | return iter->get()->init(options_with_pruned_predicates); |
326 | 0 | } |
327 | 0 | } |
328 | 5.63k | return iter->get()->init(read_options); |
329 | 5.63k | } |
330 | | |
331 | | Status Segment::_write_error_file(size_t file_size, size_t offset, size_t bytes_read, char* data, |
332 | 1 | io::IOContext& io_ctx) { |
333 | 1 | if (!config::enbale_dump_error_file || !doris::config::is_cloud_mode()) { |
334 | 1 | return Status::OK(); |
335 | 1 | } |
336 | | |
337 | 0 | std::string file_name = _rowset_id.to_string() + "_" + std::to_string(_segment_id) + ".dat"; |
338 | 0 | std::string dir_path = io::FileCacheFactory::instance()->get_base_paths()[0] + "/error_file/"; |
339 | 0 | Status create_st = io::global_local_filesystem()->create_directory(dir_path, true); |
340 | 0 | if (!create_st.ok() && !create_st.is<ErrorCode::ALREADY_EXIST>()) { |
341 | 0 | LOG(WARNING) << "failed to create error file dir: " << create_st.to_string(); |
342 | 0 | return create_st; |
343 | 0 | } |
344 | 0 | size_t dir_size = 0; |
345 | 0 | RETURN_IF_ERROR(io::global_local_filesystem()->directory_size(dir_path, &dir_size)); |
346 | 0 | if (dir_size > config::file_cache_error_log_limit_bytes) { |
347 | 0 | LOG(WARNING) << "error file dir size is too large: " << dir_size; |
348 | 0 | return Status::OK(); |
349 | 0 | } |
350 | | |
351 | 0 | std::string error_part; |
352 | 0 | error_part.resize(bytes_read); |
353 | 0 | std::string part_path = dir_path + file_name + ".part_offset_" + std::to_string(offset); |
354 | 0 | LOG(WARNING) << "writer error part to " << part_path; |
355 | 0 | bool is_part_exist = false; |
356 | 0 | RETURN_IF_ERROR(io::global_local_filesystem()->exists(part_path, &is_part_exist)); |
357 | 0 | if (is_part_exist) { |
358 | 0 | LOG(WARNING) << "error part already exists: " << part_path; |
359 | 0 | } else { |
360 | 0 | std::unique_ptr<io::FileWriter> part_writer; |
361 | 0 | RETURN_IF_ERROR(io::global_local_filesystem()->create_file(part_path, &part_writer)); |
362 | 0 | RETURN_IF_ERROR(part_writer->append(Slice(data, bytes_read))); |
363 | 0 | RETURN_IF_ERROR(part_writer->close()); |
364 | 0 | } |
365 | | |
366 | 0 | std::string error_file; |
367 | 0 | error_file.resize(file_size); |
368 | 0 | auto* cached_reader = dynamic_cast<io::CachedRemoteFileReader*>(_file_reader.get()); |
369 | 0 | if (cached_reader == nullptr) { |
370 | 0 | return Status::InternalError("file reader is not CachedRemoteFileReader"); |
371 | 0 | } |
372 | 0 | size_t error_file_bytes_read = 0; |
373 | 0 | RETURN_IF_ERROR(cached_reader->get_remote_reader()->read_at( |
374 | 0 | 0, Slice(error_file.data(), file_size), &error_file_bytes_read, &io_ctx)); |
375 | 0 | DCHECK(error_file_bytes_read == file_size); |
376 | | //std::string file_path = dir_path + std::to_string(cur_time) + "_" + ss.str(); |
377 | 0 | std::string file_path = dir_path + file_name; |
378 | 0 | LOG(WARNING) << "writer error file to " << file_path; |
379 | 0 | bool is_file_exist = false; |
380 | 0 | RETURN_IF_ERROR(io::global_local_filesystem()->exists(file_path, &is_file_exist)); |
381 | 0 | if (is_file_exist) { |
382 | 0 | LOG(WARNING) << "error file already exists: " << part_path; |
383 | 0 | } else { |
384 | 0 | std::unique_ptr<io::FileWriter> writer; |
385 | 0 | RETURN_IF_ERROR(io::global_local_filesystem()->create_file(file_path, &writer)); |
386 | 0 | RETURN_IF_ERROR(writer->append(Slice(error_file.data(), file_size))); |
387 | 0 | RETURN_IF_ERROR(writer->close()); |
388 | 0 | } |
389 | 0 | return Status::OK(); // already exists |
390 | 0 | }; |
391 | | |
392 | | Status Segment::_parse_footer(std::shared_ptr<SegmentFooterPB>& footer, |
393 | 4.88k | OlapReaderStatistics* stats) { |
394 | | // Footer := SegmentFooterPB, FooterPBSize(4), FooterPBChecksum(4), MagicNumber(4) |
395 | 4.88k | auto file_size = _file_reader->size(); |
396 | 4.88k | if (file_size < 12) { |
397 | 0 | return Status::Corruption("Bad segment file {}: file size {} < 12, cache_key: {}", |
398 | 0 | _file_reader->path().native(), file_size, |
399 | 0 | file_cache_key_str(_file_reader->path().native())); |
400 | 0 | } |
401 | | |
402 | 4.88k | uint8_t fixed_buf[12]; |
403 | 4.88k | size_t bytes_read = 0; |
404 | | // TODO(plat1ko): Support session variable `enable_file_cache` |
405 | 4.88k | io::IOContext io_ctx {.is_index_data = true, |
406 | 4.88k | .file_cache_stats = stats ? &stats->file_cache_stats : nullptr}; |
407 | 4.88k | RETURN_IF_ERROR( |
408 | 4.88k | _file_reader->read_at(file_size - 12, Slice(fixed_buf, 12), &bytes_read, &io_ctx)); |
409 | 4.88k | DCHECK_EQ(bytes_read, 12); |
410 | 4.88k | TEST_SYNC_POINT_CALLBACK("Segment::parse_footer:magic_number_corruption", fixed_buf); |
