ClickHouse/src/Coordination/KeeperStateManager.h

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#pragma once
#include <Core/Types.h>
#include <string>
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#include <Coordination/KeeperLogStore.h>
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#include <Coordination/CoordinationSettings.h>
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#include <libnuraft/nuraft.hxx>
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#include <Poco/Util/AbstractConfiguration.h>
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#include "Coordination/KeeperStateMachine.h"
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#include <Coordination/KeeperSnapshotManager.h>
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namespace DB
{
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using KeeperServerConfigPtr = nuraft::ptr<nuraft::srv_config>;
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/// When our configuration changes the following action types
/// can happen
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enum class ConfigUpdateActionType
{
RemoveServer,
AddServer,
UpdatePriority,
};
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/// Action to update configuration
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struct ConfigUpdateAction
{
ConfigUpdateActionType action_type;
KeeperServerConfigPtr server;
};
using ConfigUpdateActions = std::vector<ConfigUpdateAction>;
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/// Responsible for managing our and cluster configuration
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class KeeperStateManager : public nuraft::state_mgr
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{
public:
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KeeperStateManager(
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int server_id_,
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const std::string & config_prefix_,
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const std::string & log_storage_path,
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const std::string & state_file_path,
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const Poco::Util::AbstractConfiguration & config,
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const CoordinationSettingsPtr & coordination_settings);
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/// Constructor for tests
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KeeperStateManager(
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int server_id_,
const std::string & host,
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int port,
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const std::string & logs_path,
const std::string & state_file_path);
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void loadLogStore(uint64_t last_commited_index, uint64_t logs_to_keep);
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/// Flush logstore and call shutdown of background thread
void flushAndShutDownLogStore();
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/// Called on server start, in our case we don't use any separate logic for load
nuraft::ptr<nuraft::cluster_config> load_config() override
{
std::lock_guard lock(configuration_wrapper_mutex);
return configuration_wrapper.cluster_config;
}
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/// Save cluster config (i.e. nodes, their priorities and so on)
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void save_config(const nuraft::cluster_config & config) override;
void save_state(const nuraft::srv_state & state) override;
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nuraft::ptr<nuraft::srv_state> read_state() override;
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nuraft::ptr<nuraft::log_store> load_log_store() override { return log_store; }
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int32_t server_id() override { return my_server_id; }
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nuraft::ptr<nuraft::srv_config> get_srv_config() const { return configuration_wrapper.config; } /// NOLINT
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void system_exit(const int exit_code) override; /// NOLINT
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int getPort() const
{
std::lock_guard lock(configuration_wrapper_mutex);
return configuration_wrapper.port;
}
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bool shouldStartAsFollower() const
{
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std::lock_guard lock(configuration_wrapper_mutex);
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return configuration_wrapper.servers_start_as_followers.contains(my_server_id);
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}
bool isSecure() const
{
return secure;
}
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nuraft::ptr<KeeperLogStore> getLogStore() const { return log_store; }
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uint64_t getTotalServers() const
{
std::lock_guard lock(configuration_wrapper_mutex);
return configuration_wrapper.cluster_config->get_servers().size();
}
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/// Read all log entries in log store from the begging and return latest config (with largest log_index)
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ClusterConfigPtr getLatestConfigFromLogStore() const;
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/// Get configuration diff between proposed XML and current state in RAFT
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ConfigUpdateActions getConfigurationDiff(const Poco::Util::AbstractConfiguration & config) const;
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private:
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const std::filesystem::path & getOldServerStatePath();
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/// Wrapper struct for Keeper cluster config. We parse this
/// info from XML files.
struct KeeperConfigurationWrapper
{
/// Our port
int port;
/// Our config
KeeperServerConfigPtr config;
/// Servers id's to start as followers
std::unordered_set<int> servers_start_as_followers;
/// Cluster config
ClusterConfigPtr cluster_config;
};
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int my_server_id;
bool secure;
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std::string config_prefix;
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mutable std::mutex configuration_wrapper_mutex;
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KeeperConfigurationWrapper configuration_wrapper;
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nuraft::ptr<KeeperLogStore> log_store;
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const std::filesystem::path server_state_path;
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Poco::Logger * logger;
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public:
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/// Parse configuration from xml config.
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KeeperConfigurationWrapper parseServersConfiguration(const Poco::Util::AbstractConfiguration & config, bool allow_without_us) const;
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};
}