be/src/storage/tablet_info.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/tablet_info.h" |
19 | | |
20 | | #include <butil/logging.h> |
21 | | #include <gen_cpp/Descriptors_types.h> |
22 | | #include <gen_cpp/Exprs_types.h> |
23 | | #include <gen_cpp/Partitions_types.h> |
24 | | #include <gen_cpp/Types_types.h> |
25 | | #include <gen_cpp/descriptors.pb.h> |
26 | | #include <gen_cpp/olap_file.pb.h> |
27 | | #include <glog/logging.h> |
28 | | |
29 | | #include <algorithm> |
30 | | #include <cstddef> |
31 | | #include <cstdint> |
32 | | #include <memory> |
33 | | #include <ostream> |
34 | | #include <string> |
35 | | #include <tuple> |
36 | | |
37 | | #include "common/exception.h" |
38 | | #include "common/logging.h" |
39 | | #include "common/status.h" |
40 | | #include "core/column/column.h" |
41 | | #include "core/data_type/data_type.h" |
42 | | #include "core/data_type/data_type_factory.hpp" |
43 | | #include "core/data_type/define_primitive_type.h" |
44 | | #include "core/data_type/primitive_type.h" |
45 | | #include "core/value/large_int_value.h" |
46 | | #include "runtime/descriptors.h" |
47 | | #include "runtime/memory/mem_tracker.h" |
48 | | #include "storage/tablet/tablet_schema.h" |
49 | | #include "util/raw_value.h" |
50 | | #include "util/string_parser.hpp" |
51 | | #include "util/string_util.h" |
52 | | // NOLINTNEXTLINE(unused-includes) |
53 | | #include "core/value/vdatetime_value.h" |
54 | | #include "exprs/function/cast/cast_to_timestamptz.h" |
55 | | #include "exprs/vexpr_context.h" // IWYU pragma: keep |
56 | | #include "exprs/vliteral.h" |
57 | | |
58 | | namespace doris { |
59 | | #include "common/compile_check_begin.h" |
60 | | |
61 | 66.5k | void OlapTableIndexSchema::to_protobuf(POlapTableIndexSchema* pindex) const { |
62 | 66.5k | pindex->set_id(index_id); |
63 | 66.5k | pindex->set_schema_hash(schema_hash); |
64 | 426k | for (auto* slot : slots) { |
65 | 426k | pindex->add_columns(slot->col_name()); |
66 | 426k | } |
67 | 450k | for (auto* column : columns) { |
68 | 450k | column->to_schema_pb(pindex->add_columns_desc()); |
69 | 450k | } |
70 | 66.5k | for (auto* index : indexes) { |
71 | 6.91k | index->to_schema_pb(pindex->add_indexes_desc()); |
72 | 6.91k | } |
73 | 66.5k | } |
74 | | |
75 | | bool VOlapTablePartKeyComparator::operator()(const BlockRowWithIndicator& lhs, |
76 | 61.4M | const BlockRowWithIndicator& rhs) const { |
77 | 61.4M | Block* l_block = std::get<0>(lhs); |
78 | 61.4M | Block* r_block = std::get<0>(rhs); |
79 | 61.4M | int32_t l_row = std::get<1>(lhs); |
80 | 61.4M | int32_t r_row = std::get<1>(rhs); |
81 | 61.4M | bool l_use_new = std::get<2>(lhs); |
82 | 61.4M | bool r_use_new = std::get<2>(rhs); |
83 | | |
84 | 18.4E | VLOG_TRACE << '\n' << l_block->dump_data() << '\n' << r_block->dump_data(); |
85 | | |
86 | 61.4M | if (l_row == -1) { |
87 | 161 | return false; |
88 | 61.4M | } else if (r_row == -1) { |
89 | 33.6M | return true; |
90 | 33.6M | } |
91 | | |
92 | 27.8M | if (_param_locs.empty()) { // no transform, use origin column |
93 | 27.0M | for (auto slot_loc : _slot_locs) { |
94 | 27.0M | auto res = l_block->get_by_position(slot_loc).column->compare_at( |
95 | 27.0M | l_row, r_row, *r_block->get_by_position(slot_loc).column, -1); |
96 | 27.0M | if (res != 0) { |
97 | 26.7M | return res < 0; |
98 | 26.7M | } |
99 | 27.0M | } |
100 | 27.0M | } else { // use transformed column to compare |
101 | 18.4E | DCHECK(_slot_locs.size() == _param_locs.size()) |
102 | 18.4E | << _slot_locs.size() << ' ' << _param_locs.size(); |
103 | | |
104 | 777k | const std::vector<uint16_t>* l_index = l_use_new ? &_param_locs : &_slot_locs; |
105 | 18.4E | const std::vector<uint16_t>* r_index = r_use_new ? &_param_locs : &_slot_locs; |
106 | | |
107 | 1.15M | for (int i = 0; i < _slot_locs.size(); i++) { |
108 | 1.04M | ColumnPtr l_col = l_block->get_by_position((*l_index)[i]).column; |
109 | 1.04M | ColumnPtr r_col = r_block->get_by_position((*r_index)[i]).column; |
110 | | |
111 | 1.04M | auto res = l_col->compare_at(l_row, r_row, *r_col, -1); |
112 | 1.04M | if (res != 0) { |
113 | 670k | return res < 0; |
114 | 670k | } |
115 | 1.04M | } |
116 | 777k | } |
117 | | |
118 | | // equal, return false |
119 | 369k | return false; |
120 | 27.8M | } |
121 | | |
122 | 29.1k | Status OlapTableSchemaParam::init(const POlapTableSchemaParam& pschema) { |
123 | 29.1k | _db_id = pschema.db_id(); |
124 | 29.1k | _table_id = pschema.table_id(); |
125 | 29.1k | _version = pschema.version(); |
126 | 29.1k | if (pschema.has_unique_key_update_mode()) { |
127 | 29.1k | _unique_key_update_mode = pschema.unique_key_update_mode(); |
128 | 29.1k | if (pschema.has_sequence_map_col_unique_id()) { |
129 | 29.1k | _sequence_map_col_uid = pschema.sequence_map_col_unique_id(); |
130 | 29.1k | } |
131 | 18.4E | } else { |
132 | | // for backward compatibility |
133 | 18.4E | if (pschema.has_partial_update() && pschema.partial_update()) { |
134 | 0 | _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS; |
135 | 18.4E | } else { |
136 | 18.4E | _unique_key_update_mode = UniqueKeyUpdateModePB::UPSERT; |
137 | 18.4E | } |
138 | 18.4E | } |
139 | 29.1k | _is_strict_mode = pschema.is_strict_mode(); |
140 | 29.1k | if (_unique_key_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) { |
141 | 2.59k | _auto_increment_column = pschema.auto_increment_column(); |
142 | 2.59k | if (!_auto_increment_column.empty() && pschema.auto_increment_column_unique_id() == -1) { |
