mirror of
https://github.com/ClickHouse/ClickHouse.git
synced 2024-12-15 10:52:30 +00:00
583 lines
21 KiB
C++
583 lines
21 KiB
C++
#include <Interpreters/executeDDLQueryOnCluster.h>
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#include <Interpreters/DDLWorker.h>
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#include <Interpreters/DDLTask.h>
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#include <Interpreters/AddDefaultDatabaseVisitor.h>
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#include <Interpreters/Context.h>
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#include <Parsers/ASTQueryWithOutput.h>
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#include <Parsers/ASTQueryWithOnCluster.h>
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#include <Parsers/ASTAlterQuery.h>
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#include <Parsers/ASTIdentifier.h>
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#include <Parsers/queryToString.h>
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#include <Access/Common/AccessRightsElement.h>
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#include <Access/ContextAccess.h>
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#include <Common/Macros.h>
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#include <Common/ZooKeeper/ZooKeeper.h>
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#include <Databases/DatabaseReplicated.h>
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#include <DataTypes/DataTypesNumber.h>
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#include <DataTypes/DataTypeString.h>
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#include <DataTypes/DataTypeNullable.h>
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#include <DataTypes/DataTypeEnum.h>
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#include <Processors/Sinks/EmptySink.h>
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#include <QueryPipeline/Pipe.h>
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#include <filesystem>
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#include <base/sort.h>
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namespace fs = std::filesystem;
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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 NOT_IMPLEMENTED;
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extern const int TIMEOUT_EXCEEDED;
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extern const int UNFINISHED;
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extern const int QUERY_IS_PROHIBITED;
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extern const int LOGICAL_ERROR;
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}
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bool isSupportedAlterType(int type)
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{
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assert(type != ASTAlterCommand::NO_TYPE);
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static const std::unordered_set<int> unsupported_alter_types{
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/// It's dangerous, because it may duplicate data if executed on multiple replicas. We can allow it after #18978
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ASTAlterCommand::ATTACH_PARTITION,
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/// Usually followed by ATTACH PARTITION
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ASTAlterCommand::FETCH_PARTITION,
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/// Logical error
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ASTAlterCommand::NO_TYPE,
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};
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return !unsupported_alter_types.contains(type);
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}
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BlockIO executeDDLQueryOnCluster(const ASTPtr & query_ptr_, ContextPtr context, const DDLQueryOnClusterParams & params)
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{
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OpenTelemetry::SpanHolder span(__FUNCTION__);
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if (context->getCurrentTransaction() && context->getSettingsRef().throw_on_unsupported_query_inside_transaction)
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throw Exception(ErrorCodes::NOT_IMPLEMENTED, "ON CLUSTER queries inside transactions are not supported");
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/// Remove FORMAT <fmt> and INTO OUTFILE <file> if exists
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ASTPtr query_ptr = query_ptr_->clone();
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ASTQueryWithOutput::resetOutputASTIfExist(*query_ptr);
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// XXX: serious design flaw since `ASTQueryWithOnCluster` is not inherited from `IAST`!
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auto * query = dynamic_cast<ASTQueryWithOnCluster *>(query_ptr.get());
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if (!query)
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{
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throw Exception("Distributed execution is not supported for such DDL queries", ErrorCodes::NOT_IMPLEMENTED);
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}
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if (!context->getSettingsRef().allow_distributed_ddl)
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throw Exception("Distributed DDL queries are prohibited for the user", ErrorCodes::QUERY_IS_PROHIBITED);
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if (const auto * query_alter = query_ptr->as<ASTAlterQuery>())
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{
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for (const auto & command : query_alter->command_list->children)
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{
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if (!isSupportedAlterType(command->as<ASTAlterCommand&>().type))
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throw Exception("Unsupported type of ALTER query", ErrorCodes::NOT_IMPLEMENTED);
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}
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}
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ClusterPtr cluster = params.cluster;
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if (!cluster)
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{
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query->cluster = context->getMacros()->expand(query->cluster);
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cluster = context->getCluster(query->cluster);
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}
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span.addAttribute("clickhouse.cluster", query->cluster);
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/// TODO: support per-cluster grant
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context->checkAccess(AccessType::CLUSTER);
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DDLWorker & ddl_worker = context->getDDLWorker();
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/// Enumerate hosts which will be used to send query.
