263 lines
12 KiB
C++
263 lines
12 KiB
C++
#pragma once
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/*
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* Copyright (c) 2016 MariaDB Corporation Ab
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*
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* Use of this software is governed by the Business Source License included
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* in the LICENSE.TXT file and at www.mariadb.com/bsl11.
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*
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* Change Date: 2020-01-01
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*
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* On the date above, in accordance with the Business Source License, use
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* of this software will be governed by version 2 or later of the General
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* Public License.
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*/
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#include <maxscale/cppdefs.hh>
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#include <string>
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#include <tr1/unordered_map>
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#include <vector>
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#include <maxscale/json_api.h>
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#include <maxscale/monitor.h>
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#include <maxscale/thread.h>
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#include "utilities.hh"
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/** Utility macro for printing both MXS_ERROR and json error */
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#define PRINT_MXS_JSON_ERROR(err_out, format, ...)\
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do {\
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MXS_ERROR(format, ##__VA_ARGS__);\
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if (err_out)\
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{\
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*err_out = mxs_json_error_append(*err_out, format, ##__VA_ARGS__);\
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}\
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} while (false)
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extern const int PORT_UNKNOWN;
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extern const int64_t SERVER_ID_UNKNOWN;
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class MariaDBMonitor;
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typedef std::tr1::unordered_map<const MXS_MONITORED_SERVER*, MySqlServerInfo> ServerInfoMap;
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typedef std::vector<MXS_MONITORED_SERVER*> ServerVector;
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typedef std::vector<string> StringVector;
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enum print_repl_warnings_t
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{
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WARNINGS_ON,
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WARNINGS_OFF
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};
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// TODO: Most of following should be class methods
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MySqlServerInfo* get_server_info(MariaDBMonitor* handle, const MXS_MONITORED_SERVER* db);
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const MySqlServerInfo* get_server_info(const MariaDBMonitor* handle, const MXS_MONITORED_SERVER* db);
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bool can_replicate_from(MariaDBMonitor* mon,
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MXS_MONITORED_SERVER* slave, MySqlServerInfo* slave_info,
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MXS_MONITORED_SERVER* master, MySqlServerInfo* master_info);
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MySqlServerInfo* update_slave_info(MariaDBMonitor* mon, MXS_MONITORED_SERVER* server);
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void print_redirect_errors(MXS_MONITORED_SERVER* first_server, const ServerVector& servers, json_t** err_out);
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bool do_show_slave_status(MariaDBMonitor* mon, MySqlServerInfo* serv_info, MXS_MONITORED_SERVER* database);
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string generate_master_gtid_wait_cmd(const Gtid& gtid, double timeout);
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bool query_one_row(MXS_MONITORED_SERVER *database, const char* query, unsigned int expected_cols,
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StringVector* output);
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bool check_replication_settings(const MXS_MONITORED_SERVER* server, MySqlServerInfo* server_info,
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print_repl_warnings_t print_warnings = WARNINGS_ON);
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// MariaDB Monitor instance data
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class MariaDBMonitor
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{
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private:
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MariaDBMonitor(const MariaDBMonitor&);
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MariaDBMonitor& operator = (const MariaDBMonitor&);
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public:
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// TODO: Once done refactoring, see which of these can be moved to private.
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/**
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* Start the monitor instance and return the instance data, creating it if starting for the first time.
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* This function creates a thread to execute the monitoring.
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*
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* @param monitor General monitor data
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* @param params Configuration parameters
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* @return A pointer to MariaDBMonitor specific data.
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*/
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static MariaDBMonitor* start_monitor(MXS_MONITOR *monitor, const MXS_CONFIG_PARAMETER* params);
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/**
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* Stop the monitor. Waits until monitor has stopped.
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*/
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void stop_monitor();
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/**
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* Monitor a database with given server info.
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*
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* @param mon
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* @param database Database to monitor
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* @param serv_info Server info for database
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*/
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void monitor_mysql_db(MXS_MONITORED_SERVER* database, MySqlServerInfo *serv_info);
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/**
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* Performs switchover for a simple topology (1 master, N slaves, no intermediate masters). If an
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* intermediate step fails, the cluster may be left without a master.
