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repmgr-action-standby.c
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repmgr-action-standby.c
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/*
* repmgr-action-standby.c
*
* Implements standby actions for the repmgr command line utility
*
* Copyright (c) EnterpriseDB Corporation, 2010-2021
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <sys/stat.h>
#include <time.h>
#include "repmgr.h"
#include "dirutil.h"
#include "compat.h"
#include "controldata.h"
#include "repmgr-client-global.h"
#include "repmgr-action-standby.h"
typedef struct TablespaceDataListCell
{
struct TablespaceDataListCell *next;
char *name;
char *oid;
char *location;
/* Optional pointer to a file containing a list of tablespace files to copy from Barman */
FILE *fptr;
} TablespaceDataListCell;
typedef struct TablespaceDataList
{
TablespaceDataListCell *head;
TablespaceDataListCell *tail;
} TablespaceDataList;
typedef struct
{
int reachable_sibling_node_count;
int reachable_sibling_nodes_with_slot_count;
int unreachable_sibling_node_count;
int min_required_wal_senders;
int min_required_free_slots;
} SiblingNodeStats;
#define T_SIBLING_NODES_STATS_INITIALIZER { \
0, \
0, \
0, \
0, \
0 \
}
static PGconn *primary_conn = NULL;
static PGconn *source_conn = NULL;
static char local_data_directory[MAXPGPATH] = "";
static bool upstream_conninfo_found = false;
static int upstream_node_id = UNKNOWN_NODE_ID;
static t_conninfo_param_list recovery_conninfo = T_CONNINFO_PARAM_LIST_INITIALIZER;
static char recovery_conninfo_str[MAXLEN] = "";
static char upstream_repluser[NAMEDATALEN] = "";
static char upstream_user[NAMEDATALEN] = "";
static int source_server_version_num = UNKNOWN_SERVER_VERSION_NUM;
static t_configfile_list config_files = T_CONFIGFILE_LIST_INITIALIZER;
static standy_clone_mode mode = pg_basebackup;
/* used by barman mode */
static char local_repmgr_tmp_directory[MAXPGPATH] = "";
static char datadir_list_filename[MAXLEN] = "";
static char barman_command_buf[MAXLEN] = "";
/*
* To enable "standby clone" to run with lowest possible user
* privileges, we'll need to determine which actions need to
* be run and which of the available users, which will be one
* of the repmgr user, the replication user (if available) or
* the superuser (if available).
*
* This is determined in check_source_server().
*/
static t_user_type SettingsUser = REPMGR_USER;
static void _do_standby_promote_internal(PGconn *conn);
static void _do_create_replication_conf(void);
static void check_barman_config(void);
static void check_source_server(void);
static void check_source_server_via_barman(void);
static bool check_upstream_config(PGconn *conn, int server_version_num, t_node_info *node_info, bool exit_on_error);
static void check_primary_standby_version_match(PGconn *conn, PGconn *primary_conn);
static void check_recovery_type(PGconn *conn);
static void initialise_direct_clone(t_node_info *local_node_record, t_node_info *upstream_node_record);
static int run_basebackup(t_node_info *node_record);
static int run_file_backup(t_node_info *node_record);
static void copy_configuration_files(bool delete_after_copy);
static void tablespace_data_append(TablespaceDataList *list, const char *name, const char *oid, const char *location);
static void get_barman_property(char *dst, char *name, char *local_repmgr_directory);
static int get_tablespace_data_barman(char *, TablespaceDataList *);
static char *make_barman_ssh_command(char *buf);
static bool create_recovery_file(t_node_info *node_record, t_conninfo_param_list *primary_conninfo, int server_version_num, char *dest, bool as_file);
