pacemaker 1.1.18-0ubuntu1.3 source package in Ubuntu
Changelog
pacemaker (1.1.18-0ubuntu1.3) bionic-security; urgency=medium * SECURITY UPDATE: ACL restrictions bypass - debian/patches/CVE-2020-25654-*.patch: restrict IPC connections. - CVE-2020-25654 -- Marc Deslauriers <email address hidden> Thu, 29 Oct 2020 08:55:05 -0400
Upload details
- Uploaded by:
- Marc Deslauriers
- Uploaded to:
- Bionic
- Original maintainer:
- Ubuntu Developers
- Architectures:
- any all
- Section:
- admin
- Urgency:
- Medium Urgency
See full publishing history Publishing
Series | Published | Component | Section | |
---|---|---|---|---|
Bionic | updates | main | admin | |
Bionic | security | main | admin |
Downloads
File | Size | SHA-256 Checksum |
---|---|---|
pacemaker_1.1.18.orig.tar.gz | 5.1 MiB | a71921c1e2a93c5bed6199fb41464a1cff887be515f4a0ffbc2c92bc98d233af |
pacemaker_1.1.18-0ubuntu1.3.debian.tar.xz | 73.2 KiB | 4b06d36b4771e03111ac3ab758e26c61f3e1bbdc29fbb71ca8a0d13ebe7de193 |
pacemaker_1.1.18-0ubuntu1.3.dsc | 3.9 KiB | 3a430e1b9e2c485a1b8524b9ec9523d091add99733800c16087374ace1ee7ae6 |
Available diffs
Binary packages built by this source
- libcib-dev: cluster resource manager CIB library development
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the headers and other necessary files to build
applications or libraries that use the Cluster Information Base library.
- libcib4: cluster resource manager CIB library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the Cluster Information Base library.
- libcib4-dbgsym: debug symbols for libcib4
- libcrmcluster-dev: cluster resource manager cluster library development
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the headers and other necessary files to build
applications or libraries that use the cluster library.
- libcrmcluster4: cluster resource manager cluster library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the cluster library.
- libcrmcluster4-dbgsym: debug symbols for libcrmcluster4
- libcrmcommon-dev: cluster resource manager common library development
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the headers and other necessary files to build
applications or libraries that use the common library.
- libcrmcommon3: cluster resource manager common library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the common library.
- libcrmcommon3-dbgsym: debug symbols for libcrmcommon3
- libcrmservice-dev: cluster resource manager service library development
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the headers and other necessary files to build
applications or libraries that use the service library.
- libcrmservice3: cluster resource manager service library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the service library.
- libcrmservice3-dbgsym: debug symbols for libcrmservice3
- liblrmd-dev: cluster resource manager LRMD library development
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the headers and other necessary files to build
applications or libraries that use the Local Resource Manager Daemon
library.
- liblrmd1: cluster resource manager LRMD library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the Local Resource Manager Daemon library.
- liblrmd1-dbgsym: debug symbols for liblrmd1
- libpe-rules2: cluster resource manager Policy Engine rules library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the Policy Engine rules library.
- libpe-rules2-dbgsym: debug symbols for libpe-rules2
- libpe-status10: cluster resource manager Policy Engine status library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the Policy Engine status library.
- libpe-status10-dbgsym: debug symbols for libpe-status10
- libpengine-dev: cluster resource manager Policy Engine library development
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the headers and other necessary files to build
applications or libraries that use the Policy Engine library.
- libpengine10: cluster resource manager Policy Engine library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the Policy Engine library.
- libpengine10-dbgsym: debug symbols for libpengine10
- libstonithd-dev: cluster resource manager STONITH daemon library development
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the headers and other necessary files to build
applications or libraries that use the STONITH daemon library.
- libstonithd2: cluster resource manager STONITH daemon library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the STONITH daemon library.
- libstonithd2-dbgsym: debug symbols for libstonithd2
- libtransitioner2: cluster resource manager transitioner library
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the transitioner library.
- libtransitioner2-dbgsym: debug symbols for libtransitioner2
- pacemaker: cluster resource manager
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the Pacemaker daemons directly interacting with
the cluster stack.
- pacemaker-cli-utils: cluster resource manager command line utilities
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains those command line utilities of the Pacemaker
cluster manager which work on remote nodes as well.
- pacemaker-cli-utils-dbgsym: debug symbols for pacemaker-cli-utils
- pacemaker-common: cluster resource manager common files
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains common infrastructure and data files for the
Pacemaker daemons and utilities.
- pacemaker-dbgsym: debug symbols for pacemaker
- pacemaker-doc: cluster resource manager HTML documentation
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains
* the Pacemaker API documentation generated by Doxygen,
* the Clusters from Scratch book,
* the Pacemaker Development book,
* the Pacemaker Explained book and
* the Pacemaker Remote book.
- pacemaker-remote: cluster resource manager proxy daemon for remote nodes
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains the Pacemaker proxy daemon, which simulates cluster
services on a node not running the cluster stack. Such "remote" nodes can
run resources but don't participate in the quorum. This package is
mutually exclusive with Pacemaker proper.
- pacemaker-remote-dbgsym: debug symbols for pacemaker-remote
- pacemaker-resource-agents: cluster resource manager general resource agents
At its core, Pacemaker is a distributed finite state machine capable of
co-ordinating the startup and recovery of inter-related services across
a set of machines.
.
Pacemaker understands many different resource types (OCF, SYSV, systemd)
and can accurately model the relationships between them (colocation,
ordering).
.
It can even use technology such as Docker to automatically isolate the
resources managed by the cluster.
.
This package contains Pacemaker resource agents not requiring access
to the cluster stack, thus also usable by the remote daemon.