143 | 0 | return Status::InternalError( |
144 | 0 | "Auto increment column id is not set in FE. Maybe FE is an older version " |
145 | 0 | "different from BE."); |
146 | 0 | } |
147 | 2.59k | _auto_increment_column_unique_id = pschema.auto_increment_column_unique_id(); |
148 | 2.59k | } |
149 | 29.1k | if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPSERT) { |
150 | 2.75k | if (pschema.has_partial_update_new_key_policy()) { |
151 | 2.75k | _partial_update_new_row_policy = pschema.partial_update_new_key_policy(); |
152 | 2.75k | } |
153 | 2.75k | } |
154 | 29.1k | _timestamp_ms = pschema.timestamp_ms(); |
155 | 29.1k | if (pschema.has_nano_seconds()) { |
156 | 29.1k | _nano_seconds = pschema.nano_seconds(); |
157 | 29.1k | } |
158 | 29.1k | _timezone = pschema.timezone(); |
159 | | |
160 | 29.1k | for (const auto& col : pschema.partial_update_input_columns()) { |
161 | 16.7k | _partial_update_input_columns.insert(col); |
162 | 16.7k | } |
163 | 29.1k | std::unordered_map<std::string, SlotDescriptor*> slots_map; |
164 | | |
165 | 29.1k | _tuple_desc = _obj_pool.add(new TupleDescriptor(pschema.tuple_desc())); |
166 | | |
167 | 266k | for (const auto& p_slot_desc : pschema.slot_descs()) { |
168 | 266k | auto* slot_desc = _obj_pool.add(new SlotDescriptor(p_slot_desc)); |
169 | 266k | _tuple_desc->add_slot(slot_desc); |
170 | 266k | std::string data_type; |
171 | 266k | EnumToString(TPrimitiveType, to_thrift(slot_desc->col_type()), data_type); |
172 | 266k | std::string is_null_str = slot_desc->is_nullable() ? "true" : "false"; |
173 | 266k | std::string data_type_str = |
174 | 266k | std::to_string(int64_t(TabletColumn::get_field_type_by_string(data_type))); |
175 | 266k | slots_map.emplace(to_lower(slot_desc->col_name()) + "+" + data_type_str + is_null_str, |
176 | 266k | slot_desc); |
177 | 266k | } |
178 | | |
179 | 37.0k | for (const auto& p_index : pschema.indexes()) { |
180 | 37.0k | auto* index = _obj_pool.add(new OlapTableIndexSchema()); |
181 | 37.0k | index->index_id = p_index.id(); |
182 | 37.0k | index->schema_hash = p_index.schema_hash(); |
183 | 289k | for (const auto& pcolumn_desc : p_index.columns_desc()) { |
184 | 289k | if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS || |
185 | 289k | _partial_update_input_columns.contains(pcolumn_desc.name())) { |
186 | 268k | std::string is_null_str = pcolumn_desc.is_nullable() ? "true" : "false"; |
187 | 268k | std::string data_type_str = std::to_string( |
188 | 268k | int64_t(TabletColumn::get_field_type_by_string(pcolumn_desc.type()))); |
189 | 268k | auto it = slots_map.find(to_lower(pcolumn_desc.name()) + "+" + data_type_str + |
190 | 268k | is_null_str); |
191 | 268k | if (it == std::end(slots_map)) { |
192 | 0 | std::string keys {}; |
193 | 0 | for (const auto& [key, _] : slots_map) { |
194 | 0 | keys += fmt::format("{},", key); |
195 | 0 | } |
196 | 0 | LOG_EVERY_SECOND(WARNING) << fmt::format( |
197 | 0 | "[OlapTableSchemaParam::init(const POlapTableSchemaParam& pschema)]: " |
198 | 0 | "unknown index column, column={}, type={}, data_type_str={}, " |
199 | 0 | "is_null_str={}, slots_map.keys()=[{}], {}\npschema={}", |
200 | 0 | pcolumn_desc.name(), pcolumn_desc.type(), data_type_str, is_null_str, |
201 | 0 | keys, debug_string(), pschema.ShortDebugString()); |
202 | |
|
203 | 0 | return Status::InternalError("unknown index column, column={}, type={}", |
204 | 0 | pcolumn_desc.name(), pcolumn_desc.type()); |
205 | 0 | } |
206 | 268k | index->slots.emplace_back(it->second); |
207 | 268k | } |
208 | 289k | TabletColumn* tc = _obj_pool.add(new TabletColumn()); |
209 | 289k | tc->init_from_pb(pcolumn_desc); |
210 | 289k | index->columns.emplace_back(tc); |
211 | 289k | } |
212 | 37.0k | for (const auto& pindex_desc : p_index.indexes_desc()) { |
213 | 5.92k | TabletIndex* ti = _obj_pool.add(new TabletIndex()); |
214 | 5.92k | ti->init_from_pb(pindex_desc); |
215 | 5.92k | index->indexes.emplace_back(ti); |
216 | 5.92k | } |
217 | 37.0k | _indexes.emplace_back(index); |
218 | 37.0k | } |
219 | | |
220 | 29.1k | std::sort(_indexes.begin(), _indexes.end(), |
221 | 32.9k | [](const OlapTableIndexSchema* lhs, const OlapTableIndexSchema* rhs) { |
222 | 32.9k | return lhs->index_id < rhs->index_id; |
223 | 32.9k | }); |
224 | 29.1k | return Status::OK(); |
225 | 29.1k | } |
226 | | |
227 | 95.1k | Status OlapTableSchemaParam::init_unique_key_update_mode(const TOlapTableSchemaParam& tschema) { |
228 | 95.1k | if (tschema.__isset.unique_key_update_mode) { |
229 | 95.1k | switch (tschema.unique_key_update_mode) { |
230 | 88.4k | case doris::TUniqueKeyUpdateMode::UPSERT: { |
231 | 88.4k | _unique_key_update_mode = UniqueKeyUpdateModePB::UPSERT; |
232 | 88.4k | break; |
233 | 0 | } |
234 | 6.52k | case doris::TUniqueKeyUpdateMode::UPDATE_FIXED_COLUMNS: { |
235 | 6.52k | _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS; |
236 | 6.52k | break; |
237 | 0 | } |
238 | 157 | case doris::TUniqueKeyUpdateMode::UPDATE_FLEXIBLE_COLUMNS: { |
239 | 157 | _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FLEXIBLE_COLUMNS; |
240 | 157 | break; |
241 | 0 | } |
242 | 0 | default: { |
243 | 0 | return Status::InternalError( |
244 | 0 | "Unknown unique_key_update_mode: {}, should be one of " |
245 | 0 | "UPSERT/UPDATE_FIXED_COLUMNS/UPDATE_FLEXIBLE_COLUMNS", |
246 | 0 | tschema.unique_key_update_mode); |
247 | 0 | } |
248 | 95.1k | } |
249 | 95.1k | if (tschema.__isset.sequence_map_col_unique_id) { |