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auto addresses = cluster->filterAddressesByShardOrReplica(params.only_shard_num, params.only_replica_num);
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if (addresses.empty())
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throw Exception("No hosts defined to execute distributed DDL query", ErrorCodes::LOGICAL_ERROR);
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std::vector<HostID> hosts;
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hosts.reserve(addresses.size());
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for (const auto * address : addresses)
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hosts.emplace_back(*address);
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/// The current database in a distributed query need to be replaced with either
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/// the local current database or a shard's default database.
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AccessRightsElements access_to_check = params.access_to_check;
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bool need_replace_current_database = std::any_of(
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access_to_check.begin(),
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access_to_check.end(),
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[](const AccessRightsElement & elem) { return elem.isEmptyDatabase(); });
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bool use_local_default_database = false;
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const String & current_database = context->getCurrentDatabase();
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if (need_replace_current_database)
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{
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Strings host_default_databases;
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for (const auto * address : addresses)
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{
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if (!address->default_database.empty())
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host_default_databases.push_back(address->default_database);
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else
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use_local_default_database = true;
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}
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::sort(host_default_databases.begin(), host_default_databases.end());
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host_default_databases.erase(std::unique(host_default_databases.begin(), host_default_databases.end()), host_default_databases.end());
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assert(use_local_default_database || !host_default_databases.empty());
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if (use_local_default_database && !host_default_databases.empty())
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throw Exception("Mixed local default DB and shard default DB in DDL query", ErrorCodes::NOT_IMPLEMENTED);
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if (use_local_default_database)
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{
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access_to_check.replaceEmptyDatabase(current_database);
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}
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else
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{
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for (size_t i = 0; i != access_to_check.size();)
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{
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auto & element = access_to_check[i];
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if (element.isEmptyDatabase())
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{
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access_to_check.insert(access_to_check.begin() + i + 1, host_default_databases.size() - 1, element);
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for (size_t j = 0; j != host_default_databases.size(); ++j)
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access_to_check[i + j].replaceEmptyDatabase(host_default_databases[j]);
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i += host_default_databases.size();
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}
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else
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++i;
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}
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}
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}
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AddDefaultDatabaseVisitor visitor(context, current_database, !use_local_default_database);
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visitor.visitDDL(query_ptr);
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/// Check access rights, assume that all servers have the same users config
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context->checkAccess(access_to_check);
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DDLLogEntry entry;
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entry.hosts = std::move(hosts);
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entry.query = queryToString(query_ptr);
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entry.initiator = ddl_worker.getCommonHostID();
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entry.setSettingsIfRequired(context);
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entry.tracing_context = OpenTelemetry::CurrentContext();
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String node_path = ddl_worker.enqueueQuery(entry);
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return getDistributedDDLStatus(node_path, entry, context);
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}
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class DDLQueryStatusSource final : public ISource
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{
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public:
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DDLQueryStatusSource(
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const String & zk_node_path, const DDLLogEntry & entry, ContextPtr context_, const std::optional<Strings> & hosts_to_wait = {});
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String getName() const override { return "DDLQueryStatus"; }
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Chunk generate() override;
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Status prepare() override;
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private:
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static Strings getChildrenAllowNoNode(const std::shared_ptr<zkutil::ZooKeeper> & zookeeper, const String & node_path);
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static Block getSampleBlock(ContextPtr context_, bool hosts_to_wait);
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Strings getNewAndUpdate(const Strings & current_list_of_finished_hosts);
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std::pair<String, UInt16> parseHostAndPort(const String & host_id) const;
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Chunk generateChunkWithUnfinishedHosts() const;
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enum ReplicatedDatabaseQueryStatus
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{
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/// Query is (successfully) finished
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OK = 0,
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/// Query is not finished yet, but replica is currently executing it
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IN_PROGRESS = 1,
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/// Replica is not available or busy with previous queries. It will process query asynchronously
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QUEUED = 2,
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};
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String node_path;
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ContextPtr context;
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Stopwatch watch;
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Poco::Logger * log;
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NameSet waiting_hosts; /// hosts from task host list
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NameSet finished_hosts; /// finished hosts from host list
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NameSet ignoring_hosts; /// appeared hosts that are not in hosts list
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Strings current_active_hosts; /// Hosts that were in active state at the last check