411 | 4.88k | TEST_INJECTION_POINT_CALLBACK("Segment::parse_footer:magic_number_corruption_inj", fixed_buf); |
412 | 4.88k | if (memcmp(fixed_buf + 8, k_segment_magic, k_segment_magic_length) != 0) { |
413 | 1 | Status st = |
414 | 1 | _write_error_file(file_size, file_size - 12, bytes_read, (char*)fixed_buf, io_ctx); |
415 | 1 | if (!st.ok()) { |
416 | 0 | LOG(WARNING) << "failed to write error file: " << st.to_string(); |
417 | 0 | } |
418 | 1 | return Status::Corruption( |
419 | 1 | "Bad segment file {}: file_size: {}, magic number not match, cache_key: {}", |
420 | 1 | _file_reader->path().native(), file_size, |
421 | 1 | file_cache_key_str(_file_reader->path().native())); |
422 | 1 | } |
423 | | |
424 | | // read footer PB |
425 | 4.88k | uint32_t footer_length = decode_fixed32_le(fixed_buf); |
426 | 4.88k | if (file_size < 12 + footer_length) { |
427 | 0 | Status st = |
428 | 0 | _write_error_file(file_size, file_size - 12, bytes_read, (char*)fixed_buf, io_ctx); |
429 | 0 | if (!st.ok()) { |
430 | 0 | LOG(WARNING) << "failed to write error file: " << st.to_string(); |
431 | 0 | } |
432 | 0 | return Status::Corruption("Bad segment file {}: file size {} < {}, cache_key: {}", |
433 | 0 | _file_reader->path().native(), file_size, 12 + footer_length, |
434 | 0 | file_cache_key_str(_file_reader->path().native())); |
435 | 0 | } |
436 | | |
437 | 4.88k | std::string footer_buf; |
438 | 4.88k | footer_buf.resize(footer_length); |
439 | 4.88k | RETURN_IF_ERROR(_file_reader->read_at(file_size - 12 - footer_length, footer_buf, &bytes_read, |
440 | 4.88k | &io_ctx)); |
441 | 4.88k | DCHECK_EQ(bytes_read, footer_length); |
442 | | |
443 | | // validate footer PB's checksum |
444 | 4.88k | uint32_t expect_checksum = decode_fixed32_le(fixed_buf + 4); |
445 | 4.88k | uint32_t actual_checksum = crc32c::Crc32c(footer_buf.data(), footer_buf.size()); |
446 | 4.88k | if (actual_checksum != expect_checksum) { |
447 | 0 | Status st = _write_error_file(file_size, file_size - 12 - footer_length, bytes_read, |
448 | 0 | footer_buf.data(), io_ctx); |
449 | 0 | if (!st.ok()) { |
450 | 0 | LOG(WARNING) << "failed to write error file: " << st.to_string(); |
451 | 0 | } |
452 | 0 | return Status::Corruption( |
453 | 0 | "Bad segment file {}: file_size = {}, footer checksum not match, actual={} " |
454 | 0 | "vs expect={}, cache_key: {}", |
455 | 0 | _file_reader->path().native(), file_size, actual_checksum, expect_checksum, |
456 | 0 | file_cache_key_str(_file_reader->path().native())); |
457 | 0 | } |
458 | | |
459 | | // deserialize footer PB |
460 | 4.88k | footer = std::make_shared<SegmentFooterPB>(); |
461 | 4.88k | if (!footer->ParseFromString(footer_buf)) { |
462 | 0 | Status st = _write_error_file(file_size, file_size - 12 - footer_length, bytes_read, |
463 | 0 | footer_buf.data(), io_ctx); |
464 | 0 | if (!st.ok()) { |
465 | 0 | LOG(WARNING) << "failed to write error file: " << st.to_string(); |
466 | 0 | } |
467 | 0 | return Status::Corruption( |
468 | 0 | "Bad segment file {}: file_size = {}, failed to parse SegmentFooterPB, " |
469 | 0 | "cache_key: ", |
470 | 0 | _file_reader->path().native(), file_size, |
471 | 0 | file_cache_key_str(_file_reader->path().native())); |
472 | 0 | } |
473 | | |
474 | 4.88k | VLOG_DEBUG << fmt::format("Loading segment footer from {} finished", |
475 | 0 | _file_reader->path().native()); |
476 | 4.88k | return Status::OK(); |
477 | 4.88k | } |
478 | | |
479 | 6 | Status Segment::_load_pk_bloom_filter(OlapReaderStatistics* stats) { |
480 | 6 | #ifdef BE_TEST |
481 | 6 | if (_pk_index_meta == nullptr) { |
482 | | // for BE UT "segment_cache_test" |
483 | 2 | return _load_pk_bf_once.call([this] { |
484 | 1 | _meta_mem_usage += 100; |
485 | 1 | update_metadata_size(); |
486 | 1 | return Status::OK(); |
487 | 1 | }); |
488 | 2 | } |
489 | 4 | #endif |
490 | 6 | DCHECK(_tablet_schema->keys_type() == UNIQUE_KEYS); |
491 | 4 | DCHECK(_pk_index_meta != nullptr); |
492 | 4 | DCHECK(_pk_index_reader != nullptr); |
493 | | |
494 | 4 | return _load_pk_bf_once.call([this, stats] { |
495 | 2 | RETURN_IF_ERROR(_pk_index_reader->parse_bf(_file_reader, *_pk_index_meta, stats)); |
496 | | // _meta_mem_usage += _pk_index_reader->get_bf_memory_size(); |
497 | 2 | return Status::OK(); |
498 | 2 | }); |
499 | 6 | } |
500 | | |
501 | 6 | Status Segment::load_pk_index_and_bf(OlapReaderStatistics* index_load_stats) { |
502 | | // `DorisCallOnce` may catch exception in calling stack A and re-throw it in |
503 | | // a different calling stack B which doesn't have catch block. So we add catch block here |
504 | | // to prevent coreudmp |
505 | 6 | RETURN_IF_CATCH_EXCEPTION({ |
