StorageReplicatedMergeTree.cpp 140.8 KB
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#include <Common/ZooKeeper/Types.h>
#include <Common/ZooKeeper/KeeperException.h>
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#include <Core/FieldVisitors.h>

#include <Storages/ColumnsDescription.h>
#include <Storages/StorageReplicatedMergeTree.h>
#include <Storages/MergeTree/ReplicatedMergeTreeBlockOutputStream.h>
#include <Storages/MergeTree/ReplicatedMergeTreeQuorumEntry.h>
#include <Storages/MergeTree/MergeList.h>
#include <Storages/MergeTree/ReplicatedMergeTreeAddress.h>

#include <Databases/IDatabase.h>

#include <Parsers/formatAST.h>
#include <Parsers/ASTSelectQuery.h>
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#include <Parsers/ASTOptimizeQuery.h>
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#include <Parsers/ASTLiteral.h>
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#include <Parsers/queryToString.h>

#include <IO/ReadBufferFromString.h>
#include <IO/Operators.h>

#include <Interpreters/InterpreterAlterQuery.h>
#include <Interpreters/PartLog.h>

#include <DataStreams/RemoteBlockInputStream.h>
#include <DataStreams/NullBlockOutputStream.h>
#include <DataStreams/copyData.h>

#include <Common/Macros.h>
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#include <Storages/VirtualColumnUtils.h>
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#include <Common/formatReadable.h>
#include <Common/setThreadName.h>
#include <Common/escapeForFileName.h>
#include <Common/StringUtils.h>
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#include <Common/typeid_cast.h>
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#include <Poco/DirectoryIterator.h>
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#include <common/ThreadPool.h>
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#include <ext/range.h>
#include <ext/scope_guard.h>
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#include <cfenv>
#include <ctime>
#include <thread>
#include <future>


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namespace ProfileEvents
{
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    extern const Event ReplicatedPartMerges;
    extern const Event ReplicatedPartFailedFetches;
    extern const Event ReplicatedPartFetchesOfMerged;
    extern const Event ObsoleteReplicatedParts;
    extern const Event ReplicatedPartFetches;
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    extern const Event DataAfterMergeDiffersFromReplica;
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}
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namespace DB
{

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namespace ErrorCodes
{
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    extern const int NO_ZOOKEEPER;
    extern const int INCORRECT_DATA;
    extern const int INCOMPATIBLE_COLUMNS;
    extern const int REPLICA_IS_ALREADY_EXIST;
    extern const int NO_SUCH_REPLICA;
    extern const int NO_REPLICA_HAS_PART;
    extern const int LOGICAL_ERROR;
    extern const int TOO_MANY_UNEXPECTED_DATA_PARTS;
    extern const int ABORTED;
    extern const int REPLICA_IS_NOT_IN_QUORUM;
    extern const int TABLE_IS_READ_ONLY;
    extern const int NOT_FOUND_NODE;
    extern const int NO_ACTIVE_REPLICAS;
    extern const int LEADERSHIP_CHANGED;
    extern const int TABLE_IS_READ_ONLY;
    extern const int TABLE_WAS_NOT_DROPPED;
    extern const int PARTITION_ALREADY_EXISTS;
    extern const int TOO_MUCH_RETRIES_TO_FETCH_PARTS;
    extern const int RECEIVED_ERROR_FROM_REMOTE_IO_SERVER;
    extern const int PARTITION_DOESNT_EXIST;
    extern const int CHECKSUM_DOESNT_MATCH;
    extern const int BAD_SIZE_OF_FILE_IN_DATA_PART;
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    extern const int UNEXPECTED_FILE_IN_DATA_PART;
    extern const int NO_FILE_IN_DATA_PART;
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    extern const int UNFINISHED;
    extern const int METADATA_MISMATCH;
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    extern const int RECEIVED_ERROR_TOO_MANY_REQUESTS;
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    extern const int TOO_MUCH_FETCHES;
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    extern const int BAD_DATA_PART_NAME;
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}

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static const auto QUEUE_UPDATE_ERROR_SLEEP_MS     = 1 * 1000;
static const auto MERGE_SELECTING_SLEEP_MS        = 5 * 1000;
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/** There are three places for each part, where it should be
  * 1. In the RAM, MergeTreeData::data_parts, all_data_parts.
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  * 2. In the filesystem (FS), the directory with the data of the table.
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  * 3. in ZooKeeper (ZK).
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  *
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  * When adding a part, it must be added immediately to these three places.
  * This is done like this
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  * - [FS] first write the part into a temporary directory on the filesystem;
  * - [FS] rename the temporary part to the result on the filesystem;
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  * - [RAM] immediately afterwards add it to the `data_parts`, and remove from `data_parts` any parts covered by this one;
  * - [RAM] also set the `Transaction` object, which in case of an exception (in next point),
  *   rolls back the changes in `data_parts` (from the previous point) back;
  * - [ZK] then send a transaction (multi) to add a part to ZooKeeper (and some more actions);
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  * - [FS, ZK] by the way, removing the covered (old) parts from filesystem, from ZooKeeper and from `all_data_parts`
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  *   is delayed, after a few minutes.
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  *
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  * There is no atomicity here.
  * It could be possible to achieve atomicity using undo/redo logs and a flag in `DataPart` when it is completely ready.
  * But it would be inconvenient - I would have to write undo/redo logs for each `Part` in ZK, and this would increase already large number of interactions.
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  *
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  * Instead, we are forced to work in a situation where at any time
  *  (from another thread, or after server restart), there may be an unfinished transaction.
  *  (note - for this the part should be in RAM)
  * From these cases the most frequent one is when the part is already in the data_parts, but it's not yet in ZooKeeper.
  * This case must be distinguished from the case where such a situation is achieved due to some kind of damage to the state.
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  *
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  * Do this with the threshold for the time.
  * If the part is young enough, its lack in ZooKeeper will be perceived optimistically - as if it just did not have time to be added there
  *  - as if the transaction has not yet been executed, but will soon be executed.
  * And if the part is old, its absence in ZooKeeper will be perceived as an unfinished transaction that needs to be rolled back.
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  *
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  * PS. Perhaps it would be better to add a flag to the DataPart that a part is inserted into ZK.
  * But here it's too easy to get confused with the consistency of this flag.
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  */
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extern const int MAX_AGE_OF_LOCAL_PART_THAT_WASNT_ADDED_TO_ZOOKEEPER = 5 * 60;
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void StorageReplicatedMergeTree::setZooKeeper(zkutil::ZooKeeperPtr zookeeper)
{
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    std::lock_guard<std::mutex> lock(current_zookeeper_mutex);
    current_zookeeper = zookeeper;
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}

zkutil::ZooKeeperPtr StorageReplicatedMergeTree::tryGetZooKeeper()
{
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    std::lock_guard<std::mutex> lock(current_zookeeper_mutex);
    return current_zookeeper;
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}

zkutil::ZooKeeperPtr StorageReplicatedMergeTree::getZooKeeper()
{
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    auto res = tryGetZooKeeper();
    if (!res)
        throw Exception("Cannot get ZooKeeper", ErrorCodes::NO_ZOOKEEPER);
    return res;
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}


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StorageReplicatedMergeTree::StorageReplicatedMergeTree(
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    const String & zookeeper_path_,
    const String & replica_name_,
    bool attach,
    const String & path_, const String & database_name_, const String & name_,
    NamesAndTypesListPtr columns_,
    const NamesAndTypesList & materialized_columns_,
    const NamesAndTypesList & alias_columns_,
    const ColumnDefaults & column_defaults_,
    Context & context_,
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    const ASTPtr & primary_expr_ast_,
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    const String & date_column_name,
    const ASTPtr & partition_expr_ast_,
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    const ASTPtr & sampling_expression_,
    const MergeTreeData::MergingParams & merging_params_,
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    const MergeTreeSettings & settings_,
    bool has_force_restore_data_flag)
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    : IStorage{materialized_columns_, alias_columns_, column_defaults_}, context(context_),
    current_zookeeper(context.getZooKeeper()), database_name(database_name_),
    table_name(name_), full_path(path_ + escapeForFileName(table_name) + '/'),
    zookeeper_path(context.getMacros().expand(zookeeper_path_)),
    replica_name(context.getMacros().expand(replica_name_)),
    data(database_name, table_name,
        full_path, columns_,
        materialized_columns_, alias_columns_, column_defaults_,
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        context_, primary_expr_ast_, date_column_name, partition_expr_ast_,
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        sampling_expression_, merging_params_,
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        settings_, database_name_ + "." + table_name, true, attach,
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        [this] (const std::string & name) { enqueuePartForCheck(name); },
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        [this] () { clearOldPartsAndRemoveFromZK(); }),
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    reader(data), writer(data), merger(data, context.getBackgroundPool()), queue(data.format_version),
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    fetcher(data),
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    shutdown_event(false), part_check_thread(*this),
    log(&Logger::get(database_name + "." + table_name + " (StorageReplicatedMergeTree)"))
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{
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    initMergeSelectSession();
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    merge_selecting_handle = context_.getSchedulePool().addTask("StorageReplicatedMergeTree", [this] { mergeSelectingThread(); });

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    if (!zookeeper_path.empty() && zookeeper_path.back() == '/')
        zookeeper_path.resize(zookeeper_path.size() - 1);
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    /// If zookeeper chroot prefix is used, path should starts with '/', because chroot concatenates without it.
    if (!zookeeper_path.empty() && zookeeper_path.front() != '/')
        zookeeper_path = "/" + zookeeper_path;
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    replica_path = zookeeper_path + "/replicas/" + replica_name;

    bool skip_sanity_checks = false;

    try
    {
        if (current_zookeeper && current_zookeeper->exists(replica_path + "/flags/force_restore_data"))
        {
            skip_sanity_checks = true;
            current_zookeeper->remove(replica_path + "/flags/force_restore_data");

            LOG_WARNING(log, "Skipping the limits on severity of changes to data parts and columns (flag "
                << replica_path << "/flags/force_restore_data).");
        }
        else if (has_force_restore_data_flag)
        {
            skip_sanity_checks = true;

            LOG_WARNING(log, "Skipping the limits on severity of changes to data parts and columns (flag force_restore_data).");
        }
    }
    catch (const zkutil::KeeperException & e)
    {
        /// Failed to connect to ZK (this became known when trying to perform the first operation).
        if (e.code == ZCONNECTIONLOSS)
        {
            tryLogCurrentException(__PRETTY_FUNCTION__);
            current_zookeeper = nullptr;
        }
        else
            throw;
    }

    data.loadDataParts(skip_sanity_checks);

    if (!current_zookeeper)
    {
        if (!attach)
            throw Exception("Can't create replicated table without ZooKeeper", ErrorCodes::NO_ZOOKEEPER);

        /// Do not activate the replica. It will be readonly.
        LOG_ERROR(log, "No ZooKeeper: table will be in readonly mode.");
        is_readonly = true;
        return;
    }

    if (!attach)
    {
        if (!data.getDataParts().empty())
            throw Exception("Data directory for table already containing data parts - probably it was unclean DROP table or manual intervention. You must either clear directory by hand or use ATTACH TABLE instead of CREATE TABLE if you need to use that parts.", ErrorCodes::INCORRECT_DATA);

        createTableIfNotExists();

        checkTableStructure(false, false);
        createReplica();
    }
    else
    {
        checkTableStructure(skip_sanity_checks, true);
        checkParts(skip_sanity_checks);
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        /// Temporary directories contain unfinalized results of Merges or Fetches (after forced restart)
        ///  and don't allow to reinitialize them, so delete each of them immediately
        data.clearOldTemporaryDirectories(0);
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    }

    createNewZooKeeperNodes();
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}

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void StorageReplicatedMergeTree::createNewZooKeeperNodes()
{
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    auto zookeeper = getZooKeeper();
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    /// Working with quorum.
    zookeeper->createIfNotExists(zookeeper_path + "/quorum", "");
    zookeeper->createIfNotExists(zookeeper_path + "/quorum/last_part", "");
    zookeeper->createIfNotExists(zookeeper_path + "/quorum/failed_parts", "");
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    /// Tracking lag of replicas.
    zookeeper->createIfNotExists(replica_path + "/min_unprocessed_insert_time", "");
    zookeeper->createIfNotExists(replica_path + "/max_processed_insert_time", "");
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}


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StoragePtr StorageReplicatedMergeTree::create(
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    const String & zookeeper_path_,
    const String & replica_name_,
    bool attach,
    const String & path_, const String & database_name_, const String & name_,
    NamesAndTypesListPtr columns_,
    const NamesAndTypesList & materialized_columns_,
    const NamesAndTypesList & alias_columns_,
    const ColumnDefaults & column_defaults_,
    Context & context_,
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    const ASTPtr & primary_expr_ast_,
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    const String & date_column_name,
    const ASTPtr & partition_expr_ast_,
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    const ASTPtr & sampling_expression_,
    const MergeTreeData::MergingParams & merging_params_,
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    const MergeTreeSettings & settings_,
    bool has_force_restore_data_flag_)
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{
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    auto res = ext::shared_ptr_helper<StorageReplicatedMergeTree>::create(
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        zookeeper_path_, replica_name_, attach,
        path_, database_name_, name_,
        columns_, materialized_columns_, alias_columns_, column_defaults_,
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        context_, primary_expr_ast_, date_column_name, partition_expr_ast_,
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        sampling_expression_, merging_params_, settings_,
        has_force_restore_data_flag_);
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    StoragePtr res_ptr = res;

    auto get_endpoint_holder = [&res](InterserverIOEndpointPtr endpoint)
    {
        return std::make_shared<InterserverIOEndpointHolder>(
            endpoint->getId(res->replica_path),
            endpoint,
            res->context.getInterserverIOHandler());
    };

    if (res->tryGetZooKeeper())
    {
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        InterserverIOEndpointPtr endpoint = std::make_shared<DataPartsExchange::Service>(res->data, res_ptr);
        res->data_parts_exchange_endpoint_holder = get_endpoint_holder(endpoint);
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    }

    return res;
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}

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static String formattedAST(const ASTPtr & ast)
{
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    if (!ast)
        return "";
    std::stringstream ss;
    formatAST(*ast, ss, 0, false, true);
    return ss.str();
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}
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namespace
{
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    /** The basic parameters of table engine for saving in ZooKeeper.
      * Lets you verify that they match local ones.
      */
    struct TableMetadata
    {
        const MergeTreeData & data;

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        explicit TableMetadata(const MergeTreeData & data_)
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            : data(data_) {}

        void write(WriteBuffer & out) const
        {
            out << "metadata format version: 1" << "\n"
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                << "date column: ";

            if (data.format_version < MERGE_TREE_DATA_MIN_FORMAT_VERSION_WITH_CUSTOM_PARTITIONING)
                out << data.minmax_idx_columns[data.minmax_idx_date_column_pos] << "\n";
            else
                out << "\n";

            out << "sampling expression: " << formattedAST(data.sampling_expression) << "\n"
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                << "index granularity: " << data.index_granularity << "\n"
                << "mode: " << static_cast<int>(data.merging_params.mode) << "\n"
                << "sign column: " << data.merging_params.sign_column << "\n"
                << "primary key: " << formattedAST(data.primary_expr_ast) << "\n";
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            if (data.format_version >= MERGE_TREE_DATA_MIN_FORMAT_VERSION_WITH_CUSTOM_PARTITIONING)
            {
                out << "data format version: " << data.format_version.toUnderType() << "\n";
                out << "partition key: " << formattedAST(data.partition_expr_ast) << "\n";
            }
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        }

        String toString() const
        {
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            WriteBufferFromOwnString out;
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            write(out);
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            return out.str();
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        }

        void check(ReadBuffer & in) const
        {
            /// TODO Can be made less cumbersome.

            in >> "metadata format version: 1";

            in >> "\ndate column: ";
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            String read_date_column;
            in >> read_date_column;

            if (data.format_version < MERGE_TREE_DATA_MIN_FORMAT_VERSION_WITH_CUSTOM_PARTITIONING)
            {
                const String & local_date_column = data.minmax_idx_columns[data.minmax_idx_date_column_pos];
                if (local_date_column != read_date_column)
                    throw Exception("Existing table metadata in ZooKeeper differs in date index column."
                        " Stored in ZooKeeper: " + read_date_column + ", local: " + local_date_column,
                        ErrorCodes::METADATA_MISMATCH);
            }
            else if (!read_date_column.empty())
                throw Exception(
                    "Existing table metadata in ZooKeeper differs in date index column."
                    " Stored in ZooKeeper: " + read_date_column + ", local is custom-partitioned.",
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                    ErrorCodes::METADATA_MISMATCH);

            in >> "\nsampling expression: ";
            String read_sample_expression;
            String local_sample_expression = formattedAST(data.sampling_expression);
            in >> read_sample_expression;

            if (read_sample_expression != local_sample_expression)
                throw Exception("Existing table metadata in ZooKeeper differs in sample expression."
                    " Stored in ZooKeeper: " + read_sample_expression + ", local: " + local_sample_expression,
                    ErrorCodes::METADATA_MISMATCH);

            in >> "\nindex granularity: ";
            size_t read_index_granularity = 0;
            in >> read_index_granularity;

            if (read_index_granularity != data.index_granularity)
                throw Exception("Existing table metadata in ZooKeeper differs in index granularity."
                    " Stored in ZooKeeper: " + DB::toString(read_index_granularity) + ", local: " + DB::toString(data.index_granularity),
                    ErrorCodes::METADATA_MISMATCH);

            in >> "\nmode: ";
            int read_mode = 0;
            in >> read_mode;

            if (read_mode != static_cast<int>(data.merging_params.mode))
                throw Exception("Existing table metadata in ZooKeeper differs in mode of merge operation."
                    " Stored in ZooKeeper: " + DB::toString(read_mode) + ", local: "
                    + DB::toString(static_cast<int>(data.merging_params.mode)),
                    ErrorCodes::METADATA_MISMATCH);

            in >> "\nsign column: ";
            String read_sign_column;
            in >> read_sign_column;

            if (read_sign_column != data.merging_params.sign_column)
                throw Exception("Existing table metadata in ZooKeeper differs in sign column."
                    " Stored in ZooKeeper: " + read_sign_column + ", local: " + data.merging_params.sign_column,
                    ErrorCodes::METADATA_MISMATCH);

            in >> "\nprimary key: ";
            String read_primary_key;
            String local_primary_key = formattedAST(data.primary_expr_ast);
            in >> read_primary_key;