static void write_primary_conninfo(PQExpBufferData *dest, t_conninfo_param_list *param_list);
static bool check_sibling_nodes(NodeInfoList *sibling_nodes, SiblingNodeStats *sibling_nodes_stats);
static bool check_free_wal_senders(int available_wal_senders, SiblingNodeStats *sibling_nodes_stats, bool *dry_run_success);
static bool check_free_slots(t_node_info *local_node_record, SiblingNodeStats *sibling_nodes_stats, bool *dry_run_success);
static void sibling_nodes_follow(t_node_info *local_node_record, NodeInfoList *sibling_nodes, SiblingNodeStats *sibling_nodes_stats);
static t_remote_error_type parse_remote_error(const char *error);
static CheckStatus parse_check_status(const char *status_str);
static NodeStatus parse_node_status_is_shutdown_cleanly(const char *node_status_output, XLogRecPtr *checkPoint);
static CheckStatus parse_node_check_archiver(const char *node_check_output, int *files, int *threshold, t_remote_error_type *remote_error);
static ConnectionStatus parse_remote_node_replication_connection(const char *node_check_output);
static bool parse_data_directory_config(const char *node_check_output, t_remote_error_type *remote_error);
static bool parse_replication_config_owner(const char *node_check_output);
static CheckStatus parse_db_connection(const char *db_connection);
/*
* STANDBY CLONE
*
* Event(s):
* - standby_clone
*
* Parameters:
* --upstream-conninfo
* --upstream-node-id
* --no-upstream-connection
* -F/--force
* --dry-run
* -c/--fast-checkpoint
* --copy-external-config-files
* -R/--remote-user
* --replication-user (only required if no upstream record)
* --without-barman
* --replication-conf-only (--recovery-conf-only)
* --verify-backup (PostgreSQL 13 and later)
*/
void
do_standby_clone(void)
{
PQExpBufferData event_details;
int r = 0;
/* dummy node record */
t_node_info local_node_record = T_NODE_INFO_INITIALIZER;
t_node_info upstream_node_record = T_NODE_INFO_INITIALIZER;
bool local_data_directory_provided = false;
initialize_conninfo_params(&recovery_conninfo, false);
/*
* Copy the provided data directory; if a configuration file was provided,
* use the (mandatory) value from that; if -D/--pgdata was provided, use
* that.
*
* Note that barman mode requires -D/--pgdata.
*/
get_node_data_directory(local_data_directory);
if (local_data_directory[0] != '\0')
{
local_data_directory_provided = true;
log_notice(_("destination directory \"%s\" provided"),
local_data_directory);
}
else
{
/*
* If a configuration file is provided, repmgr will error out after
* parsing it if no data directory is provided; this check is for
* niche use-cases where no configuration file is provided.
*/
log_error(_("no data directory provided"));
log_hint(_("use -D/--pgdata to explicitly specify a data directory"));
exit(ERR_BAD_CONFIG);
}
/*
* --replication-conf-only provided - we'll handle that separately
*/
if (runtime_options.replication_conf_only == true)
{
return _do_create_replication_conf();
}
/*
* conninfo params for the actual upstream node (which might be different
* to the node we're cloning from) to write to recovery.conf
*/
mode = get_standby_clone_mode();
if (mode == barman)
{
/*
* Not currently possible to use --verify-backup with Barman
*/
if (runtime_options.verify_backup == true)
{
log_error(_("--verify-backup option cannot be used when cloning from Barman backups"));
exit(ERR_BAD_CONFIG);
}
/*
* Sanity-check barman connection and installation;
* this will exit with ERR_BARMAN if problems found.
*/
check_barman_config();
}
init_node_record(&local_node_record);
local_node_record.type = STANDBY;
/*
* Initialise list of conninfo parameters which will later be used to
* create the "primary_conninfo" recovery parameter.