506 | 6 | RETURN_IF_ERROR(load_index(index_load_stats)); |
507 | 6 | RETURN_IF_ERROR(_load_pk_bloom_filter(index_load_stats)); |
508 | 6 | }); |
509 | 6 | return Status::OK(); |
510 | 6 | } |
511 | | |
512 | 5.68k | Status Segment::load_index(OlapReaderStatistics* stats) { |
513 | 5.68k | return _load_index_once.call([this, stats] { |
514 | 5.62k | if (_tablet_schema->keys_type() == UNIQUE_KEYS && _pk_index_meta != nullptr) { |
515 | 57 | _pk_index_reader = std::make_unique<PrimaryKeyIndexReader>(); |
516 | 57 | RETURN_IF_ERROR(_pk_index_reader->parse_index(_file_reader, *_pk_index_meta, stats)); |
517 | | // _meta_mem_usage += _pk_index_reader->get_memory_size(); |
518 | 57 | return Status::OK(); |
519 | 5.57k | } else { |
520 | | // read and parse short key index page |
521 | 5.57k | OlapReaderStatistics tmp_stats; |
522 | 5.57k | OlapReaderStatistics* stats_ptr = stats != nullptr ? stats : &tmp_stats; |
523 | 5.57k | PageReadOptions opts(io::IOContext {.is_index_data = true, |
524 | 5.57k | .file_cache_stats = &stats_ptr->file_cache_stats}); |
525 | 5.57k | opts.use_page_cache = true; |
526 | 5.57k | opts.type = INDEX_PAGE; |
527 | 5.57k | opts.file_reader = _file_reader.get(); |
528 | 5.57k | opts.page_pointer = PagePointer(_sk_index_page); |
529 | | // short key index page uses NO_COMPRESSION for now |
530 | 5.57k | opts.codec = nullptr; |
531 | 5.57k | opts.stats = &tmp_stats; |
532 | | |
533 | 5.57k | Slice body; |
534 | 5.57k | PageFooterPB footer; |
535 | 5.57k | RETURN_IF_ERROR( |
536 | 5.57k | PageIO::read_and_decompress_page(opts, &_sk_index_handle, &body, &footer)); |
537 | 5.57k | DCHECK_EQ(footer.type(), SHORT_KEY_PAGE); |
538 | 5.57k | DCHECK(footer.has_short_key_page_footer()); |
539 | | |
540 | | // _meta_mem_usage += body.get_size(); |
541 | 5.57k | _sk_index_decoder = std::make_unique<ShortKeyIndexDecoder>(); |
542 | 5.57k | return _sk_index_decoder->parse(body, footer.short_key_page_footer()); |
543 | 5.57k | } |
544 | 5.62k | }); |
545 | 5.68k | } |
546 | | |
547 | 0 | Status Segment::healthy_status() { |
548 | 0 | try { |
549 | 0 | if (_load_index_once.has_called()) { |
550 | 0 | RETURN_IF_ERROR(_load_index_once.stored_result()); |
551 | 0 | } |
552 | 0 | if (_load_pk_bf_once.has_called()) { |
553 | 0 | RETURN_IF_ERROR(_load_pk_bf_once.stored_result()); |
554 | 0 | } |
555 | 0 | if (_create_column_meta_once_call.has_called()) { |
556 | 0 | RETURN_IF_ERROR(_create_column_meta_once_call.stored_result()); |
557 | 0 | } |
558 | 0 | if (_index_file_reader_open.has_called()) { |
559 | 0 | RETURN_IF_ERROR(_index_file_reader_open.stored_result()); |
560 | 0 | } |
561 | | // This status is set by running time, for example, if there is something wrong during read segment iterator. |
562 | 0 | return _healthy_status.status(); |
563 | 0 | } catch (const doris::Exception& e) { |
564 | | // If there is an exception during load_xxx, should not throw exception directly because |
565 | | // the caller may not exception safe. |
566 | 0 | return e.to_status(); |
567 | 0 | } catch (const std::exception& e) { |
568 | | // The exception is not thrown by doris code. |
569 | 0 | return Status::InternalError("Unexcepted error during load segment: {}", e.what()); |
570 | 0 | } |
571 | 0 | } |
572 | | |
573 | | // Return the storage datatype of related column to field. |
574 | | DataTypePtr Segment::get_data_type_of(const TabletColumn& column, |
575 | 15.5k | const StorageReadOptions& read_options) { |
576 | 15.5k | const PathInDataPtr path = column.path_info_ptr(); |
577 | | |
578 | | // none variant column |
579 | 15.5k | if (path == nullptr || path->empty()) { |
580 | 15.4k | return DataTypeFactory::instance().create_data_type(column); |
581 | 15.4k | } |
582 | | |
583 | | // Path exists, proceed with variant logic. |
584 | 105 | PathInData relative_path = path->copy_pop_front(); |
585 | 105 | int32_t unique_id = column.unique_id() >= 0 ? column.unique_id() : column.parent_unique_id(); |
586 | | |
587 | | // If this uid does not exist in segment meta, fallback to schema type. |
588 | 105 | if (!_column_meta_accessor->has_column_uid(unique_id)) { |
589 | 0 | return DataTypeFactory::instance().create_data_type(column); |
590 | 0 | } |
591 | | |
592 | 105 | std::shared_ptr<ColumnReader> v_reader; |
593 | | |
594 | | // Get the parent variant column reader |
595 | 105 | OlapReaderStatistics stats; |
596 | | // If status is not ok, it will throw exception(data corruption) |
597 | 105 | THROW_IF_ERROR(get_column_reader(unique_id, &v_reader, &stats)); |
598 | 105 | DCHECK(v_reader != nullptr); |
599 | 105 | auto* variant_reader = static_cast<VariantColumnReader*>(v_reader.get()); |
600 | | // Delegate type inference for variant paths to VariantColumnReader. |
