mirror of
https://github.com/ClickHouse/ClickHouse.git
synced 2024-11-18 05:32:52 +00:00
338 lines
9.9 KiB
C++
338 lines
9.9 KiB
C++
#include <Client/MultiplexedConnections.h>
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#include <IO/ConnectionTimeouts.h>
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#include <Common/thread_local_rng.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 LOGICAL_ERROR;
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extern const int MISMATCH_REPLICAS_DATA_SOURCES;
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extern const int NO_AVAILABLE_REPLICA;
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extern const int TIMEOUT_EXCEEDED;
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}
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MultiplexedConnections::MultiplexedConnections(Connection & connection, const Settings & settings_, const ThrottlerPtr & throttler)
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: settings(settings_)
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{
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connection.setThrottler(throttler);
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ReplicaState replica_state;
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replica_state.connection = &connection;
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replica_states.push_back(replica_state);
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active_connection_count = 1;
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}
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MultiplexedConnections::MultiplexedConnections(
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std::vector<IConnectionPool::Entry> && connections,
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const Settings & settings_, const ThrottlerPtr & throttler)
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: settings(settings_)
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{
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/// If we didn't get any connections from pool and getMany() did not throw exceptions, this means that
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/// `skip_unavailable_shards` was set. Then just return.
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if (connections.empty())
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return;
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replica_states.reserve(connections.size());
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for (auto & connection : connections)
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{
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connection->setThrottler(throttler);
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ReplicaState replica_state;
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replica_state.connection = &*connection;
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replica_state.pool_entry = std::move(connection);
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replica_states.push_back(std::move(replica_state));
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}
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active_connection_count = connections.size();
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}
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void MultiplexedConnections::sendScalarsData(Scalars & data)
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{
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std::lock_guard lock(cancel_mutex);
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if (!sent_query)
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throw Exception("Cannot send scalars data: query not yet sent.", ErrorCodes::LOGICAL_ERROR);
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for (ReplicaState & state : replica_states)
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{
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Connection * connection = state.connection;
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if (connection != nullptr)
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connection->sendScalarsData(data);
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}
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}
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void MultiplexedConnections::sendExternalTablesData(std::vector<ExternalTablesData> & data)
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{
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std::lock_guard lock(cancel_mutex);
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if (!sent_query)
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throw Exception("Cannot send external tables data: query not yet sent.", ErrorCodes::LOGICAL_ERROR);
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if (data.size() != active_connection_count)
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throw Exception("Mismatch between replicas and data sources", ErrorCodes::MISMATCH_REPLICAS_DATA_SOURCES);
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auto it = data.begin();
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for (ReplicaState & state : replica_states)
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{
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Connection * connection = state.connection;
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if (connection != nullptr)
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{
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connection->sendExternalTablesData(*it);
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++it;
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}
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}
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}
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void MultiplexedConnections::sendQuery(
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const ConnectionTimeouts & timeouts,
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const String & query,
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const String & query_id,
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UInt64 stage,
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const ClientInfo & client_info,
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bool with_pending_data)
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{
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std::lock_guard lock(cancel_mutex);
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if (sent_query)
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throw Exception("Query already sent.", ErrorCodes::LOGICAL_ERROR);
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Settings modified_settings = settings;
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for (auto & replica : replica_states)
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{
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if (!replica.connection)
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throw Exception("MultiplexedConnections: Internal error", ErrorCodes::LOGICAL_ERROR);
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if (replica.connection->getServerRevision(timeouts) < DBMS_MIN_REVISION_WITH_CURRENT_AGGREGATION_VARIANT_SELECTION_METHOD)
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{
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/// Disable two-level aggregation due to version incompatibility.
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modified_settings.group_by_two_level_threshold = 0;
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modified_settings.group_by_two_level_threshold_bytes = 0;
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}
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}
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size_t num_replicas = replica_states.size();
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if (num_replicas > 1)
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{
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/// Use multiple replicas for parallel query processing.
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modified_settings.parallel_replicas_count = num_replicas;
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for (size_t i = 0; i < num_replicas; ++i)
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{
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modified_settings.parallel_replica_offset = i;
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replica_states[i].connection->sendQuery(timeouts, query, query_id,
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stage, &modified_settings, &client_info, with_pending_data);
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}
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}
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else
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{
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/// Use single replica.