*
* We'll initialise it with the host settings specified on the command
* line. As it's possible the standby will be cloned from a node different
* to its intended upstream, we'll later attempt to fetch the upstream
* node record and overwrite the values set here with those from the
* upstream node record (excluding that record's application_name)
*/
copy_conninfo_params(&recovery_conninfo, &source_conninfo);
/* Set the default application name to this node's name */
if (config_file_options.node_id != UNKNOWN_NODE_ID)
{
char application_name[MAXLEN] = "";
param_set(&recovery_conninfo, "application_name", config_file_options.node_name);
get_conninfo_value(config_file_options.conninfo, "application_name", application_name);
if (strlen(application_name) && strncmp(application_name, config_file_options.node_name, sizeof(config_file_options.node_name)) != 0)
{
log_notice(_("\"application_name\" is set in repmgr.conf but will be replaced by the node name"));
}
}
else
{
/*
* this will only happen in corner cases where the node is being
* cloned without a configuration file; fall back to "repmgr" if no
* application_name provided
*/
char *application_name = param_get(&source_conninfo, "application_name");
if (application_name == NULL)
param_set(&recovery_conninfo, "application_name", "repmgr");
}
/*
* Do some sanity checks on the proposed data directory; if it exists:
* - check it's openable
* - check if there's an instance running
*
* We do this here so the check can be part of a --dry-run.
*/
switch (check_dir(local_data_directory))
{
case DIR_ERROR:
log_error(_("unable to access specified data directory \"%s\""), local_data_directory);
log_detail("%s", strerror(errno));
exit(ERR_BAD_CONFIG);
break;
case DIR_NOENT:
/*
* directory doesn't exist
* TODO: in --dry-run mode, attempt to create and delete?
*/
break;
case DIR_EMPTY:
/* Present but empty */
break;
case DIR_NOT_EMPTY:
/* Present but not empty */
if (is_pg_dir(local_data_directory))
{
/* even -F/--force is not enough to overwrite an active directory... */
if (is_pg_running(local_data_directory))
{
log_error(_("specified data directory \"%s\" appears to contain a running PostgreSQL instance"),
local_data_directory);
log_hint(_("ensure the target data directory does not contain a running PostgreSQL instance"));
exit(ERR_BAD_CONFIG);
}
}
break;
default:
break;
}
/*
* By default attempt to connect to the source node. This will fail if no
* connection is possible, unless in Barman mode, in which case we can
* fall back to connecting to the source node via Barman (if available).
*/
if (runtime_options.no_upstream_connection == false)
{
RecordStatus record_status = RECORD_NOT_FOUND;
/*
* This connects to the source node and performs sanity checks, also
* sets "recovery_conninfo_str", "upstream_repluser", "upstream_user" and
* "upstream_node_id" and creates a connection handle in "source_conn".
*
* Will error out if source connection not possible and not in
* "barman" mode.
*/
check_source_server();
if (runtime_options.verify_backup == true)
{
/*
* --verify-backup available for PostgreSQL 13 and later
*/
if (PQserverVersion(source_conn) < 130000)
{
log_error(_("--verify-backup available for PostgreSQL 13 and later"));
exit(ERR_BAD_CONFIG);
}
}
/* attempt to retrieve upstream node record */
record_status = get_node_record(source_conn,
upstream_node_id,
&upstream_node_record);
if (record_status != RECORD_FOUND)
{
log_error(_("unable to retrieve record for upstream node %i"),
upstream_node_id);
exit(ERR_BAD_CONFIG);
}
}
else
{
upstream_node_id = runtime_options.upstream_node_id;
}
/*
* if --upstream-conninfo was supplied, use that (will overwrite value set
* by check_source_server(), but that's OK)
*/
if (runtime_options.upstream_conninfo[0] != '\0')
{
strncpy(recovery_conninfo_str, runtime_options.upstream_conninfo, MAXLEN);
upstream_conninfo_found = true;
}
else if (mode == barman && PQstatus(source_conn) != CONNECTION_OK)
{
/*
* Here we don't have a connection to the upstream node (either
* because --no-upstream-connection was supplied, or
* check_source_server() was unable to make a connection, and
* --upstream-conninfo wasn't supplied.