601 | 105 | DataTypePtr type; |
602 | 105 | THROW_IF_ERROR(variant_reader->infer_data_type_for_path(&type, column, read_options, |
603 | 105 | _column_reader_cache.get())); |
604 | 105 | return type; |
605 | 105 | } |
606 | | |
607 | 36.4k | Status Segment::_create_column_meta_once(OlapReaderStatistics* stats) { |
608 | 36.4k | SCOPED_RAW_TIMER(&stats->segment_create_column_readers_timer_ns); |
609 | 36.4k | return _create_column_meta_once_call.call([&] { |
610 | 5.70k | std::shared_ptr<SegmentFooterPB> footer_pb_shared; |
611 | 5.70k | RETURN_IF_ERROR(_get_segment_footer(footer_pb_shared, stats)); |
612 | 5.70k | return _create_column_meta(*footer_pb_shared); |
613 | 5.70k | }); |
614 | 36.4k | } |
615 | | |
616 | 5.70k | Status Segment::_create_column_meta(const SegmentFooterPB& footer) { |
617 | | // Initialize column meta accessor which internally maintains uid -> column_ordinal mapping. |
618 | 5.70k | _column_meta_accessor = std::make_unique<ColumnMetaAccessor>(); |
619 | 5.70k | RETURN_IF_ERROR(_column_meta_accessor->init(footer, _file_reader)); |
620 | 5.70k | _column_reader_cache = std::make_unique<ColumnReaderCache>( |
621 | 5.70k | _column_meta_accessor.get(), _tablet_schema, _file_reader, _num_rows, |
622 | 13.2k | [this](std::shared_ptr<SegmentFooterPB>& footer_pb, OlapReaderStatistics* stats) { |
623 | 13.2k | return _get_segment_footer(footer_pb, stats); |
624 | 13.2k | }); |
625 | 5.70k | return Status::OK(); |
626 | 5.70k | } |
627 | | |
628 | | Status Segment::new_default_iterator(const TabletColumn& tablet_column, |
629 | 3 | std::unique_ptr<ColumnIterator>* iter) { |
630 | 3 | if (!tablet_column.has_default_value() && !tablet_column.is_nullable()) { |
631 | 0 | return Status::InternalError( |
632 | 0 | "invalid nonexistent column without default value. column_uid={}, " |
633 | 0 | "column_name={}, " |
634 | 0 | "column_type={}", |
635 | 0 | tablet_column.unique_id(), tablet_column.name(), tablet_column.type()); |
636 | 0 | } |
637 | 3 | auto type_info = get_type_info(&tablet_column); |
638 | 3 | std::unique_ptr<DefaultValueColumnIterator> default_value_iter(new DefaultValueColumnIterator( |
639 | 3 | tablet_column.has_default_value(), tablet_column.default_value(), |
640 | 3 | tablet_column.is_nullable(), std::move(type_info), tablet_column.precision(), |
641 | 3 | tablet_column.frac(), tablet_column.length())); |
642 | 3 | ColumnIteratorOptions iter_opts; |
643 | | |
644 | 3 | RETURN_IF_ERROR(default_value_iter->init(iter_opts)); |
645 | 3 | *iter = std::move(default_value_iter); |
646 | 3 | return Status::OK(); |
647 | 3 | } |
648 | | |
649 | | // Not use cid anymore, for example original table schema is colA int, then user do following actions |
650 | | // 1.add column b |
651 | | // 2. drop column b |
652 | | // 3. add column c |
653 | | // in the new schema column c's cid == 2 |
654 | | // but in the old schema column b's cid == 2 |
655 | | // but they are not the same column |
656 | | Status Segment::new_column_iterator(const TabletColumn& tablet_column, |
657 | | std::unique_ptr<ColumnIterator>* iter, |
658 | | const StorageReadOptions* opt, |
659 | | const std::unordered_map<int32_t, PathToBinaryColumnCacheUPtr>* |
660 | 12.6k | variant_sparse_column_cache) { |
661 | 12.6k | if (opt->runtime_state != nullptr) { |
662 | 0 | _be_exec_version = opt->runtime_state->be_exec_version(); |
663 | 0 | } |
664 | 12.6k | RETURN_IF_ERROR(_create_column_meta_once(opt->stats)); |
665 | | |
666 | | // For compability reason unique_id may less than 0 for variant extracted column |
667 | 12.6k | int32_t unique_id = tablet_column.unique_id() >= 0 ? tablet_column.unique_id() |
668 | 12.6k | : tablet_column.parent_unique_id(); |
669 | | |
670 | | // If column meta for this uid is not found in this segment, use default iterator. |
671 | 12.6k | if (!_column_meta_accessor->has_column_uid(unique_id)) { |
672 | 0 | RETURN_IF_ERROR(new_default_iterator(tablet_column, iter)); |
673 | 0 | return Status::OK(); |
674 | 0 | } |
675 | | |
676 | | // init iterator by unique id |
677 | 12.6k | std::shared_ptr<ColumnReader> reader; |
678 | 12.6k | RETURN_IF_ERROR(get_column_reader(unique_id, &reader, opt->stats)); |
679 | 12.6k | if (reader == nullptr) { |
680 | 0 | return Status::InternalError("column reader is nullptr, unique_id={}", unique_id); |
681 | 0 | } |
682 | 12.6k | if (reader->get_meta_type() == FieldType::OLAP_FIELD_TYPE_VARIANT) { |
683 | | // if sparse_column_cache_ptr is nullptr, means the sparse column cache is not used |
684 | 100 | PathToBinaryColumnCache* sparse_column_cache_ptr = nullptr; |
685 | 100 | if (variant_sparse_column_cache) { |