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*
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* @param err_out json object for error printing. Can be NULL.
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* @return True if successful. If false, the cluster can be in various situations depending on which step
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* failed. In practice, manual intervention is usually required on failure.
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*/
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bool do_switchover(MXS_MONITORED_SERVER* current_master, MXS_MONITORED_SERVER* new_master,
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json_t** err_out);
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/**
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* @brief Process possible failover event
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*
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* If a master failure has occurred and MaxScale is configured with failover functionality, this fuction
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* executes failover to select and promote a new master server. This function should be called immediately
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* after @c mon_process_state_changes.
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*
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* @param cluster_modified_out Set to true if modifying cluster
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* @return True on success, false on error
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*/
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bool mon_process_failover(bool* cluster_modified_out);
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/**
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* Performs failover for a simple topology (1 master, N slaves, no intermediate masters).
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*
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* @param mon Server cluster monitor
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* @param err_out Json output
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* @return True if successful
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*/
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bool do_failover(json_t** err_out);
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/**
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* Checks if a server is a possible rejoin candidate. A true result from this function is not yet sufficient
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* criteria and another call to can_replicate_from() should be made.
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*
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* @param server Server to check
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* @param master_info Master server info
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* @param output Error output. If NULL, no error is printed to log.
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* @return True, if server is a rejoin suspect.
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*/
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bool server_is_rejoin_suspect(MXS_MONITORED_SERVER* server, MySqlServerInfo* master_info,
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json_t** output);
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/**
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* (Re)join given servers to the cluster. The servers in the array are assumed to be joinable.
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* Usually the list is created by get_joinable_servers().
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*
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* @param joinable_servers Which servers to rejoin
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* @return The number of servers successfully rejoined
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*/
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uint32_t do_rejoin(const ServerVector& joinable_servers);
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/**
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* Check if the cluster is a valid rejoin target.
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*
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* @return True if master and gtid domain are known
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*/
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bool cluster_can_be_joined();
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/**
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* Check that preconditions for a failover are met.
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*
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* @param mon Cluster monitor
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* @param error_out JSON error out
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* @return True if failover may proceed
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*/
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bool failover_check(json_t** error_out);
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/**
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* Check if server is using gtid replication.
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*
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* @param mon_server Server to check
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* @param error_out Error output
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* @return True if using gtid-replication. False if not, or if server is not a slave or otherwise does
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* not have a gtid_IO_Pos.
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*/
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bool uses_gtid(MXS_MONITORED_SERVER* mon_server, json_t** error_out);
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MXS_MONITOR* monitor; /**< Generic monitor object */
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volatile int shutdown; /**< Flag to shutdown the monitor thread.
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* Accessed from multiple threads. */
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int status; /**< Monitor status. TODO: This should be in MXS_MONITOR */
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MXS_MONITORED_SERVER *master; /**< Master server for MySQL Master/Slave replication */
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ServerInfoMap server_info; /**< Contains server specific information */
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unsigned long id; /**< Monitor ID */
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bool warn_set_standalone_master; /**< Log a warning when setting standalone master */
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// Values updated by monitor
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int64_t master_gtid_domain; /**< Gtid domain currently used by the master */
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string external_master_host; /**< External master host, for fail/switchover */
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int external_master_port; /**< External master port */
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// Replication topology detection settings