*
* As we're executing in Barman mode we can try and connect via the
* Barman server to extract the upstream node's conninfo string.
*
* To do this we need to extract Barman's conninfo string, replace the
* database name with the repmgr one (they could well be different)
* and remotely execute psql.
*
* This attempts to set "recovery_conninfo_str".
*/
check_source_server_via_barman();
}
if (recovery_conninfo_str[0] == '\0')
{
log_error(_("unable to determine a connection string to use as \"primary_conninfo\""));
log_hint(_("use \"--upstream-conninfo\" to explicitly provide a value for \"primary_conninfo\""));
if (PQstatus(source_conn) == CONNECTION_OK)
PQfinish(source_conn);
exit(ERR_BAD_CONFIG);
}
if (upstream_conninfo_found == true)
{
/*
* parse returned upstream conninfo string to recovery
* primary_conninfo params
*/
char *errmsg = NULL;
bool parse_success = false;
log_verbose(LOG_DEBUG, "parsing upstream conninfo string \"%s\"", recovery_conninfo_str);
/*
* parse_conninfo_string() here will remove the upstream's
* `application_name`, if set
*/
parse_success = parse_conninfo_string(recovery_conninfo_str, &recovery_conninfo, &errmsg, true);
if (parse_success == false)
{
log_error(_("unable to parse conninfo string \"%s\" for upstream node"),
recovery_conninfo_str);
log_detail("%s", errmsg);
if (PQstatus(source_conn) == CONNECTION_OK)
PQfinish(source_conn);
exit(ERR_BAD_CONFIG);
}
if (upstream_repluser[0] != '\0')
{
/* Write the replication user from the node's upstream record */
param_set(&recovery_conninfo, "user", upstream_repluser);
}
}
else
{
/*
* If no upstream node record found, we'll abort with an error here,
* unless -F/--force is used, in which case we'll use the parameters
* provided on the command line (and assume the user knows what
* they're doing).
*/
if (upstream_node_id == UNKNOWN_NODE_ID)
{
log_error(_("unable to determine upstream node"));
if (PQstatus(source_conn) == CONNECTION_OK)
PQfinish(source_conn);
exit(ERR_BAD_CONFIG);
}
if (!runtime_options.force)
{
log_error(_("no record found for upstream node (upstream_node_id: %i)"),
upstream_node_id);
log_hint(_("use -F/--force to create \"primary_conninfo\" based on command-line parameters"));
if (PQstatus(source_conn) == CONNECTION_OK)
PQfinish(source_conn);
exit(ERR_BAD_CONFIG);
}
}
/*
* If copying of external configuration files requested, and any are
* detected, perform sanity checks
*/
if (PQstatus(source_conn) == CONNECTION_OK && runtime_options.copy_external_config_files == true)
{
PGconn *superuser_conn = NULL;
PGconn *privileged_conn = NULL;
bool external_config_files = false;
int i = 0;
/*
* Obtain configuration file locations
*
* We'll check to see whether the configuration files are in the data
* directory - if not we'll have to copy them via SSH, if copying
* requested.
*
* This will require superuser permissions, so we'll attempt to
* connect as -S/--superuser (if provided), otherwise check the
* current connection user has superuser rights.