686 | 100 | auto it = variant_sparse_column_cache->find(unique_id); |
687 | 100 | if (it != variant_sparse_column_cache->end()) { |
688 | 100 | sparse_column_cache_ptr = it->second.get(); |
689 | 100 | } else { |
690 | 0 | DCHECK(false) << "sparse column cache is not found, unique_id=" << unique_id; |
691 | 0 | } |
692 | 100 | } |
693 | | // use _column_reader_cache to get variant subcolumn(path column) reader |
694 | 100 | RETURN_IF_ERROR(assert_cast<VariantColumnReader*>(reader.get()) |
695 | 100 | ->new_iterator(iter, &tablet_column, opt, |
696 | 100 | _column_reader_cache.get(), |
697 | 100 | sparse_column_cache_ptr)); |
698 | 12.5k | } else { |
699 | 12.5k | RETURN_IF_ERROR(reader->new_iterator(iter, &tablet_column, opt)); |
700 | 12.5k | if (opt->all_access_paths.contains(unique_id) || |
701 | 12.5k | opt->predicate_access_paths.contains(unique_id)) { |
702 | 0 | const auto& all_access_paths = opt->all_access_paths.contains(unique_id) |
703 | 0 | ? opt->all_access_paths.at(unique_id) |
704 | 0 | : TColumnAccessPaths {}; |
705 | 0 | const auto& predicate_access_paths = opt->predicate_access_paths.contains(unique_id) |
706 | 0 | ? opt->predicate_access_paths.at(unique_id) |
707 | 0 | : TColumnAccessPaths {}; |
708 | | |
709 | | // set column name to apply access paths. |
710 | 0 | (*iter)->set_column_name(tablet_column.name()); |
711 | 0 | RETURN_IF_ERROR((*iter)->set_access_paths(all_access_paths, predicate_access_paths)); |
712 | 0 | (*iter)->remove_pruned_sub_iterators(); |
713 | 0 | } |
714 | 12.5k | } |
715 | | |
716 | 12.6k | if (config::enable_column_type_check && !tablet_column.has_path_info() && |
717 | 12.6k | !tablet_column.is_agg_state_type() && tablet_column.type() != reader->get_meta_type()) { |
718 | 0 | LOG(WARNING) << "different type between schema and column reader," |
719 | 0 | << " column schema name: " << tablet_column.name() |
720 | 0 | << " column schema type: " << int(tablet_column.type()) |
721 | 0 | << " column reader meta type: " << int(reader->get_meta_type()); |
722 | 0 | return Status::InternalError("different type between schema and column reader"); |
723 | 0 | } |
724 | 12.6k | return Status::OK(); |
725 | 12.6k | } |
726 | | |
727 | | Status Segment::get_column_reader(int32_t col_uid, std::shared_ptr<ColumnReader>* column_reader, |
728 | 13.0k | OlapReaderStatistics* stats) { |
729 | 13.0k | RETURN_IF_ERROR(_create_column_meta_once(stats)); |
730 | 13.0k | SCOPED_RAW_TIMER(&stats->segment_create_column_readers_timer_ns); |
731 | | // The column is not in this segment, return nullptr |
732 | 13.0k | if (!_tablet_schema->has_column_unique_id(col_uid)) { |
733 | 0 | *column_reader = nullptr; |
734 | 0 | return Status::Error<ErrorCode::NOT_FOUND, false>("column not found in segment, col_uid={}", |
735 | 0 | col_uid); |
736 | 0 | } |
737 | 13.0k | return _column_reader_cache->get_column_reader(col_uid, column_reader, stats); |
738 | 13.0k | } |
739 | | |
740 | 0 | Status Segment::traverse_column_meta_pbs(const std::function<void(const ColumnMetaPB&)>& visitor) { |
741 | | // Ensure column meta accessor and reader cache are initialized once. |
742 | 0 | OlapReaderStatistics dummy_stats; |
743 | 0 | RETURN_IF_ERROR(_create_column_meta_once(&dummy_stats)); |
744 | 0 | std::shared_ptr<SegmentFooterPB> footer_pb_shared; |
745 | 0 | RETURN_IF_ERROR(_get_segment_footer(footer_pb_shared, &dummy_stats)); |
746 | 0 | return _column_meta_accessor->traverse_metas(*footer_pb_shared, visitor); |
747 | 0 | } |
748 | | |
749 | | Status Segment::get_column_reader(const TabletColumn& col, |
750 | | std::shared_ptr<ColumnReader>* column_reader, |
751 | 2.57k | OlapReaderStatistics* stats) { |
752 | 2.57k | RETURN_IF_ERROR(_create_column_meta_once(stats)); |
753 | 2.57k | SCOPED_RAW_TIMER(&stats->segment_create_column_readers_timer_ns); |
754 | 2.57k | int col_uid = col.unique_id() >= 0 ? col.unique_id() : col.parent_unique_id(); |
755 | | // The column is not in this segment, return nullptr |
756 | 2.57k | if (!_tablet_schema->has_column_unique_id(col_uid)) { |
757 | 0 | *column_reader = nullptr; |
758 | 0 | return Status::Error<ErrorCode::NOT_FOUND, false>("column not found in segment, col_uid={}", |
759 | 0 | col_uid); |
760 | 0 | } |
761 | 2.57k | if (col.has_path_info()) { |
762 | 0 | PathInData relative_path = col.path_info_ptr()->copy_pop_front(); |
763 | 0 | return _column_reader_cache->get_path_column_reader(col_uid, relative_path, column_reader, |
764 | 0 | stats); |
765 | 0 | } |
766 | 2.57k | return _column_reader_cache->get_column_reader(col_uid, column_reader, stats); |
767 | 2.57k | } |
768 | | |
769 | | Status Segment::new_index_iterator(const TabletColumn& tablet_column, const TabletIndex* index_meta, |