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bool mysql51_replication; /**< Use MySQL 5.1 replication */
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bool detectStaleMaster; /**< Monitor flag for MySQL replication Stale Master detection */
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bool detectStaleSlave; /**< Monitor flag for MySQL replication Stale Master detection */
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bool multimaster; /**< Detect and handle multi-master topologies */
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bool ignore_external_masters; /**< Ignore masters outside of the monitor configuration */
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bool detect_standalone_master; /**< If standalone master are detected */
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bool replicationHeartbeat; /**< Monitor flag for MySQL replication heartbeat */
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// Failover, switchover and rejoin settings
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int failcount; /**< How many monitoring cycles master must be down before auto-failover
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* begins */
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uint32_t failover_timeout; /**< Timeout in seconds for the master failover */
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uint32_t switchover_timeout; /**< Timeout in seconds for the master switchover */
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bool verify_master_failure; /**< Whether master failure is verified via slaves */
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int master_failure_timeout; /**< Master failure verification (via slaves) time in seconds */
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bool auto_failover; /**< If automatic master failover is enabled */
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bool auto_rejoin; /**< Attempt to start slave replication on standalone servers or servers
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* replicating from the wrong master automatically. */
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ServerVector excluded_servers; /**< Servers banned for master promotion during auto-failover. */
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// Other settings
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string script; /**< Script to call when state changes occur on servers */
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uint64_t events; /**< enabled events */
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bool allow_cluster_recovery; /**< Allow failed servers to rejoin the cluster */
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private:
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THREAD m_thread; /**< Monitor thread */
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// Failover, switchover and rejoin settings
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string m_replication_user; /**< Replication user for CHANGE MASTER TO-commands */
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string m_replication_password; /**< Replication password for CHANGE MASTER TO-commands */
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MariaDBMonitor(MXS_MONITOR* monitor_base);
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~MariaDBMonitor();
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bool load_config_params(const MXS_CONFIG_PARAMETER* params);
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bool failover_wait_relay_log(MXS_MONITORED_SERVER* new_master, int seconds_remaining, json_t** err_out);
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bool switchover_demote_master(MXS_MONITORED_SERVER* current_master, MySqlServerInfo* info,
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json_t** err_out);
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bool switchover_wait_slaves_catchup(const ServerVector& slaves, const Gtid& gtid, int total_timeout,
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int read_timeout, json_t** err_out);
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bool switchover_wait_slave_catchup(MXS_MONITORED_SERVER* slave, const Gtid& gtid,
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int total_timeout, int read_timeout, json_t** err_out);
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bool wait_cluster_stabilization(MXS_MONITORED_SERVER* new_master, const ServerVector& slaves,
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int seconds_remaining);
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bool switchover_check_preferred_master(MXS_MONITORED_SERVER* preferred, json_t** err_out);
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bool promote_new_master(MXS_MONITORED_SERVER* new_master, json_t** err_out);
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MXS_MONITORED_SERVER* select_new_master(ServerVector* slaves_out, json_t** err_out);
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bool server_is_excluded(const MXS_MONITORED_SERVER* server);
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bool is_candidate_better(const MySqlServerInfo* current_best_info, const MySqlServerInfo* candidate_info);
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MySqlServerInfo* update_slave_info(MXS_MONITORED_SERVER* server);
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bool do_show_slave_status(MySqlServerInfo* serv_info, MXS_MONITORED_SERVER* database);
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bool update_replication_settings(MXS_MONITORED_SERVER *database, MySqlServerInfo* info);
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public:
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// Following methods should be private, change it once refactoring is done.
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bool update_gtids(MXS_MONITORED_SERVER *database, MySqlServerInfo* info);
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string generate_change_master_cmd(const string& master_host, int master_port);
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int redirect_slaves(MXS_MONITORED_SERVER* new_master, const ServerVector& slaves,
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ServerVector* redirected_slaves);
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bool set_replication_credentials(const MXS_CONFIG_PARAMETER* params);
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bool start_external_replication(MXS_MONITORED_SERVER* new_master, json_t** err_out);
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bool switchover_start_slave(MXS_MONITORED_SERVER* old_master, SERVER* new_master);
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bool redirect_one_slave(MXS_MONITORED_SERVER* slave, const char* change_cmd);
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bool get_joinable_servers(ServerVector* output);
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bool join_cluster(MXS_MONITORED_SERVER* server, const char* change_cmd);
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void set_master_heartbeat(MXS_MONITORED_SERVER *);
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void set_slave_heartbeat(MXS_MONITORED_SERVER *);
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void disable_setting(const char* setting);
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};
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