mirror of
https://github.com/samba-team/samba.git
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a4ab7c73bd
Signed-off-by: Chris Lamb <chris@chris-lamb.co.uk> Reviewed-by: Andrew Bartlett <abartlet@samba.org> Reviewed-by: Garming Sam <garming@catalyst.net.nz>
437 lines
21 KiB
Plaintext
437 lines
21 KiB
Plaintext
Valid as of 1.0.66, may/will change in the future
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RECMASTER
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=========
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Recovery Master, this is one of the nodes in the cluster that has been designated to
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be the "recovery master".
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The recovery master is responsible for performing full checks of cluster and cluster node consistency and is also responsible for performing the actual database recovery procedure.
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Only one node at a time can be the recovery master.
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This is ensured by CTDB using a lock on a single file in the shared gpfs filesystem:
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/etc/sysconfig/ctdb :
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...
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# Options to ctdbd. This is read by /etc/init.d/ctdb
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# you must specify the location of a shared lock file across all the
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# nodes. This must be on shared storage
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# there is no default here
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CTDB_RECOVERY_LOCK=/gpfs/.ctdb/shared
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...
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In order to prevent that two nodes become recovery master at the same time (==split brain)
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CTDB here relies on GPFS that GPFS will guarantee coherent locking across the cluster.
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Thus CTDB relies on that GPFS MUST only allow one ctdb process on one node to take out and
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hold this lock.
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The recovery master is designated through an election process.
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VNNMAP
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======
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The VNNMAP is a list of all nodes in the cluster that is currently part of the cluster
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and participates in hosting the cluster databases.
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All nodes that are CONNECTED but not BANNED be present in the VNNMAP.
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The VNNMAP is the list of LMASTERS for the cluster as reported by 'ctdb status' "
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...
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Size:3
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hash:0 lmaster:0
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hash:1 lmaster:1
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hash:2 lmaster:2
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...
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CLUSTER MONITORING
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==================
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All nodes in the cluster monitor its own health and its own consistency regards to the
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recovery master. How and what the nodes monitor for differs between the node which is
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the recovery master and normal nodes.
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This monitoring it to ensure that the cluster is healthy and consistent.
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This is not related to monitoring of inidividual node health, a.k.a. eventscript monitroing.
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At the end of each step in the process are listed some of the most common and important
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error messages that can be generated during that step.
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NORMAL NODE CLUSTER MONITORING
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------------------------------
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Monitoring is performed in the dedicated recovery daemon process.
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The implementation can be found in server/ctdb_recoverd.c:monitor_cluster()
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This is an overview of the more important tasks during monitoring.
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These tests are to verify that the local node is consistent with the recovery master.
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Once every second the following monitoring loop is performed :
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1, Verify that the parent ctdb daemon on the local node is still running.
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If it is not, the recovery daemon logs an error and terminates.
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"CTDB daemon is no longer available. Shutting down recovery daemon"
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2, Check if any of the nodes has been recorded to have misbehaved too many times.
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If so we ban the node and log a message :
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"Node %u has caused %u failures in %.0f seconds - banning it for %u seconds"
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3, Check that there is a recovery master.
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If not we initiate a clusterwide election process and log :
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"Initial recovery master set - forcing election"
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and we restart monitoring from 1.
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4, Verify that recovery daemon and the local ctdb daemon agreed on all the
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node BANNING flags.
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If the recovery daemon and the local ctdb daemon disagrees on these flags we update
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the local ctdb daemon, logs one of two messages and restarts monitoring from 1 again.
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"Local ctdb daemon on recmaster does not think this node is BANNED but the recovery master disagrees. Unbanning the node"
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"Local ctdb daemon on non-recmaster does not think this node is BANNED but the recovery master disagrees. Re-banning the node"
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5, Verify that the node designated to be recovery master exists in the local list of all nodes.
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If the recovery master is not in the list of all cluster nodes a new recovery master
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election is triggered and monitoring restarts from 1.
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"Recmaster node %u not in list. Force reelection"
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6, Check if the recovery master has become disconnected.
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If is has, log an error message, force a new election and restart monitoring from 1.