770 | | const StorageReadOptions& read_options, |
771 | 2.56k | std::unique_ptr<IndexIterator>* iter) { |
772 | 2.56k | if (read_options.runtime_state != nullptr) { |
773 | 0 | _be_exec_version = read_options.runtime_state->be_exec_version(); |
774 | 0 | } |
775 | 2.56k | RETURN_IF_ERROR(_create_column_meta_once(read_options.stats)); |
776 | 2.56k | std::shared_ptr<ColumnReader> reader; |
777 | 2.56k | auto st = get_column_reader(tablet_column, &reader, read_options.stats); |
778 | 2.56k | if (st.is<ErrorCode::NOT_FOUND>()) { |
779 | 0 | return Status::OK(); |
780 | 0 | } |
781 | 2.56k | RETURN_IF_ERROR(st); |
782 | 2.56k | DCHECK(reader != nullptr); |
783 | 2.56k | if (index_meta) { |
784 | | // call DorisCallOnce.call without check if _index_file_reader is nullptr |
785 | | // to avoid data race during parallel method calls |
786 | 2.56k | RETURN_IF_ERROR(_index_file_reader_open.call([&] { return _open_index_file_reader(); })); |
787 | | // after DorisCallOnce.call, _index_file_reader is guaranteed to be not nullptr |
788 | 2.56k | RETURN_IF_ERROR(reader->new_index_iterator(_index_file_reader, index_meta, iter)); |
789 | 2.56k | return Status::OK(); |
790 | 2.56k | } |
791 | 0 | return Status::OK(); |
792 | 2.56k | } |
793 | | |
794 | | Status Segment::lookup_row_key(const Slice& key, const TabletSchema* latest_schema, |
795 | | bool with_seq_col, bool with_rowid, RowLocation* row_location, |
796 | 2 | OlapReaderStatistics* stats, std::string* encoded_seq_value) { |
797 | 2 | RETURN_IF_ERROR(load_pk_index_and_bf(stats)); |
798 | 2 | bool has_seq_col = latest_schema->has_sequence_col(); |
799 | 2 | bool has_rowid = !latest_schema->cluster_key_uids().empty(); |
800 | 2 | size_t seq_col_length = 0; |
801 | 2 | if (has_seq_col) { |
802 | 2 | seq_col_length = latest_schema->column(latest_schema->sequence_col_idx()).length() + 1; |
803 | 2 | } |
804 | 2 | size_t rowid_length = has_rowid ? PrimaryKeyIndexReader::ROW_ID_LENGTH : 0; |
805 | | |
806 | 2 | Slice key_without_seq = |
807 | 2 | Slice(key.get_data(), key.get_size() - (with_seq_col ? seq_col_length : 0) - |
808 | 2 | (with_rowid ? rowid_length : 0)); |
809 | | |
810 | 2 | DCHECK(_pk_index_reader != nullptr); |
811 | 2 | if (!_pk_index_reader->check_present(key_without_seq)) { |
812 | 0 | return Status::Error<ErrorCode::KEY_NOT_FOUND, false>(""); |
813 | 0 | } |
814 | 2 | bool exact_match = false; |
815 | 2 | std::unique_ptr<segment_v2::IndexedColumnIterator> index_iterator; |
816 | 2 | RETURN_IF_ERROR(_pk_index_reader->new_iterator(&index_iterator, stats)); |
817 | 2 | auto st = index_iterator->seek_at_or_after(&key_without_seq, &exact_match); |
818 | 2 | if (!st.ok() && !st.is<ErrorCode::ENTRY_NOT_FOUND>()) { |
819 | 0 | return st; |
820 | 0 | } |
821 | 2 | if (st.is<ErrorCode::ENTRY_NOT_FOUND>() || (!has_seq_col && !has_rowid && !exact_match)) { |
822 | 0 | return Status::Error<ErrorCode::KEY_NOT_FOUND, false>(""); |
823 | 0 | } |
824 | 2 | row_location->row_id = cast_set<uint32_t>(index_iterator->get_current_ordinal()); |
825 | 2 | row_location->segment_id = _segment_id; |
826 | 2 | row_location->rowset_id = _rowset_id; |
827 | | |
828 | 2 | size_t num_to_read = 1; |
829 | 2 | auto index_type = DataTypeFactory::instance().create_data_type( |
830 | 2 | _pk_index_reader->type_info()->type(), 1, 0); |
831 | 2 | auto index_column = index_type->create_column(); |
832 | 2 | size_t num_read = num_to_read; |
833 | 2 | RETURN_IF_ERROR(index_iterator->next_batch(&num_read, index_column)); |
834 | 2 | DCHECK(num_to_read == num_read); |
835 | | |
836 | 2 | Slice sought_key = Slice(index_column->get_data_at(0).data, index_column->get_data_at(0).size); |
837 | | |
838 | | // user may use "ALTER TABLE tbl ENABLE FEATURE "SEQUENCE_LOAD" WITH ..." to add a hidden sequence column |
839 | | // for a merge-on-write table which doesn't have sequence column, so `has_seq_col == true` doesn't mean |
840 | | // data in segment has sequence column value |
841 | 2 | bool segment_has_seq_col = _tablet_schema->has_sequence_col(); |
842 | 2 | Slice sought_key_without_seq = Slice( |
843 | 2 | sought_key.get_data(), |
844 | 2 | sought_key.get_size() - (segment_has_seq_col ? seq_col_length : 0) - rowid_length); |
845 | | |
846 | 2 | if (has_seq_col) { |
847 | | // compare key |
848 | 2 | if (key_without_seq.compare(sought_key_without_seq) != 0) { |
849 | 0 | return Status::Error<ErrorCode::KEY_NOT_FOUND, false>(""); |
850 | 0 | } |
851 | | |
852 | 2 | if (with_seq_col && segment_has_seq_col) { |
853 | | // compare sequence id |
854 | 2 | Slice sequence_id = |
855 | 2 | Slice(key.get_data() + key_without_seq.get_size() + 1, seq_col_length - 1); |