250 | 95.1k | _sequence_map_col_uid = tschema.sequence_map_col_unique_id; |
251 | 95.1k | } |
252 | 95.1k | } else { |
253 | | // for backward compatibility |
254 | 15 | if (tschema.__isset.is_partial_update && tschema.is_partial_update) { |
255 | 0 | _unique_key_update_mode = UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS; |
256 | 15 | } else { |
257 | 15 | _unique_key_update_mode = UniqueKeyUpdateModePB::UPSERT; |
258 | 15 | } |
259 | 15 | } |
260 | 95.1k | return Status::OK(); |
261 | 95.1k | } |
262 | | |
263 | 95.1k | Status OlapTableSchemaParam::init(const TOlapTableSchemaParam& tschema) { |
264 | 95.1k | _db_id = tschema.db_id; |
265 | 95.1k | _table_id = tschema.table_id; |
266 | 95.1k | _version = tschema.version; |
267 | 95.1k | RETURN_IF_ERROR(init_unique_key_update_mode(tschema)); |
268 | 95.1k | if (tschema.__isset.is_strict_mode) { |
269 | 95.1k | _is_strict_mode = tschema.is_strict_mode; |
270 | 95.1k | } |
271 | 95.1k | if (_unique_key_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) { |
272 | 6.52k | _auto_increment_column = tschema.auto_increment_column; |
273 | 6.52k | if (!_auto_increment_column.empty() && tschema.auto_increment_column_unique_id == -1) { |
274 | 0 | return Status::InternalError( |
275 | 0 | "Auto increment column id is not set in FE. Maybe FE is an older version " |
276 | 0 | "different from BE."); |
277 | 0 | } |
278 | 6.52k | _auto_increment_column_unique_id = tschema.auto_increment_column_unique_id; |
279 | 6.52k | } |
280 | | |
281 | 95.1k | if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPSERT) { |
282 | 6.67k | if (tschema.__isset.partial_update_new_key_policy) { |
283 | 6.67k | switch (tschema.partial_update_new_key_policy) { |
284 | 6.61k | case doris::TPartialUpdateNewRowPolicy::APPEND: { |
285 | 6.61k | _partial_update_new_row_policy = PartialUpdateNewRowPolicyPB::APPEND; |
286 | 6.61k | break; |
287 | 0 | } |
288 | 65 | case doris::TPartialUpdateNewRowPolicy::ERROR: { |
289 | 65 | _partial_update_new_row_policy = PartialUpdateNewRowPolicyPB::ERROR; |
290 | 65 | break; |
291 | 0 | } |
292 | 0 | default: { |
293 | 0 | return Status::InvalidArgument( |
294 | 0 | "Unknown partial_update_new_key_behavior: {}, should be one of " |
295 | 0 | "'APPEND' or 'ERROR'", |
296 | 0 | tschema.partial_update_new_key_policy); |
297 | 0 | } |
298 | 6.67k | } |
299 | 6.67k | } |
300 | 6.67k | } |
301 | | |
302 | 95.1k | for (const auto& tcolumn : tschema.partial_update_input_columns) { |
303 | 37.1k | _partial_update_input_columns.insert(tcolumn); |
304 | 37.1k | } |
305 | 95.1k | std::unordered_map<std::string, SlotDescriptor*> slots_map; |
306 | 95.1k | _tuple_desc = _obj_pool.add(new TupleDescriptor(tschema.tuple_desc)); |
307 | 671k | for (const auto& t_slot_desc : tschema.slot_descs) { |
308 | 671k | auto* slot_desc = _obj_pool.add(new SlotDescriptor(t_slot_desc)); |
309 | 671k | _tuple_desc->add_slot(slot_desc); |
310 | 671k | std::string is_null_str = slot_desc->is_nullable() ? "true" : "false"; |
311 | 671k | std::string data_type_str = std::to_string(int64_t(slot_desc->col_type())); |
312 | 671k | slots_map.emplace(to_lower(slot_desc->col_name()) + "+" + data_type_str + is_null_str, |
313 | 671k | slot_desc); |
314 | 671k | } |
315 | | |
316 | 96.8k | for (const auto& t_index : tschema.indexes) { |
317 | 96.8k | std::unordered_map<std::string, int32_t> index_slots_map; |
318 | 96.8k | auto* index = _obj_pool.add(new OlapTableIndexSchema()); |
319 | 96.8k | index->index_id = t_index.id; |
320 | 96.8k | index->schema_hash = t_index.schema_hash; |
321 | 720k | for (const auto& tcolumn_desc : t_index.columns_desc) { |
322 | 720k | if (_unique_key_update_mode != UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS || |
323 | 720k | _partial_update_input_columns.contains(tcolumn_desc.column_name)) { |
324 | 673k | std::string is_null_str = tcolumn_desc.is_allow_null ? "true" : "false"; |
325 | 673k | std::string data_type_str = |
326 | 673k | std::to_string(int64_t(thrift_to_type(tcolumn_desc.column_type.type))); |
327 | 673k | auto it = slots_map.find(to_lower(tcolumn_desc.column_name) + "+" + data_type_str + |
328 | 673k | is_null_str); |
329 | 673k | if (it == slots_map.end()) { |
330 | 0 | std::stringstream ss; |
331 | 0 | ss << tschema; |
332 | 0 | std::string keys {}; |
333 | 0 | for (const auto& [key, _] : slots_map) { |
334 | 0 | keys += fmt::format("{},", key); |
335 | 0 | } |
336 | 0 | LOG_EVERY_SECOND(WARNING) << fmt::format( |
337 | 0 | "[OlapTableSchemaParam::init(const TOlapTableSchemaParam& tschema)]: " |
338 | 0 | "unknown index column, column={}, type={}, data_type_str={}, " |
339 | 0 | "is_null_str={}, slots_map.keys()=[{}], {}\ntschema={}", |
340 | 0 | tcolumn_desc.column_name, tcolumn_desc.column_type.type, data_type_str, |
341 | 0 | is_null_str, keys, debug_string(), ss.str()); |
342 | 0 | return Status::InternalError("unknown index column, column={}, type={}", |
343 | 0 | tcolumn_desc.column_name, |
344 | 0 | tcolumn_desc.column_type.type); |
345 | 0 | } |
346 | 673k | index->slots.emplace_back(it->second); |
347 | 673k | } |
348 | 720k | index_slots_map.emplace(to_lower(tcolumn_desc.column_name), tcolumn_desc.col_unique_id); |
349 | 720k | TabletColumn* tc = _obj_pool.add(new TabletColumn()); |
350 | 720k | tc->init_from_thrift(tcolumn_desc); |
351 | 720k | index->columns.emplace_back(tc); |
352 | 720k | } |
353 | 96.8k | if (t_index.__isset.indexes_desc) { |