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"Recmaster node %u is disconnected. Force reelection"
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7, Read the node flags off the recovery master and verify that it has not become banned.
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If is has, log an error message, force a new election and restart monitoring from 1.
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"Recmaster node %u no longer available. Force reelection"
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8, Verify that the recmaster and the local node agrees on the flags (BANNED/DISABLED/...)
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for the local node.
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If there is an inconsistency, push the flags for the local node out to all other nodes.
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"Recmaster disagrees on our flags flags:0x%x recmaster_flags:0x%x Broadcasting out flags."
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9, Verify that the local node hosts all public ip addresses it should host and that it does
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NOT host any public addresses it should not host.
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If there is an inconsistency we log an error, trigger a recovery to occur and restart
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monitoring from 1 again.
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"Public address '%s' is missing and we should serve this ip"
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"We are still serving a public address '%s' that we should not be serving."
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These are all the checks we perform during monitoring for a normal node.
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These tests are performed on all nodes in the cluster which is why it is optimized to perform
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as few network calls to other nodes as possible.
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Each node only performs 1 call to the recovery master in each loop and to no other nodes.
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RECOVERY MASTER CLUSTER MONITORING
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-----------------------------------
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The recovery master performs a much more extensive test. In addition to tests 1-9 above
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the recovery master also performs the following tests:
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10, Read the list of nodes and flags from all other CONNECTED nodes in the cluster.
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If there is a failure to read this list from one of the nodes, then log an
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error, mark this node as a candidate to become BANNED and restart monitoring from 1.
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"Unable to get nodemap from remote node %u"
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11, Verify that the local recovery master and the remote node agrees on the flags
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for the remote node. If there is a inconsistency for the BANNING flag,
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log an error, trigger a new recmaster election and restart monitoring from 1.
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"Remote node %u had different BANNED flags 0x%x, local had 0x%x - trigger a re-election"
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"Remote node %u had flags 0x%x, local had 0x%x - updating local"
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12, Verify that the local recovery master and the remote node agrees on the flags
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for the remote node. If one of the flags other than the BANNING flag was inconsistent,
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just update the set of flags for the local recovery daemon, log an information message
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and continue monitoring.
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"Remote node %u had flags 0x%x, local had 0x%x - updating local"
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13, Read the list of public ip addresses from all of the CONNECTED nodes and merge into a
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single clusterwide list.
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If we fail to read the list of ips from a node, log an error and restart monitoring from 1.
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"Failed to read public ips from node : %u"
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14, Verify that all other nodes agree that this node is the recovery master.
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If one of the other nodes discgrees this is the recovery master, log an error,
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force a new election and restart monitoring from 1.
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"Node %d does not agree we are the recmaster. Need a new recmaster election"
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15, Check if the previous attempt to run a recovery failed, and if it did, try a new recovery.
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After the recovery, restart monitoring from 1.
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"Starting do_recovery"
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16, Verify that all CONNECTED nodes in the cluster are in recovery mode NORMAL.
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If one of the nodes were in recovery mode ACTIVE, force a new recovery and restart
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monitoring from 1.
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"Node:%u was in recovery mode. Start recovery process"
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17, Verify that the filehandle to the recovery lock file is valid.
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If it is not, this may mean a split brain and is a critical error.
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Try a new recovery and restart monitoring from 1.
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"recovery master doesn't have the recovery lock"
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18, Verify that GPFS allows us to read from the recovery lock file.
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If not there is a critical GPFS issue and we may have a split brain.
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Try forcing a new recovery and restart monitoring from 1.
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"failed read from recovery_lock_fd - %s"
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19, Read the list of all nodes and flags from all CONNECTED nodes in the cluster.
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If fail to read the nodemap from one of the remote nodes, log an error and restart
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monitoring from 1.
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"Unable to get nodemap from remote node %u"
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20, If the nodemap differs between the local node and the remote node, log an error
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and force a recovery.
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This would happen if the /etc/ctdb/nodes file differs across nodes in the cluster.
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It is unlikely that the recovery will rectify the situation.