856 | 2 | Slice previous_sequence_id = |
857 | 2 | Slice(sought_key.get_data() + sought_key_without_seq.get_size() + 1, |
858 | 2 | seq_col_length - 1); |
859 | 2 | if (sequence_id.compare(previous_sequence_id) < 0) { |
860 | 1 | return Status::Error<ErrorCode::KEY_ALREADY_EXISTS>( |
861 | 1 | "key with higher sequence id exists"); |
862 | 1 | } |
863 | 2 | } |
864 | 2 | } else if (has_rowid) { |
865 | 0 | Slice sought_key_without_rowid = |
866 | 0 | Slice(sought_key.get_data(), sought_key.get_size() - rowid_length); |
867 | | // compare key |
868 | 0 | if (key_without_seq.compare(sought_key_without_rowid) != 0) { |
869 | 0 | return Status::Error<ErrorCode::KEY_NOT_FOUND, false>(""); |
870 | 0 | } |
871 | 0 | } |
872 | | // found the key, use rowid in pk index if necessary. |
873 | 1 | if (has_rowid) { |
874 | 0 | Slice rowid_slice = Slice(sought_key.get_data() + sought_key_without_seq.get_size() + |
875 | 0 | (segment_has_seq_col ? seq_col_length : 0) + 1, |
876 | 0 | rowid_length - 1); |
877 | 0 | const auto* type_info = get_scalar_type_info<FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT>(); |
878 | 0 | const auto* rowid_coder = get_key_coder(type_info->type()); |
879 | 0 | RETURN_IF_ERROR(rowid_coder->decode_ascending(&rowid_slice, rowid_length, |
880 | 0 | (uint8_t*)&row_location->row_id)); |
881 | 0 | } |
882 | | |
883 | 1 | if (encoded_seq_value) { |
884 | 0 | if (!segment_has_seq_col) { |
885 | 0 | *encoded_seq_value = std::string {}; |
886 | 0 | } else { |
887 | | // include marker |
888 | 0 | *encoded_seq_value = |
889 | 0 | Slice(sought_key.get_data() + sought_key_without_seq.get_size(), seq_col_length) |
890 | 0 | .to_string(); |
891 | 0 | } |
892 | 0 | } |
893 | 1 | return Status::OK(); |
894 | 1 | } |
895 | | |
896 | 0 | Status Segment::read_key_by_rowid(uint32_t row_id, std::string* key) { |
897 | 0 | OlapReaderStatistics* null_stat = nullptr; |
898 | 0 | RETURN_IF_ERROR(load_pk_index_and_bf(null_stat)); |
899 | 0 | std::unique_ptr<segment_v2::IndexedColumnIterator> iter; |
900 | 0 | RETURN_IF_ERROR(_pk_index_reader->new_iterator(&iter, null_stat)); |
901 | | |
902 | 0 | auto index_type = DataTypeFactory::instance().create_data_type( |
903 | 0 | _pk_index_reader->type_info()->type(), 1, 0); |
904 | 0 | auto index_column = index_type->create_column(); |
905 | 0 | RETURN_IF_ERROR(iter->seek_to_ordinal(row_id)); |
906 | 0 | size_t num_read = 1; |
907 | 0 | RETURN_IF_ERROR(iter->next_batch(&num_read, index_column)); |
908 | 0 | CHECK(num_read == 1); |
909 | | // trim row id |
910 | 0 | if (_tablet_schema->cluster_key_uids().empty()) { |
911 | 0 | *key = index_column->get_data_at(0).to_string(); |
912 | 0 | } else { |
913 | 0 | Slice sought_key = |
914 | 0 | Slice(index_column->get_data_at(0).data, index_column->get_data_at(0).size); |
915 | 0 | Slice sought_key_without_rowid = |
916 | 0 | Slice(sought_key.get_data(), |
917 | 0 | sought_key.get_size() - PrimaryKeyIndexReader::ROW_ID_LENGTH); |
918 | 0 | *key = sought_key_without_rowid.to_string(); |
919 | 0 | } |
920 | 0 | return Status::OK(); |
921 | 0 | } |
922 | | |
923 | | Status Segment::seek_and_read_by_rowid(const TabletSchema& schema, SlotDescriptor* slot, |
924 | | uint32_t row_id, MutableColumnPtr& result, |
925 | | StorageReadOptions& storage_read_options, |
926 | 0 | std::unique_ptr<ColumnIterator>& iterator_hint) { |
927 | 0 | segment_v2::ColumnIteratorOptions opt { |
928 | 0 | .use_page_cache = !config::disable_storage_page_cache, |
929 | 0 | .file_reader = file_reader().get(), |
930 | 0 | .stats = storage_read_options.stats, |
931 | 0 | .io_ctx = io::IOContext {.reader_type = ReaderType::READER_QUERY, |
932 | 0 | .file_cache_stats = |
933 | 0 | &storage_read_options.stats->file_cache_stats}, |
934 | 0 | }; |
935 | |
|
936 | 0 | std::vector<segment_v2::rowid_t> single_row_loc {row_id}; |
937 | 0 | if (!slot->column_paths().empty()) { |
938 | | // here need create column readers to make sure column reader is created before seek_and_read_by_rowid |
939 | | // if segment cache miss, column reader will be created to make sure the variant column result not coredump |
940 | 0 | RETURN_IF_ERROR(_create_column_meta_once(storage_read_options.stats)); |
941 | | |
942 | 0 | TabletColumn column = TabletColumn::create_materialized_variant_column( |
943 | 0 | schema.column_by_uid(slot->col_unique_id()).name_lower_case(), slot->column_paths(), |
944 | 0 | slot->col_unique_id(), |
945 | 0 | assert_cast<const DataTypeVariant&>(*remove_nullable(slot->type())) |
946 | 0 | .variant_max_subcolumns_count()); |
947 | 0 | auto storage_type = get_data_type_of(column, storage_read_options); |