354 | 96.7k | for (const auto& tindex_desc : t_index.indexes_desc) { |
355 | 12.0k | std::vector<int32_t> column_unique_ids(tindex_desc.columns.size()); |
356 | 24.0k | for (size_t i = 0; i < tindex_desc.columns.size(); i++) { |
357 | 12.0k | auto it = index_slots_map.find(to_lower(tindex_desc.columns[i])); |
358 | 12.0k | if (it != index_slots_map.end()) { |
359 | 12.0k | column_unique_ids[i] = it->second; |
360 | 12.0k | } |
361 | 12.0k | } |
362 | 12.0k | TabletIndex* ti = _obj_pool.add(new TabletIndex()); |
363 | 12.0k | ti->init_from_thrift(tindex_desc, column_unique_ids); |
364 | 12.0k | index->indexes.emplace_back(ti); |
365 | 12.0k | } |
366 | 96.7k | } |
367 | 96.8k | if (t_index.__isset.where_clause) { |
368 | 66 | RETURN_IF_ERROR(VExpr::create_expr_tree(t_index.where_clause, index->where_clause)); |
369 | 66 | } |
370 | 96.8k | _indexes.emplace_back(index); |
371 | 96.8k | } |
372 | | |
373 | 95.1k | std::sort(_indexes.begin(), _indexes.end(), |
374 | 95.1k | [](const OlapTableIndexSchema* lhs, const OlapTableIndexSchema* rhs) { |
375 | 3.67k | return lhs->index_id < rhs->index_id; |
376 | 3.67k | }); |
377 | 95.1k | return Status::OK(); |
378 | 95.1k | } |
379 | | |
380 | 65.6k | void OlapTableSchemaParam::to_protobuf(POlapTableSchemaParam* pschema) const { |
381 | 65.6k | pschema->set_db_id(_db_id); |
382 | 65.6k | pschema->set_table_id(_table_id); |
383 | 65.6k | pschema->set_version(_version); |
384 | 65.6k | pschema->set_unique_key_update_mode(_unique_key_update_mode); |
385 | 65.6k | if (_unique_key_update_mode == UniqueKeyUpdateModePB::UPDATE_FIXED_COLUMNS) { |
386 | | // for backward compatibility |
387 | 3.24k | pschema->set_partial_update(true); |
388 | 3.24k | } |
389 | 65.6k | pschema->set_partial_update_new_key_policy(_partial_update_new_row_policy); |
390 | 65.6k | pschema->set_is_strict_mode(_is_strict_mode); |
391 | 65.6k | pschema->set_auto_increment_column(_auto_increment_column); |
392 | 65.6k | pschema->set_auto_increment_column_unique_id(_auto_increment_column_unique_id); |
393 | 65.6k | pschema->set_timestamp_ms(_timestamp_ms); |
394 | 65.6k | pschema->set_timezone(_timezone); |
395 | 65.6k | pschema->set_nano_seconds(_nano_seconds); |
396 | 65.6k | pschema->set_sequence_map_col_unique_id(_sequence_map_col_uid); |
397 | 65.6k | for (auto col : _partial_update_input_columns) { |
398 | 18.5k | *pschema->add_partial_update_input_columns() = col; |
399 | 18.5k | } |
400 | 65.6k | _tuple_desc->to_protobuf(pschema->mutable_tuple_desc()); |
401 | 425k | for (auto* slot : _tuple_desc->slots()) { |
402 | 425k | slot->to_protobuf(pschema->add_slot_descs()); |
403 | 425k | } |
404 | 66.5k | for (auto* index : _indexes) { |
405 | 66.5k | index->to_protobuf(pschema->add_indexes()); |
406 | 66.5k | } |
407 | 65.6k | } |
408 | | |
409 | 0 | std::string OlapTableSchemaParam::debug_string() const { |
410 | 0 | std::stringstream ss; |
411 | 0 | ss << "tuple_desc=" << _tuple_desc->debug_string(); |
412 | 0 | return ss.str(); |
413 | 0 | } |
414 | | |
415 | | VOlapTablePartitionParam::VOlapTablePartitionParam(std::shared_ptr<OlapTableSchemaParam>& schema, |
416 | | const TOlapTablePartitionParam& t_param) |
417 | 68.9k | : _schema(schema), |
418 | 68.9k | _t_param(t_param), |
419 | 68.9k | _slots(_schema->tuple_desc()->slots()), |
420 | 68.9k | _mem_tracker(std::make_unique<MemTracker>("OlapTablePartitionParam")), |
421 | 68.9k | _part_type(t_param.partition_type) { |
422 | 68.9k | if (t_param.__isset.enable_automatic_partition && t_param.enable_automatic_partition) { |
423 | 303 | _is_auto_partition = true; |
424 | 303 | auto size = t_param.partition_function_exprs.size(); |
425 | 303 | _part_func_ctx.resize(size); |
426 | 303 | _partition_function.resize(size); |
427 | 303 | DCHECK((t_param.partition_type == TPartitionType::RANGE_PARTITIONED && size == 1) || |
428 | 2 | (t_param.partition_type == TPartitionType::LIST_PARTITIONED && size >= 1)) |
429 | 2 | << "now support only 1 partition column for auto range partitions. " |
430 | 2 | << t_param.partition_type << " " << size; |
431 | 615 | for (int i = 0; i < size; ++i) { |
432 | 312 | Status st = |
433 | 312 | VExpr::create_expr_tree(t_param.partition_function_exprs[i], _part_func_ctx[i]); |
434 | 312 | if (!st.ok()) { |
435 | 0 | throw Exception(Status::InternalError("Partition function expr is not valid"), |
436 | 0 | "Partition function expr is not valid"); |
437 | 0 | } |
438 | 312 | _partition_function[i] = _part_func_ctx[i]->root(); |
439 | 312 | } |
440 | 303 | } |
441 | | |
442 | 68.9k | if (t_param.__isset.enable_auto_detect_overwrite && t_param.enable_auto_detect_overwrite) { |
443 | 45 | _is_auto_detect_overwrite = true; |
444 | 45 | DCHECK(t_param.__isset.overwrite_group_id); |
445 | 45 | _overwrite_group_id = t_param.overwrite_group_id; |
446 | 45 | } |
447 | | |
448 | 68.9k | if (t_param.__isset.master_address) { |
449 | 0 | _master_address = std::make_shared<TNetworkAddress>(t_param.master_address); |
450 | 0 | } |
451 | | |
452 | 68.9k | if (_is_auto_partition) { |
453 | | // the nullable mode depends on partition_exprs. not column slots. so use them. |
454 | 303 | DCHECK(_partition_function.size() <= _slots.size()) |
455 | 0 | << _partition_function.size() << ", " << _slots.size(); |
456 | | |
457 | | // suppose (k0, [k1], [k2]), so get [k1, 0], [k2, 1] |
458 | 303 | std::map<std::string, int> partition_slots_map; // name to idx in part_exprs |
