3e8e64a3e5
As far as I can tell this is simply a typo that has existed from the beginning. Having it this way around (`etcd` group as a child and thus subset of `k8s_cluster`) mirrors what is written in the preceeding sentence.
279 lines
14 KiB
Markdown
279 lines
14 KiB
Markdown
# Ansible variables
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## Inventory
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The inventory is composed of 3 groups:
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* **kube_node** : list of kubernetes nodes where the pods will run.
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* **kube_control_plane** : list of servers where kubernetes control plane components (apiserver, scheduler, controller) will run.
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* **etcd**: list of servers to compose the etcd server. You should have at least 3 servers for failover purpose.
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Note: do not modify the children of _k8s_cluster_, like putting
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the _etcd_ group into the _k8s_cluster_, unless you are certain
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to do that and you have it fully contained in the latter:
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```ShellSession
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etcd ⊂ k8s_cluster => kube_node ∩ etcd = etcd
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```
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When _kube_node_ contains _etcd_, you define your etcd cluster to be as well schedulable for Kubernetes workloads.
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If you want it a standalone, make sure those groups do not intersect.
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If you want the server to act both as control-plane and node, the server must be defined
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on both groups _kube_control_plane_ and _kube_node_. If you want a standalone and
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unschedulable control plane, the server must be defined only in the _kube_control_plane_ and
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not _kube_node_.
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There are also two special groups:
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* **calico_rr** : explained for [advanced Calico networking cases](/docs/calico.md)
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* **bastion** : configure a bastion host if your nodes are not directly reachable
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Below is a complete inventory example:
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```ini
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## Configure 'ip' variable to bind kubernetes services on a
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## different ip than the default iface
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node1 ansible_host=95.54.0.12 ip=10.3.0.1
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node2 ansible_host=95.54.0.13 ip=10.3.0.2
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node3 ansible_host=95.54.0.14 ip=10.3.0.3
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node4 ansible_host=95.54.0.15 ip=10.3.0.4
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node5 ansible_host=95.54.0.16 ip=10.3.0.5
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node6 ansible_host=95.54.0.17 ip=10.3.0.6
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[kube_control_plane]
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node1
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node2
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[etcd]
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node1
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node2
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node3
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[kube_node]
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node2
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node3
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node4
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node5
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node6
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[k8s_cluster:children]
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kube_node
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kube_control_plane
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```
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## Group vars and overriding variables precedence
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The group variables to control main deployment options are located in the directory ``inventory/sample/group_vars``.
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Optional variables are located in the `inventory/sample/group_vars/all.yml`.
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Mandatory variables that are common for at least one role (or a node group) can be found in the
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`inventory/sample/group_vars/k8s_cluster.yml`.
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There are also role vars for docker, kubernetes preinstall and control plane roles.
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According to the [ansible docs](https://docs.ansible.com/ansible/latest/playbooks_variables.html#variable-precedence-where-should-i-put-a-variable),
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those cannot be overridden from the group vars. In order to override, one should use
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the `-e` runtime flags (most simple way) or other layers described in the docs.
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Kubespray uses only a few layers to override things (or expect them to
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be overridden for roles):
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Layer | Comment
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------|--------
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**role defaults** | provides best UX to override things for Kubespray deployments
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inventory vars | Unused
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**inventory group_vars** | Expects users to use ``all.yml``,``k8s_cluster.yml`` etc. to override things
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inventory host_vars | Unused
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playbook group_vars | Unused
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playbook host_vars | Unused
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**host facts** | Kubespray overrides for internal roles' logic, like state flags
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play vars | Unused
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play vars_prompt | Unused
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play vars_files | Unused
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registered vars | Unused
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set_facts | Kubespray overrides those, for some places
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**role and include vars** | Provides bad UX to override things! Use extra vars to enforce
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block vars (only for tasks in block) | Kubespray overrides for internal roles' logic
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task vars (only for the task) | Unused for roles, but only for helper scripts
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**extra vars** (always win precedence) | override with ``ansible-playbook -e @foo.yml``
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## Ansible tags
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The following tags are defined in playbooks:
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| Tag name | Used for
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|--------------------------------|---------
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| annotate | Create kube-router annotation
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| apps | K8s apps definitions
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| asserts | Check tasks for download role
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| aws-ebs-csi-driver | Configuring csi driver: aws-ebs
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| azure-csi-driver | Configuring csi driver: azure
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| bastion | Setup ssh config for bastion
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| bootstrap-os | Anything related to host OS configuration
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| calico | Network plugin Calico
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| calico_rr | Configuring Calico route reflector
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| canal | Network plugin Canal
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| cephfs-provisioner | Configuring CephFS
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| cert-manager | Configuring certificate manager for K8s
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| cilium | Network plugin Cilium
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| cinder-csi-driver | Configuring csi driver: cinder
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| client | Kubernetes clients role
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| cloud-provider | Cloud-provider related tasks
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| cluster-roles | Configuring cluster wide application (psp ...)