*
* XXX: if configuration files are symlinks to targets outside the
* data directory, they won't be copied by pg_basebackup, but we can't
* tell this from the below query; we'll probably need to add a check
* for their presence and if missing force copy by SSH
*/
if (SettingsUser == REPMGR_USER)
{
privileged_conn = source_conn;
}
else
{
get_superuser_connection(&source_conn, &superuser_conn, &privileged_conn);
}
if (get_configuration_file_locations(privileged_conn, &config_files) == false)
{
log_notice(_("unable to proceed without establishing configuration file locations"));
PQfinish(source_conn);
if (superuser_conn != NULL)
PQfinish(superuser_conn);
exit(ERR_BAD_CONFIG);
}
/* check if any files actually outside the data directory */
for (i = 0; i < config_files.entries; i++)
{
t_configfile_info *file = config_files.files[i];
if (file->in_data_directory == false)
{
external_config_files = true;
break;
}
}
if (external_config_files == true)
{
int r;
PQExpBufferData msg;
initPQExpBuffer(&msg);
appendPQExpBuffer(&msg,
_("external configuration files detected, checking SSH connection to host \"%s\""),
runtime_options.host);
if (runtime_options.dry_run == true)
{
log_notice("%s", msg.data);
}
else
{
log_verbose(LOG_INFO, "%s", msg.data);
}
termPQExpBuffer(&msg);
r = test_ssh_connection(runtime_options.host, runtime_options.remote_user);
if (r != 0)
{
log_error(_("remote host \"%s\" is not reachable via SSH - unable to copy external configuration files"),
runtime_options.host);
if (superuser_conn != NULL)
PQfinish(superuser_conn);
PQfinish(source_conn);
exit(ERR_BAD_CONFIG);
}
initPQExpBuffer(&msg);
appendPQExpBuffer(&msg,
_("SSH connection to host \"%s\" succeeded"),
runtime_options.host);
if (runtime_options.dry_run == true)
{
log_info("%s", msg.data);
}
else
{
log_verbose(LOG_INFO, "%s", msg.data);
}
termPQExpBuffer(&msg);
/*
* Here we'll attempt an initial test copy of the detected external
* files, to detect any issues before we run the base backup.
*
* Note this will exit with an error, unless -F/--force supplied.
*
* We don't do this during a --dry-run as it may introduce unexpected changes
* on the local node; during an actual clone operation, any problems with
* copying files will be detected early and the operation aborted before
* the actual database cloning commences.
*
* TODO: put the files in a temporary directory and move to their final
* destination once the database has been cloned.
*/
if (runtime_options.dry_run == false)
{
if (runtime_options.copy_external_config_files_destination == CONFIG_FILE_SAMEPATH)
{
/*
* Files will be placed in the same path as on the source server;
* don't delete after copying.
*/
copy_configuration_files(false);
}
else
{
/*
* Files will be placed in the data directory - delete after copying.
* They'll be copied again later; see TODO above.
*/
copy_configuration_files(true);
}
}
}
if (superuser_conn != NULL)
PQfinish(superuser_conn);
}
if (runtime_options.dry_run == true)
{
/*
* If replication slots in use, sanity-check whether we can create them
* with the available user permissions.
*/
if (config_file_options.use_replication_slots == true && PQstatus(source_conn) == CONNECTION_OK)
{
PQExpBufferData msg;
bool success = true;
initPQExpBuffer(&msg);
/*
* "create_replication_slot()" knows about --dry-run mode and
* will perform checks but not actually create the slot.
*/
success = create_replication_slot(source_conn,
local_node_record.slot_name,
&upstream_node_record,
&msg);
if (success == false)
{
log_error(_("prerequisites not met for creating a replication slot on upstream node %i"),
upstream_node_record.node_id);
termPQExpBuffer(&msg);
exit(ERR_BAD_CONFIG);
}
termPQExpBuffer(&msg);
}
if (upstream_node_id != UNKNOWN_NODE_ID)
{
log_notice(_("standby will attach to upstream node %i"), upstream_node_id);
}
else
{
log_warning(_("unable to determine a valid upstream node id"));
}
if (mode == pg_basebackup && runtime_options.fast_checkpoint == false)
{
log_hint(_("consider using the -c/--fast-checkpoint option"));
}
if (mode == pg_basebackup)
{
/*
* In --dry-run mode, this will just output the pg_basebackup command which
* would be executed.