            /// NOTE: You can make a less strict check of match expressions so that tables do not break from small changes
            ///    in formatAST code.
            if (read_primary_key != local_primary_key)
                throw Exception("Existing table metadata in ZooKeeper differs in primary key."
                    " Stored in ZooKeeper: " + read_primary_key + ", local: " + local_primary_key,
                    ErrorCodes::METADATA_MISMATCH);

            in >> "\n";
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            MergeTreeDataFormatVersion read_data_format_version;
            if (in.eof())
                read_data_format_version = 0;
            else
            {
                in >> "data format version: ";
                in >> read_data_format_version.toUnderType();
            }

            if (read_data_format_version != data.format_version)
                throw Exception("Existing table metadata in ZooKeeper differs in data format version."
                    " Stored in ZooKeeper: " + DB::toString(read_data_format_version.toUnderType()) +
                    ", local: " + DB::toString(data.format_version.toUnderType()),
                    ErrorCodes::METADATA_MISMATCH);

            if (data.format_version >= MERGE_TREE_DATA_MIN_FORMAT_VERSION_WITH_CUSTOM_PARTITIONING)
            {
                in >> "\npartition key: ";
                String read_partition_key;
                String local_partition_key = formattedAST(data.partition_expr_ast);
                in >> read_partition_key;

                if (read_partition_key != local_partition_key)
                    throw Exception(
                        "Existing table metadata in ZooKeeper differs in partition key expression."
                        " Stored in ZooKeeper: " + read_partition_key + ", local: " + local_partition_key,
                        ErrorCodes::METADATA_MISMATCH);

                in >> "\n";
            }

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            assertEOF(in);
        }

        void check(const String & s) const
        {
            ReadBufferFromString in(s);
            check(in);
        }
    };
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}


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void StorageReplicatedMergeTree::createTableIfNotExists()
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{
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    auto zookeeper = getZooKeeper();

    if (zookeeper->exists(zookeeper_path))
        return;

    LOG_DEBUG(log, "Creating table " << zookeeper_path);

    zookeeper->createAncestors(zookeeper_path);

    /// We write metadata of table so that the replicas can check table parameters with them.
    String metadata = TableMetadata(data).toString();

    auto acl = zookeeper->getDefaultACL();

    zkutil::Ops ops;
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path, "",
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/metadata", metadata,
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/columns", ColumnsDescription<false>{
        data.getColumnsListNonMaterialized(), data.materialized_columns,
        data.alias_columns, data.column_defaults}.toString(),
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/log", "",
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/blocks", "",
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/block_numbers", "",
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/nonincrement_block_numbers", "",
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/leader_election", "",
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/temp", "",
        acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(zookeeper_path + "/replicas", "",
        acl, zkutil::CreateMode::Persistent));

    auto code = zookeeper->tryMulti(ops);
    if (code != ZOK && code != ZNODEEXISTS)
        throw zkutil::KeeperException(code);
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}
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/** Verify that list of columns and table settings match those specified in ZK (/ metadata).
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    * If not, throw an exception.
    */
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void StorageReplicatedMergeTree::checkTableStructure(bool skip_sanity_checks, bool allow_alter)
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{
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    auto zookeeper = getZooKeeper();

    String metadata_str = zookeeper->get(zookeeper_path + "/metadata");
    TableMetadata(data).check(metadata_str);

    zkutil::Stat stat;
    auto columns_desc = ColumnsDescription<true>::parse(zookeeper->get(zookeeper_path + "/columns", &stat));

    auto & columns = columns_desc.columns;
    auto & materialized_columns = columns_desc.materialized;
    auto & alias_columns = columns_desc.alias;
    auto & column_defaults = columns_desc.defaults;
    columns_version = stat.version;

    if (columns != data.getColumnsListNonMaterialized() ||
        materialized_columns != data.materialized_columns ||
        alias_columns != data.alias_columns ||
        column_defaults != data.column_defaults)
    {
        if (allow_alter &&
            (skip_sanity_checks ||
             data.getColumnsListNonMaterialized().sizeOfDifference(columns) +
             data.materialized_columns.sizeOfDifference(materialized_columns) <= 2))
        {
            LOG_WARNING(log, "Table structure in ZooKeeper is a little different from local table structure. Assuming ALTER.");

            /// Without any locks, because table has not been created yet.
            context.getDatabase(database_name)->alterTable(
                context, table_name,
                columns, materialized_columns, alias_columns, column_defaults, {});

            data.setColumnsList(columns);
            data.materialized_columns = std::move(materialized_columns);
            data.alias_columns = std::move(alias_columns);
            data.column_defaults = std::move(column_defaults);
        }
        else
        {
            throw Exception("Table structure in ZooKeeper is too much different from local table structure.",
                            ErrorCodes::INCOMPATIBLE_COLUMNS);
        }
    }
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}
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/** If necessary, restore a part, replica itself adds a record for its receipt.
  * What time should I put for this entry in the queue? Time is taken into account when calculating lag of replica.
  * For these purposes, it makes sense to use creation time of missing part
  *  (that is, in calculating lag, it will be taken into account how old is the part we need to recover).
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  */
static time_t tryGetPartCreateTime(zkutil::ZooKeeperPtr & zookeeper, const String & replica_path, const String & part_name)
{
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    time_t res = 0;
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    /// We get creation time of part, if it still exists (was not merged, for example).
    zkutil::Stat stat;
    String unused;
    if (zookeeper->tryGet(replica_path + "/parts/" + part_name, unused, &stat))
        res = stat.ctime / 1000;
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    return res;
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}


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void StorageReplicatedMergeTree::createReplica()
{
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    auto zookeeper = getZooKeeper();

    LOG_DEBUG(log, "Creating replica " << replica_path);

    /// Create an empty replica. We'll create `columns` node at the end - we'll use it as a sign that replica creation is complete.
    auto acl = zookeeper->getDefaultACL();
    zkutil::Ops ops;
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(replica_path, "", acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(replica_path + "/host", "", acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(replica_path + "/log_pointer", "", acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(replica_path + "/queue", "", acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(replica_path + "/parts", "", acl, zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(replica_path + "/flags", "", acl, zkutil::CreateMode::Persistent));

    try
    {
        zookeeper->multi(ops);
    }
    catch (const zkutil::KeeperException & e)
    {
        if (e.code == ZNODEEXISTS)
            throw Exception("Replica " + replica_path + " already exists.", ErrorCodes::REPLICA_IS_ALREADY_EXIST);

        throw;
    }

    /** You need to change the data of nodes/replicas to anything, so that the thread that removes old entries in the log,
      *  stumbled over this change and does not delete the entries we have not yet read.
      */
    zookeeper->set(zookeeper_path + "/replicas", "last added replica: " + replica_name);

    Strings replicas = zookeeper->getChildren(zookeeper_path + "/replicas");

    /** "Reference" replica, from which we take information about the set of parts, queue and pointer to the log.
      * Take random replica created earlier than this.
      */
    String source_replica;

    Stat stat;
    zookeeper->exists(replica_path, &stat);
    auto my_create_time = stat.czxid;

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    std::shuffle(replicas.begin(), replicas.end(), rng);
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    for (const String & replica : replicas)
    {
        if (!zookeeper->exists(zookeeper_path + "/replicas/" + replica, &stat))
            throw Exception("Replica " + zookeeper_path + "/replicas/" + replica + " was removed from right under our feet.",
                            ErrorCodes::NO_SUCH_REPLICA);
        if (stat.czxid < my_create_time)
        {
            source_replica = replica;
            break;
        }
    }

    if (source_replica.empty())
    {
        LOG_INFO(log, "This is the first replica");
    }
    else
    {
        LOG_INFO(log, "Will mimic " << source_replica);

        String source_path = zookeeper_path + "/replicas/" + source_replica;

        /** If the reference/master replica is not yet fully created, let's wait.
          * NOTE: If something went wrong while creating it, we can hang around forever.
          *    You can create an ephemeral node at the time of creation to make sure that the replica is created, and not abandoned.
          *    The same can be done for the table. You can automatically delete a replica/table node,
          *     if you see that it was not created up to the end, and the one who created it died.
          */
        while (!zookeeper->exists(source_path + "/columns"))
        {
            LOG_INFO(log, "Waiting for replica " << source_path << " to be fully created");

            zkutil::EventPtr event = std::make_shared<Poco::Event>();
            if (zookeeper->exists(source_path + "/columns", nullptr, event))
            {
                LOG_WARNING(log, "Oops, a watch has leaked");
                break;
            }

            event->wait();
        }

        /// The order of the following three actions is important. Entries in the log can be duplicated, but they can not be lost.

        /// Copy reference to the log from `reference/master` replica.
        zookeeper->set(replica_path + "/log_pointer", zookeeper->get(source_path + "/log_pointer"));

        /// Let's remember the queue of the reference/master replica.
        Strings source_queue_names = zookeeper->getChildren(source_path + "/queue");
        std::sort(source_queue_names.begin(), source_queue_names.end());
        Strings source_queue;
        for (const String & entry_name : source_queue_names)
        {
            String entry;
            if (!zookeeper->tryGet(source_path + "/queue/" + entry_name, entry))
                continue;
            source_queue.push_back(entry);
        }

        /// Add to the queue jobs to receive all the active parts that the reference/master replica has.
        Strings parts = zookeeper->getChildren(source_path + "/parts");
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        ActiveDataPartSet active_parts_set(data.format_version, parts);
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        Strings active_parts = active_parts_set.getParts();
        for (const String & name : active_parts)
        {
            LogEntry log_entry;
            log_entry.type = LogEntry::GET_PART;
            log_entry.source_replica = "";
            log_entry.new_part_name = name;
            log_entry.create_time = tryGetPartCreateTime(zookeeper, source_path, name);

            zookeeper->create(replica_path + "/queue/queue-", log_entry.toString(), zkutil::CreateMode::PersistentSequential);
        }
        LOG_DEBUG(log, "Queued " << active_parts.size() << " parts to be fetched");

        /// Add content of the reference/master replica queue to the queue.
        for (const String & entry : source_queue)
        {
            zookeeper->create(replica_path + "/queue/queue-", entry, zkutil::CreateMode::PersistentSequential);
        }

        /// It will then be loaded into the queue variable in `queue.initialize` method.

        LOG_DEBUG(log, "Copied " << source_queue.size() << " queue entries");
    }

    zookeeper->create(replica_path + "/columns", ColumnsDescription<false>{
            data.getColumnsListNonMaterialized(),
            data.materialized_columns,
            data.alias_columns,
            data.column_defaults
        }.toString(), zkutil::CreateMode::Persistent);
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}
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void StorageReplicatedMergeTree::checkParts(bool skip_sanity_checks)
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{
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    auto zookeeper = getZooKeeper();

    Strings expected_parts_vec = zookeeper->getChildren(replica_path + "/parts");

    /// Parts in ZK.
    NameSet expected_parts(expected_parts_vec.begin(), expected_parts_vec.end());

    MergeTreeData::DataParts parts = data.getAllDataParts();

    /// Local parts that are not in ZK.
    MergeTreeData::DataParts unexpected_parts;

    for (const auto & part : parts)
    {
        if (expected_parts.count(part->name))
            expected_parts.erase(part->name);
        else
            unexpected_parts.insert(part);
    }

    /// Which local parts to added into ZK.
    MergeTreeData::DataPartsVector parts_to_add;

    /// Which parts should be taken from other replicas.
    Strings parts_to_fetch;

    for (const String & missing_name : expected_parts)
    {
        /// If locally some part is missing, but there is a part covering it, you can replace it in ZK with the covering one.
        auto containing = data.getActiveContainingPart(missing_name);
        if (containing)
        {
            LOG_ERROR(log, "Ignoring missing local part " << missing_name << " because part " << containing->name << " exists");
            if (unexpected_parts.count(containing))
            {
                parts_to_add.push_back(containing);
                unexpected_parts.erase(containing);
            }
        }
        else
        {
            LOG_ERROR(log, "Fetching missing part " << missing_name);
            parts_to_fetch.push_back(missing_name);
        }
    }

    for (const String & name : parts_to_fetch)
        expected_parts.erase(name);

    /** To check the adequacy, for the parts that are in the FS, but not in ZK, we will only consider not the most recent parts.
      * Because unexpected new parts usually arise only because they did not have time to enroll in ZK with a rough restart of the server.
      * It also occurs from deduplicated parts that did not have time to retire.
      */
    size_t unexpected_parts_nonnew = 0;
    for (const auto & part : unexpected_parts)
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        if (part->info.level > 0)
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            ++unexpected_parts_nonnew;

    String sanity_report = "There are "
            + toString(unexpected_parts.size()) + " unexpected parts ("
            + toString(unexpected_parts_nonnew) + " of them is not just-written), "
            + toString(parts_to_add.size()) + " unexpectedly merged parts, "
            + toString(expected_parts.size()) + " missing obsolete parts, "
            + toString(parts_to_fetch.size()) + " missing parts";

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    /** We can automatically synchronize data,
      *  if the ratio of the total number of errors to the total number of parts (minimum - on the local filesystem or in ZK)
      *  is no more than some threshold (for example 50%).
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      *
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      * A large ratio of mismatches in the data on the filesystem and the expected data
      *  may indicate a configuration error (the server accidentally connected as a replica not from right shard).
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      * In this case, the protection mechanism does not allow the server to start.
      */

    size_t min_parts_local_or_expected = std::min(expected_parts_vec.size(), parts.size());
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    size_t total_difference = parts_to_add.size() + unexpected_parts_nonnew + parts_to_fetch.size();
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    bool insane = total_difference > min_parts_local_or_expected * data.settings.replicated_max_ratio_of_wrong_parts;
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    if (insane && !skip_sanity_checks)
        throw Exception("The local set of parts of table " + getTableName() + " doesn't look like the set of parts in ZooKeeper. "
            + sanity_report, ErrorCodes::TOO_MANY_UNEXPECTED_DATA_PARTS);

    if (total_difference > 0)
        LOG_WARNING(log, sanity_report);

    /// Add information to the ZK about the parts that cover the missing parts.
    for (const MergeTreeData::DataPartPtr & part : parts_to_add)
    {
        LOG_ERROR(log, "Adding unexpected local part to ZooKeeper: " << part->name);

        zkutil::Ops ops;
        checkPartAndAddToZooKeeper(part, ops);
        zookeeper->multi(ops);
    }

    /// Remove from ZK information about the parts covered by the newly added ones.
    {
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        for (const String & name : expected_parts)
            LOG_ERROR(log, "Removing unexpectedly merged local part from ZooKeeper: " << name);
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        removePartsFromZooKeeper(zookeeper, Strings(expected_parts.begin(), expected_parts.end()));
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    }

    /// Add to the queue job to pick up the missing parts from other replicas and remove from ZK the information that we have them.
    for (const String & name : parts_to_fetch)
    {
        LOG_ERROR(log, "Removing missing part from ZooKeeper and queueing a fetch: " << name);

        LogEntry log_entry;
        log_entry.type = LogEntry::GET_PART;
        log_entry.source_replica = "";
        log_entry.new_part_name = name;
        log_entry.create_time = tryGetPartCreateTime(zookeeper, replica_path, name);

        /// We assume that this occurs before the queue is loaded (queue.initialize).
        zkutil::Ops ops;
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        removePartFromZooKeeper(name, ops);
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        ops.emplace_back(std::make_unique<zkutil::Op::Create>(
            replica_path + "/queue/queue-", log_entry.toString(), zookeeper->getDefaultACL(), zkutil::CreateMode::PersistentSequential));
        zookeeper->multi(ops);
    }

    /// Remove extra local parts.
    for (const MergeTreeData::DataPartPtr & part : unexpected_parts)
    {
        LOG_ERROR(log, "Renaming unexpected part " << part->name << " to ignored_" + part->name);
        data.renameAndDetachPart(part, "ignored_", true);
    }
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}
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894
void StorageReplicatedMergeTree::checkPartAndAddToZooKeeper(
895
    const MergeTreeData::DataPartPtr & part, zkutil::Ops & ops, String part_name)
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Michael Kolupaev 已提交
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{
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    auto zookeeper = getZooKeeper();

    if (part_name.empty())
        part_name = part->name;

    check(part->columns);
    int expected_columns_version = columns_version;

    Strings replicas = zookeeper->getChildren(zookeeper_path + "/replicas");
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    std::shuffle(replicas.begin(), replicas.end(), rng);
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    String expected_columns_str = part->columns.toString();

    for (const String & replica : replicas)
    {
        zkutil::Stat stat_before, stat_after;
        String columns_str;
        if (!zookeeper->tryGet(zookeeper_path + "/replicas/" + replica + "/parts/" + part_name + "/columns", columns_str, &stat_before))
            continue;
        if (columns_str != expected_columns_str)
        {
            LOG_INFO(log, "Not checking checksums of part " << part_name << " with replica " << replica
                << " because columns are different");
            continue;
        }
        String checksums_str;
        /// Let's check that the node's version with the columns did not change while we were reading the checksums.
        /// This ensures that the columns and the checksum refer to the same data.
        if (!zookeeper->tryGet(zookeeper_path + "/replicas/" + replica + "/parts/" + part_name + "/checksums", checksums_str) ||
            !zookeeper->exists(zookeeper_path + "/replicas/" + replica + "/parts/" + part_name + "/columns", &stat_after) ||
            stat_before.version != stat_after.version)
        {
            LOG_INFO(log, "Not checking checksums of part " << part_name << " with replica " << replica
                << " because part changed while we were reading its checksums");
            continue;
        }

        auto checksums = MergeTreeData::DataPart::Checksums::parse(checksums_str);
        checksums.checkEqual(part->checksums, true);
    }

    if (zookeeper->exists(replica_path + "/parts/" + part_name))
    {
        LOG_ERROR(log, "checkPartAndAddToZooKeeper: node " << replica_path + "/parts/" + part_name << " already exists");
        return;
    }

    auto acl = zookeeper->getDefaultACL();

    ops.emplace_back(std::make_unique<zkutil::Op::Check>(
        zookeeper_path + "/columns",
        expected_columns_version));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(
        replica_path + "/parts/" + part_name,
        "",
        acl,
        zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(
        replica_path + "/parts/" + part_name + "/columns",
        part->columns.toString(),
        acl,
        zkutil::CreateMode::Persistent));
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(
        replica_path + "/parts/" + part_name + "/checksums",
        part->checksums.toString(),
        acl,
        zkutil::CreateMode::Persistent));
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}