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| cni | CNI plugins for Network Plugins
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| containerd | Configuring containerd engine runtime for hosts
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| container_engine_accelerator | Enable nvidia accelerator for runtimes
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| container-engine | Configuring container engines
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| container-runtimes | Configuring container runtimes
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| coredns | Configuring coredns deployment
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| crio | Configuring crio container engine for hosts
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| crun | Configuring crun runtime
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| csi-driver | Configuring csi driver
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| dashboard | Installing and configuring the Kubernetes Dashboard
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| dns | Remove dns entries when resetting
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| docker | Configuring docker engine runtime for hosts
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| download | Fetching container images to a delegate host
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| etcd | Configuring etcd cluster
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| etcd-secrets | Configuring etcd certs/keys
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| etchosts | Configuring /etc/hosts entries for hosts
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| external-cloud-controller | Configure cloud controllers
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| external-openstack | Cloud controller : openstack
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| external-provisioner | Configure external provisioners
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| external-vsphere | Cloud controller : vsphere
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| facts | Gathering facts and misc check results
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| files | Remove files when resetting
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| flannel | Network plugin flannel
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| gce | Cloud-provider GCP
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| gcp-pd-csi-driver | Configuring csi driver: gcp-pd
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| gvisor | Configuring gvisor runtime
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| helm | Installing and configuring Helm
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| ingress-controller | Configure ingress controllers
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| ingress_alb | AWS ALB Ingress Controller
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| init | Windows kubernetes init nodes
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| iptables | Flush and clear iptable when resetting
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| k8s-pre-upgrade | Upgrading K8s cluster
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| k8s-secrets | Configuring K8s certs/keys
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| k8s-gen-tokens | Configuring K8s tokens
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| kata-containers | Configuring kata-containers runtime
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| krew | Install and manage krew
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| kubeadm | Roles linked to kubeadm tasks
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| kube-apiserver | Configuring static pod kube-apiserver
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| kube-controller-manager | Configuring static pod kube-controller-manager
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| kubectl | Installing kubectl and bash completion
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| kubelet | Configuring kubelet service
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| kube-ovn | Network plugin kube-ovn
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| kube-router | Network plugin kube-router
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| kube-proxy | Configuring static pod kube-proxy
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| localhost | Special steps for the localhost (ansible runner)
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| local-path-provisioner | Configure External provisioner: local-path
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| local-volume-provisioner | Configure External provisioner: local-volume
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| macvlan | Network plugin macvlan
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| master | Configuring K8s master node role
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| metallb | Installing and configuring metallb
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| metrics_server | Configuring metrics_server
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| netchecker | Installing netchecker K8s app
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| network | Configuring networking plugins for K8s
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| mounts | Umount kubelet dirs when reseting
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| multus | Network plugin multus
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| nginx | Configuring LB for kube-apiserver instances
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| node | Configuring K8s minion (compute) node role
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| nodelocaldns | Configuring nodelocaldns daemonset
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| node-label | Tasks linked to labeling of nodes
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| node-webhook | Tasks linked to webhook (grating access to resources)
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| nvidia_gpu | Enable nvidia accelerator for runtimes
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| oci | Cloud provider: oci
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| persistent_volumes | Configure csi volumes
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| persistent_volumes_aws_ebs_csi | Configuring csi driver: aws-ebs
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| persistent_volumes_cinder_csi | Configuring csi driver: cinder
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| persistent_volumes_gcp_pd_csi | Configuring csi driver: gcp-pd
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| persistent_volumes_openstack | Configuring csi driver: openstack
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| policy-controller | Configuring Calico policy controller
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| post-remove | Tasks running post-remove operation
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| post-upgrade | Tasks running post-upgrade operation
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| pre-remove | Tasks running pre-remove operation
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| pre-upgrade | Tasks running pre-upgrade operation
