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e1f7f04752
* Rename DDLDependencyVisitor -> DDLLoadingDependencyVisitor. * Move building a loading graph to TablesLoader. * Implement referential dependencies for tables and use them when restoring tables from a backup. * Remove StorageID::operator < (because of its inconsistency with ==). * Add new tests. * Fix test. * Fix memory leak. Co-authored-by: Nikita Mikhaylov <mikhaylovnikitka@gmail.com>
315 lines
10 KiB
C++
315 lines
10 KiB
C++
#include <Storages/IStorage.h>
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#include <Common/StringUtils/StringUtils.h>
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#include <IO/Operators.h>
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#include <IO/WriteBufferFromString.h>
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#include <Interpreters/Context.h>
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#include <Interpreters/InterpreterSelectQuery.h>
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#include <Parsers/ASTCreateQuery.h>
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#include <Parsers/ASTFunction.h>
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#include <Parsers/ASTSetQuery.h>
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#include <QueryPipeline/Pipe.h>
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#include <Processors/QueryPlan/ReadFromPreparedSource.h>
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#include <Processors/QueryPlan/QueryPlan.h>
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#include <Storages/AlterCommands.h>
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#include <Backups/RestorerFromBackup.h>
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#include <Backups/IBackup.h>
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namespace DB
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{
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namespace ErrorCodes
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{
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extern const int TABLE_IS_DROPPED;
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extern const int NOT_IMPLEMENTED;
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extern const int DEADLOCK_AVOIDED;
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extern const int CANNOT_RESTORE_TABLE;
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}
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bool IStorage::isVirtualColumn(const String & column_name, const StorageMetadataPtr & metadata_snapshot) const
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{
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/// Virtual column maybe overridden by real column
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return !metadata_snapshot->getColumns().has(column_name) && getVirtuals().contains(column_name);
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}
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RWLockImpl::LockHolder IStorage::tryLockTimed(
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const RWLock & rwlock, RWLockImpl::Type type, const String & query_id, const std::chrono::milliseconds & acquire_timeout) const
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{
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auto lock_holder = rwlock->getLock(type, query_id, acquire_timeout);
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if (!lock_holder)
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{
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const String type_str = type == RWLockImpl::Type::Read ? "READ" : "WRITE";
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throw Exception(
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type_str + " locking attempt on \"" + getStorageID().getFullTableName() + "\" has timed out! ("
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+ std::to_string(acquire_timeout.count())
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+ "ms) "
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"Possible deadlock avoided. Client should retry.",
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ErrorCodes::DEADLOCK_AVOIDED);
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}
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return lock_holder;
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}
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TableLockHolder IStorage::lockForShare(const String & query_id, const std::chrono::milliseconds & acquire_timeout)
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{
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TableLockHolder result = tryLockTimed(drop_lock, RWLockImpl::Read, query_id, acquire_timeout);
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if (is_dropped)
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{
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auto table_id = getStorageID();
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throw Exception(ErrorCodes::TABLE_IS_DROPPED, "Table {}.{} is dropped", table_id.database_name, table_id.table_name);
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}
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return result;
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}
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TableLockHolder IStorage::tryLockForShare(const String & query_id, const std::chrono::milliseconds & acquire_timeout)
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{
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TableLockHolder result = tryLockTimed(drop_lock, RWLockImpl::Read, query_id, acquire_timeout);
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if (is_dropped)
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{
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// Table was dropped while acquiring the lock
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result = nullptr;
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}
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return result;
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}
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IStorage::AlterLockHolder IStorage::lockForAlter(const std::chrono::milliseconds & acquire_timeout)
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{
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AlterLockHolder lock{alter_lock, std::defer_lock};
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if (!lock.try_lock_for(acquire_timeout))
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throw Exception(ErrorCodes::DEADLOCK_AVOIDED,
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"Locking attempt for ALTER on \"{}\" has timed out! ({} ms) "
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"Possible deadlock avoided. Client should retry.",
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getStorageID().getFullTableName(), std::to_string(acquire_timeout.count()));
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if (is_dropped)
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throw Exception("Table is dropped", ErrorCodes::TABLE_IS_DROPPED);
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return lock;
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}
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TableExclusiveLockHolder IStorage::lockExclusively(const String & query_id, const std::chrono::milliseconds & acquire_timeout)
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{
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TableExclusiveLockHolder result;
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result.drop_lock = tryLockTimed(drop_lock, RWLockImpl::Write, query_id, acquire_timeout);
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if (is_dropped)
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throw Exception("Table is dropped", ErrorCodes::TABLE_IS_DROPPED);