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void StorageReplicatedMergeTree::pullLogsToQueue(BackgroundSchedulePool::TaskHandle next_update_event)
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Michael Kolupaev 已提交
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{
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    if (queue.pullLogsToQueue(getZooKeeper(), next_update_event))
    {
        if (queue_task_handle)
            queue_task_handle->wake();
    }
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}

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bool StorageReplicatedMergeTree::executeLogEntry(const LogEntry & entry)
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{
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    if (entry.type == LogEntry::ATTACH_PART)
    {
        LOG_ERROR(log, "Log entries of type ATTACH_PART are obsolete. Skipping.");
        return true;
    }

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    if (entry.type == LogEntry::DROP_RANGE)
    {
        executeDropRange(entry);
        return true;
    }

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    if (entry.type == LogEntry::CLEAR_COLUMN)
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    {
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        executeClearColumnInPartition(entry);
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        return true;
    }

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    if (entry.type == LogEntry::GET_PART ||
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        entry.type == LogEntry::MERGE_PARTS)
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    {
        /// If we already have this part or a part covering it, we do not need to do anything.
        MergeTreeData::DataPartPtr containing_part = data.getActiveContainingPart(entry.new_part_name);

        /// Even if the part is locally, it (in exceptional cases) may not be in ZooKeeper. Let's check that it is there.
        if (containing_part && getZooKeeper()->exists(replica_path + "/parts/" + containing_part->name))
        {
            if (!(entry.type == LogEntry::GET_PART && entry.source_replica == replica_name))
                LOG_DEBUG(log, "Skipping action for part " << entry.new_part_name << " - part already exists.");
            return true;
        }
    }

    if (entry.type == LogEntry::GET_PART && entry.source_replica == replica_name)
        LOG_WARNING(log, "Part " << entry.new_part_name << " from own log doesn't exist.");

    /// Perhaps we don't need this part, because during write with quorum, the quorum has failed (see below about `/quorum/failed_parts`).
    if (entry.quorum && getZooKeeper()->exists(zookeeper_path + "/quorum/failed_parts/" + entry.new_part_name))
    {
        LOG_DEBUG(log, "Skipping action for part " << entry.new_part_name << " because quorum for that part was failed.");
        return true;    /// NOTE Deletion from `virtual_parts` is not done, but it is only necessary for merge.
    }

    bool do_fetch = false;

    if (entry.type == LogEntry::GET_PART)
    {
        do_fetch = true;
    }
    else if (entry.type == LogEntry::MERGE_PARTS)
    {
        std::stringstream log_message;
        log_message << "Executing log entry to merge parts ";
        for (auto i : ext::range(0, entry.parts_to_merge.size()))
            log_message << (i != 0 ? ", " : "") << entry.parts_to_merge[i];
        log_message << " to " << entry.new_part_name;

        LOG_TRACE(log, log_message.rdbuf());

        MergeTreeData::DataPartsVector parts;
        bool have_all_parts = true;
        for (const String & name : entry.parts_to_merge)
        {
            MergeTreeData::DataPartPtr part = data.getActiveContainingPart(name);
            if (!part)
            {
                have_all_parts = false;
                break;
            }
            if (part->name != name)
            {
                LOG_WARNING(log, "Part " << name << " is covered by " << part->name
                    << " but should be merged into " << entry.new_part_name << ". This shouldn't happen often.");
                have_all_parts = false;
                break;
            }
            parts.push_back(part);
        }

        if (!have_all_parts)
        {
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            /// If you do not have all the necessary parts, try to take some already merged part from someone.
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            do_fetch = true;
            LOG_DEBUG(log, "Don't have all parts for merge " << entry.new_part_name << "; will try to fetch it instead");
        }
1063
        else if (entry.create_time + data.settings.prefer_fetch_merged_part_time_threshold.totalSeconds() <= time(nullptr))
1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089
        {
            /// If entry is old enough, and have enough size, and part are exists in any replica,
            ///  then prefer fetching of merged part from replica.

            size_t sum_parts_size_in_bytes = 0;
            for (const auto & part : parts)
                sum_parts_size_in_bytes += part->size_in_bytes;

            if (sum_parts_size_in_bytes >= data.settings.prefer_fetch_merged_part_size_threshold)
            {
                String replica = findReplicaHavingPart(entry.new_part_name, true);    /// NOTE excessive ZK requests for same data later, may remove.
                if (!replica.empty())
                {
                    do_fetch = true;
                    LOG_DEBUG(log, "Preffering to fetch " << entry.new_part_name << " from replica");
                }
            }
        }

        if (!do_fetch)
        {
            size_t estimated_space_for_merge = MergeTreeDataMerger::estimateDiskSpaceForMerge(parts);

            /// Can throw an exception.
            DiskSpaceMonitor::ReservationPtr reserved_space = DiskSpaceMonitor::reserve(full_path, estimated_space_for_merge);

1090
            auto table_lock = lockStructure(false, __PRETTY_FUNCTION__);
1091 1092 1093 1094 1095 1096 1097 1098

            MergeList::EntryPtr merge_entry = context.getMergeList().insert(database_name, table_name, entry.new_part_name, parts);
            MergeTreeData::Transaction transaction;
            size_t aio_threshold = context.getSettings().min_bytes_to_use_direct_io;

            /// Logging
            Stopwatch stopwatch;

A
Alexey Zatelepin 已提交
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            MergeTreeDataMerger::FuturePart future_merged_part(parts);
            if (future_merged_part.name != entry.new_part_name)
1101
                throw Exception(
A
Alexey Zatelepin 已提交
1102 1103
                    "Future merged part name `" + future_merged_part.name +
                    "` differs from part name in log entry: `" + entry.new_part_name + "`",
1104 1105
                    ErrorCodes::BAD_DATA_PART_NAME);

1106
            auto part = merger.mergePartsToTemporaryPart(
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Alexey Zatelepin 已提交
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                future_merged_part, *merge_entry, aio_threshold, entry.create_time, reserved_space.get(), entry.deduplicate);
1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118

            zkutil::Ops ops;

            try
            {
                /// Checksums are checked here and `ops` is filled. In fact, the part is added to ZK just below, when executing `multi`.
                checkPartAndAddToZooKeeper(part, ops, entry.new_part_name);
            }
            catch (const Exception & e)
            {
                if (e.code() == ErrorCodes::CHECKSUM_DOESNT_MATCH
1119 1120 1121
                    || e.code() == ErrorCodes::BAD_SIZE_OF_FILE_IN_DATA_PART
                    || e.code() == ErrorCodes::NO_FILE_IN_DATA_PART
                    || e.code() == ErrorCodes::UNEXPECTED_FILE_IN_DATA_PART)
1122 1123 1124 1125
                {
                    do_fetch = true;
                    part->remove();

1126 1127
                    ProfileEvents::increment(ProfileEvents::DataAfterMergeDiffersFromReplica);

1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
                    LOG_ERROR(log, getCurrentExceptionMessage(false) << ". "
                        "Data after merge is not byte-identical to data on another replicas. "
                        "There could be several reasons: "
                        "1. Using newer version of compression library after server update. "
                        "2. Using another compression method. "
                        "3. Non-deterministic compression algorithm (highly unlikely). "
                        "4. Non-deterministic merge algorithm due to logical error in code. "
                        "5. Data corruption in memory due to bug in code. "
                        "6. Data corruption in memory due to hardware issue. "
                        "7. Manual modification of source data after server startup. "
                        "8. Manual modification of checksums stored in ZooKeeper. "
                        "We will download merged part from replica to force byte-identical result.");
                }
                else
                    throw;
            }

            if (!do_fetch)
            {
1147
                merger.renameMergedTemporaryPart(part, parts, &transaction);
1148 1149
                getZooKeeper()->multi(ops);        /// After long merge, get fresh ZK handle, because previous session may be expired.

1150
                if (auto part_log = context.getPartLog(database_name, table_name))
1151 1152
                {
                    PartLogElement elem;
1153
                    elem.event_time = time(nullptr);
1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187

                    elem.merged_from.reserve(parts.size());
                    for (const auto & part : parts)
                        elem.merged_from.push_back(part->name);
                    elem.event_type = PartLogElement::MERGE_PARTS;
                    elem.size_in_bytes = part->size_in_bytes;

                    elem.database_name = part->storage.getDatabaseName();
                    elem.table_name = part->storage.getTableName();
                    elem.part_name = part->name;

                    elem.duration_ms = stopwatch.elapsed() / 1000000;

                    part_log->add(elem);

                    elem.duration_ms = 0;
                    elem.event_type = PartLogElement::REMOVE_PART;
                    elem.merged_from = Strings();

                    for (const auto & part : parts)
                    {
                        elem.part_name = part->name;
                        elem.size_in_bytes = part->size_in_bytes;
                        part_log->add(elem);
                    }
                }

                /** Removing old chunks from ZK and from the disk is delayed - see ReplicatedMergeTreeCleanupThread, clearOldParts.
                  */

                /** With `ZCONNECTIONLOSS` or `ZOPERATIONTIMEOUT`, we can inadvertently roll back local changes to the parts.
                  * This is not a problem, because in this case the merge will remain in the queue, and we will try again.
                  */
                transaction.commit();
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Silviu Caragea 已提交
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                merge_selecting_handle->schedule();
1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200

                ProfileEvents::increment(ProfileEvents::ReplicatedPartMerges);
            }
        }
    }
    else
    {
        throw Exception("Unexpected log entry type: " + toString(static_cast<int>(entry.type)));
    }

    if (do_fetch)
    {
1201
        String replica = findReplicaHavingCoveringPart(entry, true);
1202 1203

        static std::atomic_uint total_fetches {0};
1204
        if (data.settings.replicated_max_parallel_fetches && total_fetches >= data.settings.replicated_max_parallel_fetches)
1205
        {
1206
            throw Exception("Too many total fetches from replicas, maximum: " + data.settings.replicated_max_parallel_fetches.toString(),
1207
                ErrorCodes::TOO_MUCH_FETCHES);
1208 1209 1210 1211 1212
        }

        ++total_fetches;
        SCOPE_EXIT({--total_fetches;});

1213
        if (data.settings.replicated_max_parallel_fetches_for_table && current_table_fetches >= data.settings.replicated_max_parallel_fetches_for_table)
1214
        {
1215
            throw Exception("Too many fetches from replicas for table, maximum: " + data.settings.replicated_max_parallel_fetches_for_table.toString(),
1216
                ErrorCodes::TOO_MUCH_FETCHES);
1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286
        }

        ++current_table_fetches;
        SCOPE_EXIT({--current_table_fetches;});

        try
        {
            if (replica.empty())
            {
                /** If a part is to be written with a quorum and the quorum is not reached yet,
                  *  then (due to the fact that a part is impossible to download right now),
                  *  the quorum entry should be considered unsuccessful.
                  * TODO Complex code, extract separately.
                  */
                if (entry.quorum)
                {
                    if (entry.type != LogEntry::GET_PART)
                        throw Exception("Logical error: log entry with quorum but type is not GET_PART", ErrorCodes::LOGICAL_ERROR);

                    LOG_DEBUG(log, "No active replica has part " << entry.new_part_name << " which needs to be written with quorum."
                        " Will try to mark that quorum as failed.");

                    /** Atomically:
                      * - if replicas do not become active;
                      * - if there is a `quorum` node with this part;
                      * - delete `quorum` node;
                      * - set `nonincrement_block_numbers` to resolve merges through the number of the lost part;
                      * - add a part to the list `quorum/failed_parts`;
                      * - if the part is not already removed from the list for deduplication `blocks/block_num`, then delete it;
                      *
                      * If something changes, then we will nothing - we'll get here again next time.
                      */

                    /** We collect the `host` node versions from the replicas.
                      * When the replica becomes active, it changes the value of host in the same transaction (with the creation of `is_active`).
                      * This will ensure that the replicas do not become active.
                      */

                    auto zookeeper = getZooKeeper();

                    Strings replicas = zookeeper->getChildren(zookeeper_path + "/replicas");

                    zkutil::Ops ops;

                    for (size_t i = 0, size = replicas.size(); i < size; ++i)
                    {
                        Stat stat;
                        String path = zookeeper_path + "/replicas/" + replicas[i] + "/host";
                        zookeeper->get(path, &stat);
                        ops.emplace_back(std::make_unique<zkutil::Op::Check>(path, stat.version));
                    }

                    /// We verify that while we were collecting versions, the replica with the necessary part did not come alive.
                    replica = findReplicaHavingPart(entry.new_part_name, true);

                    /// Also during this time a completely new replica could be created.
                    /// But if a part does not appear on the old, then it can not be on the new one either.

                    if (replica.empty())
                    {
                        Stat quorum_stat;
                        String quorum_path = zookeeper_path + "/quorum/status";
                        String quorum_str = zookeeper->get(quorum_path, &quorum_stat);
                        ReplicatedMergeTreeQuorumEntry quorum_entry;
                        quorum_entry.fromString(quorum_str);

                        if (quorum_entry.part_name == entry.new_part_name)
                        {
                            ops.emplace_back(std::make_unique<zkutil::Op::Remove>(quorum_path, quorum_stat.version));

1287
                            auto part_info = MergeTreePartInfo::fromPartName(entry.new_part_name, data.format_version);
1288

1289
                            if (part_info.min_block != part_info.max_block)
1290 1291 1292
                                throw Exception("Logical error: log entry with quorum for part covering more than one block number",
                                    ErrorCodes::LOGICAL_ERROR);

1293
                            zookeeper->createIfNotExists(zookeeper_path + "/nonincrement_block_numbers/" + part_info.partition_id, "");
1294 1295 1296 1297

                            auto acl = zookeeper->getDefaultACL();

                            ops.emplace_back(std::make_unique<zkutil::Op::Create>(
1298
                                zookeeper_path + "/nonincrement_block_numbers/" + part_info.partition_id + "/block-" + padIndex(part_info.min_block),
1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309
                                "",
                                acl,
                                zkutil::CreateMode::Persistent));

                            ops.emplace_back(std::make_unique<zkutil::Op::Create>(
                                zookeeper_path + "/quorum/failed_parts/" + entry.new_part_name,
                                "",
                                acl,
                                zkutil::CreateMode::Persistent));

                            /// Deleting from `blocks`.
1310
                            if (!entry.block_id.empty() && zookeeper->exists(zookeeper_path + "/blocks/" + entry.block_id))
1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345
                                ops.emplace_back(std::make_unique<zkutil::Op::Remove>(zookeeper_path + "/blocks/" + entry.block_id, -1));

                            auto code = zookeeper->tryMulti(ops);

                            if (code == ZOK)
                            {
                                LOG_DEBUG(log, "Marked quorum for part " << entry.new_part_name << " as failed.");
                                return true;    /// NOTE Deletion from `virtual_parts` is not done, but it is only necessary for merges.
                            }
                            else if (code == ZBADVERSION || code == ZNONODE || code == ZNODEEXISTS)
                            {
                                LOG_DEBUG(log, "State was changed or isn't expected when trying to mark quorum for part "
                                    << entry.new_part_name << " as failed. Code: " << zerror(code));
                            }
                            else
                                throw zkutil::KeeperException(code);
                        }
                        else
                        {
                            LOG_WARNING(log, "No active replica has part " << entry.new_part_name
                                << ", but that part needs quorum and /quorum/status contains entry about another part " << quorum_entry.part_name
                                << ". It means that part was successfully written to " << entry.quorum
                                << " replicas, but then all of them goes offline."
                                << " Or it is a bug.");
                        }
                    }
                }

                if (replica.empty())
                {
                    ProfileEvents::increment(ProfileEvents::ReplicatedPartFailedFetches);
                    throw Exception("No active replica has part " + entry.new_part_name + " or covering part", ErrorCodes::NO_REPLICA_HAS_PART);
                }
            }

1346 1347
            try
            {
1348
                if (!fetchPart(entry.actual_new_part_name, zookeeper_path + "/replicas/" + replica, false, entry.quorum))
1349 1350
                    return false;
            }
1351
            catch (Exception & e)
1352 1353 1354
            {
                /// No stacktrace, just log message
                if (e.code() == ErrorCodes::RECEIVED_ERROR_TOO_MANY_REQUESTS)
1355
                    e.addMessage("Too busy replica. Will try later.");
1356 1357
                throw;
            }
1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393

            if (entry.type == LogEntry::MERGE_PARTS)
                ProfileEvents::increment(ProfileEvents::ReplicatedPartFetchesOfMerged);
        }
        catch (...)
        {
            /** If you can not download the part you need for some merge, it's better not to try to get other parts for this merge,
              * but try to get already merged part. To do this, move the action to get the remaining parts
              * for this merge at the end of the queue.
              */
            try
            {
                auto parts_for_merge = queue.moveSiblingPartsForMergeToEndOfQueue(entry.new_part_name);

                if (!parts_for_merge.empty() && replica.empty())
                {
                    LOG_INFO(log, "No active replica has part " << entry.new_part_name << ". Will fetch merged part instead.");
                    return false;
                }

                /** If no active replica has a part, and there is no merge in the queue with its participation,
                  * check to see if any (active or inactive) replica has such a part or covering it.
                  */
                if (replica.empty())
                    enqueuePartForCheck(entry.new_part_name);
            }
            catch (...)
            {
                tryLogCurrentException(__PRETTY_FUNCTION__);
            }

            throw;
        }
    }

    return true;
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Merge  
Michael Kolupaev 已提交
1394 1395
}

A
Merge  
Alexey Milovidov 已提交
1396

M
Merge  
Michael Kolupaev 已提交
1397
void StorageReplicatedMergeTree::executeDropRange(const StorageReplicatedMergeTree::LogEntry & entry)
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Merge  
Michael Kolupaev 已提交
1398
{
1399 1400 1401 1402 1403 1404 1405
    LOG_INFO(log, (entry.detach ? "Detaching" : "Removing") << " parts inside " << entry.new_part_name << ".");

    queue.removeGetsAndMergesInRange(getZooKeeper(), entry.new_part_name);

    LOG_DEBUG(log, (entry.detach ? "Detaching" : "Removing") << " parts.");
    size_t removed_parts = 0;

1406
    auto entry_part_info = MergeTreePartInfo::fromPartName(entry.new_part_name, data.format_version);
1407