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This is a critical error, it is most likely the entire cluster will be unavailable
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until the files are fixed or have became banned.
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"Remote node:%u has different node count. %u vs %u of the local node"
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21, If a remote node disagrees on the content of the nodes list, try a recovery and restart
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monitoring from 1.
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It is unlikely that the recovery will rectify the situation.
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This is a critical error, it is most likely the entire cluster will be unavailable
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until the files are fixed or have became banned.
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"Remote node:%u has different nodemap pnn for %d (%u vs %u)."
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22, If a remote node disgrees on the node flags in the list, try a recovery to re-sync
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the flags and restart monitoring from 1.
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"Remote node:%u has different nodemap flag for %d (0x%x vs 0x%x)"
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23, Verify that all active nodes are part of the VNNMAP.
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If not, this would be a new node that has become CONNECTED but does not yet participate
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in the cluster.
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Perform a recovery to merge the new node to the cluster and restart monitoring from 1.
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"The vnnmap count is different from the number of active nodes. %u vs %u"
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or
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"Node %u is active in the nodemap but did not exist in the vnnmap"
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24, Read the VNNMAP from all CONNECTED nodes.
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Verify that all nodes have the same VNNMAP content and that all nodes are in the same
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generation instance of the databases.
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If not, force a recovery to re-synchronize the vnnmap and the databases across the cluster
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and restart monitoring from 1.
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"Remote node %u has different generation of vnnmap. %u vs %u (ours)"
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"Remote node %u has different size of vnnmap. %u vs %u (ours)"
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"Remote node %u has different vnnmap."
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25, If there has been changes to the cluster that requires a reallocation of public ip
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addresses. On all nodes run the "startrecovery" event. Run "releaseip" and "takeip"
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events to reassign the ips across the cluster and finally run the "recovered" event.
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Finished monitoring, continue monitoring from 1.
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CLUSTER RECOVERY
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================
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Recoveries are driven by the recovery daemon on the node that is currently the recovery
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master.
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Most of the logging that is performed during recovery is only logged on the node that
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is the recovery master.
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Make sure to find which node is the recovery master and check the log for that node.
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Example log entries that start in column 1 are expected to be present in the
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log. Example log entries that are indented 3 columns are optional and might
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only be present if an error occurred.
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1, Log that recovery has been initiated.
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"Starting do_recovery"
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It might log an informational message :
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"New recovery culprit %u".
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This is only semi-accurate and might may not mean that there is any problem
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at all with the node indicated.
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2, Check if a node has caused too many failed recoveries and if so ban it from
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the cluster, giving the other nodes in the cluster a chance to recovery
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operation.
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"Node %u has caused %u recoveries in %.0f seconds - banning it for %u seconds"
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3, Verify that the recovery daemon can lock the recovery lock file.
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At this stage this should be recovery master.
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If this operation fails it means we have a split brain and have to abort recovery.
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"("ctdb_recovery_lock: Unable to open %s - (%s)"
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"ctdb_recovery_lock: Failed to get recovery lock on '%s'"
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"Unable to get recovery lock - aborting recovery"
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"ctdb_recovery_lock: Got recovery lock on '%s'"
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4, Log which node caused the recovery to be initiated.
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This is a semi-accurate information message only.
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This line does NOT mean that there has to be something wrong with the node listed.
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"Recovery initiated due to problem with node %u"
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5, Pull the names of all databases from all nodes and verify that these databases also
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exists locally.
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If a database is missing locally, just create it.
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It is not an error if a database is missing locally. Databases are created on demand and
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this could happen if it was one database which samba has never tried to access on the
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local node.
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6, Check the list of databases on each remote node and create any databases that may be missing
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on the remote node.
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"Recovery - created remote databases"
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7, Set recovery mode to ACTIVE on all remote nodes.
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8, Run the "startrecovery" eventscript on all nodes.
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At this stage you will also get a few additional log entries, these are not
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from the recovery daemon but from the main ctdb daemon due to running
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the eventscript :
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"startrecovery eventscript has been invoked"
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"Monitoring has been disabled"
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"Executing event script ...
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...