*/
run_basebackup(&local_node_record);
}
PQfinish(source_conn);
log_info(_("all prerequisites for \"standby clone\" are met"));
exit(SUCCESS);
}
if (mode != barman)
{
initialise_direct_clone(&local_node_record, &upstream_node_record);
}
switch (mode)
{
case pg_basebackup:
log_notice(_("starting backup (using pg_basebackup)..."));
break;
case barman:
log_notice(_("retrieving backup from Barman..."));
break;
default:
/* should never reach here */
log_error(_("unknown clone mode"));
}
if (mode == pg_basebackup)
{
if (runtime_options.fast_checkpoint == false)
{
log_hint(_("this may take some time; consider using the -c/--fast-checkpoint option"));
}
}
switch (mode)
{
case pg_basebackup:
r = run_basebackup(&local_node_record);
break;
case barman:
r = run_file_backup(&local_node_record);
break;
default:
/* should never reach here */
log_error(_("unknown clone mode"));
}
/* If the backup failed then exit */
if (r != SUCCESS)
{
/* If a replication slot was previously created, drop it */
if (config_file_options.use_replication_slots == true)
{
/*
* In the case where a standby is being cloned from a node other than its
* intended upstream, We can't be sure of the source node's node_id. This
* is only required by "drop_replication_slot_if_exists()" to determine
* from the node's record whether it has a different replication user, and
* as in this case that would need to be supplied via "--replication-user"
* it's not a problem.
*/
drop_replication_slot_if_exists(source_conn, UNKNOWN_NODE_ID, local_node_record.slot_name);
}
log_error(_("unable to take a base backup of the source server"));
log_hint(_("data directory (\"%s\") may need to be cleaned up manually"),
local_data_directory);
PQfinish(source_conn);
exit(r);
}
/*
* Run pg_verifybackup here if requested, before any alterations are made
* to the data directory.
*/
if (mode == pg_basebackup && runtime_options.verify_backup == true)
{
PQExpBufferData command;
int r;
struct stat st;
initPQExpBuffer(&command);
make_pg_path(&command, "pg_verifybackup");
/* check command actually exists */
if (stat(command.data, &st) != 0)
{
log_error(_("unable to find expected binary \"%s\""), command.data);
log_detail("%s", strerror(errno));
exit(ERR_BAD_CONFIG);
}
appendPQExpBufferChar(&command, ' ');
/* Somewhat inconsistent, but pg_verifybackup doesn't accept a -D option */
appendShellString(&command,
local_data_directory);
log_debug("executing:\n %s", command.data);
r = system(command.data);
termPQExpBuffer(&command);
if (r != 0)
{
log_error(_("unable to verify backup"));
exit(ERR_BAD_BASEBACKUP);
}
log_verbose(LOG_INFO, _("backup successfully verified"));
}
/*
* If `--copy-external-config-files` was provided, copy any configuration
* files detected to the appropriate location. Any errors encountered will
* not be treated as fatal.
*
* This won't run in Barman mode as "config_files" is only populated in
* "initialise_direct_clone()", which isn't called in Barman mode.
*/
if (runtime_options.copy_external_config_files == true && config_files.entries > 0)
{
/*
* If "--copy-external-config-files=samepath" was used, the files will already
* have been copied.
*/
if (runtime_options.copy_external_config_files_destination == CONFIG_FILE_PGDATA)
copy_configuration_files(false);
}
/* Write the recovery.conf file */
if (create_recovery_file(&local_node_record,
&recovery_conninfo,
source_server_version_num,
local_data_directory,
true) == false)
{
/* create_recovery_file() will log an error */
if (source_server_version_num >= 120000)
{
log_notice(_("unable to write replication configuration; see preceding error messages"));
}
else
{
log_notice(_("unable to create recovery.conf; see preceding error messages"));
}
log_hint(_("data directory (\"%s\") may need to be cleaned up manually"),
local_data_directory);
PQfinish(source_conn);
exit(ERR_BAD_CONFIG);
}
switch (mode)
{
case pg_basebackup:
log_notice(_("standby clone (using pg_basebackup) complete"));
break;
case barman:
log_notice(_("standby clone (from Barman) complete"));
break;
}
/*
* Do a final check on the data directory permissions - if the user
* is cloning into an existing directory set to 0750, and the server
* is Pg10 or earlier, Pg will refuse to start. We might not have
* known the server version when creating the data directory
* (mainly if cloning from Barman with no upstream connection), hence
* the additional check here.