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size_t num_hosts_finished = 0;
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/// Save the first detected error and throw it at the end of execution
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std::unique_ptr<Exception> first_exception;
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Int64 timeout_seconds = 120;
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bool is_replicated_database = false;
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bool throw_on_timeout = true;
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bool timeout_exceeded = false;
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};
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BlockIO getDistributedDDLStatus(const String & node_path, const DDLLogEntry & entry, ContextPtr context, const std::optional<Strings> & hosts_to_wait)
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{
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BlockIO io;
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if (context->getSettingsRef().distributed_ddl_task_timeout == 0)
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return io;
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auto source = std::make_shared<DDLQueryStatusSource>(node_path, entry, context, hosts_to_wait);
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io.pipeline = QueryPipeline(std::move(source));
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if (context->getSettingsRef().distributed_ddl_output_mode == DistributedDDLOutputMode::NONE)
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io.pipeline.complete(std::make_shared<EmptySink>(io.pipeline.getHeader()));
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return io;
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}
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Block DDLQueryStatusSource::getSampleBlock(ContextPtr context_, bool hosts_to_wait)
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{
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auto output_mode = context_->getSettingsRef().distributed_ddl_output_mode;
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auto maybe_make_nullable = [&](const DataTypePtr & type) -> DataTypePtr
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{
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if (output_mode == DistributedDDLOutputMode::THROW || output_mode == DistributedDDLOutputMode::NONE)
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return type;
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return std::make_shared<DataTypeNullable>(type);
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};
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auto get_status_enum = []()
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{
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return std::make_shared<DataTypeEnum8>(
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DataTypeEnum8::Values
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{
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{"OK", static_cast<Int8>(OK)},
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{"IN_PROGRESS", static_cast<Int8>(IN_PROGRESS)},
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{"QUEUED", static_cast<Int8>(QUEUED)},
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});
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};
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if (hosts_to_wait)
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{
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return Block{
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{std::make_shared<DataTypeString>(), "shard"},
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{std::make_shared<DataTypeString>(), "replica"},
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{get_status_enum(), "status"},
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{std::make_shared<DataTypeUInt64>(), "num_hosts_remaining"},
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{std::make_shared<DataTypeUInt64>(), "num_hosts_active"},
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};
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}
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else
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{
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return Block{
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{std::make_shared<DataTypeString>(), "host"},
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{std::make_shared<DataTypeUInt16>(), "port"},
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{maybe_make_nullable(std::make_shared<DataTypeInt64>()), "status"},
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{maybe_make_nullable(std::make_shared<DataTypeString>()), "error"},
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{std::make_shared<DataTypeUInt64>(), "num_hosts_remaining"},
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{std::make_shared<DataTypeUInt64>(), "num_hosts_active"},
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};
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}
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}
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DDLQueryStatusSource::DDLQueryStatusSource(
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const String & zk_node_path, const DDLLogEntry & entry, ContextPtr context_, const std::optional<Strings> & hosts_to_wait)
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: ISource(getSampleBlock(context_, hosts_to_wait.has_value()))
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, node_path(zk_node_path)
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, context(context_)
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, watch(CLOCK_MONOTONIC_COARSE)
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, log(&Poco::Logger::get("DDLQueryStatusSource"))
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{
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auto output_mode = context->getSettingsRef().distributed_ddl_output_mode;
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throw_on_timeout = output_mode == DistributedDDLOutputMode::THROW || output_mode == DistributedDDLOutputMode::NONE;
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if (hosts_to_wait)
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{
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waiting_hosts = NameSet(hosts_to_wait->begin(), hosts_to_wait->end());
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is_replicated_database = true;
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}
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else
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{
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for (const HostID & host : entry.hosts)
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waiting_hosts.emplace(host.toString());
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}
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addTotalRowsApprox(waiting_hosts.size());
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timeout_seconds = context->getSettingsRef().distributed_ddl_task_timeout;
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}
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std::pair<String, UInt16> DDLQueryStatusSource::parseHostAndPort(const String & host_id) const
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{
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String host = host_id;
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UInt16 port = 0;
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if (!is_replicated_database)
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{
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auto host_and_port = Cluster::Address::fromString(host_id);
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host = host_and_port.first;
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port = host_and_port.second;
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}
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return {host, port};
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}
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Chunk DDLQueryStatusSource::generateChunkWithUnfinishedHosts() const
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{
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NameSet unfinished_hosts = waiting_hosts;
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for (const auto & host_id : finished_hosts)
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unfinished_hosts.erase(host_id);
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NameSet active_hosts_set = NameSet{current_active_hosts.begin(), current_active_hosts.end()};
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/// Query is not finished on the rest hosts, so fill the corresponding rows with NULLs.