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9, Create a new generation id and update the generation id and the VNNMAP on the local node
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only.
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This guarantees that the generation id will now be inconsistent across the cluster and
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that if recovery fails a new recovery is attempted in the next iteration of the monitoring
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loop.
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10, Start a TDB TRANSACTION on all nodes for all databases.
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This is to ensure that if recovery is aborted or fails that we do not
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modify any databases on only some of the nodes.
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"started transactions on all nodes"
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11, For each database, pull the content from all CONNECTED nodes and merge it into
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the TDB databases on the local node.
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This merges the records from the remote nodes based on their serial numbers so we
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only keep the most recent record found.
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"Recovery - pulled remote database 0x%x"
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12, For each database, perform a fast TDB WIPE operation to delete the entire TDB under the
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transaction started above.
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13, For each database, drop all empty records.
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Force the DMASTER field of all records to point to the recovery master.
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Push the database out to all other nodes.
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The PUSH process lists some additional log entries for each database of the
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form :
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"Recovery - pulled remote database 0x..."
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"Recovery - pushed remote database 0x... of size ..."
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14, Commit all changes to all TDB databases.
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"Recovery - starting database commits"
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"Recovery - committed databases"
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15, Create a new VNNMAP of all CONNECTED nodes, create a new generation number
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and piush this new VNNMAP out to all nodes.
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"Recovery - updated vnnmap"
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16, Update all nodes that the local node is the recovery master.
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"Recovery - updated recmaster"
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17, synchronize node flags across the cluster.
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"Recovery - updated flags"
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18, Change recovery mode back to NORMAL.
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"Recovery - disabled recovery mode"
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19, Re-allocate all public ip addresses across the cluster.
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"Deterministic IPs enabled. Resetting all ip allocations"
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If the IP address allocation on the local node changes you might get
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"Takeover of IP 10.0.0.201/24 on interface eth0"
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"Release of IP 10.0.0.204/24 on interface eth0"
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"Recovery - takeip finished"
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20, Run the "recovered" eventscript on all nodes.
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"Recovery - finished the recovered event"
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You will also get an entry from the local ctdb daemon itself that it has
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switched back to recovery mode NORMAL.
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"Recovery has finished"
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21, Broadcast a message to all samba daemons in the cluster that the databases have been
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recovered. Samba will now do some additional checking/cleanup of the content in the stored
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records.
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"Recovery complete"
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22. Finished. At this stage a 10 second timeout (ctdb listvars : rerecoverytimeout) is
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initiated. The cluster will not allow a new recovery to be performed until this timeout
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has expired.
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"New recoveries suppressed for the rerecovery timeout"
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"Rerecovery timeout elapsed. Recovery reactivated."
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Example : RECOVERY LOG ON RECMASTER
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====================================
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2008/12/01 09:57:28.110732 [ 4933]: 10.0.0.21:4379: node 10.0.0.24:4379 is dead: 2 connected
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2008/12/01 09:57:28.110838 [ 4933]: Tearing down connection to dead node :3
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2008/12/01 09:57:28.967297 [ 4935]: server/ctdb_recoverd.c:2682 The vnnmap count is different from the number of active nodes. 4 vs 3
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2008/12/01 09:57:28.967297 [ 4935]: server/ctdb_recoverd.c:1327 Starting do_recovery
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2008/12/01 09:57:28.967297 [ 4935]: ctdb_recovery_lock: Got recovery lock on '/gpfs/.ctdb/shared'
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2008/12/01 09:57:28.967297 [ 4935]: server/ctdb_recoverd.c:1355 Recovery initiated due to problem with node 0