1408 1409 1410 1411 1412 1413 1414 1415
    /// Delete the parts contained in the range to be deleted.
    /// It's important that no old parts remain (after the merge), because otherwise,
    ///  after adding a new replica, this new replica downloads them, but does not delete them.
    /// And, if you do not, the parts will come to life after the server is restarted.
    /// Therefore, we use getAllDataParts.
    auto parts = data.getAllDataParts();
    for (const auto & part : parts)
    {
1416
        if (!entry_part_info.contains(part->info))
1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
            continue;

        LOG_DEBUG(log, "Removing part " << part->name);
        ++removed_parts;

        /// If you do not need to delete a part, it's more reliable to move the directory before making changes to ZooKeeper.
        if (entry.detach)
            data.renameAndDetachPart(part);

        zkutil::Ops ops;
        removePartFromZooKeeper(part->name, ops);
        auto code = getZooKeeper()->tryMulti(ops);

        /// If the part is already removed (for example, because it was never added to ZK due to crash,
        /// see ReplicatedMergeTreeBlockOutputStream), then Ok.
        if (code != ZOK && code != ZNONODE)
            throw zkutil::KeeperException(code);

        /// If the part needs to be removed, it is more reliable to delete the directory after the changes in ZooKeeper.
        if (!entry.detach)
1437
            data.removePartsFromWorkingSet({part}, true);
1438 1439 1440
    }

    LOG_INFO(log, (entry.detach ? "Detached " : "Removed ") << removed_parts << " parts inside " << entry.new_part_name << ".");
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Merge  
Michael Kolupaev 已提交
1441 1442
}

A
Merge  
Alexey Milovidov 已提交
1443

1444
void StorageReplicatedMergeTree::executeClearColumnInPartition(const LogEntry & entry)
1445
{
1446
    LOG_INFO(log, "Clear column " << entry.column_name << " in parts inside " << entry.new_part_name << " range");
1447 1448 1449 1450 1451

    /// Assume optimistic scenario, i.e. conflicts are very rare
    /// So, if conflicts are found, throw an exception and will retry execution later
    queue.disableMergesAndFetchesInRange(entry);

1452
    auto entry_part_info = MergeTreePartInfo::fromPartName(entry.new_part_name, data.format_version);
1453

1454 1455 1456
    /// We don't change table structure, only data in some parts
    /// To disable reading from these parts, we will sequentially acquire write lock for each part inside alterDataPart()
    /// If we will lock the whole table here, a deadlock can occur. For example, if use use Buffer table (CLICKHOUSE-3238)
1457
    auto lock_read_structure = lockStructure(false, __PRETTY_FUNCTION__);
1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476

    auto zookeeper = getZooKeeper();

    AlterCommand alter_command;
    alter_command.type = AlterCommand::DROP_COLUMN;
    alter_command.column_name = entry.column_name;

    auto new_columns = data.getColumnsListNonMaterialized();
    auto new_materialized_columns = data.materialized_columns;
    auto new_alias_columns = data.alias_columns;
    auto new_column_defaults = data.column_defaults;

    alter_command.apply(new_columns, new_materialized_columns, new_alias_columns, new_column_defaults);

    auto columns_for_parts = new_columns;
    columns_for_parts.insert(std::end(columns_for_parts),
        std::begin(new_materialized_columns), std::end(new_materialized_columns));

    size_t modified_parts = 0;
1477
    auto parts = data.getDataParts();
1478 1479
    for (const auto & part : parts)
    {
1480
        if (!entry_part_info.contains(part->info))
1481 1482
            continue;

1483
        LOG_DEBUG(log, "Clearing column " << entry.column_name << " in part " << part->name);
1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501

        auto transaction = data.alterDataPart(part, columns_for_parts, data.primary_expr_ast, false);
        if (!transaction)
            continue;

        /// Update part metadata in ZooKeeper.
        zkutil::Ops ops;
        ops.emplace_back(std::make_unique<zkutil::Op::SetData>(
            replica_path + "/parts/" + part->name + "/columns", transaction->getNewColumns().toString(), -1));
        ops.emplace_back(std::make_unique<zkutil::Op::SetData>(
            replica_path + "/parts/" + part->name + "/checksums", transaction->getNewChecksums().toString(), -1));

        zookeeper->multi(ops);

        transaction->commit();
        ++modified_parts;
    }

1502
    LOG_DEBUG(log, "Cleared column " << entry.column_name << " in " << modified_parts << " parts");
1503 1504 1505 1506 1507

    data.recalculateColumnSizes();
}


M
Merge  
Michael Kolupaev 已提交
1508 1509
void StorageReplicatedMergeTree::queueUpdatingThread()
{
A
Alexey Milovidov 已提交
1510 1511
    //most probably this check is not relevant
    if (shutdown_called)
S
Silviu Caragea 已提交
1512
        return;
1513

S
Silviu Caragea 已提交
1514
    if (!queue_update_in_progress)
1515
    {
S
Silviu Caragea 已提交
1516 1517
        last_queue_update_start_time.store(time(nullptr));
        queue_update_in_progress = true;
1518
    }
S
Silviu Caragea 已提交
1519 1520 1521 1522 1523 1524 1525 1526 1527 1528
    try
    {
        pullLogsToQueue(queue_updating_task_handle);
        last_queue_update_finish_time.store(time(nullptr));
        queue_update_in_progress = false;
    }
    catch (const zkutil::KeeperException & e)
    {
        if (e.code == ZINVALIDSTATE)
            restarting_thread->wakeup();
1529

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Silviu Caragea 已提交
1530 1531 1532 1533 1534 1535 1536 1537
        tryLogCurrentException(__PRETTY_FUNCTION__);
        queue_updating_task_handle->scheduleAfter(QUEUE_UPDATE_ERROR_SLEEP_MS);
    }
    catch (...)
    {
        tryLogCurrentException(__PRETTY_FUNCTION__);
        queue_updating_task_handle->scheduleAfter(QUEUE_UPDATE_ERROR_SLEEP_MS);
    }
M
Merge  
Michael Kolupaev 已提交
1538
}
M
Merge  
Michael Kolupaev 已提交
1539

A
Merge  
Alexey Milovidov 已提交
1540

1541
bool StorageReplicatedMergeTree::queueTask()
M
Merge  
Michael Kolupaev 已提交
1542
{
1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600
    /// This object will mark the element of the queue as running.
    ReplicatedMergeTreeQueue::SelectedEntry selected;

    try
    {
        selected = queue.selectEntryToProcess(merger, data);
    }
    catch (...)
    {
        tryLogCurrentException(__PRETTY_FUNCTION__);
    }

    LogEntryPtr & entry = selected.first;

    if (!entry)
        return false;

    time_t prev_attempt_time = entry->last_attempt_time;

    bool res = queue.processEntry([this]{ return getZooKeeper(); }, entry, [&](LogEntryPtr & entry)
    {
        try
        {
            return executeLogEntry(*entry);
        }
        catch (const Exception & e)
        {
            if (e.code() == ErrorCodes::NO_REPLICA_HAS_PART)
            {
                /// If no one has the right part, probably not all replicas work; We will not write to log with Error level.
                LOG_INFO(log, e.displayText());
            }
            else if (e.code() == ErrorCodes::ABORTED)
            {
                /// Interrupted merge or downloading a part is not an error.
                LOG_INFO(log, e.message());
            }
            else
                tryLogCurrentException(__PRETTY_FUNCTION__);

            /** This exception will be written to the queue element, and it can be looked up using `system.replication_queue` table.
              * The thread that performs this action will sleep a few seconds after the exception.
              * See `queue.processEntry` function.
              */
            throw;
        }
        catch (...)
        {
            tryLogCurrentException(__PRETTY_FUNCTION__);
            throw;
        }
    });

    /// We will go to sleep if the processing fails and if we have already processed this record recently.
    bool need_sleep = !res && (entry->last_attempt_time - prev_attempt_time < 10);

    /// If there was no exception, you do not need to sleep.
    return !need_sleep;
M
Merge  
Michael Kolupaev 已提交
1601 1602
}

A
Merge  
Alexey Milovidov 已提交
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namespace
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Merge  
Michael Kolupaev 已提交
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{
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    bool canMergePartsAccordingToZooKeeperInfo(
        const MergeTreeData::DataPartPtr & left,
        const MergeTreeData::DataPartPtr & right,
        zkutil::ZooKeeperPtr && zookeeper, const String & zookeeper_path, const MergeTreeData & data)
1610
    {
1611
        const String & partition_id = left->info.partition_id;
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        /// You can not merge parts, among which is a part for which the quorum is unsatisfied.
        /// Note: theoretically, this could be resolved. But this will make logic more complex.
        String quorum_node_value;
        if (zookeeper->tryGet(zookeeper_path + "/quorum/status", quorum_node_value))
        {
            ReplicatedMergeTreeQuorumEntry quorum_entry;
            quorum_entry.fromString(quorum_node_value);
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1621
            auto part_info = MergeTreePartInfo::fromPartName(quorum_entry.part_name, data.format_version);
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1623
            if (part_info.min_block != part_info.max_block)
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                throw Exception("Logical error: part written with quorum covers more than one block numbers", ErrorCodes::LOGICAL_ERROR);
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1626
            if (left->info.max_block <= part_info.min_block && right->info.min_block >= part_info.max_block)
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                return false;
        }
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        /// Won't merge last_part even if quorum is satisfied, because we gonna check if replica has this part
        /// on SELECT execution.
        String quorum_last_part;
        if (zookeeper->tryGet(zookeeper_path + "/quorum/last_part", quorum_last_part) && quorum_last_part.empty() == false)
        {
1635
            auto part_info = MergeTreePartInfo::fromPartName(quorum_last_part, data.format_version);
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1637
            if (part_info.min_block != part_info.max_block)
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                throw Exception("Logical error: part written with quorum covers more than one block numbers", ErrorCodes::LOGICAL_ERROR);
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1640
            if (left->info.max_block <= part_info.min_block && right->info.min_block >= part_info.max_block)
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                return false;
        }
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        /// You can merge the parts, if all the numbers between them are abandoned - do not correspond to any blocks.
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        for (Int64 number = left->info.max_block + 1; number <= right->info.min_block - 1; ++number)
1646
        {
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            String path1 = zookeeper_path +              "/block_numbers/" + partition_id + "/block-" + padIndex(number);
            String path2 = zookeeper_path + "/nonincrement_block_numbers/" + partition_id + "/block-" + padIndex(number);
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            if (AbandonableLockInZooKeeper::check(path1, *zookeeper) != AbandonableLockInZooKeeper::ABANDONED &&
                AbandonableLockInZooKeeper::check(path2, *zookeeper) != AbandonableLockInZooKeeper::ABANDONED)
                return false;
        }
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        return true;
1656
    }
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}
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    /** It can take a long time to determine whether it is possible to merge two adjacent parts.
    * Two adjacent parts can be merged if all block numbers between their numbers are not used (abandoned).
    * This means that another part can not be inserted between these parts.
    *
    * But if the numbers of adjacent blocks differ much (usually if there are many "abandoned" blocks between them),
    *  then too many read requests are made to ZooKeeper to find out if it's possible to merge them.
    *
    * Let's use a statement that if a couple of parts were possible to merge, and their merge is not yet planned,
    *  then now they can be merged, and we will remember this state,
    *  not to send multiple identical requests to ZooKeeper.
    */
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    /** Cache for function, that returns bool.
    * If function returned true, cache it forever.
    * If function returned false, cache it for exponentially growing time.
    * Not thread safe.
    */
    template <typename Key>
    struct CachedMergingPredicate
    {
        using clock = std::chrono::steady_clock;
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        struct Expiration
        {
            static constexpr clock::duration min_delay = std::chrono::seconds(1);
            static constexpr clock::duration max_delay = std::chrono::seconds(600);
            static constexpr double exponent_base = 2;
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            clock::time_point expire_time;
            clock::duration delay = clock::duration::zero();
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            void next(clock::time_point now)
            {
                if (delay == clock::duration::zero())
                    delay = min_delay;
                else
                {
                    delay *= exponent_base;
                    if (delay > max_delay)
                        delay = max_delay;
                }
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                expire_time = now + delay;
            }

            bool expired(clock::time_point now) const
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            {
1706
                return now > expire_time;
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            }
1708
        };
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        std::set<Key> true_keys;
        std::map<Key, Expiration> false_keys;
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        template <typename Function, typename ArgsToKey, typename... Args>
        bool get(clock::time_point now, Function && function, ArgsToKey && args_to_key, Args &&... args)
1715
        {
1716
            Key key{args_to_key(std::forward<Args>(args)...)};
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            if (true_keys.count(key))
                return true;
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            auto it = false_keys.find(key);
            if (false_keys.end() != it && !it->second.expired(now))
                return false;
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            bool value = function(std::forward<Args>(args)...);
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            if (value)
                true_keys.insert(key);
            else
                false_keys[key].next(now);
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            return value;
        }
    };
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    template <typename Key> constexpr CachedMergingPredicate<Key>::clock::duration CachedMergingPredicate<Key>::Expiration::min_delay;
    template <typename Key> constexpr CachedMergingPredicate<Key>::clock::duration CachedMergingPredicate<Key>::Expiration::max_delay;
    template <typename Key> constexpr double CachedMergingPredicate<Key>::Expiration::exponent_base;
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void StorageReplicatedMergeTree::initMergeSelectSession()
1742
{
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    merge_sel_deduplicate = false;  /// TODO: read deduplicate option from table config
    merge_sel_need_pull = true;
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    merge_sel_uncached_merging_predicate = [this](const MergeTreeData::DataPartPtr & left, const MergeTreeData::DataPartPtr & right)
1747
    {
1748
        return canMergePartsAccordingToZooKeeperInfo(left, right, getZooKeeper(), zookeeper_path, data);
1749
    };
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    merge_sel_merging_predicate_args_to_key = [](const MergeTreeData::DataPartPtr & left, const MergeTreeData::DataPartPtr & right)
1752
    {
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        return std::make_pair(left->name, right->name);
    };

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    merge_sel_cached_merging_predicate.reset(new CachedMergingPredicate<std::pair<std::string, std::string>>());
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    /// Will be updated below.
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    merge_sel_now = std::chrono::steady_clock::time_point();
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    merge_sel_can_merge = [&]
    (const MergeTreeData::DataPartPtr & left, const MergeTreeData::DataPartPtr & right)
1763
    {
1764 1765 1766 1767 1768
        /// If any of the parts is already going to be merge into a larger one, do not agree to merge it.
        if (queue.partWillBeMergedOrMergesDisabled(left->name)
            || (left.get() != right.get() && queue.partWillBeMergedOrMergesDisabled(right->name)))
            return false;

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        return merge_sel_cached_merging_predicate->get(merge_sel_now, merge_sel_uncached_merging_predicate, merge_sel_merging_predicate_args_to_key, left, right);
1770
    };
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}
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void StorageReplicatedMergeTree::mergeSelectingThread()
{
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Alexey Milovidov 已提交
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    if (shutdown_called || !is_leader_node)
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        return;
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    bool success = false;

    try
    {
        if (merge_sel_need_pull)
1783
        {
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            /// You need to load new entries into the queue before you select parts to merge.
            ///  (so we know which parts are already going to be merged).
            pullLogsToQueue();
            merge_sel_need_pull = false;
        }
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        std::lock_guard<std::mutex> merge_selecting_lock(merge_selecting_mutex);
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        /** If many merges is already queued, then will queue only small enough merges.
          * Otherwise merge queue could be filled with only large merges,
          *  and in the same time, many small parts could be created and won't be merged.
          */
        size_t merges_queued = queue.countMerges();
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        if (merges_queued >= data.settings.max_replicated_merges_in_queue)
        {
            LOG_TRACE(log, "Number of queued merges (" << merges_queued
                << ") is greater than max_replicated_merges_in_queue ("
                << data.settings.max_replicated_merges_in_queue << "), so won't select new parts to merge.");
        }
        else
        {
            MergeTreeDataMerger::FuturePart future_merged_part;
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            size_t max_parts_size_for_merge = merger.getMaxPartsSizeForMerge(data.settings.max_replicated_merges_in_queue, merges_queued);
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            merge_sel_now = std::chrono::steady_clock::now();
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            if (max_parts_size_for_merge > 0
                && merger.selectPartsToMerge(
                    future_merged_part, false,
                    max_parts_size_for_merge,
                    merge_sel_can_merge)
                && createLogEntryToMergeParts(future_merged_part.parts, future_merged_part.name, merge_sel_deduplicate))
            {
                success = true;
                merge_sel_need_pull = true;
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            }
        }
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    }
    catch (...)
    {
        tryLogCurrentException(__PRETTY_FUNCTION__);
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    }

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    if (shutdown_called || !is_leader_node)
        return;

    if (!success)
        merge_selecting_handle->scheduleAfter(MERGE_SELECTING_SLEEP_MS);
    else
        merge_selecting_handle->schedule();
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Merge  
Michael Kolupaev 已提交
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}

M
Merge  
Michael Kolupaev 已提交
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1839
bool StorageReplicatedMergeTree::createLogEntryToMergeParts(
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Yuri Dyachenko 已提交
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    const MergeTreeData::DataPartsVector & parts, const String & merged_name, bool deduplicate, ReplicatedMergeTreeLogEntryData * out_log_entry)
1841
{
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    auto zookeeper = getZooKeeper();

    bool all_in_zk = true;
    for (const auto & part : parts)
    {
        /// If there is no information about part in ZK, we will not merge it.
        if (!zookeeper->exists(replica_path + "/parts/" + part->name))
        {
            all_in_zk = false;

1852
            if (part->modification_time + MAX_AGE_OF_LOCAL_PART_THAT_WASNT_ADDED_TO_ZOOKEEPER < time(nullptr))
1853 1854
            {
                LOG_WARNING(log, "Part " << part->name << " (that was selected for merge)"
1855
                    << " with age " << (time(nullptr) - part->modification_time)
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                    << " seconds exists locally but not in ZooKeeper."
                    << " Won't do merge with that part and will check it.");
                enqueuePartForCheck(part->name);
            }
        }
    }
    if (!all_in_zk)
        return false;

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    ReplicatedMergeTreeLogEntryData entry;
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    entry.type = LogEntry::MERGE_PARTS;
    entry.source_replica = replica_name;
    entry.new_part_name = merged_name;
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    entry.deduplicate = deduplicate;
1870
    entry.create_time = time(nullptr);
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    for (const auto & part : parts)
        entry.parts_to_merge.push_back(part->name);