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MutableColumns columns = output.getHeader().cloneEmptyColumns();
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for (const String & host_id : unfinished_hosts)
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{
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size_t num = 0;
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if (is_replicated_database)
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{
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auto [shard, replica] = DatabaseReplicated::parseFullReplicaName(host_id);
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columns[num++]->insert(shard);
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columns[num++]->insert(replica);
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if (active_hosts_set.contains(host_id))
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columns[num++]->insert(IN_PROGRESS);
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else
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columns[num++]->insert(QUEUED);
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}
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else
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{
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auto [host, port] = parseHostAndPort(host_id);
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columns[num++]->insert(host);
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columns[num++]->insert(port);
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columns[num++]->insert(Field{});
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columns[num++]->insert(Field{});
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}
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columns[num++]->insert(unfinished_hosts.size());
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columns[num++]->insert(current_active_hosts.size());
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}
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return Chunk(std::move(columns), unfinished_hosts.size());
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}
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Chunk DDLQueryStatusSource::generate()
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{
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bool all_hosts_finished = num_hosts_finished >= waiting_hosts.size();
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/// Seems like num_hosts_finished cannot be strictly greater than waiting_hosts.size()
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assert(num_hosts_finished <= waiting_hosts.size());
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if (all_hosts_finished || timeout_exceeded)
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return {};
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String node_to_wait = "finished";
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if (is_replicated_database && context->getSettingsRef().database_replicated_enforce_synchronous_settings)
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node_to_wait = "synced";
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auto zookeeper = context->getZooKeeper();
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size_t try_number = 0;
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while (true)
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{
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if (isCancelled())
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return {};
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if (timeout_seconds >= 0 && watch.elapsedSeconds() > timeout_seconds)
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{
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timeout_exceeded = true;
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size_t num_unfinished_hosts = waiting_hosts.size() - num_hosts_finished;
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size_t num_active_hosts = current_active_hosts.size();
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constexpr const char * msg_format = "Watching task {} is executing longer than distributed_ddl_task_timeout (={}) seconds. "
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"There are {} unfinished hosts ({} of them are currently active), "
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"they are going to execute the query in background";
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if (throw_on_timeout)
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{
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if (!first_exception)
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first_exception = std::make_unique<Exception>(
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fmt::format(msg_format, node_path, timeout_seconds, num_unfinished_hosts, num_active_hosts),
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ErrorCodes::TIMEOUT_EXCEEDED);
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/// For Replicated database print a list of unfinished hosts as well. Will return empty block on next iteration.
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if (is_replicated_database)
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return generateChunkWithUnfinishedHosts();
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return {};
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}
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LOG_INFO(log, msg_format, node_path, timeout_seconds, num_unfinished_hosts, num_active_hosts);
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return generateChunkWithUnfinishedHosts();
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}
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if (num_hosts_finished != 0 || try_number != 0)
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{
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sleepForMilliseconds(std::min<size_t>(1000, 50 * (try_number + 1)));
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}
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if (!zookeeper->exists(node_path))
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{
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/// Paradoxically, this exception will be throw even in case of "never_throw" mode.
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if (!first_exception)
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first_exception = std::make_unique<Exception>(
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fmt::format(
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"Cannot provide query execution status. The query's node {} has been deleted by the cleaner"
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" since it was finished (or its lifetime is expired)",
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node_path),
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ErrorCodes::UNFINISHED);
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return {};
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}
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Strings new_hosts = getNewAndUpdate(getChildrenAllowNoNode(zookeeper, fs::path(node_path) / node_to_wait));
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++try_number;
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if (new_hosts.empty())
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continue;
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current_active_hosts = getChildrenAllowNoNode(zookeeper, fs::path(node_path) / "active");
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MutableColumns columns = output.getHeader().cloneEmptyColumns();
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for (const String & host_id : new_hosts)
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{
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ExecutionStatus status(-1, "Cannot obtain error message");
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if (node_to_wait == "finished")
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{
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String status_data;
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if (zookeeper->tryGet(fs::path(node_path) / "finished" / host_id, status_data))
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status.tryDeserializeText(status_data);
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}
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else
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{
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status = ExecutionStatus{0};
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}
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if (status.code != 0 && !first_exception
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&& context->getSettingsRef().distributed_ddl_output_mode != DistributedDDLOutputMode::NEVER_THROW)
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{
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/// Replicated database retries in case of error, it should not write error status.