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return result;
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}
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Pipe IStorage::watch(
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const Names & /*column_names*/,
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const SelectQueryInfo & /*query_info*/,
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ContextPtr /*context*/,
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QueryProcessingStage::Enum & /*processed_stage*/,
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size_t /*max_block_size*/,
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size_t /*num_streams*/)
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{
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throw Exception("Method watch is not supported by storage " + getName(), ErrorCodes::NOT_IMPLEMENTED);
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}
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Pipe IStorage::read(
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const Names & /*column_names*/,
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const StorageSnapshotPtr & /*storage_snapshot*/,
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SelectQueryInfo & /*query_info*/,
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ContextPtr /*context*/,
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QueryProcessingStage::Enum /*processed_stage*/,
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size_t /*max_block_size*/,
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size_t /*num_streams*/)
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{
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throw Exception("Method read is not supported by storage " + getName(), ErrorCodes::NOT_IMPLEMENTED);
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}
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void IStorage::read(
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QueryPlan & query_plan,
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const Names & column_names,
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const StorageSnapshotPtr & storage_snapshot,
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SelectQueryInfo & query_info,
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ContextPtr context,
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QueryProcessingStage::Enum processed_stage,
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size_t max_block_size,
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size_t num_streams)
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{
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auto pipe = read(column_names, storage_snapshot, query_info, context, processed_stage, max_block_size, num_streams);
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readFromPipe(query_plan, std::move(pipe), column_names, storage_snapshot, query_info, context, getName());
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}
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void IStorage::readFromPipe(
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QueryPlan & query_plan,
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Pipe pipe,
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const Names & column_names,
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const StorageSnapshotPtr & storage_snapshot,
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SelectQueryInfo & query_info,
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ContextPtr context,
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std::string storage_name)
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{
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if (pipe.empty())
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{
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auto header = storage_snapshot->getSampleBlockForColumns(column_names);
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InterpreterSelectQuery::addEmptySourceToQueryPlan(query_plan, header, query_info, context);
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}
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else
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{
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auto read_step = std::make_unique<ReadFromStorageStep>(std::move(pipe), storage_name, query_info.storage_limits);
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query_plan.addStep(std::move(read_step));
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}
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}
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std::optional<QueryPipeline> IStorage::distributedWrite(
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const ASTInsertQuery & /*query*/,
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ContextPtr /*context*/)
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{
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return {};
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}
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Pipe IStorage::alterPartition(
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const StorageMetadataPtr & /* metadata_snapshot */, const PartitionCommands & /* commands */, ContextPtr /* context */)
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{
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throw Exception("Partition operations are not supported by storage " + getName(), ErrorCodes::NOT_IMPLEMENTED);
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}
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void IStorage::alter(const AlterCommands & params, ContextPtr context, AlterLockHolder &)
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{
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auto table_id = getStorageID();
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StorageInMemoryMetadata new_metadata = getInMemoryMetadata();
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params.apply(new_metadata, context);
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DatabaseCatalog::instance().getDatabase(table_id.database_name)->alterTable(context, table_id, new_metadata);
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setInMemoryMetadata(new_metadata);
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}
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void IStorage::checkAlterIsPossible(const AlterCommands & commands, ContextPtr /* context */) const
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{
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for (const auto & command : commands)
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{
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if (!command.isCommentAlter())
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throw Exception(ErrorCodes::NOT_IMPLEMENTED, "Alter of type '{}' is not supported by storage {}",
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command.type, getName());
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}
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}
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void IStorage::checkMutationIsPossible(const MutationCommands & /*commands*/, const Settings & /*settings*/) const
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{
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throw Exception("Table engine " + getName() + " doesn't support mutations", ErrorCodes::NOT_IMPLEMENTED);
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}
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void IStorage::checkAlterPartitionIsPossible(
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const PartitionCommands & /*commands*/, const StorageMetadataPtr & /*metadata_snapshot*/, const Settings & /*settings*/) const
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{