    String path_created = zookeeper->create(zookeeper_path + "/log/log-", entry.toString(), zkutil::CreateMode::PersistentSequential);
    entry.znode_name = path_created.substr(path_created.find_last_of('/') + 1);

1878
    const String & partition_id = parts[0]->info.partition_id;
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    for (size_t i = 0; i + 1 < parts.size(); ++i)
    {
        /// Remove the unnecessary entries about non-existent blocks.
1882
        for (Int64 number = parts[i]->info.max_block + 1; number <= parts[i + 1]->info.min_block - 1; ++number)
1883
        {
1884
            zookeeper->tryRemove(zookeeper_path + "/block_numbers/" + partition_id + "/block-" + padIndex(number));
1885
            zookeeper->tryRemove(zookeeper_path + "/nonincrement_block_numbers/" + partition_id + "/block-" + padIndex(number));
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        }
    }

    if (out_log_entry)
        *out_log_entry = entry;

    return true;
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}


1896 1897
void StorageReplicatedMergeTree::removePartFromZooKeeper(const String & part_name, zkutil::Ops & ops)
{
1898
    String part_path = replica_path + "/parts/" + part_name;
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1900 1901 1902
    ops.emplace_back(std::make_unique<zkutil::Op::Remove>(part_path + "/checksums", -1));
    ops.emplace_back(std::make_unique<zkutil::Op::Remove>(part_path + "/columns", -1));
    ops.emplace_back(std::make_unique<zkutil::Op::Remove>(part_path, -1));
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}


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Michael Kolupaev 已提交
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void StorageReplicatedMergeTree::removePartAndEnqueueFetch(const String & part_name)
{
1908
    auto zookeeper = getZooKeeper();
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Merge  
Alexey Milovidov 已提交
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1910
    String part_path = replica_path + "/parts/" + part_name;
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    LogEntryPtr log_entry = std::make_shared<LogEntry>();
    log_entry->type = LogEntry::GET_PART;
    log_entry->create_time = tryGetPartCreateTime(zookeeper, replica_path, part_name);
    log_entry->source_replica = "";
    log_entry->new_part_name = part_name;
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1918 1919 1920 1921
    zkutil::Ops ops;
    ops.emplace_back(std::make_unique<zkutil::Op::Create>(
        replica_path + "/queue/queue-", log_entry->toString(), zookeeper->getDefaultACL(),
        zkutil::CreateMode::PersistentSequential));
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1923
    removePartFromZooKeeper(part_name, ops);
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1925
    auto results = zookeeper->multi(ops);
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    String path_created = dynamic_cast<zkutil::Op::Create &>(*ops[0]).getPathCreated();
    log_entry->znode_name = path_created.substr(path_created.find_last_of('/') + 1);
    queue.insert(zookeeper, log_entry);
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}

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void StorageReplicatedMergeTree::becomeLeader()
{
1935
    std::lock_guard<std::mutex> lock(leader_node_mutex);
1936

1937 1938
    if (shutdown_called)
        return;
1939

1940
    LOG_INFO(log, "Became leader");
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    is_leader_node = false;
1942
    merge_selecting_handle->activate();
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    initMergeSelectSession();
1944
    is_leader_node = true;
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    merge_selecting_handle->schedule();
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Michael Kolupaev 已提交
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}

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Merge  
Alexey Milovidov 已提交
1948

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Michael Kolupaev 已提交
1949
String StorageReplicatedMergeTree::findReplicaHavingPart(const String & part_name, bool active)
M
Merge  
Michael Kolupaev 已提交
1950
{
1951 1952
    auto zookeeper = getZooKeeper();
    Strings replicas = zookeeper->getChildren(zookeeper_path + "/replicas");
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Michael Kolupaev 已提交
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1954
    /// Select replicas in uniformly random order.
1955
    std::shuffle(replicas.begin(), replicas.end(), rng);
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1957 1958 1959 1960 1961
    for (const String & replica : replicas)
    {
        /// We don't interested in ourself.
        if (replica == replica_name)
            continue;
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Alexey Milovidov 已提交
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1963 1964 1965
        if (zookeeper->exists(zookeeper_path + "/replicas/" + replica + "/parts/" + part_name) &&
            (!active || zookeeper->exists(zookeeper_path + "/replicas/" + replica + "/is_active")))
            return replica;
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1967 1968
        /// Obviously, replica could become inactive or even vanish after return from this method.
    }
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1970
    return {};
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}


1974
String StorageReplicatedMergeTree::findReplicaHavingCoveringPart(const LogEntry & entry, bool active)
1975
{
1976 1977 1978 1979
    auto zookeeper = getZooKeeper();
    Strings replicas = zookeeper->getChildren(zookeeper_path + "/replicas");

    /// Select replicas in uniformly random order.
1980
    std::shuffle(replicas.begin(), replicas.end(), rng);
1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993

    for (const String & replica : replicas)
    {
        if (replica == replica_name)
            continue;

        if (active && !zookeeper->exists(zookeeper_path + "/replicas/" + replica + "/is_active"))
            continue;

        String largest_part_found;
        Strings parts = zookeeper->getChildren(zookeeper_path + "/replicas/" + replica + "/parts");
        for (const String & part_on_replica : parts)
        {
1994 1995
            if (part_on_replica == entry.new_part_name
                || MergeTreePartInfo::contains(part_on_replica, entry.new_part_name, data.format_version))
1996
            {
1997 1998
                if (largest_part_found.empty()
                    || MergeTreePartInfo::contains(part_on_replica, largest_part_found, data.format_version))
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                {
                    largest_part_found = part_on_replica;
                }
            }
        }

        if (!largest_part_found.empty())
        {
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            bool the_same_part = largest_part_found == entry.new_part_name;

            /// Make a check in case if selected part differs from source part
            if (!the_same_part)
            {
                String reject_reason;
                if (!queue.addFuturePartIfNotCoveredByThem(largest_part_found, entry, reject_reason))
                {
                    LOG_INFO(log, "Will not fetch part " << largest_part_found << " covering " << entry.new_part_name << ". " << reject_reason);
                    return {};
                }
            }
            else
            {
                entry.actual_new_part_name = entry.new_part_name;
            }

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            return replica;
        }
    }

    return {};
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}

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Merge  
Alexey Milovidov 已提交
2031

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f1yegor 已提交
2032
/** If a quorum is tracked for a part, update information about it in ZK.
2033
  */
2034
void StorageReplicatedMergeTree::updateQuorum(const String & part_name)
2035
{
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    auto zookeeper = getZooKeeper();

    /// Information on which replicas a part has been added, if the quorum has not yet been reached.
    const String quorum_status_path = zookeeper_path + "/quorum/status";
    /// The name of the previous part for which the quorum was reached.
    const String quorum_last_part_path = zookeeper_path + "/quorum/last_part";

    String value;
    zkutil::Stat stat;

    /// If there is no node, then all quorum INSERTs have already reached the quorum, and nothing is needed.
    while (zookeeper->tryGet(quorum_status_path, value, &stat))
    {
        ReplicatedMergeTreeQuorumEntry quorum_entry;
        quorum_entry.fromString(value);

        if (quorum_entry.part_name != part_name)
        {
            /// The quorum has already been achieved. Moreover, another INSERT with a quorum has already started.
            break;
        }

        quorum_entry.replicas.insert(replica_name);

        if (quorum_entry.replicas.size() >= quorum_entry.required_number_of_replicas)
        {
            /// The quorum is reached. Delete the node, and update information about the last part that was successfully written with quorum.

            zkutil::Ops ops;
            ops.emplace_back(std::make_unique<zkutil::Op::Remove>(quorum_status_path, stat.version));
            ops.emplace_back(std::make_unique<zkutil::Op::SetData>(quorum_last_part_path, part_name, -1));
            auto code = zookeeper->tryMulti(ops);

            if (code == ZOK)
            {
                break;
            }
            else if (code == ZNONODE)
            {
                /// The quorum has already been achieved.
                break;
            }
            else if (code == ZBADVERSION)
            {
                /// Node was updated meanwhile. We must re-read it and repeat all the actions.
                continue;
            }
            else
                throw zkutil::KeeperException(code, quorum_status_path);
        }
        else
        {
            /// We update the node, registering there one more replica.
            auto code = zookeeper->trySet(quorum_status_path, quorum_entry.toString(), stat.version);

            if (code == ZOK)
            {
                break;
            }
            else if (code == ZNONODE)
            {
                /// The quorum has already been achieved.
                break;
            }
            else if (code == ZBADVERSION)
            {
                /// Node was updated meanwhile. We must re-read it and repeat all the actions.
                continue;
            }
            else
                throw zkutil::KeeperException(code, quorum_status_path);
        }
    }
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}


A
Alexey Milovidov 已提交
2112
bool StorageReplicatedMergeTree::fetchPart(const String & part_name, const String & replica_path, bool to_detached, size_t quorum)
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Merge  
Michael Kolupaev 已提交
2113
{
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    if (auto part = data.getPartIfExists(part_name, {MergeTreeDataPart::State::Outdated, MergeTreeDataPart::State::Deleting}))
    {
        LOG_DEBUG(log, "Part " << part->getNameWithState() << " should be deleted after previous attempt before fetch");
        /// Force premature parts cleanup
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Silviu Caragea 已提交
2118
        cleanup_thread->schedule();
2119 2120 2121
        return false;
    }

2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140
    {
        std::lock_guard<std::mutex> lock(currently_fetching_parts_mutex);
        if (!currently_fetching_parts.insert(part_name).second)
        {
            LOG_DEBUG(log, "Part " << part_name << " is already fetching right now");
            return false;
        }
    }

    SCOPE_EXIT
    ({
        std::lock_guard<std::mutex> lock(currently_fetching_parts_mutex);
        currently_fetching_parts.erase(part_name);
    });

    LOG_DEBUG(log, "Fetching part " << part_name << " from " << replica_path);

    TableStructureReadLockPtr table_lock;
    if (!to_detached)
2141
        table_lock = lockStructure(true, __PRETTY_FUNCTION__);
2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163

    ReplicatedMergeTreeAddress address(getZooKeeper()->get(replica_path + "/host"));

    Stopwatch stopwatch;

    MergeTreeData::MutableDataPartPtr part = fetcher.fetchPart(
        part_name, replica_path, address.host, address.replication_port, to_detached);

    if (!to_detached)
    {
        zkutil::Ops ops;

        /** NOTE
          * Here, an error occurs if ALTER occurred with a change in the column type or column deletion,
          *  and the part on remote server has not yet been modified.
          * After a while, one of the following attempts to make `fetchPart` succeed.
          */
        checkPartAndAddToZooKeeper(part, ops, part_name);

        MergeTreeData::Transaction transaction;
        auto removed_parts = data.renameTempPartAndReplace(part, nullptr, &transaction);

2164
        if (auto part_log = context.getPartLog(database_name, table_name))
2165 2166
        {
            PartLogElement elem;
2167
            elem.event_time = time(nullptr);
2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204
            elem.event_type = PartLogElement::DOWNLOAD_PART;
            elem.size_in_bytes = part->size_in_bytes;
            elem.duration_ms = stopwatch.elapsed() / 10000000;

            elem.merged_from.reserve(removed_parts.size());
            for (const auto & part : removed_parts)
            {
                elem.merged_from.push_back(part->name);
            }

            elem.database_name = part->storage.getDatabaseName();
            elem.table_name = part->storage.getTableName();
            elem.part_name = part->name;

            part_log->add(elem);

            elem.duration_ms = 0;
            elem.event_type = PartLogElement::REMOVE_PART;
            elem.merged_from = Strings();
            for (const auto & part : removed_parts)
            {
                elem.part_name = part->name;
                elem.size_in_bytes = part->size_in_bytes;
                part_log->add(elem);
            }
        }


        getZooKeeper()->multi(ops);
        transaction.commit();

        /** If a quorum is tracked for this part, you must update it.
          * If you do not have time, in case of losing the session, when you restart the server - see the `ReplicatedMergeTreeRestartingThread::updateQuorumIfWeHavePart` method.
          */
        if (quorum)
            updateQuorum(part_name);

S
Silviu Caragea 已提交
2205
        merge_selecting_handle->schedule();
2206 2207 2208 2209 2210 2211 2212 2213 2214

        for (const auto & removed_part : removed_parts)
        {
            LOG_DEBUG(log, "Part " << removed_part->name << " is rendered obsolete by fetching part " << part_name);
            ProfileEvents::increment(ProfileEvents::ObsoleteReplicatedParts);
        }
    }
    else
    {
2215
        part->renameTo("detached/" + part_name);
2216 2217 2218 2219 2220 2221
    }

    ProfileEvents::increment(ProfileEvents::ReplicatedPartFetches);

    LOG_DEBUG(log, "Fetched part " << part_name << " from " << replica_path << (to_detached ? " (to 'detached' directory)" : ""));
    return true;
M
Merge  
Michael Kolupaev 已提交
2222
}
M
Merge  
Michael Kolupaev 已提交
2223

A
Merge  
Alexey Milovidov 已提交
2224

2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235
void StorageReplicatedMergeTree::startup()
{
    if (is_readonly)
        return;

    queue.initialize(
        zookeeper_path, replica_path,
        database_name + "." + table_name + " (ReplicatedMergeTreeQueue)",
        data.getDataParts(), current_zookeeper);

    queue.pullLogsToQueue(current_zookeeper, nullptr);
2236 2237 2238
    last_queue_update_finish_time.store(time(nullptr));
    /// NOTE: not updating last_queue_update_start_time because it must contain the time when
    /// the notification of queue change was received. In the beginning it is effectively infinite.
2239 2240 2241 2242 2243 2244

    /// In this thread replica will be activated.
    restarting_thread = std::make_unique<ReplicatedMergeTreeRestartingThread>(*this);
}


M
Merge  
Michael Kolupaev 已提交
2245 2246
void StorageReplicatedMergeTree::shutdown()
{
2247 2248 2249 2250
    /** This must be done before waiting for restarting_thread.
      * Because restarting_thread will wait for finishing of tasks in background pool,
      *  and parts are fetched in that tasks.
      */
2251
    fetcher.blocker.cancelForever();
2252 2253 2254 2255 2256 2257 2258

    if (restarting_thread)
    {
        restarting_thread->stop();
        restarting_thread.reset();
    }

2259
    if (data_parts_exchange_endpoint_holder)
2260
    {
2261 2262
        data_parts_exchange_endpoint_holder->cancelForever();
        data_parts_exchange_endpoint_holder = nullptr;
2263
    }
M
Merge  
Michael Kolupaev 已提交
2264 2265 2266
}


M
Merge  
Michael Kolupaev 已提交
2267 2268
StorageReplicatedMergeTree::~StorageReplicatedMergeTree()
{
2269 2270 2271 2272 2273 2274 2275 2276
    try
    {
        shutdown();
    }
    catch(...)
    {
        tryLogCurrentException(__PRETTY_FUNCTION__);
    }
S
Silviu Caragea 已提交
2277 2278

    context.getSchedulePool().removeTask(merge_selecting_handle);
M
Merge  
Michael Kolupaev 已提交
2279 2280
}

A
Merge  
Alexey Milovidov 已提交
2281

M
Merge  
Michael Kolupaev 已提交
2282
BlockInputStreams StorageReplicatedMergeTree::read(
2283
    const Names & column_names,
2284
    const SelectQueryInfo & query_info,
2285 2286 2287
    const Context & context,
    QueryProcessingStage::Enum & processed_stage,
    const size_t max_block_size,
2288
    const unsigned num_streams)
M
Merge  
Michael Kolupaev 已提交
2289
{
2290
    const Settings & settings = context.getSettingsRef();
2291 2292 2293 2294 2295 2296 2297

    size_t part_index = 0;

    /** The `parallel_replica_offset` and `parallel_replicas_count` settings allow you to read one part of the data from one replica, and the other from other replica.
      * For replicated data, the data is broken by the same mechanism as the SAMPLE section.
      */

2298 2299 2300 2301 2302 2303 2304
    /** The `select_sequential_consistency` setting has two meanings:
    * 1. To throw an exception if on a replica there are not all parts which have been written down on quorum of remaining replicas.
    * 2. Do not read parts that have not yet been written to the quorum of the replicas.
    * For this you have to synchronously go to ZooKeeper.
    */
    Int64 max_block_number_to_read = 0;
    if (settings.select_sequential_consistency)
2305
    {
2306
        auto zookeeper = getZooKeeper();
2307

2308 2309
        String last_part;
        zookeeper->tryGet(zookeeper_path + "/quorum/last_part", last_part);
2310

2311 2312 2313
        if (!last_part.empty() && !data.getPartIfExists(last_part))    /// TODO Disable replica for distributed queries.
            throw Exception("Replica doesn't have part " + last_part + " which was successfully written to quorum of other replicas."
                " Send query to another replica or disable 'select_sequential_consistency' setting.", ErrorCodes::REPLICA_IS_NOT_IN_QUORUM);
2314

2315 2316 2317 2318
        if (last_part.empty())  /// If no part has been written with quorum.
        {
            String quorum_str;
            if (zookeeper->tryGet(zookeeper_path + "/quorum/status", quorum_str))
2319
            {
2320 2321
                ReplicatedMergeTreeQuorumEntry quorum_entry;
                quorum_entry.fromString(quorum_str);
2322
                auto part_info = MergeTreePartInfo::fromPartName(quorum_entry.part_name, data.format_version);
2323
                max_block_number_to_read = part_info.min_block - 1;
2324 2325
            }
        }
2326
        else
2327
        {
2328
            auto part_info = MergeTreePartInfo::fromPartName(last_part, data.format_version);
2329
            max_block_number_to_read = part_info.max_block;
2330 2331 2332
        }
    }

2333
    return reader.read(
2334
        column_names, query_info, context, processed_stage, max_block_size, num_streams, &part_index, max_block_number_to_read);
M
Merge  
Michael Kolupaev 已提交
2335 2336
}

A
Merge  
Alexey Milovidov 已提交
2337

A
Merge  
Alexey Milovidov 已提交
2338
void StorageReplicatedMergeTree::assertNotReadonly() const
M
Merge  
Michael Kolupaev 已提交
2339
{
2340 2341
    if (is_readonly)
        throw Exception("Table is in readonly mode", ErrorCodes::TABLE_IS_READ_ONLY);
A
Merge  
Alexey Milovidov 已提交
2342 2343 2344
}


