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website/content/en/docs/reference/kubernetes-api/labels-annotations-taints.md
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Damini Satya dff2f7b960 Official 1.17 Release Docs (#18011)
* feat: graduate TaintNodesByCondition to GA (#17073)

* Promote StartupProbe to beta (enabled by default). (#17164)

* Watch bookmarks to GA (#17026)

* feat: graduate ScheduleDaemonSetPods to GA (#17350)

* Update Docker installation instructions (#17405)

* Use exact version numbers for installing Docker in Ubuntu (#17428)

* Move CSIMigration and CSIMigrationGCE to Beta in Kubernetes v1.17 (#17478)

* Promote NodeLease feature to GA (#17189)

* Update docs for csi topology ga (#17408)

* Update RunAsUsername to beta (#17460)

* doc:Update RunAsUsername to beta

* doc: update samples - kubernetes.io/os is no longer beta

* Updating based on review feedback

* Promote Node-specific volume limits to GA (#17432)

* Promote PodShareProcessNamespace to stable (#17192)

* Promote PodShareProcessNamespace to stable

* Add for_k8s_version to feature-state label

Co-Authored-By: Tim Bannister <tim@scalefactory.com>

* Readd version-check to shareProcessNamespace task

* Update service load balancer finalizer doc for GA (#17438)

* Update Topology Manager docs (#17451)

* Added information on how device plugins can take advantage
of Topology Manager
* Updated the Topology Manager documentation to include additionalinformation and update some out of date sections

* Fix broken Topology Manager link (#17746)

Part of What's Next Device Plugin section

* Update CRD defaulting docs for GA (#17450)

* Add documentation for VolumeSnapshot Beta (#17233)

* Updating EndpointSlice documentation for beta release in 1.17 (#17411)

* (docs/dualstack): v1.17 updates (#17457)

* Add placehold doc updates for dualstack in 1.17

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* Add Downward API and /etc/hosts Pod IP validation

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* remove addressed known issue via k/k pr 85246

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* Remove known issue and add flag as part of k/k 79993

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* remove follow up placeholders

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* Update verbiage

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* Make IP addressing consistent throughout the task

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* Update to status.podIPs

Signed-off-by: Lachlan Evenson <lachlan.evenson@microsoft.com>

* Update content/en/docs/tasks/network/validate-dual-stack.md

Use set instead of env

Co-Authored-By: Khaled Henidak (Kal) <khnidk@outlook.com>

* add topology.kubernetes.io/zone, topology.kubernetes.io/region and node.kubernetes.io/instance-type labels to docs (#17498)

Signed-off-by: Andrew Sy Kim <kiman@vmware.com>

* Service topology alpha documentation (#17459)

* Update list of feature flags for in-tree plugins migrated to CSI (#17533)

Signed-off-by: Deep Debroy <ddebroy@docker.com>

* Update Node concept for TaintNodesByCondition going GA (#17577)

* feat: graduate ResourceQuotaScopeSelectors to GA in 1.17 (#17554)

* kubeadm: update the upgrade documentation for 1.17 (#17587)

* doc: Simplify Windows deployments with RuntimeClass (#16697)

* doc: Simplify Windows deployments with RuntimeClass

* Updating on review feedback

* doc: Adding windows-build label from enhancement 1301

* update doc for kubelet option --reserved-cpus (#17648)

* feat: update TaintNodesByCondition in feature gates table (#17377)

* Update docs for v1 resource quota configuration (#17547)

* AdmissionConfiguration v1 (#17548)

* Update WebhookAdmissionConfiguration examples (#17549)

* Update AWS EBS Migration Feature state (#16126)

* Add resource version section to api-concepts documentation (#16910)

* Add Resource Version semantics section to api concepts

* Clarify risks of going back in time, add details about compaction and watch cache sizes

* Apply suggestions from liggitt

Co-Authored-By: Jordan Liggitt <jordan@liggitt.net>

* remove pesudocode, apply feedback

* Fix typo

* Clarify equality rules

* Cleanup kubectl generators docs (#17609)

* Write ReplicationController without a space

* Drop mentioning unsupported cluster versions

* Fix capitalization for “API group”

* Tweak wording

* Avoid using deprecated generator in example

* add Antrea description in dev-1.17 (#17919)

* Promote VolumeSubpathEnvExpansion to GA

* Reference Documentation for the Kubernetes API for 1.17 (#18019)

* Update feature-gates.md (#18033)

* Reference Documentation for kubectl Commands for 1.17 (#18017)

* Update for v1.17 (#18034)

* Update config.toml(release-1.17) for 1.17 (#18031)
2019-12-09 16:11:29 -08:00

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Well-Known Labels, Annotations and Taints templates/concept 60

{{% capture overview %}}

Kubernetes reserves all labels and annotations in the kubernetes.io namespace.

This document serves both as a reference to the values and as a coordination point for assigning values.