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if (is_replicated_database)
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throw Exception(ErrorCodes::LOGICAL_ERROR, "There was an error on {}: {} (probably it's a bug)", host_id, status.message);
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auto [host, port] = parseHostAndPort(host_id);
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first_exception = std::make_unique<Exception>(
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fmt::format("There was an error on [{}:{}]: {}", host, port, status.message), status.code);
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}
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++num_hosts_finished;
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size_t num = 0;
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if (is_replicated_database)
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{
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if (status.code != 0)
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throw Exception(ErrorCodes::LOGICAL_ERROR, "There was an error on {}: {} (probably it's a bug)", host_id, status.message);
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auto [shard, replica] = DatabaseReplicated::parseFullReplicaName(host_id);
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columns[num++]->insert(shard);
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columns[num++]->insert(replica);
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columns[num++]->insert(OK);
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}
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else
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{
|
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auto [host, port] = parseHostAndPort(host_id);
|
|
columns[num++]->insert(host);
|
|
columns[num++]->insert(port);
|
|
columns[num++]->insert(status.code);
|
|
columns[num++]->insert(status.message);
|
|
}
|
|
columns[num++]->insert(waiting_hosts.size() - num_hosts_finished);
|
|
columns[num++]->insert(current_active_hosts.size());
|
|
}
|
|
|
|
return Chunk(std::move(columns), new_hosts.size());
|
|
}
|
|
}
|
|
|
|
IProcessor::Status DDLQueryStatusSource::prepare()
|
|
{
|
|
/// This method is overloaded to throw exception after all data is read.
|
|
/// Exception is pushed into pipe (instead of simply being thrown) to ensure the order of data processing and exception.
|
|
|
|
if (finished)
|
|
{
|
|
if (first_exception)
|
|
{
|
|
if (!output.canPush())
|
|
return Status::PortFull;
|
|
|
|
output.pushException(std::make_exception_ptr(*first_exception));
|
|
}
|
|
|
|
output.finish();
|
|
return Status::Finished;
|
|
}
|
|
else
|
|
return ISource::prepare();
|
|
}
|
|
|
|
Strings DDLQueryStatusSource::getChildrenAllowNoNode(const std::shared_ptr<zkutil::ZooKeeper> & zookeeper, const String & node_path)
|
|
{
|
|
Strings res;
|
|
Coordination::Error code = zookeeper->tryGetChildren(node_path, res);
|
|
if (code != Coordination::Error::ZOK && code != Coordination::Error::ZNONODE)
|
|
throw Coordination::Exception(code, node_path);
|
|
return res;
|
|
}
|
|
|
|
Strings DDLQueryStatusSource::getNewAndUpdate(const Strings & current_list_of_finished_hosts)
|
|
{
|
|
Strings diff;
|
|
for (const String & host : current_list_of_finished_hosts)
|
|
{
|
|
if (!waiting_hosts.contains(host))
|
|
{
|
|
if (!ignoring_hosts.contains(host))
|
|
{
|
|
ignoring_hosts.emplace(host);
|
|
LOG_INFO(log, "Unexpected host {} appeared in task {}", host, node_path);
|
|
}
|
|
continue;
|
|
}
|
|
|
|
if (!finished_hosts.contains(host))
|
|
{
|
|
diff.emplace_back(host);
|
|
finished_hosts.emplace(host);
|
|
}
|
|
}
|
|
|
|
return diff;
|
|
}
|
|
|
|
|
|
bool maybeRemoveOnCluster(const ASTPtr & query_ptr, ContextPtr context)
|
|
{
|
|
const auto * query = dynamic_cast<const ASTQueryWithTableAndOutput *>(query_ptr.get());
|
|
if (!query || !query->table)
|
|
return false;
|
|
|
|
String database_name = query->getDatabase();
|
|
if (database_name.empty())
|
|
database_name = context->getCurrentDatabase();
|
|
|
|
auto * query_on_cluster = dynamic_cast<ASTQueryWithOnCluster *>(query_ptr.get());
|
|
if (database_name != query_on_cluster->cluster)
|
|
return false;
|
|
|
|
auto database = DatabaseCatalog::instance().tryGetDatabase(database_name);
|
|
if (database && database->shouldReplicateQuery(context, query_ptr))
|
|
{
|
|
/// It's Replicated database and query is replicated on database level,
|
|
/// so ON CLUSTER clause is redundant.
|
|
query_on_cluster->cluster.clear();
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
}
|