A
Alexey Milovidov 已提交
2345
BlockOutputStreamPtr StorageReplicatedMergeTree::write(const ASTPtr & query, const Settings & settings)
A
Merge  
Alexey Milovidov 已提交
2346
{
2347
    assertNotReadonly();
M
Merge  
Michael Kolupaev 已提交
2348

2349 2350
    bool deduplicate = data.settings.replicated_deduplication_window != 0 && settings.insert_deduplicate;

2351
    return std::make_shared<ReplicatedMergeTreeBlockOutputStream>(*this,
2352
        settings.insert_quorum, settings.insert_quorum_timeout.totalMilliseconds(), deduplicate);
M
Merge  
Michael Kolupaev 已提交
2353
}
M
Merge  
Michael Kolupaev 已提交
2354

A
Merge  
Alexey Milovidov 已提交
2355

2356
bool StorageReplicatedMergeTree::optimize(const ASTPtr & query, const ASTPtr & partition, bool final, bool deduplicate, const Context & context)
M
Merge  
Michael Kolupaev 已提交
2357
{
2358
    assertNotReadonly();
2359

2360
    if (!is_leader_node)
2361
    {
2362
        sendRequestToLeaderReplica(query, context.getSettingsRef());
2363 2364
        return true;
    }
2365

2366 2367 2368
    auto can_merge = [this]
        (const MergeTreeData::DataPartPtr & left, const MergeTreeData::DataPartPtr & right)
    {
2369
        return canMergePartsAccordingToZooKeeperInfo(left, right, getZooKeeper(), zookeeper_path, data);
2370
    };
2371

2372
    pullLogsToQueue();
2373

2374 2375 2376
    ReplicatedMergeTreeLogEntryData merge_entry;
    {
        std::lock_guard<std::mutex> merge_selecting_lock(merge_selecting_mutex);
2377

2378
        size_t disk_space = DiskSpaceMonitor::getUnreservedFreeSpace(full_path);
M
Merge  
Michael Kolupaev 已提交
2379

A
Alexey Zatelepin 已提交
2380
        MergeTreeDataMerger::FuturePart future_merged_part;
2381
        bool selected = false;
2382

2383
        if (!partition)
2384
        {
A
Alexey Zatelepin 已提交
2385 2386
            selected = merger.selectPartsToMerge(
                future_merged_part, false, data.settings.max_bytes_to_merge_at_max_space_in_pool, can_merge);
2387 2388 2389
        }
        else
        {
2390
            String partition_id = data.getPartitionIDFromQuery(partition, context);
A
Alexey Zatelepin 已提交
2391
            selected = merger.selectAllPartsToMergeWithinPartition(future_merged_part, disk_space, can_merge, partition_id, final);
2392
        }
2393

2394
        if (!selected)
2395 2396
        {
            LOG_INFO(log, "Cannot select parts for optimization");
2397
            return false;
2398
        }
2399

A
Alexey Zatelepin 已提交
2400
        if (!createLogEntryToMergeParts(future_merged_part.parts, future_merged_part.name, deduplicate, &merge_entry))
2401 2402
            return false;
    }
2403

2404 2405
    waitForAllReplicasToProcessLogEntry(merge_entry);
    return true;
M
Merge  
Michael Kolupaev 已提交
2406 2407
}

A
Merge  
Alexey Milovidov 已提交
2408

M
Merge  
Michael Kolupaev 已提交
2409
void StorageReplicatedMergeTree::alter(const AlterCommands & params,
2410
    const String & database_name, const String & table_name, const Context & context)
M
Merge  
Michael Kolupaev 已提交
2411
{
2412
    assertNotReadonly();
A
Merge  
Alexey Milovidov 已提交
2413

2414
    LOG_DEBUG(log, "Doing ALTER");
M
Merge  
Michael Kolupaev 已提交
2415

2416
    int new_columns_version = -1;   /// Initialization is to suppress (useless) false positive warning found by cppcheck.
2417 2418
    String new_columns_str;
    zkutil::Stat stat;
M
Merge  
Michael Kolupaev 已提交
2419

2420 2421
    {
        /// Just to read current structure. Alter will be done in separate thread.
2422
        auto table_lock = lockStructure(false, __PRETTY_FUNCTION__);
M
Merge  
Michael Kolupaev 已提交
2423

2424 2425
        if (is_readonly)
            throw Exception("Can't ALTER readonly table", ErrorCodes::TABLE_IS_READ_ONLY);
M
Merge  
Michael Kolupaev 已提交
2426

2427
        data.checkAlter(params);
M
Merge  
Michael Kolupaev 已提交
2428

2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440
        for (const AlterCommand & param : params)
            if (param.type == AlterCommand::MODIFY_PRIMARY_KEY)
                throw Exception("Modification of primary key is not supported for replicated tables", ErrorCodes::NOT_IMPLEMENTED);

        NamesAndTypesList new_columns = data.getColumnsListNonMaterialized();
        NamesAndTypesList new_materialized_columns = data.materialized_columns;
        NamesAndTypesList new_alias_columns = data.alias_columns;
        ColumnDefaults new_column_defaults = data.column_defaults;
        params.apply(new_columns, new_materialized_columns, new_alias_columns, new_column_defaults);

        new_columns_str = ColumnsDescription<false>{
            new_columns, new_materialized_columns,
2441
            new_alias_columns, new_column_defaults}.toString();
2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481

        /// Do ALTER.
        getZooKeeper()->set(zookeeper_path + "/columns", new_columns_str, -1, &stat);

        new_columns_version = stat.version;
    }

    LOG_DEBUG(log, "Updated columns in ZooKeeper. Waiting for replicas to apply changes.");

    /// Wait until all replicas will apply ALTER.

    /// Subscribe to change of columns, to finish waiting if someone will do another ALTER.
    if (!getZooKeeper()->exists(zookeeper_path + "/columns", &stat, alter_query_event))
        throw Exception(zookeeper_path + "/columns doesn't exist", ErrorCodes::NOT_FOUND_NODE);

    if (stat.version != new_columns_version)
    {
        LOG_WARNING(log, zookeeper_path + "/columns changed before this ALTER finished; "
            "overlapping ALTER-s are fine but use caution with nontransitive changes");
        return;
    }

    Strings replicas = getZooKeeper()->getChildren(zookeeper_path + "/replicas");

    std::set<String> inactive_replicas;
    std::set<String> timed_out_replicas;

    time_t replication_alter_columns_timeout = context.getSettingsRef().replication_alter_columns_timeout;

    for (const String & replica : replicas)
    {
        LOG_DEBUG(log, "Waiting for " << replica << " to apply changes");

        while (!shutdown_called)
        {
            /// Replica could be inactive.
            if (!getZooKeeper()->exists(zookeeper_path + "/replicas/" + replica + "/is_active"))
            {
                LOG_WARNING(log, "Replica " << replica << " is not active during ALTER query."
                    " ALTER will be done asynchronously when replica becomes active.");
2482

2483 2484 2485
                inactive_replicas.emplace(replica);
                break;
            }
2486

2487
            String replica_columns_str;
M
Merge  
Michael Kolupaev 已提交
2488

2489 2490 2491 2492 2493 2494
            /// Replica could has been removed.
            if (!getZooKeeper()->tryGet(zookeeper_path + "/replicas/" + replica + "/columns", replica_columns_str, &stat))
            {
                LOG_WARNING(log, replica << " was removed");
                break;
            }
M
Merge  
Michael Kolupaev 已提交
2495

2496
            int replica_columns_version = stat.version;
M
Merge  
Michael Kolupaev 已提交
2497

2498 2499 2500
            /// The ALTER has been successfully applied.
            if (replica_columns_str == new_columns_str)
                break;
M
Merge  
Michael Kolupaev 已提交
2501

2502 2503
            if (!getZooKeeper()->exists(zookeeper_path + "/columns", &stat))
                throw Exception(zookeeper_path + "/columns doesn't exist", ErrorCodes::NOT_FOUND_NODE);
2504

2505 2506 2507 2508 2509 2510
            if (stat.version != new_columns_version)
            {
                LOG_WARNING(log, zookeeper_path + "/columns changed before ALTER finished; "
                    "overlapping ALTER-s are fine but use caution with nontransitive changes");
                return;
            }
M
Merge  
Michael Kolupaev 已提交
2511

2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576
            if (!getZooKeeper()->exists(zookeeper_path + "/replicas/" + replica + "/columns", &stat, alter_query_event))
            {
                LOG_WARNING(log, replica << " was removed");
                break;
            }

            if (stat.version != replica_columns_version)
                continue;

            if (!replication_alter_columns_timeout)
            {
                alter_query_event->wait();
                /// Everything is fine.
            }
            else if (alter_query_event->tryWait(replication_alter_columns_timeout * 1000))
            {
                /// Everything is fine.
            }
            else
            {
                LOG_WARNING(log, "Timeout when waiting for replica " << replica << " to apply ALTER."
                    " ALTER will be done asynchronously.");

                timed_out_replicas.emplace(replica);
                break;
            }
        }

        if (shutdown_called)
            throw Exception("Alter is not finished because table shutdown was called. Alter will be done after table restart.",
                ErrorCodes::UNFINISHED);

        if (!inactive_replicas.empty() || !timed_out_replicas.empty())
        {
            std::stringstream exception_message;
            exception_message << "Alter is not finished because";

            if (!inactive_replicas.empty())
            {
                exception_message << " some replicas are inactive right now";

                for (auto it = inactive_replicas.begin(); it != inactive_replicas.end(); ++it)
                    exception_message << (it == inactive_replicas.begin() ? ": " : ", ") << *it;
            }

            if (!timed_out_replicas.empty() && !inactive_replicas.empty())
                exception_message << " and";

            if (!timed_out_replicas.empty())
            {
                exception_message << " timeout when waiting for some replicas";

                for (auto it = timed_out_replicas.begin(); it != timed_out_replicas.end(); ++it)
                    exception_message << (it == timed_out_replicas.begin() ? ": " : ", ") << *it;

                exception_message << " (replication_alter_columns_timeout = " << replication_alter_columns_timeout << ")";
            }

            exception_message << ". Alter will be done asynchronously.";

            throw Exception(exception_message.str(), ErrorCodes::UNFINISHED);
        }
    }

    LOG_DEBUG(log, "ALTER finished");
M
Merge  
Michael Kolupaev 已提交
2577 2578
}

M
Merge  
Michael Kolupaev 已提交
2579

2580
/// The name of an imaginary part covering all possible parts in the specified partition with numbers in the range from zero to specified right bound.
2581 2582
static String getFakePartNameCoveringPartRange(
        MergeTreeDataFormatVersion format_version, const String & partition_id, UInt64 left, UInt64 right)
M
Merge  
Michael Kolupaev 已提交
2583
{
2584
    /// Artificial high level is choosen, to make this part "covering" all parts inside.
2585
    MergeTreePartInfo part_info(partition_id, left, right, 999999999);
2586
    if (format_version < MERGE_TREE_DATA_MIN_FORMAT_VERSION_WITH_CUSTOM_PARTITIONING)
2587 2588 2589 2590 2591 2592 2593 2594 2595 2596
    {
        /// The date range is all month long.
        const auto & lut = DateLUT::instance();
        time_t start_time = lut.YYYYMMDDToDate(parse<UInt32>(partition_id + "01"));
        DayNum_t left_date = lut.toDayNum(start_time);
        DayNum_t right_date = DayNum_t(static_cast<size_t>(left_date) + lut.daysInMonth(start_time) - 1);
        return part_info.getPartNameV0(left_date, right_date);
    }
    else
        return part_info.getPartName();
M
Merge  
Michael Kolupaev 已提交
2597 2598
}

A
Merge  
Alexey Milovidov 已提交
2599

2600 2601
String StorageReplicatedMergeTree::getFakePartNameCoveringAllPartsInPartition(
    const String & partition_id, Int64 * out_min_block, Int64 * out_max_block)
A
Merge  
Andrey Mironov 已提交
2602
{
2603 2604
    /// Even if there is no data in the partition, you still need to mark the range for deletion.
    /// - Because before executing DETACH, tasks for downloading parts to this partition can be executed.
2605
    Int64 left = 0;
2606

2607
    /** Let's skip one number in `block_numbers` for the partition being deleted, and we will only delete parts until this number.
2608 2609 2610 2611 2612 2613 2614 2615
      * This prohibits merges of deleted parts with the new inserted data.
      * Invariant: merges of deleted parts with other parts do not appear in the log.
      * NOTE: If you need to similarly support a `DROP PART` request, you will have to think of some new mechanism for it,
      *     to guarantee this invariant.
      */
    Int64 right;

    {
2616
        auto zookeeper = getZooKeeper();
2617
        AbandonableLockInZooKeeper block_number_lock = allocateBlockNumber(partition_id, zookeeper);
2618 2619 2620 2621
        right = block_number_lock.getNumber();
        block_number_lock.unlock();
    }

2622
    /// Empty partition.
2623
    if (right == 0)
2624
        return {};
2625

2626
    --right;
2627 2628 2629 2630 2631

    if (out_min_block)
        *out_min_block = left;
    if (out_max_block)
        *out_max_block = right;
2632
    return getFakePartNameCoveringPartRange(data.format_version, partition_id, left, right);
2633 2634 2635
}


2636
void StorageReplicatedMergeTree::clearColumnInPartition(
2637
    const ASTPtr & partition, const Field & column_name, const Context & context)
2638 2639 2640 2641 2642
{
    assertNotReadonly();

    /// We don't block merges, so anyone can manage this task (not only leader)

2643
    String partition_id = data.getPartitionIDFromQuery(partition, context);
2644
    String fake_part_name = getFakePartNameCoveringAllPartsInPartition(partition_id);
2645

2646 2647
    if (fake_part_name.empty())
    {
2648
        LOG_INFO(log, "Will not clear partition " << partition_id << ", it is empty.");
2649 2650 2651
        return;
    }

2652 2653
    /// We allocated new block number for this part, so new merges can't merge clearing parts with new ones

2654
    LogEntry entry;
2655
    entry.type = LogEntry::CLEAR_COLUMN;
2656 2657
    entry.new_part_name = fake_part_name;
    entry.column_name = column_name.safeGet<String>();
2658
    entry.create_time = time(nullptr);
2659 2660 2661 2662 2663

    String log_znode_path = getZooKeeper()->create(zookeeper_path + "/log/log-", entry.toString(), zkutil::CreateMode::PersistentSequential);
    entry.znode_name = log_znode_path.substr(log_znode_path.find_last_of('/') + 1);

    /// If necessary, wait until the operation is performed on itself or on all replicas.
2664
    if (context.getSettingsRef().replication_alter_partitions_sync != 0)
2665
    {
2666
        if (context.getSettingsRef().replication_alter_partitions_sync == 1)
2667 2668 2669 2670 2671 2672
            waitForReplicaToProcessLogEntry(replica_name, entry);
        else
            waitForAllReplicasToProcessLogEntry(entry);
    }
}

2673
void StorageReplicatedMergeTree::dropPartition(const ASTPtr & query, const ASTPtr & partition, bool detach, const Context & context)
2674 2675 2676
{
    assertNotReadonly();

2677 2678
    zkutil::ZooKeeperPtr zookeeper = getZooKeeper();

2679 2680
    if (!is_leader_node)
    {
2681
        sendRequestToLeaderReplica(query, context.getSettingsRef());
2682 2683 2684
        return;
    }

2685
    String partition_id = data.getPartitionIDFromQuery(partition, context);
2686 2687 2688 2689

    Int64 min_block = 0;
    Int64 max_block = 0;
    String fake_part_name = getFakePartNameCoveringAllPartsInPartition(partition_id, &min_block, &max_block);
2690

2691 2692
    if (fake_part_name.empty())
    {
2693
        LOG_INFO(log, "Will not drop partition " << partition_id << ", it is empty.");
2694 2695 2696
        return;
    }

2697 2698
    clearBlocksInPartition(*zookeeper, partition_id, min_block, max_block);

2699
    /** Forbid to choose the parts to be deleted for merging.
F
f1yegor 已提交
2700
      * Invariant: after the `DROP_RANGE` entry appears in the log, merge of deleted parts will not appear in the log.
2701 2702 2703 2704 2705 2706
      */
    {
        std::lock_guard<std::mutex> merge_selecting_lock(merge_selecting_mutex);
        queue.disableMergesInRange(fake_part_name);
    }

2707
    LOG_DEBUG(log, "Disabled merges covered by range " << fake_part_name);
2708 2709 2710 2711 2712 2713 2714

    /// Finally, having achieved the necessary invariants, you can put an entry in the log.
    LogEntry entry;
    entry.type = LogEntry::DROP_RANGE;
    entry.source_replica = replica_name;
    entry.new_part_name = fake_part_name;
    entry.detach = detach;
2715
    entry.create_time = time(nullptr);
2716

2717
    String log_znode_path = zookeeper->create(zookeeper_path + "/log/log-", entry.toString(), zkutil::CreateMode::PersistentSequential);
2718 2719 2720
    entry.znode_name = log_znode_path.substr(log_znode_path.find_last_of('/') + 1);

    /// If necessary, wait until the operation is performed on itself or on all replicas.
2721
    if (context.getSettingsRef().replication_alter_partitions_sync != 0)
2722
    {
2723
        if (context.getSettingsRef().replication_alter_partitions_sync == 1)
2724 2725 2726 2727
            waitForReplicaToProcessLogEntry(replica_name, entry);
        else
            waitForAllReplicasToProcessLogEntry(entry);
    }
A
Merge  
Alexey Milovidov 已提交
2728
}
A
Merge  
Alexey Milovidov 已提交
2729

A
Merge  
Alexey Arno 已提交
2730

2731
void StorageReplicatedMergeTree::attachPartition(const ASTPtr & partition, bool attach_part, const Context & context)
M
Merge  
Michael Kolupaev 已提交
2732
{
2733 2734
    assertNotReadonly();

2735
    String partition_id;
2736 2737

    if (attach_part)
2738
        partition_id = typeid_cast<const ASTLiteral &>(*partition).value.safeGet<String>();
2739
    else
2740
        partition_id = data.getPartitionIDFromQuery(partition, context);
2741