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replica_states[0].connection->sendQuery(timeouts, query, query_id,
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stage, &modified_settings, &client_info, with_pending_data);
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}
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sent_query = true;
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}
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Packet MultiplexedConnections::receivePacket()
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{
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std::lock_guard lock(cancel_mutex);
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Packet packet = receivePacketUnlocked();
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return packet;
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}
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void MultiplexedConnections::disconnect()
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{
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std::lock_guard lock(cancel_mutex);
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for (ReplicaState & state : replica_states)
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{
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Connection * connection = state.connection;
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if (connection != nullptr)
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{
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connection->disconnect();
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invalidateReplica(state);
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}
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}
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}
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void MultiplexedConnections::sendCancel()
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{
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std::lock_guard lock(cancel_mutex);
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if (!sent_query || cancelled)
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throw Exception("Cannot cancel. Either no query sent or already cancelled.", ErrorCodes::LOGICAL_ERROR);
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for (ReplicaState & state : replica_states)
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{
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Connection * connection = state.connection;
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if (connection != nullptr)
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connection->sendCancel();
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}
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cancelled = true;
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}
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Packet MultiplexedConnections::drain()
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{
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std::lock_guard lock(cancel_mutex);
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if (!cancelled)
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throw Exception("Cannot drain connections: cancel first.", ErrorCodes::LOGICAL_ERROR);
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Packet res;
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res.type = Protocol::Server::EndOfStream;
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while (hasActiveConnections())
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{
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Packet packet = receivePacketUnlocked();
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switch (packet.type)
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{
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case Protocol::Server::Data:
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case Protocol::Server::Progress:
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case Protocol::Server::ProfileInfo:
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case Protocol::Server::Totals:
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case Protocol::Server::Extremes:
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case Protocol::Server::EndOfStream:
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break;
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case Protocol::Server::Exception:
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default:
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/// If we receive an exception or an unknown packet, we save it.
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res = std::move(packet);
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break;
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}
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}
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return res;
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}
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std::string MultiplexedConnections::dumpAddresses() const
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{
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std::lock_guard lock(cancel_mutex);
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return dumpAddressesUnlocked();
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}
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std::string MultiplexedConnections::dumpAddressesUnlocked() const
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{
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bool is_first = true;
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std::ostringstream os;
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for (const ReplicaState & state : replica_states)
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{
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const Connection * connection = state.connection;
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if (connection)
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{
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os << (is_first ? "" : "; ") << connection->getDescription();
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is_first = false;
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}
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}
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return os.str();
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}
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Packet MultiplexedConnections::receivePacketUnlocked()
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{
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if (!sent_query)
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throw Exception("Cannot receive packets: no query sent.", ErrorCodes::LOGICAL_ERROR);
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if (!hasActiveConnections())
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throw Exception("No more packets are available.", ErrorCodes::LOGICAL_ERROR);
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ReplicaState & state = getReplicaForReading();
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current_connection = state.connection;
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if (current_connection == nullptr)
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throw Exception("Logical error: no available replica", ErrorCodes::NO_AVAILABLE_REPLICA);
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Packet packet = current_connection->receivePacket();
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switch (packet.type)
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{
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case Protocol::Server::Data:
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case Protocol::Server::Progress:
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case Protocol::Server::ProfileInfo:
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case Protocol::Server::Totals:
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case Protocol::Server::Extremes:
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case Protocol::Server::Log:
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break;
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case Protocol::Server::EndOfStream:
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invalidateReplica(state);
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break;
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case Protocol::Server::Exception:
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default:
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current_connection->disconnect();
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invalidateReplica(state);
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break;
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}
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return packet;
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}
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MultiplexedConnections::ReplicaState & MultiplexedConnections::getReplicaForReading()
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{
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if (replica_states.size() == 1)
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return replica_states[0];
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Poco::Net::Socket::SocketList read_list;
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read_list.reserve(active_connection_count);
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/// First, we check if there are data already in the buffer
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/// of at least one connection.
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for (const ReplicaState & state : replica_states)
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{
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Connection * connection = state.connection;
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if ((connection != nullptr) && connection->hasReadPendingData())
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read_list.push_back(*connection->socket);
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}
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/// If no data was found, then we check if there are any connections ready for reading.
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if (read_list.empty())
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{
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Poco::Net::Socket::SocketList write_list;
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Poco::Net::Socket::SocketList except_list;
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for (const ReplicaState & state : replica_states)
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{
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Connection * connection = state.connection;
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if (connection != nullptr)
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read_list.push_back(*connection->socket);
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}
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int n = Poco::Net::Socket::select(read_list, write_list, except_list, settings.receive_timeout);
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if (n == 0)
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throw Exception("Timeout exceeded while reading from " + dumpAddressesUnlocked(), ErrorCodes::TIMEOUT_EXCEEDED);
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}
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/// TODO Absolutely wrong code: read_list could be empty; motivation of rand is unclear.
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/// This code path is disabled by default.
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auto & socket = read_list[thread_local_rng() % read_list.size()];
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if (fd_to_replica_state_idx.empty())
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{
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fd_to_replica_state_idx.reserve(replica_states.size());
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size_t replica_state_number = 0;
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for (const auto & replica_state : replica_states)
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{
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fd_to_replica_state_idx.emplace(replica_state.connection->socket->impl()->sockfd(), replica_state_number);
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++replica_state_number;
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}
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}
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return replica_states[fd_to_replica_state_idx.at(socket.impl()->sockfd())];
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}
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void MultiplexedConnections::invalidateReplica(ReplicaState & state)
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{
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state.connection = nullptr;
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state.pool_entry = IConnectionPool::Entry();
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--active_connection_count;
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}
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}
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