948 | 0 | MutableColumnPtr file_storage_column = storage_type->create_column(); |
949 | 0 | DCHECK(storage_type != nullptr); |
950 | |
|
951 | 0 | if (iterator_hint == nullptr) { |
952 | 0 | RETURN_IF_ERROR(new_column_iterator(column, &iterator_hint, &storage_read_options)); |
953 | 0 | RETURN_IF_ERROR(iterator_hint->init(opt)); |
954 | 0 | } |
955 | 0 | RETURN_IF_ERROR( |
956 | 0 | iterator_hint->read_by_rowids(single_row_loc.data(), 1, file_storage_column)); |
957 | 0 | ColumnPtr source_ptr; |
958 | | // storage may have different type with schema, so we need to cast the column |
959 | 0 | RETURN_IF_ERROR(variant_util::cast_column( |
960 | 0 | ColumnWithTypeAndName(file_storage_column->get_ptr(), storage_type, column.name()), |
961 | 0 | slot->type(), &source_ptr)); |
962 | 0 | RETURN_IF_CATCH_EXCEPTION(result->insert_range_from(*source_ptr, 0, 1)); |
963 | 0 | } else { |
964 | 0 | int index = (slot->col_unique_id() >= 0) ? schema.field_index(slot->col_unique_id()) |
965 | 0 | : schema.field_index(slot->col_name()); |
966 | 0 | if (index < 0) { |
967 | 0 | std::stringstream ss; |
968 | 0 | ss << "field name is invalid. field=" << slot->col_name() |
969 | 0 | << ", field_name_to_index=" << schema.get_all_field_names(); |
970 | 0 | return Status::InternalError(ss.str()); |
971 | 0 | } |
972 | 0 | if (iterator_hint == nullptr) { |
973 | 0 | RETURN_IF_ERROR(new_column_iterator(schema.column(index), &iterator_hint, |
974 | 0 | &storage_read_options)); |
975 | 0 | RETURN_IF_ERROR(iterator_hint->init(opt)); |
976 | 0 | } |
977 | 0 | RETURN_IF_ERROR(iterator_hint->read_by_rowids(single_row_loc.data(), 1, result)); |
978 | 0 | } |
979 | 0 | return Status::OK(); |
980 | 0 | } |
981 | | |
982 | | Status Segment::_get_segment_footer(std::shared_ptr<SegmentFooterPB>& footer_pb, |
983 | 25.0k | OlapReaderStatistics* stats) { |
984 | 25.0k | std::shared_ptr<SegmentFooterPB> footer_pb_shared = _footer_pb.lock(); |
985 | 25.0k | if (footer_pb_shared != nullptr) { |
986 | 18.9k | footer_pb = footer_pb_shared; |
987 | 18.9k | return Status::OK(); |
988 | 18.9k | } |
989 | | |
990 | 6.07k | VLOG_DEBUG << fmt::format("Segment footer of {}:{}:{} is missing, try to load it", |
991 | 0 | _file_reader->path().native(), _file_reader->size(), |
992 | 0 | _file_reader->size() - 12); |
993 | | |
994 | 6.07k | StoragePageCache* segment_footer_cache = ExecEnv::GetInstance()->get_storage_page_cache(); |
995 | 6.07k | DCHECK(segment_footer_cache != nullptr); |
996 | | |
997 | 6.07k | auto cache_key = get_segment_footer_cache_key(); |
998 | | |
999 | 6.07k | PageCacheHandle cache_handle; |
1000 | | |
1001 | | // Put segment footer into index page cache. |
1002 | | // Rationale: |
1003 | | // - Footer is metadata (small, parsed with indexes), not data page payload. |
1004 | | // - Using PageTypePB::INDEX_PAGE keeps it under the same eviction policy/shards |
1005 | | // as other index/metadata pages and avoids competing with DATA_PAGE budget. |
1006 | 6.07k | if (!segment_footer_cache->lookup(cache_key, &cache_handle, |
1007 | 6.07k | segment_v2::PageTypePB::INDEX_PAGE)) { |
1008 | 4.88k | RETURN_IF_ERROR(_parse_footer(footer_pb_shared, stats)); |
1009 | 4.88k | segment_footer_cache->insert(cache_key, footer_pb_shared, footer_pb_shared->ByteSizeLong(), |
1010 | 4.88k | &cache_handle, segment_v2::PageTypePB::INDEX_PAGE); |
1011 | 4.88k | } else { |
1012 | 1.18k | VLOG_DEBUG << fmt::format("Segment footer of {}:{}:{} is found in cache", |
1013 | 0 | _file_reader->path().native(), _file_reader->size(), |
1014 | 0 | _file_reader->size() - 12); |
1015 | 1.18k | } |
1016 | 6.07k | footer_pb_shared = cache_handle.get<std::shared_ptr<SegmentFooterPB>>(); |
1017 | 6.07k | _footer_pb = footer_pb_shared; |
1018 | 6.07k | footer_pb = footer_pb_shared; |
1019 | 6.07k | return Status::OK(); |
1020 | 6.07k | } |
1021 | | |
1022 | 6.08k | StoragePageCache::CacheKey Segment::get_segment_footer_cache_key() const { |
1023 | 6.08k | DCHECK(_file_reader != nullptr); |
1024 | | // The footer is always at the end of the segment file. |
1025 | | // The size of footer is 12. |
1026 | | // So we use the size of file minus 12 as the cache key, which is unique for each segment file. |
1027 | 6.08k | return get_segment_footer_cache_key(_file_reader); |
1028 | 6.08k | } |
1029 | | |
1030 | | StoragePageCache::CacheKey Segment::get_segment_footer_cache_key( |
1031 | 6.12k | const io::FileReaderSPtr& file_reader) { |
1032 | 6.12k | return {file_reader->path().native(), file_reader->size(), |
1033 | 6.12k | static_cast<int64_t>(file_reader->size() - 12)}; |
1034 | 6.12k | } |
1035 | | |
1036 | | #include "common/compile_check_end.h" |
1037 | | } // namespace doris::segment_v2 |