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| preinstall | Preliminary configuration steps
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| registry | Configuring local docker registry
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| reset | Tasks running doing the node reset
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| resolvconf | Configuring /etc/resolv.conf for hosts/apps
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| rbd-provisioner | Configure External provisioner: rdb
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| services | Remove services (etcd, kubelet etc...) when resetting
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| snapshot | Enabling csi snapshot
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| snapshot-controller | Configuring csi snapshot controller
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| upgrade | Upgrading, f.e. container images/binaries
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| upload | Distributing images/binaries across hosts
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| vsphere-csi-driver | Configuring csi driver: vsphere
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| weave | Network plugin Weave
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| win_nodes | Running windows specific tasks
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| youki | Configuring youki runtime
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Note: Use the ``bash scripts/gen_tags.sh`` command to generate a list of all
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tags found in the codebase. New tags will be listed with the empty "Used for"
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field.
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## Example commands
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Example command to filter and apply only DNS configuration tasks and skip
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everything else related to host OS configuration and downloading images of containers:
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```ShellSession
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ansible-playbook -i inventory/sample/hosts.ini cluster.yml --tags preinstall,facts --skip-tags=download,bootstrap-os
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```
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And this play only removes the K8s cluster DNS resolver IP from hosts' /etc/resolv.conf files:
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```ShellSession
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ansible-playbook -i inventory/sample/hosts.ini -e dns_mode='none' cluster.yml --tags resolvconf
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```
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And this prepares all container images locally (at the ansible runner node) without installing
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or upgrading related stuff or trying to upload container to K8s cluster nodes:
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```ShellSession
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ansible-playbook -i inventory/sample/hosts.ini cluster.yml \
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-e download_run_once=true -e download_localhost=true \
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--tags download --skip-tags upload,upgrade
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```
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Note: use `--tags` and `--skip-tags` wise and only if you're 100% sure what you're doing.
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## Bastion host
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If you prefer to not make your nodes publicly accessible (nodes with private IPs only),
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you can use a so called *bastion* host to connect to your nodes. To specify and use a bastion,
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simply add a line to your inventory, where you have to replace x.x.x.x with the public IP of the
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bastion host.
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```ShellSession
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[bastion]
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bastion ansible_host=x.x.x.x
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```
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For more information about Ansible and bastion hosts, read
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[Running Ansible Through an SSH Bastion Host](https://blog.scottlowe.org/2015/12/24/running-ansible-through-ssh-bastion-host/)
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## Mitogen
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Mitogen support is deprecated, please see [mitogen related docs](/docs/mitogen.md) for useage and reasons for deprecation.
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## Beyond ansible 2.9
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Ansible project has decided, in order to ease their maintenance burden, to split between
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two projects which are now joined under the Ansible umbrella.
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Ansible-base (2.10.x branch) will contain just the ansible language implementation while
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ansible modules that were previously bundled into a single repository will be part of the
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ansible 3.x package. Pleasee see [this blog post](https://blog.while-true-do.io/ansible-release-3-0-0/)
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that explains in detail the need and the evolution plan.
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**Note:** this change means that ansible virtual envs cannot be upgraded with `pip install -U`.
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You first need to uninstall your old ansible (pre 2.10) version and install the new one.
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```ShellSession
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pip uninstall ansible
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cd kubespray/
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pip install -U .
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```
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**Note:** some changes needed to support ansible 2.10+ are not backwards compatible with 2.9
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Kubespray needs to evolve and keep pace with upstream ansible and will be forced to eventually
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drop 2.9 support. Kubespray CIs use only the ansible version specified in the `requirements.txt`
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and while the `ansible_version.yml` may allow older versions to be used, these are not
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exercised in the CI and compatibility is not guaranteed.
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