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2008/12/01 09:57:28.967297 [ 4935]: server/ctdb_recoverd.c:1381 Recovery - created remote databases
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2008/12/01 09:57:28.973543 [ 4933]: server/ctdb_recover.c:589 Recovery mode set to ACTIVE
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2008/12/01 09:57:28.974823 [ 4933]: server/ctdb_recover.c:904 startrecovery eventscript has been invoked
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2008/12/01 09:57:29.187264 [ 4935]: server/ctdb_recoverd.c:1431 started transactions on all nodes
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2008/12/01 09:57:29.187264 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0x42fe72c5
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2008/12/01 09:57:29.187264 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0x42fe72c5 of size 0
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2008/12/01 09:57:29.187264 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0x1421fb78
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2008/12/01 09:57:29.197262 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0x1421fb78 of size 0
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2008/12/01 09:57:29.197262 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0xc0bdde6a
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2008/12/01 09:57:29.197262 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0xc0bdde6a of size 0
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2008/12/01 09:57:29.197262 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0x17055d90
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2008/12/01 09:57:29.207261 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0x17055d90 of size 8
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2008/12/01 09:57:29.207261 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0x7bbbd26c
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2008/12/01 09:57:29.207261 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0x7bbbd26c of size 1
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2008/12/01 09:57:29.207261 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0xf2a58948
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2008/12/01 09:57:29.217259 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0xf2a58948 of size 51
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2008/12/01 09:57:29.217259 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0x92380e87
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2008/12/01 09:57:29.217259 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0x92380e87 of size 17
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2008/12/01 09:57:29.227258 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0x63501287
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2008/12/01 09:57:29.227258 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0x63501287 of size 1
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2008/12/01 09:57:29.227258 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0xe98e08b6
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2008/12/01 09:57:29.227258 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0xe98e08b6 of size 4
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2008/12/01 09:57:29.237256 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0x2672a57f
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2008/12/01 09:57:29.237256 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0x2672a57f of size 28
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2008/12/01 09:57:29.237256 [ 4935]: server/ctdb_recoverd.c:1268 Recovery - pulled remote database 0xb775fff6
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2008/12/01 09:57:29.237256 [ 4935]: server/ctdb_recoverd.c:1230 Recovery - pushed remote database 0xb775fff6 of size 6
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2008/12/01 09:57:29.237256 [ 4935]: server/ctdb_recoverd.c:1440 Recovery - starting database commits
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2008/12/01 09:57:29.297247 [ 4935]: server/ctdb_recoverd.c:1452 Recovery - committed databases
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2008/12/01 09:57:29.297247 [ 4935]: server/ctdb_recoverd.c:1502 Recovery - updated vnnmap
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2008/12/01 09:57:29.297247 [ 4935]: server/ctdb_recoverd.c:1511 Recovery - updated recmaster
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2008/12/01 09:57:29.297247 [ 4935]: server/ctdb_recoverd.c:1522 Recovery - updated flags
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2008/12/01 09:57:29.305235 [ 4933]: server/ctdb_recover.c:589 Recovery mode set to NORMAL
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2008/12/01 09:57:29.307245 [ 4935]: server/ctdb_recoverd.c:1531 Recovery - disabled recovery mode
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2008/12/01 09:57:29.307245 [ 4935]: Deterministic IPs enabled. Resetting all ip allocations
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2008/12/01 09:57:29.311071 [ 4933]: takeoverip called for an ip '10.0.0.201' that is not a public address
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2008/12/01 09:57:29.311186 [ 4933]: takeoverip called for an ip '10.0.0.202' that is not a public address
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2008/12/01 09:57:29.311204 [ 4933]: takeoverip called for an ip '10.0.0.203' that is not a public address
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2008/12/01 09:57:29.311299 [ 4933]: takeoverip called for an ip '10.0.0.204' that is not a public address
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2008/12/01 09:57:29.537210 [ 4935]: server/ctdb_recoverd.c:1542 Recovery - takeip finished
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2008/12/01 09:57:29.545404 [ 4933]: Recovery has finished
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2008/12/01 09:57:29.807169 [ 4935]: server/ctdb_recoverd.c:1551 Recovery - finished the recovered event
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2008/12/01 09:57:29.807169 [ 4935]: server/ctdb_recoverd.c:1557 Recovery complete
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2008/12/01 09:57:29.807169 [ 4935]: server/ctdb_recoverd.c:1565 New recoveries suppressed for the rerecovery timeout
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2008/12/01 09:57:39.815648 [ 4935]: server/ctdb_recoverd.c:1567 Rerecovery timeout elapsed. Recovery reactivated.
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