459 | 617 | for (size_t i = 0; i < t_param.partition_columns.size(); i++) { |
460 | 314 | partition_slots_map.emplace(t_param.partition_columns[i], i); |
461 | 314 | } |
462 | | |
463 | | // here we rely on the same order and number of the _part_funcs and _slots in the prefix |
464 | | // _part_block contains all slots of table. |
465 | 1.11k | for (auto* slot : _slots) { |
466 | | // try to replace with partition expr. |
467 | 1.11k | if (auto it = partition_slots_map.find(slot->col_name()); |
468 | 1.11k | it != partition_slots_map.end()) { // it's a partition column slot |
469 | 314 | auto& expr_type = _partition_function[it->second]->data_type(); |
470 | 314 | _partition_block.insert({expr_type->create_column(), expr_type, slot->col_name()}); |
471 | 803 | } else { |
472 | 803 | _partition_block.insert({slot->get_empty_mutable_column(), |
473 | 803 | slot->get_data_type_ptr(), slot->col_name()}); |
474 | 803 | } |
475 | 1.11k | } |
476 | 303 | VLOG_TRACE << _partition_block.dump_structure(); |
477 | 68.6k | } else { |
478 | | // we insert all. but not all will be used. it will controlled by _partition_slot_locs |
479 | 457k | for (auto* slot : _slots) { |
480 | 457k | _partition_block.insert({slot->get_empty_mutable_column(), slot->get_data_type_ptr(), |
481 | 457k | slot->col_name()}); |
482 | 457k | } |
483 | 68.6k | } |
484 | 68.9k | } |
485 | | |
486 | 68.9k | VOlapTablePartitionParam::~VOlapTablePartitionParam() { |
487 | 68.9k | _mem_tracker->release(_mem_usage); |
488 | 68.9k | } |
489 | | |
490 | 68.7k | Status VOlapTablePartitionParam::init() { |
491 | 68.7k | std::vector<std::string> slot_column_names; |
492 | 458k | for (auto* slot_desc : _schema->tuple_desc()->slots()) { |
493 | 458k | slot_column_names.emplace_back(slot_desc->col_name()); |
494 | 458k | } |
495 | | |
496 | 68.7k | auto find_slot_locs = [&slot_column_names](const std::string& slot_name, |
497 | 68.7k | std::vector<uint16_t>& locs, |
498 | 73.9k | const std::string& column_type) { |
499 | 73.9k | auto it = std::find(slot_column_names.begin(), slot_column_names.end(), slot_name); |
500 | 73.9k | if (it == slot_column_names.end()) { |
501 | 0 | return Status::InternalError("{} column not found, column ={}", column_type, slot_name); |
502 | 0 | } |
503 | 73.9k | locs.emplace_back(it - slot_column_names.begin()); |
504 | 73.9k | return Status::OK(); |
505 | 73.9k | }; |
506 | | |
507 | | // here we find the partition columns. others maybe non-partition columns/special columns. |
508 | 68.7k | if (_t_param.__isset.partition_columns) { |
509 | 7.00k | for (auto& part_col : _t_param.partition_columns) { |
510 | 7.00k | RETURN_IF_ERROR(find_slot_locs(part_col, _partition_slot_locs, "partition")); |
511 | 7.00k | } |
512 | 6.90k | } |
513 | | |
514 | 68.7k | _partitions_map = std::make_unique< |
515 | 68.7k | std::map<BlockRowWithIndicator, VOlapTablePartition*, VOlapTablePartKeyComparator>>( |
516 | 68.7k | VOlapTablePartKeyComparator(_partition_slot_locs, _transformed_slot_locs)); |
517 | 68.7k | if (_t_param.__isset.distributed_columns) { |
518 | 68.7k | for (auto& col : _t_param.distributed_columns) { |
519 | 66.9k | RETURN_IF_ERROR(find_slot_locs(col, _distributed_slot_locs, "distributed")); |
520 | 66.9k | } |
521 | 68.7k | } |
522 | | |
523 | | // for both auto/non-auto partition table. |
524 | 68.7k | _is_in_partition = _part_type == TPartitionType::type::LIST_PARTITIONED; |
525 | | |
526 | | // initial partitions. if meet dummy partitions only for open BE nodes, not generate key of them for finding |
527 | 84.7k | for (const auto& t_part : _t_param.partitions) { |
528 | 84.7k | VOlapTablePartition* part = nullptr; |
529 | 84.7k | RETURN_IF_ERROR(generate_partition_from(t_part, part)); |
530 | 84.7k | _partitions.emplace_back(part); |
531 | | |
532 | 84.7k | if (!_t_param.partitions_is_fake) { |
533 | 84.7k | if (_is_in_partition) { |
534 | 6.06k | for (auto& in_key : part->in_keys) { |
535 | 6.06k | _partitions_map->emplace(std::tuple {in_key.first, in_key.second, false}, part); |
536 | 6.06k | } |
537 | 80.5k | } else { |
538 | 80.5k | _partitions_map->emplace( |
539 | 80.5k | std::tuple {part->end_key.first, part->end_key.second, false}, part); |
540 | 80.5k | } |
541 | 84.7k | } |
542 | 84.7k | } |
543 | | |
544 | 68.7k | _mem_usage = _partition_block.allocated_bytes(); |
545 | 68.7k | _mem_tracker->consume(_mem_usage); |
546 | 68.7k | return Status::OK(); |
547 | 68.7k | } |
548 | | |
549 | | bool VOlapTablePartitionParam::_part_contains(VOlapTablePartition* part, |
550 | 40.2M | BlockRowWithIndicator key) const { |
551 | 40.2M | VOlapTablePartKeyComparator comparator(_partition_slot_locs, _transformed_slot_locs); |
552 | | // we have used upper_bound to find to ensure key < part.right and this part is closest(right - key is min) |
553 | | // now we only have to check (key >= part.left). the comparator(a,b) means a < b, so we use anti |
554 | 40.2M | return part->start_key.second == -1 /* spj: start_key.second == -1 means only single partition*/ |
555 | 40.2M | || !comparator(key, std::tuple {part->start_key.first, part->start_key.second, false}); |
556 | 40.2M | } |
557 | | |
558 | | // insert value into _partition_block's column |
559 | | // NOLINTBEGIN(readability-function-size) |
560 | 42.9k | static Status _create_partition_key(const TExprNode& t_expr, BlockRow* part_key, uint16_t pos) { |
561 | 42.9k | auto column = std::move(*part_key->first->get_by_position(pos).column).mutate(); |
