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Angus Salkeld c6895faa05 libqb: change ipc -> qb_ipc
IPC: return 0/-ENOBUFS from message handler
IPC: use the new rate_limit API to improve perf.
CPG: add send_async API & hook up flow control
IPC: Fix flow control getting stuck.
IPC: Port the remaining libs to use libqb IPC
IPC: remove libqb flowcontrol API
TEST: put cpg_dispatch() in it's own thread
IPC: cleanup ipc_glue.c name everything cs_ipcs_*()
IPC: add back statistics
IPC: remove coroipcc_ symbols from lib*.versions
IPC: init each se's IPC as it is loaded.
IPC: use the new connection_closed() event to free the context.
IPC: re-add zero copy functionality back
IPC: remove cpg_mcast_joined_async() and make it the default
 -> now cpg_mcast_joined() == cpg_mcast_joined_async()
libqb: expose a libqb error converter
libqb: add missing error conversions
libqb: remove repeat try loop in lib/cpg.c
CPG: fix zero copy mcast
CPG: use newer return codes
Add ENOTCONN to qb_to_cs_error()
libqb: fix error conversion from errno to cs_error_t in confdb
libqb: change errno_to_cs to qb_to_cs_error
libqb: add a cs_strerror() to get a more meaningful message
libqb: fix some confusing error conversions.
libqb: set the timeout on recv's to -1 (wait forever)

Signed-off-by: Angus Salkeld <asalkeld@redhat.com>
Reviewed-by: Steven Dake <sdake@redhat.com>
2011-08-09 10:37:14 +10:00
build-aux add release script and git based versioning 2010-11-10 07:46:53 -07:00
conf corosync.conf.example: add note about host addresses in bindnetaddr 2011-08-07 09:50:27 -07:00
cts libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
exec libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
include libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
init Add systemd unit files for corosync and corosync-notifyd 2011-08-09 08:21:02 +10:00
lcr libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
lib libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
man libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
pkgconfig libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
services libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
test libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
tools libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
.gitignore Add Doxyfile to .gitignore 2011-03-15 11:08:45 +11:00
AUTHORS Update to AUTHORS file. 2009-12-07 23:18:44 +00:00
autobuild.sh autobuild: improve messages 2011-05-05 21:39:30 +10:00
autogen.sh Sanitize output of autogen.sh. 2009-06-18 23:08:16 +00:00
configure.ac libqb: convert coropoll calls to qb_loop calls. 2011-08-09 10:37:14 +10:00
corosync.spec.in libqb: change ipc -> qb_ipc 2011-08-09 10:37:14 +10:00
Doxyfile.in docs: auto-generate the version 2011-03-12 19:39:04 +11:00
INSTALL Add dbus and snmp notifier 2011-02-04 09:47:35 -07:00
LICENSE Add license information to LICENSE file about build process files 2010-11-10 07:05:45 -07:00
loc Modify property of loc script to be executable. 2009-04-23 17:37:32 +00:00
Makefile.am build: force LC_ALL=C correctly for dates 2011-07-06 06:56:18 -07:00
README.devmap remove all trailing blanks 2009-04-22 08:03:55 +00:00
README.recovery remove all trailing blanks 2009-04-22 08:03:55 +00:00
SECURITY remove trailing blanks 2009-05-18 16:41:04 +00:00
TODO Add dbus and snmp notifier 2011-02-04 09:47:35 -07:00

SYNCHRONIZATION ALGORITHM:
-------------------------
The synchronization algorithm is used for every service in corosync to
synchronize state of he system.

There are 4 events of the synchronization algorithm.  These events are in fact
functions that are registered in the service handler data structure.  They
are called by the synchronization system whenever a network partitions or
merges.

init:
Within the init event a service handler should record temporary state variables
used by the process event.

process:
The process event is responsible for executing synchronization.  This event
will return a state as to whether it has completed or not.  This allows for
synchronization to be interrupted and recontinue when the message queue buffer
is full.  The process event will be called again by the synchronization service
if requesed to do so by the return variable returned in process.

abort:
The abort event occurs when during synchronization a processor failure occurs.

activate:
The activate event occurs when process has returned no more processing is
necessary for any node in the cluster and all messages originated by process
have completed.

CHECKPOINT SYNCHRONIZATION ALGORITHM:
------------------------------------
The purpose of the checkpoint syncrhonization algorithm is to synchronize
checkpoints after a paritition or merge of two or more partitions.  The
secondary purpose of the algorithm is to determine the cluster-wide reference
count for every checkpoint.

Every cluster contains a group of checkpoints.  Each checkpoint has a
checkpoint name and checkpoint number.  The number is used to uniquely reference
an unlinked but still open checkpoint in the cluser.

Every checkpoint contains a reference count which is used to determine when
that checkpoint may be released.  The algorithm rebuilds the reference count
information each time a partition or merge occurs.

local variables
my_sync_state may have the values SYNC_CHECKPOINT, SYNC_REFCOUNT
my_current_iteration_state contains any data used to iterate the checkpoints
	and sections.
checkpoint data
	refcount_set contains reference count for every node consisting of
	number of opened connections to checkpoint and node identifier
	refcount contains a summation of every reference count in the refcount_set

pseudocode executed by a processor when the syncrhonization service calls
the init event
	call process_checkpoints_enter

pseudocode executed by a processor when the synchronization service calls
the process event in the SYNC_CHECKPOINT state
	if lowest processor identifier of old ring in new ring
		transmit checkpoints or sections starting from my_current_iteration_state
	if all checkpoints and sections could be queued
		call sync_refcounts_enter
	else
		record my_current_iteration_state

	require process to continue

pseudocode executed by a processor when the synchronization service calls
the process event in the SYNC_REFCOUNT state
	if lowest processor identifier of old ring in new ring
		transmit checkpoint reference counts
	if all checkpoint reference counts could be queued
		require process to not continue
	else
		record my_current_iteration_state for checkpoint reference counts

sync_checkpoints_enter:
	my_sync_state = SYNC_CHECKPOINT
	my_current_iteration_state set to start of checkpont list

sync_refcounts_enter:
	my_sync_state = SYNC_REFCOUNT

on event receipt of foreign ring id message
	ignore message

pseudocode executed on event receipt of checkpoint update
	if checkpoint exists in temporary storage
		ignore message
	else
		create checkpoint
		reset checkpoint refcount array

pseudocode executed on event receipt of checkpoint section update
	if checkpoint section exists in temporary storage
		ignore message
	else
		create checkpoint section

pseudocode executed on event receipt of reference count update
	update temporary checkpoint data storage reference count set by adding
	any reference counts in the temporary message set to those from the
	event
	update that checkpoint's reference count
	set the global checkpoint id to the current checkpoint id + 1 if it
	would increase the global checkpoint id

pseudocode called when the synchronization service calls the activate event:
for all checkpoints
	free all previously committed checkpoints and sections
	convert temporary checkpoints and sections to regular sections
copy my_saved_ring_id to my_old_ring_id

pseudocode called when the synchronization service calls the abort event:
	free all temporary checkpoints and temporary sections