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throw Exception("Table engine " + getName() + " doesn't support partitioning", ErrorCodes::NOT_IMPLEMENTED);
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}
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StorageID IStorage::getStorageID() const
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{
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std::lock_guard lock(id_mutex);
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return storage_id;
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}
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void IStorage::renameInMemory(const StorageID & new_table_id)
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{
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std::lock_guard lock(id_mutex);
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storage_id = new_table_id;
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}
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NamesAndTypesList IStorage::getVirtuals() const
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{
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return {};
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}
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Names IStorage::getAllRegisteredNames() const
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{
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Names result;
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auto getter = [](const auto & column) { return column.name; };
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const NamesAndTypesList & available_columns = getInMemoryMetadata().getColumns().getAllPhysical();
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std::transform(available_columns.begin(), available_columns.end(), std::back_inserter(result), getter);
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return result;
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}
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NameDependencies IStorage::getDependentViewsByColumn(ContextPtr context) const
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{
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NameDependencies name_deps;
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auto view_ids = DatabaseCatalog::instance().getDependentViews(storage_id);
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for (const auto & view_id : view_ids)
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{
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auto view = DatabaseCatalog::instance().getTable(view_id, context);
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if (view->getInMemoryMetadataPtr()->select.inner_query)
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{
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const auto & select_query = view->getInMemoryMetadataPtr()->select.inner_query;
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auto required_columns = InterpreterSelectQuery(select_query, context, SelectQueryOptions{}.noModify()).getRequiredColumns();
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for (const auto & col_name : required_columns)
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name_deps[col_name].push_back(view_id.table_name);
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}
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}
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return name_deps;
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}
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bool IStorage::isStaticStorage() const
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{
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auto storage_policy = getStoragePolicy();
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if (storage_policy)
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{
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for (const auto & disk : storage_policy->getDisks())
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if (!(disk->isReadOnly() || disk->isWriteOnce()))
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return false;
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return true;
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}
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return false;
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}
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void IStorage::adjustCreateQueryForBackup(ASTPtr &) const
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{
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}
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void IStorage::backupData(BackupEntriesCollector &, const String &, const std::optional<ASTs> &)
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{
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}
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void IStorage::restoreDataFromBackup(RestorerFromBackup & restorer, const String & data_path_in_backup, const std::optional<ASTs> &)
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{
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/// If an inherited class doesn't override restoreDataFromBackup() that means it doesn't backup any data.
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auto filenames = restorer.getBackup()->listFiles(data_path_in_backup);
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if (!filenames.empty())
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throw Exception(ErrorCodes::CANNOT_RESTORE_TABLE, "Cannot restore table {}: Folder {} in backup must be empty",
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getStorageID().getFullTableName(), data_path_in_backup);
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}
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std::string PrewhereInfo::dump() const
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{
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WriteBufferFromOwnString ss;
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ss << "PrewhereDagInfo\n";
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if (row_level_filter)
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{
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ss << "row_level_filter " << row_level_filter->dumpDAG() << "\n";
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}
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if (prewhere_actions)
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{
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ss << "prewhere_actions " << prewhere_actions->dumpDAG() << "\n";
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}
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ss << "remove_prewhere_column " << remove_prewhere_column
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<< ", need_filter " << need_filter << "\n";
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return ss.str();
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}
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std::string FilterDAGInfo::dump() const
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{
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WriteBufferFromOwnString ss;
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ss << "FilterDAGInfo for column '" << column_name <<"', do_remove_column "
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<< do_remove_column << "\n";
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if (actions)
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{
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ss << "actions " << actions->dumpDAG() << "\n";
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}
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return ss.str();
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}
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}
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