562 | | //TODO: use assert_cast before insert_data |
563 | 42.9k | switch (t_expr.node_type) { |
564 | 27.2k | case TExprNodeType::DATE_LITERAL: { |
565 | 27.2k | auto primitive_type = |
566 | 27.2k | DataTypeFactory::instance().create_data_type(t_expr.type)->get_primitive_type(); |
567 | 27.2k | if (primitive_type == TYPE_DATEV2) { |
568 | 21.6k | DateV2Value<DateV2ValueType> dt; |
569 | 21.6k | if (!dt.from_date_str(t_expr.date_literal.value.c_str(), |
570 | 21.6k | t_expr.date_literal.value.size())) { |
571 | 0 | std::stringstream ss; |
572 | 0 | ss << "invalid date literal in partition column, date=" << t_expr.date_literal; |
573 | 0 | return Status::InternalError(ss.str()); |
574 | 0 | } |
575 | 21.6k | column->insert_data(reinterpret_cast<const char*>(&dt), 0); |
576 | 21.6k | } else if (primitive_type == TYPE_DATETIMEV2) { |
577 | 5.05k | DateV2Value<DateTimeV2ValueType> dt; |
578 | 5.05k | const int32_t scale = |
579 | 5.05k | t_expr.type.types.empty() ? -1 : t_expr.type.types.front().scalar_type.scale; |
580 | 5.05k | if (!dt.from_date_str(t_expr.date_literal.value.c_str(), |
581 | 5.05k | t_expr.date_literal.value.size(), scale)) { |
582 | 0 | std::stringstream ss; |
583 | 0 | ss << "invalid date literal in partition column, date=" << t_expr.date_literal; |
584 | 0 | return Status::InternalError(ss.str()); |
585 | 0 | } |
586 | 5.05k | column->insert_data(reinterpret_cast<const char*>(&dt), 0); |
587 | 5.05k | } else if (primitive_type == TYPE_TIMESTAMPTZ) { |
588 | 387 | TimestampTzValue res; |
589 | 387 | CastParameters params {.status = Status::OK(), .is_strict = true}; |
590 | 387 | const int32_t scale = |
591 | 387 | t_expr.type.types.empty() ? -1 : t_expr.type.types.front().scalar_type.scale; |
592 | 387 | if (!CastToTimstampTz::from_string( |
593 | 387 | {t_expr.date_literal.value.c_str(), t_expr.date_literal.value.size()}, res, |
594 | 387 | params, nullptr, scale)) [[unlikely]] { |
595 | 0 | std::stringstream ss; |
596 | 0 | ss << "invalid timestamptz literal in partition column, value=" |
597 | 0 | << t_expr.date_literal; |
598 | 0 | return Status::InternalError(ss.str()); |
599 | 387 | } else { |
600 | 387 | column->insert_data(reinterpret_cast<const char*>(&res), 0); |
601 | 387 | } |
602 | 387 | } else { |
603 | | // TYPE_DATE (DATEV1) or TYPE_DATETIME (DATETIMEV1) |
604 | 250 | VecDateTimeValue dt; |
605 | 250 | if (!dt.from_date_str(t_expr.date_literal.value.c_str(), |
606 | 250 | t_expr.date_literal.value.size())) { |
607 | 0 | std::stringstream ss; |
608 | 0 | ss << "invalid date literal in partition column, date=" << t_expr.date_literal; |
609 | 0 | return Status::InternalError(ss.str()); |
610 | 0 | } |
611 | 250 | if (DataTypeFactory::instance().create_data_type(t_expr.type)->get_primitive_type() == |
612 | 250 | TYPE_DATE) { |
613 | 120 | dt.cast_to_date(); |
614 | 120 | } |
615 | 250 | column->insert_data(reinterpret_cast<const char*>(&dt), 0); |
616 | 250 | } |
617 | 27.2k | break; |
618 | 27.2k | } |
619 | 27.2k | case TExprNodeType::INT_LITERAL: { |
620 | 13.2k | switch (t_expr.type.types[0].scalar_type.type) { |
621 | 801 | case TPrimitiveType::TINYINT: { |
622 | 801 | auto value = cast_set<int8_t>(t_expr.int_literal.value); |
623 | 801 | column->insert_data(reinterpret_cast<const char*>(&value), 0); |
624 | 801 | break; |
625 | 0 | } |
626 | 382 | case TPrimitiveType::SMALLINT: { |
627 | 382 | auto value = cast_set<int16_t>(t_expr.int_literal.value); |
628 | 382 | column->insert_data(reinterpret_cast<const char*>(&value), 0); |
629 | 382 | break; |
630 | 0 | } |
631 | 11.4k | case TPrimitiveType::INT: { |
632 | 11.4k | auto value = cast_set<int32_t>(t_expr.int_literal.value); |
633 | 11.4k | column->insert_data(reinterpret_cast<const char*>(&value), 0); |
634 | 11.4k | break; |
635 | 0 | } |
636 | 593 | default: |
637 | 593 | int64_t value = t_expr.int_literal.value; |
638 | 593 | column->insert_data(reinterpret_cast<const char*>(&value), 0); |
639 | 13.2k | } |
640 | 13.2k | break; |
641 | 13.2k | } |
642 | 13.2k | case TExprNodeType::LARGE_INT_LITERAL: { |
643 | 196 | StringParser::ParseResult parse_result = StringParser::PARSE_SUCCESS; |
644 | 196 | auto value = StringParser::string_to_int<__int128>(t_expr.large_int_literal.value.c_str(), |
645 | 196 | t_expr.large_int_literal.value.size(), |
646 | 196 | &parse_result); |
647 | 196 | if (parse_result != StringParser::PARSE_SUCCESS) { |
648 | 0 | value = MAX_INT128; |
649 | 0 | } |
650 | 196 | column->insert_data(reinterpret_cast<const char*>(&value), 0); |
651 | 196 | break; |
652 | 13.2k | } |
653 | 2.17k | case TExprNodeType::STRING_LITERAL: { |
654 | 2.17k | size_t len = t_expr.string_literal.value.size(); |
655 | 2.17k | const char* str_val = t_expr.string_literal.value.c_str(); |
656 | 2.17k | column->insert_data(str_val, len); |
657 | 2.17k | break; |
658 | 13.2k | } |
659 | 23 | case TExprNodeType::BOOL_LITERAL: { |
660 | 23 | column->insert_data(reinterpret_cast<const char*>(&t_expr.bool_literal.value), 0); |
661 | 23 | break; |
662 | 13.2k | } |
663 | 66 | case TExprNodeType::NULL_LITERAL: { |
664 | | // insert a null literal |
665 | 66 | if (!column->is_nullable()) { |
666 | | // https://github.com/apache/doris/pull/39449 have forbid this cause. always add this check as protective measures |
667 | 0 | return Status::InternalError("The column {} is not null, can't insert into NULL value.", |
668 | 0 | part_key->first->get_by_position(pos).name); |