2742
    String source_dir = "detached/";
2743 2744 2745 2746 2747

    /// Let's compose a list of parts that should be added.
    Strings parts;
    if (attach_part)
    {
2748
        parts.push_back(partition_id);
2749 2750 2751
    }
    else
    {
2752
        LOG_DEBUG(log, "Looking for parts for partition " << partition_id << " in " << source_dir);
2753
        ActiveDataPartSet active_parts(data.format_version);
2754 2755 2756 2757 2758

        std::set<String> part_names;
        for (Poco::DirectoryIterator it = Poco::DirectoryIterator(full_path + source_dir); it != Poco::DirectoryIterator(); ++it)
        {
            String name = it.name();
2759
            MergeTreePartInfo part_info;
2760
            if (!MergeTreePartInfo::tryParsePartName(name, &part_info, data.format_version))
2761
                continue;
2762
            if (part_info.partition_id != partition_id)
2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779
                continue;
            LOG_DEBUG(log, "Found part " << name);
            active_parts.add(name);
            part_names.insert(name);
        }
        LOG_DEBUG(log, active_parts.size() << " of them are active");
        parts = active_parts.getParts();

        /// Inactive parts rename so they can not be attached in case of repeated ATTACH.
        for (const auto & name : part_names)
        {
            String containing_part = active_parts.getContainingPart(name);
            if (!containing_part.empty() && containing_part != name)
                Poco::File(full_path + source_dir + name).renameTo(full_path + source_dir + "inactive_" + name);
        }
    }

2780
    /// Synchronously check that added parts exist and are not broken. We will write checksums.txt if it does not exist.
2781
    LOG_DEBUG(log, "Checking parts");
2782
    std::vector<MergeTreeData::MutableDataPartPtr> loaded_parts;
2783 2784 2785
    for (const String & part : parts)
    {
        LOG_DEBUG(log, "Checking part " << part);
2786
        loaded_parts.push_back(data.loadPartAndFixMetadata(source_dir + part));
2787 2788
    }

2789
    ReplicatedMergeTreeBlockOutputStream output(*this, 0, 0, false);   /// TODO Allow to use quorum here.
2790
    for (auto & part : loaded_parts)
2791
    {
2792 2793 2794
        String old_name = part->name;
        output.writeExistingPart(part);
        LOG_DEBUG(log, "Attached part " << old_name << " as " << part->name);
2795
    }
M
Merge  
Michael Kolupaev 已提交
2796 2797
}

2798

2799 2800
bool StorageReplicatedMergeTree::checkTableCanBeDropped() const
{
2801
    /// Consider only synchronized data
2802
    const_cast<MergeTreeData &>(getData()).recalculateColumnSizes();
2803 2804
    context.checkTableCanBeDropped(database_name, table_name, getData().getTotalCompressedSize());
    return true;
2805
}
A
Merge  
Alexey Milovidov 已提交
2806

2807

M
Merge  
Michael Kolupaev 已提交
2808 2809
void StorageReplicatedMergeTree::drop()
{
2810 2811
    {
        auto zookeeper = tryGetZooKeeper();
A
Merge  
Alexey Milovidov 已提交
2812

2813 2814
        if (is_readonly || !zookeeper)
            throw Exception("Can't drop readonly replicated table (need to drop data in ZooKeeper as well)", ErrorCodes::TABLE_IS_READ_ONLY);
M
Merge  
Michael Kolupaev 已提交
2815

2816
        // checkTableCanBeDropped(); // uncomment to feel yourself safe
2817

2818
        shutdown();
M
Merge  
Michael Kolupaev 已提交
2819

2820 2821
        if (zookeeper->expired())
            throw Exception("Table was not dropped because ZooKeeper session has expired.", ErrorCodes::TABLE_WAS_NOT_DROPPED);
2822

2823 2824 2825
        LOG_INFO(log, "Removing replica " << replica_path);
        replica_is_active_node = nullptr;
        zookeeper->tryRemoveRecursive(replica_path);
M
Merge  
Michael Kolupaev 已提交
2826

2827 2828 2829 2830 2831 2832 2833 2834
        /// Check that `zookeeper_path` exists: it could have been deleted by another replica after execution of previous line.
        Strings replicas;
        if (zookeeper->tryGetChildren(zookeeper_path + "/replicas", replicas) == ZOK && replicas.empty())
        {
            LOG_INFO(log, "Removing table " << zookeeper_path << " (this might take several minutes)");
            zookeeper->tryRemoveRecursive(zookeeper_path);
        }
    }
M
Merge  
Michael Kolupaev 已提交
2835

2836
    data.dropAllData();
M
Merge  
Michael Kolupaev 已提交
2837 2838
}

A
Merge  
Alexey Milovidov 已提交
2839

M
Merge  
Michael Kolupaev 已提交
2840 2841
void StorageReplicatedMergeTree::rename(const String & new_path_to_db, const String & new_database_name, const String & new_table_name)
{
2842
    std::string new_full_path = new_path_to_db + escapeForFileName(new_table_name) + '/';
M
Merge  
Michael Kolupaev 已提交
2843

2844
    data.setPath(new_full_path, true);
M
Merge  
Michael Kolupaev 已提交
2845

2846 2847 2848
    database_name = new_database_name;
    table_name = new_table_name;
    full_path = new_full_path;
M
Merge  
Michael Kolupaev 已提交
2849

2850
    /// TODO: You can update names of loggers.
M
Merge  
Michael Kolupaev 已提交
2851 2852
}

A
Merge  
Alexey Milovidov 已提交
2853

2854 2855
bool StorageReplicatedMergeTree::existsNodeCached(const std::string & path)
{
2856 2857 2858 2859 2860
    {
        std::lock_guard<std::mutex> lock(existing_nodes_cache_mutex);
        if (existing_nodes_cache.count(path))
            return true;
    }
2861

2862
    bool res = getZooKeeper()->exists(path);
2863

2864 2865 2866 2867 2868
    if (res)
    {
        std::lock_guard<std::mutex> lock(existing_nodes_cache_mutex);
        existing_nodes_cache.insert(path);
    }
2869

2870
    return res;
2871 2872 2873
}


2874
AbandonableLockInZooKeeper StorageReplicatedMergeTree::allocateBlockNumber(const String & partition_id, zkutil::ZooKeeperPtr & zookeeper)
M
Merge  
Michael Kolupaev 已提交
2875
{
2876 2877
    String partition_path = zookeeper_path + "/block_numbers/" + partition_id;
    if (!existsNodeCached(partition_path))
2878
    {
2879
        int code = zookeeper->tryCreate(partition_path, "", zkutil::CreateMode::Persistent);
2880
        if (code != ZOK && code != ZNODEEXISTS)
2881
            throw zkutil::KeeperException(code, partition_path);
2882
    }
2883 2884

    return AbandonableLockInZooKeeper(
2885
        partition_path + "/block-",
2886
        zookeeper_path + "/temp", *zookeeper);
M
Merge  
Michael Kolupaev 已提交
2887 2888
}

A
Merge  
Alexey Milovidov 已提交
2889

2890
void StorageReplicatedMergeTree::waitForAllReplicasToProcessLogEntry(const ReplicatedMergeTreeLogEntryData & entry)
M
Merge  
Michael Kolupaev 已提交
2891
{
2892
    LOG_DEBUG(log, "Waiting for all replicas to process " << entry.znode_name);
M
Merge  
Michael Kolupaev 已提交
2893

2894 2895 2896
    Strings replicas = getZooKeeper()->getChildren(zookeeper_path + "/replicas");
    for (const String & replica : replicas)
        waitForReplicaToProcessLogEntry(replica, entry);
A
Merge  
Alexey Milovidov 已提交
2897

2898
    LOG_DEBUG(log, "Finished waiting for all replicas to process " << entry.znode_name);
A
Merge  
Alexey Milovidov 已提交
2899 2900 2901
}


2902
void StorageReplicatedMergeTree::waitForReplicaToProcessLogEntry(const String & replica, const ReplicatedMergeTreeLogEntryData & entry)
A
Merge  
Alexey Milovidov 已提交
2903
{
2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028
    String entry_str = entry.toString();
    String log_node_name;

    /** Two types of entries can be passed to this function
      * 1. (more often) From `log` directory - a common log, from where replicas copy entries to their queue.
      * 2. From the `queue` directory of one of the replicas.
      *
      * The problem is that the numbers (`sequential` node) of the queue elements in `log` and in `queue` do not match.
      * (And the numbers of the same log element for different replicas do not match in the `queue`.)
      *
      * Therefore, you should consider these cases separately.
      */

    /** First, you need to wait until replica takes `queue` element from the `log` to its queue,
      *  if it has not been done already (see the `pullLogsToQueue` function).
      *
      * To do this, check its node `log_pointer` - the maximum number of the element taken from `log` + 1.
      */

    if (startsWith(entry.znode_name, "log-"))
    {
        /** In this case, just take the number from the node name `log-xxxxxxxxxx`.
          */

        UInt64 log_index = parse<UInt64>(entry.znode_name.substr(entry.znode_name.size() - 10));
        log_node_name = entry.znode_name;

        LOG_DEBUG(log, "Waiting for " << replica << " to pull " << log_node_name << " to queue");

        /// Let's wait until entry gets into the replica queue.
        while (true)
        {
            zkutil::EventPtr event = std::make_shared<Poco::Event>();

            String log_pointer = getZooKeeper()->get(zookeeper_path + "/replicas/" + replica + "/log_pointer", nullptr, event);
            if (!log_pointer.empty() && parse<UInt64>(log_pointer) > log_index)
                break;

            event->wait();
        }
    }
    else if (startsWith(entry.znode_name, "queue-"))
    {
        /** In this case, the number of `log` node is unknown. You need look through everything from `log_pointer` to the end,
          *  looking for a node with the same content. And if we do not find it - then the replica has already taken this entry in its queue.
          */

        String log_pointer = getZooKeeper()->get(zookeeper_path + "/replicas/" + replica + "/log_pointer");

        Strings log_entries = getZooKeeper()->getChildren(zookeeper_path + "/log");
        UInt64 log_index = 0;
        bool found = false;

        for (const String & log_entry_name : log_entries)
        {
            log_index = parse<UInt64>(log_entry_name.substr(log_entry_name.size() - 10));

            if (!log_pointer.empty() && log_index < parse<UInt64>(log_pointer))
                continue;

            String log_entry_str;
            bool exists = getZooKeeper()->tryGet(zookeeper_path + "/log/" + log_entry_name, log_entry_str);
            if (exists && entry_str == log_entry_str)
            {
                found = true;
                log_node_name = log_entry_name;
                break;
            }
        }

        if (found)
        {
            LOG_DEBUG(log, "Waiting for " << replica << " to pull " << log_node_name << " to queue");

            /// Let's wait until the entry gets into the replica queue.
            while (true)
            {
                zkutil::EventPtr event = std::make_shared<Poco::Event>();

                String log_pointer = getZooKeeper()->get(zookeeper_path + "/replicas/" + replica + "/log_pointer", nullptr, event);
                if (!log_pointer.empty() && parse<UInt64>(log_pointer) > log_index)
                    break;

                event->wait();
            }
        }
    }
    else
        throw Exception("Logical error: unexpected name of log node: " + entry.znode_name, ErrorCodes::LOGICAL_ERROR);

    if (!log_node_name.empty())
        LOG_DEBUG(log, "Looking for node corresponding to " << log_node_name << " in " << replica << " queue");
    else
        LOG_DEBUG(log, "Looking for corresponding node in " << replica << " queue");

    /** Second - find the corresponding entry in the queue of the specified replica.
      * Its number may match neither the `log` node nor the `queue` node of the current replica (for us).
      * Therefore, we search by comparing the content.
      */

    Strings queue_entries = getZooKeeper()->getChildren(zookeeper_path + "/replicas/" + replica + "/queue");
    String queue_entry_to_wait_for;

    for (const String & entry_name : queue_entries)
    {
        String queue_entry_str;
        bool exists = getZooKeeper()->tryGet(zookeeper_path + "/replicas/" + replica + "/queue/" + entry_name, queue_entry_str);
        if (exists && queue_entry_str == entry_str)
        {
            queue_entry_to_wait_for = entry_name;
            break;
        }
    }

    /// While looking for the record, it has already been executed and deleted.
    if (queue_entry_to_wait_for.empty())
    {
        LOG_DEBUG(log, "No corresponding node found. Assuming it has been already processed." " Found " << queue_entries.size() << " nodes.");
        return;
    }

    LOG_DEBUG(log, "Waiting for " << queue_entry_to_wait_for << " to disappear from " << replica << " queue");

    /// Third - wait until the entry disappears from the replica queue.
    getZooKeeper()->waitForDisappear(zookeeper_path + "/replicas/" + replica + "/queue/" + queue_entry_to_wait_for);
M
Merge  
Michael Kolupaev 已提交
3029 3030 3031
}


3032
void StorageReplicatedMergeTree::getStatus(Status & res, bool with_zk_fields)
3033
{
3034 3035 3036 3037 3038 3039 3040
    auto zookeeper = tryGetZooKeeper();

    res.is_leader = is_leader_node;
    res.is_readonly = is_readonly;
    res.is_session_expired = !zookeeper || zookeeper->expired();

    res.queue = queue.getStatus();
3041 3042
    res.absolute_delay = getAbsoluteDelay(); /// NOTE: may be slightly inconsistent with queue status.

3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081
    res.parts_to_check = part_check_thread.size();

    res.zookeeper_path = zookeeper_path;
    res.replica_name = replica_name;
    res.replica_path = replica_path;
    res.columns_version = columns_version;

    if (res.is_session_expired || !with_zk_fields)
    {
        res.log_max_index = 0;
        res.log_pointer = 0;
        res.total_replicas = 0;
        res.active_replicas = 0;
    }
    else
    {
        auto log_entries = zookeeper->getChildren(zookeeper_path + "/log");

        if (log_entries.empty())
        {
            res.log_max_index = 0;
        }
        else
        {
            const String & last_log_entry = *std::max_element(log_entries.begin(), log_entries.end());
            res.log_max_index = parse<UInt64>(last_log_entry.substr(strlen("log-")));
        }

        String log_pointer_str = zookeeper->get(replica_path + "/log_pointer");
        res.log_pointer = log_pointer_str.empty() ? 0 : parse<UInt64>(log_pointer_str);

        auto all_replicas = zookeeper->getChildren(zookeeper_path + "/replicas");
        res.total_replicas = all_replicas.size();

        res.active_replicas = 0;
        for (const String & replica : all_replicas)
            if (zookeeper->exists(zookeeper_path + "/replicas/" + replica + "/is_active"))
                ++res.active_replicas;
    }
3082 3083
}

3084

3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099
/// TODO: Probably it is better to have queue in ZK with tasks for leader (like DDL)
void StorageReplicatedMergeTree::sendRequestToLeaderReplica(const ASTPtr & query, const Settings & settings)
{
    auto live_replicas = getZooKeeper()->getChildren(zookeeper_path + "/leader_election");
    if (live_replicas.empty())
        throw Exception("No active replicas", ErrorCodes::NO_ACTIVE_REPLICAS);

    std::sort(live_replicas.begin(), live_replicas.end());
    const auto leader = getZooKeeper()->get(zookeeper_path + "/leader_election/" + live_replicas.front());

    if (leader == replica_name)
        throw Exception("Leader was suddenly changed or logical error.", ErrorCodes::LEADERSHIP_CHANGED);

    ReplicatedMergeTreeAddress leader_address(getZooKeeper()->get(zookeeper_path + "/replicas/" + leader + "/host"));

3100
    /// TODO: add setters and getters interface for database and table fields of AST
3101
    auto new_query = query->clone();
3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113
    if (auto * alter = typeid_cast<ASTAlterQuery *>(new_query.get()))
    {
        alter->database = leader_address.database;
        alter->table = leader_address.table;
    }
    else if (auto * optimize = typeid_cast<ASTOptimizeQuery *>(new_query.get()))
    {
        optimize->database = leader_address.database;
        optimize->table = leader_address.table;
    }
    else
        throw Exception("Can't proxy this query. Unsupported query type", ErrorCodes::NOT_IMPLEMENTED);
3114 3115 3116 3117 3118 3119 3120 3121 3122

    /// NOTE Works only if there is access from the default user without a password. You can fix it by adding a parameter to the server config.