*/
set_dir_permissions(local_data_directory, source_server_version_num);
/*
* TODO: It might be nice to provide an option to have repmgr start the
* PostgreSQL server automatically
*/
log_notice(_("you can now start your PostgreSQL server"));
if (config_file_options.service_start_command[0] != '\0')
{
log_hint(_("for example: %s"),
config_file_options.service_start_command);
}
else if (local_data_directory_provided)
{
log_hint(_("for example: pg_ctl -D %s start"),
local_data_directory);
}
else
{
log_hint(_("for example: /etc/init.d/postgresql start"));
}
/*
* XXX forgetting to (re) register the standby is a frequent cause of
* error; we should consider having repmgr automatically register the
* standby, either by default with an option "--no-register", or an option
* "--register".
*
* Note that "repmgr standby register" requires the standby to be running
* - if not, and we just update the node record, we'd have an incorrect
* representation of the replication cluster. Best combined with an
* automatic start of the server (see note above)
*/
/*
* Check for an existing node record, and output the appropriate command
* for registering or re-registering.
*/
{
t_node_info node_record = T_NODE_INFO_INITIALIZER;
RecordStatus record_status = RECORD_NOT_FOUND;
record_status = get_node_record(primary_conn,
config_file_options.node_id,
&node_record);
if (record_status == RECORD_FOUND)
{
log_hint(_("after starting the server, you need to re-register this standby with \"repmgr standby register --force\" to update the existing node record"));
}
else
{
log_hint(_("after starting the server, you need to register this standby with \"repmgr standby register\""));
}
}
/* Log the event */
initPQExpBuffer(&event_details);
/* Add details about relevant runtime options used */
appendPQExpBuffer(&event_details,
_("cloned from host \"%s\", port %s"),
runtime_options.host,
runtime_options.port);
appendPQExpBufferStr(&event_details,
_("; backup method: "));
switch (mode)
{
case pg_basebackup:
appendPQExpBufferStr(&event_details, "pg_basebackup");
break;
case barman:
appendPQExpBufferStr(&event_details, "barman");
break;
}
appendPQExpBuffer(&event_details,
_("; --force: %s"),
runtime_options.force ? "Y" : "N");
create_event_notification(primary_conn,
&config_file_options,
config_file_options.node_id,
"standby_clone",
true,
event_details.data);
if (primary_conn != source_conn && PQstatus(primary_conn) == CONNECTION_OK)
PQfinish(primary_conn);
if (PQstatus(source_conn) == CONNECTION_OK)
PQfinish(source_conn);
exit(r);
}
void
check_barman_config(void)
{
PQExpBufferData command;
bool command_ok = false;
/*
* Check that there is at least one valid backup
*/
log_info(_("connecting to Barman server to verify backup for \"%s\""), config_file_options.barman_server);
initPQExpBuffer(&command);
appendPQExpBuffer(&command, "%s show-backup %s latest > /dev/null",
make_barman_ssh_command(barman_command_buf),
config_file_options.barman_server);
command_ok = local_command(command.data, NULL);
if (command_ok == false)
{
log_error(_("no valid backup for server \"%s\" was found in the Barman catalogue"),
config_file_options.barman_server);
log_detail(_("command executed was:\n %s"), command.data),
log_hint(_("refer to the Barman documentation for more information"));
termPQExpBuffer(&command);
exit(ERR_BARMAN);
}
else if (runtime_options.dry_run == true)
{
log_info(_("valid backup for server \"%s\" found in the Barman catalogue"),
config_file_options.barman_server);
}
termPQExpBuffer(&command);