669 | 0 | } |
670 | 66 | column->insert_data(nullptr, 0); |
671 | 66 | break; |
672 | 66 | } |
673 | 0 | default: { |
674 | 0 | return Status::InternalError("unsupported partition column node type, type={}", |
675 | 0 | t_expr.node_type); |
676 | 66 | } |
677 | 42.9k | } |
678 | 42.9k | part_key->second = cast_set<int32_t>(column->size() - 1); |
679 | 42.9k | return Status::OK(); |
680 | 42.9k | } |
681 | | // NOLINTEND(readability-function-size) |
682 | | |
683 | | Status VOlapTablePartitionParam::_create_partition_keys(const std::vector<TExprNode>& t_exprs, |
684 | 42.0k | BlockRow* part_key) { |
685 | 85.0k | for (int i = 0; i < t_exprs.size(); i++) { |
686 | 42.9k | RETURN_IF_ERROR(_create_partition_key(t_exprs[i], part_key, _partition_slot_locs[i])); |
687 | 42.9k | } |
688 | 42.0k | return Status::OK(); |
689 | 42.0k | } |
690 | | |
691 | | Status VOlapTablePartitionParam::generate_partition_from(const TOlapTablePartition& t_part, |
692 | 85.1k | VOlapTablePartition*& part_result) { |
693 | 85.1k | DCHECK(part_result == nullptr); |
694 | | // here we set the default value of partition bounds first! if it doesn't have some key, it will be -1. |
695 | 85.1k | part_result = _obj_pool.add(new VOlapTablePartition(&_partition_block)); |
696 | 85.1k | part_result->id = t_part.id; |
697 | 85.1k | part_result->is_mutable = t_part.is_mutable; |
698 | | // only load_to_single_tablet = true will set load_tablet_idx |
699 | 85.1k | if (t_part.__isset.load_tablet_idx) { |
700 | 35.6k | part_result->load_tablet_idx = t_part.load_tablet_idx; |
701 | 35.6k | } |
702 | | |
703 | 85.1k | if (_is_in_partition) { |
704 | 6.28k | for (const auto& keys : t_part.in_keys) { |
705 | 6.28k | RETURN_IF_ERROR(_create_partition_keys( |
706 | 6.28k | keys, &part_result->in_keys.emplace_back(&_partition_block, -1))); |
707 | 6.28k | } |
708 | 4.44k | if (t_part.__isset.is_default_partition && t_part.is_default_partition && |
709 | 4.44k | _default_partition == nullptr) { |
710 | 17 | _default_partition = part_result; |
711 | 17 | } |
712 | 80.6k | } else { // range |
713 | 80.6k | if (t_part.__isset.start_keys) { |
714 | 16.9k | RETURN_IF_ERROR(_create_partition_keys(t_part.start_keys, &part_result->start_key)); |
715 | 16.9k | } |
716 | | // we generate the right bound but not insert into partition map |
717 | 80.6k | if (t_part.__isset.end_keys) { |
718 | 18.3k | RETURN_IF_ERROR(_create_partition_keys(t_part.end_keys, &part_result->end_key)); |
719 | 18.3k | } |
720 | 80.6k | } |
721 | | |
722 | 85.1k | part_result->num_buckets = t_part.num_buckets; |
723 | 85.1k | auto num_indexes = _schema->indexes().size(); |
724 | 85.1k | if (t_part.indexes.size() != num_indexes) { |
725 | 0 | return Status::InternalError( |
726 | 0 | "number of partition's index is not equal with schema's" |
727 | 0 | ", num_part_indexes={}, num_schema_indexes={}", |
728 | 0 | t_part.indexes.size(), num_indexes); |
729 | 0 | } |
730 | 85.1k | part_result->indexes = t_part.indexes; |
731 | 85.1k | std::sort(part_result->indexes.begin(), part_result->indexes.end(), |
732 | 85.1k | [](const OlapTableIndexTablets& lhs, const OlapTableIndexTablets& rhs) { |
733 | 4.41k | return lhs.index_id < rhs.index_id; |
734 | 4.41k | }); |
735 | | // check index |
736 | 172k | for (int j = 0; j < num_indexes; ++j) { |
737 | 87.0k | if (part_result->indexes[j].index_id != _schema->indexes()[j]->index_id) { |
738 | 0 | return Status::InternalError( |
739 | 0 | "partition's index is not equal with schema's" |
740 | 0 | ", part_index={}, schema_index={}", |
741 | 0 | part_result->indexes[j].index_id, _schema->indexes()[j]->index_id); |
742 | 0 | } |
743 | 87.0k | } |
744 | 85.1k | if (t_part.__isset.total_replica_num) { |
745 | 84.9k | part_result->total_replica_num = t_part.total_replica_num; |
746 | 84.9k | } |
747 | 85.1k | if (t_part.__isset.load_required_replica_num) { |
748 | 84.9k | part_result->load_required_replica_num = t_part.load_required_replica_num; |
749 | 84.9k | } |
750 | 85.1k | return Status::OK(); |
751 | 85.1k | } |
752 | | |
753 | | Status VOlapTablePartitionParam::add_partitions( |
754 | 173 | const std::vector<TOlapTablePartition>& partitions) { |
755 | 342 | for (const auto& t_part : partitions) { |
756 | 342 | auto* part = _obj_pool.add(new VOlapTablePartition(&_partition_block)); |
757 | 342 | part->id = t_part.id; |
758 | 342 | part->is_mutable = t_part.is_mutable; |
759 | | |
760 | | // we dont pass right keys when it's MAX_VALUE. so there's possibility we only have start_key but not end_key |
761 | | // range partition |
762 | 342 | if (t_part.__isset.start_keys) { |
763 | 149 | RETURN_IF_ERROR(_create_partition_keys(t_part.start_keys, &part->start_key)); |
764 | 149 | } |
765 | 342 | if (t_part.__isset.end_keys) { |
766 | 148 | RETURN_IF_ERROR(_create_partition_keys(t_part.end_keys, &part->end_key)); |
767 | 148 | } |
768 | | // list partition - we only set 1 value in 1 partition for new created ones |
769 | 342 | if (t_part.__isset.in_keys) { |
770 | 190 | for (const auto& keys : t_part.in_keys) { |
771 | 190 | RETURN_IF_ERROR(_create_partition_keys( |
772 | 190 | keys, &part->in_keys.emplace_back(&_partition_block, -1))); |
773 | 190 | } |
774 | 190 | if (t_part.__isset.is_default_partition && t_part.is_default_partition) { |
775 | 0 | _default_partition = part; |
776 | 0 | } |
777 | 190 | } |
778 | | |
779 | 342 | part->num_buckets = t_part.num_buckets; |