    Connection connection(
        leader_address.host,
        leader_address.queries_port,
        leader_address.database,
        "", "", "ClickHouse replica");

3123
    RemoteBlockInputStream stream(connection, formattedAST(new_query), context, &settings);
3124 3125 3126 3127 3128 3129 3130
    NullBlockOutputStream output;

    copyData(stream, output);
    return;
}


3131 3132
void StorageReplicatedMergeTree::getQueue(LogEntriesData & res, String & replica_name_)
{
3133 3134
    replica_name_ = replica_name;
    queue.getEntries(res);
3135 3136
}

3137 3138 3139 3140 3141 3142
time_t StorageReplicatedMergeTree::getAbsoluteDelay() const
{
    time_t min_unprocessed_insert_time = 0;
    time_t max_processed_insert_time = 0;
    queue.getInsertTimes(min_unprocessed_insert_time, max_processed_insert_time);

3143 3144 3145 3146
    /// Load start time, then finish time to avoid reporting false delay when start time is updated
    /// between loading of two variables.
    time_t queue_update_start_time = last_queue_update_start_time.load();
    time_t queue_update_finish_time = last_queue_update_finish_time.load();
3147 3148 3149

    time_t current_time = time(nullptr);

3150
    if (!queue_update_finish_time)
3151
    {
3152
        /// We have not updated queue even once yet (perhaps replica is readonly).
3153 3154 3155 3156 3157 3158 3159 3160
        /// As we have no info about the current state of replication log, return effectively infinite delay.
        return current_time;
    }
    else if (min_unprocessed_insert_time)
    {
        /// There are some unprocessed insert entries in queue.
        return (current_time > min_unprocessed_insert_time) ? (current_time - min_unprocessed_insert_time) : 0;
    }
3161
    else if (queue_update_start_time > queue_update_finish_time)
3162 3163 3164 3165
    {
        /// Queue is empty, but there are some in-flight or failed queue update attempts
        /// (likely because of problems with connecting to ZooKeeper).
        /// Return the time passed since last attempt.
3166
        return (current_time > queue_update_start_time) ? (current_time - queue_update_start_time) : 0;
3167 3168 3169 3170 3171 3172 3173
    }
    else
    {
        /// Everything is up-to-date.
        return 0;
    }
}
3174

3175
void StorageReplicatedMergeTree::getReplicaDelays(time_t & out_absolute_delay, time_t & out_relative_delay)
3176
{
3177
    assertNotReadonly();
3178

3179
    time_t current_time = time(nullptr);
3180

3181
    out_absolute_delay = getAbsoluteDelay();
3182
    out_relative_delay = 0;
3183

3184 3185 3186 3187
    /** Relative delay is the maximum difference of absolute delay from any other replica,
      *  (if this replica lags behind any other live replica, or zero, otherwise).
      * Calculated only if the absolute delay is large enough.
      */
3188

3189 3190
    if (out_absolute_delay < static_cast<time_t>(data.settings.min_relative_delay_to_yield_leadership))
        return;
3191

3192
    auto zookeeper = getZooKeeper();
3193

3194 3195
    time_t max_replicas_unprocessed_insert_time = 0;
    bool have_replica_with_nothing_unprocessed = false;
3196

3197
    Strings replicas = zookeeper->getChildren(zookeeper_path + "/replicas");
3198

3199 3200 3201 3202
    for (const auto & replica : replicas)
    {
        if (replica == replica_name)
            continue;
3203

3204 3205 3206
        /// Skip dead replicas.
        if (!zookeeper->exists(zookeeper_path + "/replicas/" + replica + "/is_active"))
            continue;
3207

3208 3209 3210
        String value;
        if (!zookeeper->tryGet(zookeeper_path + "/replicas/" + replica + "/min_unprocessed_insert_time", value))
            continue;
3211

3212
        time_t replica_time = value.empty() ? 0 : parse<time_t>(value);
3213

3214 3215 3216 3217 3218 3219 3220 3221 3222
        if (replica_time == 0)
        {
            /** Note
              * The conclusion that the replica does not lag may be incorrect,
              *  because the information about `min_unprocessed_insert_time` is taken
              *  only from that part of the log that has been moved to the queue.
              * If the replica for some reason has stalled `queueUpdatingThread`,
              *  then `min_unprocessed_insert_time` will be incorrect.
              */
3223

3224 3225 3226
            have_replica_with_nothing_unprocessed = true;
            break;
        }
3227

3228 3229 3230
        if (replica_time > max_replicas_unprocessed_insert_time)
            max_replicas_unprocessed_insert_time = replica_time;
    }
3231

3232 3233
    if (have_replica_with_nothing_unprocessed)
        out_relative_delay = out_absolute_delay;
3234 3235 3236 3237 3238 3239 3240
    else
    {
        max_replicas_unprocessed_insert_time = std::min(current_time, max_replicas_unprocessed_insert_time);
        time_t min_replicas_delay = current_time - max_replicas_unprocessed_insert_time;
        if (out_absolute_delay > min_replicas_delay)
            out_relative_delay = out_absolute_delay - min_replicas_delay;
    }
3241 3242 3243
}


3244
void StorageReplicatedMergeTree::fetchPartition(const ASTPtr & partition, const String & from_, const Context & context)
3245
{
3246
    String partition_id = data.getPartitionIDFromQuery(partition, context);
3247 3248 3249 3250 3251

    String from = from_;
    if (from.back() == '/')
        from.resize(from.size() - 1);

3252
    LOG_INFO(log, "Will fetch partition " << partition_id << " from shard " << from_);
3253 3254 3255 3256 3257 3258

    /** Let's check that there is no such partition in the `detached` directory (where we will write the downloaded parts).
      * Unreliable (there is a race condition) - such a partition may appear a little later.
      */
    Poco::DirectoryIterator dir_end;
    for (Poco::DirectoryIterator dir_it{data.getFullPath() + "detached/"}; dir_it != dir_end; ++dir_it)
3259 3260
    {
        MergeTreePartInfo part_info;
3261 3262
        if (MergeTreePartInfo::tryParsePartName(dir_it.name(), &part_info, data.format_version)
              && part_info.partition_id == partition_id)
3263 3264
            throw Exception("Detached partition " + partition_id + " already exists.", ErrorCodes::PARTITION_ALREADY_EXISTS);
    }
3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286 3287 3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338

    zkutil::Strings replicas;
    zkutil::Strings active_replicas;
    String best_replica;

    {
        auto zookeeper = getZooKeeper();

        /// List of replicas of source shard.
        replicas = zookeeper->getChildren(from + "/replicas");

        /// Leave only active replicas.
        active_replicas.reserve(replicas.size());

        for (const String & replica : replicas)
            if (zookeeper->exists(from + "/replicas/" + replica + "/is_active"))
                active_replicas.push_back(replica);

        if (active_replicas.empty())
            throw Exception("No active replicas for shard " + from, ErrorCodes::NO_ACTIVE_REPLICAS);

        /** You must select the best (most relevant) replica.
        * This is a replica with the maximum `log_pointer`, then with the minimum `queue` size.
        * NOTE This is not exactly the best criteria. It does not make sense to download old partitions,
        *  and it would be nice to be able to choose the replica closest by network.
        * NOTE Of course, there are data races here. You can solve it by retrying.
        */
        Int64 max_log_pointer = -1;
        UInt64 min_queue_size = std::numeric_limits<UInt64>::max();

        for (const String & replica : active_replicas)
        {
            String current_replica_path = from + "/replicas/" + replica;

            String log_pointer_str = zookeeper->get(current_replica_path + "/log_pointer");
            Int64 log_pointer = log_pointer_str.empty() ? 0 : parse<UInt64>(log_pointer_str);

            zkutil::Stat stat;
            zookeeper->get(current_replica_path + "/queue", &stat);
            size_t queue_size = stat.numChildren;

            if (log_pointer > max_log_pointer
                || (log_pointer == max_log_pointer && queue_size < min_queue_size))
            {
                max_log_pointer = log_pointer;
                min_queue_size = queue_size;
                best_replica = replica;
            }
        }
    }

    if (best_replica.empty())
        throw Exception("Logical error: cannot choose best replica.", ErrorCodes::LOGICAL_ERROR);

    LOG_INFO(log, "Found " << replicas.size() << " replicas, " << active_replicas.size() << " of them are active."
        << " Selected " << best_replica << " to fetch from.");

    String best_replica_path = from + "/replicas/" + best_replica;

    /// Let's find out which parts are on the best replica.

    /** Trying to download these parts.
      * Some of them could be deleted due to the merge.
      * In this case, update the information about the available parts and try again.
      */

    unsigned try_no = 0;
    Strings missing_parts;
    do
    {
        if (try_no)
            LOG_INFO(log, "Some of parts (" << missing_parts.size() << ") are missing. Will try to fetch covering parts.");

        if (try_no >= 5)
3339
            throw Exception("Too many retries to fetch parts from " + best_replica_path, ErrorCodes::TOO_MUCH_RETRIES_TO_FETCH_PARTS);
3340 3341

        Strings parts = getZooKeeper()->getChildren(best_replica_path + "/parts");
3342
        ActiveDataPartSet active_parts_set(data.format_version, parts);
3343 3344 3345 3346 3347 3348 3349 3350 3351
        Strings parts_to_fetch;

        if (missing_parts.empty())
        {
            parts_to_fetch = active_parts_set.getParts();

            /// Leaving only the parts of the desired partition.
            Strings parts_to_fetch_partition;
            for (const String & part : parts_to_fetch)
3352
            {
3353
                if (MergeTreePartInfo::fromPartName(part, data.format_version).partition_id == partition_id)
3354
                    parts_to_fetch_partition.push_back(part);
3355
            }
3356 3357 3358 3359

            parts_to_fetch = std::move(parts_to_fetch_partition);

            if (parts_to_fetch.empty())
3360
                throw Exception("Partition " + partition_id + " on " + best_replica_path + " doesn't exist", ErrorCodes::PARTITION_DOESNT_EXIST);
3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384
        }
        else
        {
            for (const String & missing_part : missing_parts)
            {
                String containing_part = active_parts_set.getContainingPart(missing_part);
                if (!containing_part.empty())
                    parts_to_fetch.push_back(containing_part);
                else
                    LOG_WARNING(log, "Part " << missing_part << " on replica " << best_replica_path << " has been vanished.");
            }
        }

        LOG_INFO(log, "Parts to fetch: " << parts_to_fetch.size());

        missing_parts.clear();
        for (const String & part : parts_to_fetch)
        {
            try
            {
                fetchPart(part, best_replica_path, true, 0);
            }
            catch (const DB::Exception & e)
            {
3385
                if (e.code() != ErrorCodes::RECEIVED_ERROR_FROM_REMOTE_IO_SERVER && e.code() != ErrorCodes::RECEIVED_ERROR_TOO_MANY_REQUESTS)
3386 3387 3388 3389 3390 3391 3392 3393 3394
                    throw;

                LOG_INFO(log, e.displayText());
                missing_parts.push_back(part);
            }
        }

        ++try_no;
    } while (!missing_parts.empty());
3395 3396 3397
}


3398
void StorageReplicatedMergeTree::freezePartition(const ASTPtr & partition, const String & with_name, const Context & context)
3399
{
3400
    data.freezePartition(partition, with_name, context);
3401 3402
}

3403

3404
void StorageReplicatedMergeTree::clearOldPartsAndRemoveFromZK()
3405 3406 3407
{
    /// Critical section is not required (since grabOldParts() returns unique part set on each call)

3408
    auto table_lock = lockStructure(false, __PRETTY_FUNCTION__);
3409 3410 3411
    auto zookeeper = getZooKeeper();

    MergeTreeData::DataPartsVector parts = data.grabOldParts();
3412
    if (parts.empty())
3413 3414
        return;

3415 3416 3417 3418 3419 3420
    MergeTreeData::DataPartsVector parts_to_delete_only_from_filesystem;    // Only duplicates
    MergeTreeData::DataPartsVector parts_to_delete_completely;              // All parts except duplicates
    MergeTreeData::DataPartsVector parts_to_retry_deletion;                 // Parts that should be retried due to network problems
    MergeTreeData::DataPartsVector parts_to_remove_from_filesystem;         // Parts removed from ZK

    for (const auto & part : parts)
3421
    {
3422 3423 3424 3425 3426 3427
        if (!part->is_duplicate)
            parts_to_delete_completely.emplace_back(part);
        else
            parts_to_delete_only_from_filesystem.emplace_back(part);
    }
    parts.clear();
3428

3429 3430 3431
    auto remove_parts_from_filesystem = [log=log] (const MergeTreeData::DataPartsVector & parts_to_remove)
    {
        for (auto & part : parts_to_remove)
3432
        {
3433 3434 3435 3436 3437 3438 3439 3440
            try
            {
                part->remove();
            }
            catch (...)
            {
                tryLogCurrentException(log, "There is a problem with deleting part " + part->name + " from filesystem");
            }
3441 3442 3443
        }
    };

3444 3445 3446 3447 3448 3449 3450 3451 3452 3453
    /// Delete duplicate parts from filesystem
    if (!parts_to_delete_only_from_filesystem.empty())
    {
        remove_parts_from_filesystem(parts_to_delete_only_from_filesystem);
        data.removePartsFinally(parts_to_delete_only_from_filesystem);

        LOG_DEBUG(log, "Removed " << parts_to_delete_only_from_filesystem.size() << " old duplicate parts");
    }

    /// Delete normal parts from ZooKeeper
3454
    NameSet part_names_to_retry_deletion;
3455 3456
    try
    {
3457 3458 3459
        Strings part_names_to_delete_completely;
        for (const auto & part : parts_to_delete_completely)
            part_names_to_delete_completely.emplace_back(part->name);
3460

3461 3462
        LOG_DEBUG(log, "Removing " << parts_to_delete_completely.size() << " old parts from ZooKeeper");
        removePartsFromZooKeeper(zookeeper, part_names_to_delete_completely, &part_names_to_retry_deletion);
3463 3464 3465
    }
    catch (...)
    {
3466 3467
        LOG_ERROR(log, "There is a problem with deleting parts from ZooKeeper: " << getCurrentExceptionMessage(false));
    }
3468

3469
    /// Part names that were reliably deleted from ZooKeeper should be deleted from filesystem
3470
    auto num_reliably_deleted_parts = parts_to_delete_completely.size() - part_names_to_retry_deletion.size();
3471
    LOG_DEBUG(log, "Removed " << num_reliably_deleted_parts << " old parts from ZooKeeper. Removing them from filesystem.");
3472

3473 3474
    /// Delete normal parts on two sets
    for (auto & part : parts_to_delete_completely)
3475 3476 3477 3478 3479
    {
        if (part_names_to_retry_deletion.count(part->name) == 0)
            parts_to_remove_from_filesystem.emplace_back(part);
        else
            parts_to_retry_deletion.emplace_back(part);
3480 3481
    }

3482 3483
    /// Will retry deletion
    if (!parts_to_retry_deletion.empty())
3484
    {
3485
        data.rollbackDeletingParts(parts_to_retry_deletion);
3486 3487
        LOG_DEBUG(log, "Will retry deletion of " << parts_to_retry_deletion.size() << " parts in the next time");
    }
3488

3489
    /// Remove parts from filesystem and finally from data_parts
3490
    if (!parts_to_remove_from_filesystem.empty())
3491
    {
3492 3493
        remove_parts_from_filesystem(parts_to_remove_from_filesystem);
        data.removePartsFinally(parts_to_remove_from_filesystem);
3494

3495 3496
        LOG_DEBUG(log, "Removed " << parts_to_remove_from_filesystem.size() << " old parts");
    }
3497 3498 3499
}


3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515
static int32_t tryMultiWithRetries(zkutil::ZooKeeperPtr & zookeeper, zkutil::Ops & ops) noexcept
{
    int32_t code;
    try
    {
        code = zookeeper->tryMultiWithRetries(ops);
    }
    catch (const zkutil::KeeperException & e)
    {
        code = e.code;
    }

    return code;
}


3516 3517
void StorageReplicatedMergeTree::removePartsFromZooKeeper(zkutil::ZooKeeperPtr & zookeeper, const Strings & part_names,
                                                          NameSet * parts_should_be_retied)
3518 3519
{
    zkutil::Ops ops;
3520
    auto it_first_node_in_batch = part_names.cbegin();
3521 3522 3523 3524 3525

    for (auto it = part_names.cbegin(); it != part_names.cend(); ++it)
    {
        removePartFromZooKeeper(*it, ops);

3526 3527
        auto it_next = std::next(it);
        if (ops.size() >= zkutil::MULTI_BATCH_SIZE || it_next == part_names.cend())
3528
        {
3529
            /// It is Ok to use multi with retries to delete nodes, because new nodes with the same names cannot appear here
3530
            auto code = tryMultiWithRetries(zookeeper, ops);
3531
            ops.clear();
3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544

            if (code == ZNONODE)
            {
                /// Fallback
                LOG_DEBUG(log, "There are no some part nodes in ZooKeeper, will remove part nodes sequentially");

                for (auto it_in_batch = it_first_node_in_batch; it_in_batch != it_next; ++it_in_batch)
                {
                    zkutil::Ops cur_ops;
                    removePartFromZooKeeper(*it_in_batch, cur_ops);
                    auto cur_code = tryMultiWithRetries(zookeeper, cur_ops);

                    if (cur_code == ZNONODE)
3545
                    {
3546
                        LOG_DEBUG(log, "There is no part " << *it_in_batch << " in ZooKeeper, it was only in filesystem");
3547 3548 3549 3550 3551
                    }
                    else if (parts_should_be_retied && zkutil::isHardwareErrorCode(cur_code))
                    {
                        parts_should_be_retied->emplace(*it_in_batch);
                    }
3552
                    else if (cur_code != ZOK)
3553
                    {
3554
                        LOG_WARNING(log, "Cannot remove part " << *it_in_batch << " from ZooKeeper: " << ::zerror(cur_code));
3555
                    }
3556 3557
                }
            }
3558 3559 3560 3561 3562
            else if (parts_should_be_retied && zkutil::isHardwareErrorCode(code))
            {
                for (auto it_in_batch = it_first_node_in_batch; it_in_batch != it_next; ++it_in_batch)
                    parts_should_be_retied->emplace(*it_in_batch);
            }
3563 3564 3565 3566 3567 3568 3569
            else if (code != ZOK)
            {
                LOG_WARNING(log, "There was a problem with deleting " << (it_next - it_first_node_in_batch)
                    << " nodes from ZooKeeper: " << ::zerror(code));
            }

            it_first_node_in_batch = it_next;
3570 3571 3572 3573 3574
        }
    }
}


3575 3576 3577 3578 3579 3580 3581 3582 3583 3584 3585 3586 3587 3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624 3625 3626
void StorageReplicatedMergeTree::clearBlocksInPartition(
    zkutil::ZooKeeper & zookeeper, const String & partition_id, Int64 min_block_num, Int64 max_block_num)
{
    Strings blocks;
    if (ZOK != zookeeper.tryGetChildren(zookeeper_path + "/blocks", blocks))
        throw Exception(zookeeper_path + "/blocks doesn't exist", ErrorCodes::NOT_FOUND_NODE);

    String partition_prefix = partition_id + "_";
    std::vector<std::pair<String, zkutil::ZooKeeper::TryGetFuture>> get_futures;
    for (const String & block_id : blocks)
    {
        if (startsWith(block_id, partition_prefix))
        {
            String path = zookeeper_path + "/blocks/" + block_id;
            get_futures.emplace_back(path, zookeeper.asyncTryGet(path));
        }
    }

    std::vector<std::pair<String, zkutil::ZooKeeper::TryRemoveFuture>> to_delete_futures;
    for (auto & pair : get_futures)
    {
        const String & path = pair.first;
        zkutil::ZooKeeper::ValueAndStatAndExists result = pair.second.get();

        if (!result.exists)
            continue;

        ReadBufferFromString buf(result.value);
        Int64 block_num = 0;
        bool parsed = tryReadIntText(block_num, buf) && buf.eof();
        if (!parsed || (min_block_num <= block_num && block_num <= max_block_num))
            to_delete_futures.emplace_back(path, zookeeper.asyncTryRemove(path));
    }

    for (auto & pair : to_delete_futures)
    {
        const String & path = pair.first;
        int32_t rc = pair.second.get();
        if (rc == ZNOTEMPTY)
        {
             /// Can happen if there are leftover block nodes with children created by previous server versions.
            zookeeper.removeRecursive(path);
        }
        else if (rc != ZOK)
            LOG_WARNING(log,
                "Error while deleting ZooKeeper path `" << path << "`: " + zkutil::ZooKeeper::error2string(rc) << ", ignoring.");
    }

    LOG_TRACE(log, "Deleted " << to_delete_futures.size() << " deduplication block IDs in partition ID " << partition_id);
}


M
Merge  
Michael Kolupaev 已提交
3627
}