{{% /capture %}}

{{% capture body %}}

kubernetes.io/arch

Example: kubernetes.io/arch=amd64

Used on: Node

The Kubelet populates this with runtime.GOARCH as defined by Go. This can be handy if you are mixing arm and x86 nodes.

kubernetes.io/os

Example: kubernetes.io/os=linux

Used on: Node

The Kubelet populates this with runtime.GOOS as defined by Go. This can be handy if you are mixing operating systems in your cluster (for example: mixing Linux and Windows nodes).

beta.kubernetes.io/arch (deprecated)

This label has been deprecated. Please use kubernetes.io/arch instead.

beta.kubernetes.io/os (deprecated)

This label has been deprecated. Please use kubernetes.io/os instead.

kubernetes.io/hostname

Example: kubernetes.io/hostname=ip-172-20-114-199.ec2.internal

Used on: Node

The Kubelet populates this label with the hostname. Note that the hostname can be changed from the "actual" hostname by passing the --hostname-override flag to the kubelet.

beta.kubernetes.io/instance-type (deprecated)

{{< note >}} Starting in v1.17, this label is deprecated in favor of node.kubernetes.io/instance-type. {{< /note >}}

node.kubernetes.io/instance-type

Example: node.kubernetes.io/instance-type=m3.medium

Used on: Node

The Kubelet populates this with the instance type as defined by the cloudprovider. This will be set only if you are using a cloudprovider. This setting is handy if you want to target certain workloads to certain instance types, but typically you want to rely on the Kubernetes scheduler to perform resource-based scheduling. You should aim to schedule based on properties rather than on instance types (for example: require a GPU, instead of requiring a g2.2xlarge).

failure-domain.beta.kubernetes.io/region (deprecated)

See failure-domain.beta.kubernetes.io/zone.

{{< note >}} Starting in v1.17, this label is deprecated in favor of topology.kubernetes.io/region. {{< /note >}}

failure-domain.beta.kubernetes.io/zone (deprecated)

Example:

failure-domain.beta.kubernetes.io/region=us-east-1

failure-domain.beta.kubernetes.io/zone=us-east-1c

Used on: Node, PersistentVolume

On the Node: The kubelet populates this with the zone information as defined by the cloudprovider. This will be set only if you are using a cloudprovider. However, you should consider setting this on the nodes if it makes sense in your topology.

On the PersistentVolume: The PersistentVolumeLabel admission controller will automatically add zone labels to PersistentVolumes, on GCE and AWS.

Kubernetes will automatically spread the Pods in a replication controller or service across nodes in a single-zone cluster (to reduce the impact of failures). With multiple-zone clusters, this spreading behaviour is extended across zones (to reduce the impact of zone failures). This is achieved via SelectorSpreadPriority.

SelectorSpreadPriority is a best effort placement. If the zones in your cluster are heterogeneous (for example: different numbers of nodes, different types of nodes, or different pod resource requirements), this placement might prevent equal spreading of your Pods across zones. If desired, you can use homogenous zones (same number and types of nodes) to reduce the probability of unequal spreading.

The scheduler (through the VolumeZonePredicate predicate) also will ensure that Pods, that claim a given volume, are only placed into the same zone as that volume. Volumes cannot be attached across zones.

The actual values of zone and region don't matter. Nor is the node hierarchy rigidly defined. The expectation is that failures of nodes in different zones should be uncorrelated unless the entire region has failed. For example, zones should typically avoid sharing a single network switch. The exact mapping depends on your particular infrastructure - a three rack installation will choose a very different setup to a multi-datacenter configuration.

If PersistentVolumeLabel does not support automatic labeling of your PersistentVolumes, you should consider adding the labels manually (or adding support for PersistentVolumeLabel). With PersistentVolumeLabel, the scheduler prevents Pods from mounting volumes in a different zone. If your infrastructure doesn't have this constraint, you don't need to add the zone labels to the volumes at all.

{{< note >}} Starting in v1.17, this label is deprecated in favor of topology.kubernetes.io/zone. {{< /note >}}

topology.kubernetes.io/region

See topology.kubernetes.io/zone.

topology.kubernetes.io/zone

Example:

topology.kubernetes.io/region=us-east-1

topology.kubernetes.io/zone=us-east-1c

Used on: Node, PersistentVolume

On the Node: The kubelet populates this with the zone information as defined by the cloudprovider. This will be set only if you are using a cloudprovider. However, you should consider setting this on the nodes if it makes sense in your topology.

On the PersistentVolume: The PersistentVolumeLabel admission controller will automatically add zone labels to PersistentVolumes, on GCE and AWS.

Kubernetes will automatically spread the Pods in a replication controller or service across nodes in a single-zone cluster (to reduce the impact of failures). With multiple-zone clusters, this spreading behaviour is extended across zones (to reduce the impact of zone failures). This is achieved via SelectorSpreadPriority.

SelectorSpreadPriority is a best effort placement. If the zones in your cluster are heterogeneous (for example: different numbers of nodes, different types of nodes, or different pod resource requirements), this placement might prevent equal spreading of your Pods across zones. If desired, you can use homogenous zones (same number and types of nodes) to reduce the probability of unequal spreading.

The scheduler (through the VolumeZonePredicate predicate) also will ensure that Pods, that claim a given volume, are only placed into the same zone as that volume. Volumes cannot be attached across zones.

The actual values of zone and region don't matter. Nor is the node hierarchy rigidly defined. The expectation is that failures of nodes in different zones should be uncorrelated unless the entire region has failed. For example, zones should typically avoid sharing a single network switch. The exact mapping depends on your particular infrastructure - a three rack installation will choose a very different setup to a multi-datacenter configuration.

If PersistentVolumeLabel does not support automatic labeling of your PersistentVolumes, you should consider adding the labels manually (or adding support for PersistentVolumeLabel). With PersistentVolumeLabel, the scheduler prevents Pods from mounting volumes in a different zone. If your infrastructure doesn't have this constraint, you don't need to add the zone labels to the volumes at all.

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