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While at it, compact 'set' into bash shebang where possible and
add `make patches-copyright` target to simplify adding patch
license headers.
Change-Id: I0c841de72e5709e5eef915a52c5ec4a7fc0f7c37
Signed-off-by: Alexandru Avadanii <Alexandru.Avadanii@enea.com>
(cherry picked from commit 644e5fdfa2f49b988a5150e2a4eefc12daecd845)
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* use pseudo agentdb port binding controller instead of
the deprecated network topology one
* disable superfluous l2population mechanism driver
* tidy up the duplicated haproxy neutron listen opts
* straighten karaf features list
* update jetty config
Change-Id: Ifacf8de11eb56ab72df13a312151a510b280dea2
Signed-off-by: Michael Polenchuk <mpolenchuk@mirantis.com>
(cherry picked from commit fca7d22742df82fc6e502b17ad45ebc11c0ba89b)
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- ci/deploy.sh: fail if default scenario file is missing;
- start by copying reclass/classes/cluster/virtual-mcp-ocata-ovs as
classes/cluster/baremetal-mcp-ocata-ovs;
- add new state (maas) that will handle MaaS configuration;
- Split PXE network in two for baremetal:
* rename old "pxe" virtual network to "mcpcontrol", make it
non-configurable and identical for baremetal/virtual deploys;
* new "pxebr" bridge is dedicated for MaaS fabric network, which
comes with its own DHCP, TFTP etc.;
- Drop hardcoded PXE gateway & static IP for MaaS node, since
"mcpcontrol" remains a NAT-ed virtual network, with its own DHCP;
- Keep internet access available on first interfaces for cfg01/mas01;
- Align MaaS IP addrs (all x.y.z.3), add public IP for easy debug
via MaaS dashboard;
- Add static IP in new network segment (192.168.11.3/24) on MaaS
node's PXE interface;
- Set MaaS PXE interface MTU 1500 (weird network errors with jumbo);
- MaaS node: Add NAT iptables traffic forward from "mcpcontrol" to
"pxebr" interfaces;
- MaaS: Add harcoded lf-pod2 machine info (fixed identation in v6);
- Switch our targeted scenario to HA;
* scenario: s/os-nosdn-nofeature-noha/os-nosdn-nofeature-ha/
- maas region: Use mcp.rsa.pub from ~ubuntu/.ssh/authorized_keys;
- add route for 192.168.11.0/24 via mas01 on cfg01;
- fix race condition on kvm nodes network setup:
* add "noifupdown" support in salt formula for linux.network;
* keep primary eth/br-mgmt unconfigured till reboot;
TODO:
- Read all this info from PDF (Pod Descriptor File) later;
- investigate leftover references to eno2, eth3;
- add public network interfaces config, IPs;
- improve wait conditions for MaaS commision/deploy;
- report upstream breakage in system.single;
Change-Id: Ie8dd584b140991d2bd992acdfe47f5644bf51409
Signed-off-by: Michael Polenchuk <mpolenchuk@mirantis.com>
Signed-off-by: Guillermo Herrero <Guillermo.Herrero@enea.com>
Signed-off-by: Charalampos Kominos <Charalampos.Kominos@enea.com>
Signed-off-by: Alexandru Avadanii <Alexandru.Avadanii@enea.com>
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salt.sh currently clones the full Fuel@OPNFV git repo from upstream
public mirror, preventing us from testing locally edited or new
patches.
Instead, bring back git submodule handling from old f_repos, clone
and patch each submodule locally, then copy the whole parent repo
over to cfg01.
This is also a first step towards implementing offline deploy support.
NOTE: This adds new deploy prerequisite packages:
- git (for submodule clone/update);
- make (for submodule patching);
- rsync (for parent repo replication to cfg01);
NOTE: Parent repository is expected to be a git repo, in order to
work with git submodules.
While at it, perform some minor related changes:
- add deploy artifacts (ISOs, qcow2 files) to .gitignore, also used
to filter-out such files during rsync to cfg01;
- remove obsolete Fuel patches (old f_repos mechanism);
- rename "reclass-system-salt-model" submodule;
Change-Id: I6210d80d41010b2802e4f1b31acf249a18db7963
Signed-off-by: Alexandru Avadanii <Alexandru.Avadanii@enea.com>
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