780 | 342 | auto num_indexes = _schema->indexes().size(); |
781 | 342 | if (t_part.indexes.size() != num_indexes) { |
782 | 0 | return Status::InternalError( |
783 | 0 | "number of partition's index is not equal with schema's" |
784 | 0 | ", num_part_indexes={}, num_schema_indexes={}", |
785 | 0 | t_part.indexes.size(), num_indexes); |
786 | 0 | } |
787 | 342 | part->indexes = t_part.indexes; |
788 | 342 | std::sort(part->indexes.begin(), part->indexes.end(), |
789 | 342 | [](const OlapTableIndexTablets& lhs, const OlapTableIndexTablets& rhs) { |
790 | 0 | return lhs.index_id < rhs.index_id; |
791 | 0 | }); |
792 | | // check index |
793 | 684 | for (int j = 0; j < num_indexes; ++j) { |
794 | 342 | if (part->indexes[j].index_id != _schema->indexes()[j]->index_id) { |
795 | 0 | return Status::InternalError( |
796 | 0 | "partition's index is not equal with schema's" |
797 | 0 | ", part_index={}, schema_index={}", |
798 | 0 | part->indexes[j].index_id, _schema->indexes()[j]->index_id); |
799 | 0 | } |
800 | 342 | } |
801 | 342 | _partitions.emplace_back(part); |
802 | | // after _creating_partiton_keys |
803 | 342 | if (_is_in_partition) { |
804 | 190 | for (auto& in_key : part->in_keys) { |
805 | 190 | _partitions_map->emplace(std::tuple {in_key.first, in_key.second, false}, part); |
806 | 190 | } |
807 | 190 | } else { |
808 | 152 | _partitions_map->emplace(std::tuple {part->end_key.first, part->end_key.second, false}, |
809 | 152 | part); |
810 | 152 | } |
811 | 342 | } |
812 | | |
813 | 173 | return Status::OK(); |
814 | 173 | } |
815 | | |
816 | | Status VOlapTablePartitionParam::replace_partitions( |
817 | | std::vector<int64_t>& old_partition_ids, |
818 | 20 | const std::vector<TOlapTablePartition>& new_partitions) { |
819 | | // remove old replaced partitions |
820 | 20 | DCHECK(old_partition_ids.size() == new_partitions.size()); |
821 | | |
822 | | // init and add new partitions. insert into _partitions |
823 | 52 | for (int i = 0; i < new_partitions.size(); i++) { |
824 | 32 | const auto& t_part = new_partitions[i]; |
825 | | // pair old_partition_ids and new_partitions one by one. TODO: sort to opt performance |
826 | 32 | VOlapTablePartition* old_part = nullptr; |
827 | 32 | auto old_part_id = old_partition_ids[i]; |
828 | 32 | if (auto it = std::find_if( |
829 | 32 | _partitions.begin(), _partitions.end(), |
830 | 85 | [=](const VOlapTablePartition* lhs) { return lhs->id == old_part_id; }); |
831 | 32 | it != _partitions.end()) { |
832 | 32 | old_part = *it; |
833 | 32 | } else { |
834 | 0 | return Status::InternalError("Cannot find old tablet {} in replacing", old_part_id); |
835 | 0 | } |
836 | | |
837 | 32 | auto* part = _obj_pool.add(new VOlapTablePartition(&_partition_block)); |
838 | 32 | part->id = t_part.id; |
839 | 32 | part->is_mutable = t_part.is_mutable; |
840 | | |
841 | | /// just substitute directly. no need to remove and reinsert keys. |
842 | | // range partition |
843 | 32 | part->start_key = std::move(old_part->start_key); |
844 | 32 | part->end_key = std::move(old_part->end_key); |
845 | | // list partition |
846 | 32 | part->in_keys = std::move(old_part->in_keys); |
847 | 32 | if (t_part.__isset.is_default_partition && t_part.is_default_partition) { |
848 | 0 | _default_partition = part; |
849 | 0 | } |
850 | | |
851 | 32 | part->num_buckets = t_part.num_buckets; |
852 | 32 | auto num_indexes = _schema->indexes().size(); |
853 | 32 | if (t_part.indexes.size() != num_indexes) { |
854 | 0 | return Status::InternalError( |
855 | 0 | "number of partition's index is not equal with schema's" |
856 | 0 | ", num_part_indexes={}, num_schema_indexes={}", |
857 | 0 | t_part.indexes.size(), num_indexes); |
858 | 0 | } |
859 | 32 | part->indexes = t_part.indexes; |
860 | 32 | std::sort(part->indexes.begin(), part->indexes.end(), |
861 | 32 | [](const OlapTableIndexTablets& lhs, const OlapTableIndexTablets& rhs) { |
862 | 0 | return lhs.index_id < rhs.index_id; |
863 | 0 | }); |
864 | | // check index |
865 | 64 | for (int j = 0; j < num_indexes; ++j) { |
866 | 32 | if (part->indexes[j].index_id != _schema->indexes()[j]->index_id) { |
867 | 0 | return Status::InternalError( |
868 | 0 | "partition's index is not equal with schema's" |
869 | 0 | ", part_index={}, schema_index={}", |
870 | 0 | part->indexes[j].index_id, _schema->indexes()[j]->index_id); |
871 | 0 | } |
872 | 32 | } |
873 | | |
874 | | // add new partitions with new id. |
875 | 32 | _partitions.emplace_back(part); |
876 | 32 | VLOG_NOTICE << "params add new partition " << part->id; |
877 | | |
878 | | // replace items in _partition_maps |
879 | 32 | if (_is_in_partition) { |
880 | 44 | for (auto& in_key : part->in_keys) { |
881 | 44 | (*_partitions_map)[std::tuple {in_key.first, in_key.second, false}] = part; |
882 | 44 | } |
883 | 21 | } else { |
884 | 11 | (*_partitions_map)[std::tuple {part->end_key.first, part->end_key.second, false}] = |
885 | 11 | part; |
886 | 11 | } |
887 | 32 | } |
888 | | // remove old partitions by id |
889 | 20 | std::ranges::sort(old_partition_ids); |
890 | 129 | for (auto it = _partitions.begin(); it != _partitions.end();) { |
891 | 109 | if (std::ranges::binary_search(old_partition_ids, (*it)->id)) { |
892 | 32 | it = _partitions.erase(it); |
893 | 77 | } else { |
894 | 77 | it++; |
895 | 77 | } |
896 | 109 | } |
897 | | |
898 | 20 | return Status::OK(); |
899 | 20 | } |
900 | | #include "common/compile_check_end.h" |
901 | | |
902 | | } // namespace doris |