Revert v1.17 release changes on v1.16 branch (#18123)
This reverts commits:1131f8603e.cf5b8b200c.75de70a431.dff2f7b960.cf925bb688.ffd1363c0e.87a2cafb20.ffe259d6f2.
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Kubernetes Prow Robot
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@@ -81,10 +81,19 @@ the `Terminating` or `Unknown` state. In cases where Kubernetes cannot deduce fr
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permanently left a cluster, the cluster administrator may need to delete the node object by hand. Deleting the node object from
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Kubernetes causes all the Pod objects running on the node to be deleted from the apiserver, and frees up their names.
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The node lifecycle controller automatically creates
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In version 1.12, `TaintNodesByCondition` feature is promoted to beta, so node lifecycle controller automatically creates
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[taints](/docs/concepts/configuration/taint-and-toleration/) that represent conditions.
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When the scheduler is assigning a Pod to a Node, the scheduler takes the Node's taints
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into account, except for any taints that the Pod tolerates.
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Similarly the scheduler ignores conditions when considering a Node; instead
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it looks at the Node's taints and a Pod's tolerations.
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Now users can choose between the old scheduling model and a new, more flexible scheduling model.
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A Pod that does not have any tolerations gets scheduled according to the old model. But a Pod that
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tolerates the taints of a particular Node can be scheduled on that Node.
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{{< caution >}}
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Enabling this feature creates a small delay between the
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time when a condition is observed and when a taint is created. This delay is usually less than one second, but it can increase the number of Pods that are successfully scheduled but rejected by the kubelet.
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{{< /caution >}}
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### Capacity and Allocatable {#capacity}
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@@ -163,28 +172,18 @@ to be unreachable. (The default timeouts are 40s to start reporting
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ConditionUnknown and 5m after that to start evicting pods.) The node controller
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checks the state of each node every `--node-monitor-period` seconds.
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#### Heartbeats
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Heartbeats, sent by Kubernetes nodes, help determine the availability of a node.
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There are two forms of heartbeats: updates of `NodeStatus` and the
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[Lease object](/docs/reference/generated/kubernetes-api/{{< latest-version >}}/#lease-v1-coordination-k8s-io).
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Each Node has an associated Lease object in the `kube-node-lease`
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{{< glossary_tooltip term_id="namespace" text="namespace">}}.
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Lease is a lightweight resource, which improves the performance
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of the node heartbeats as the cluster scales.
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The kubelet is responsible for creating and updating the `NodeStatus` and
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a Lease object.
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- The kubelet updates the `NodeStatus` either when there is change in status,
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or if there has been no update for a configured interval. The default interval
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for `NodeStatus` updates is 5 minutes (much longer than the 40 second default
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timeout for unreachable nodes).
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- The kubelet creates and then updates its Lease object every 10 seconds
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(the default update interval). Lease updates occur independently from the
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`NodeStatus` updates.
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#### Reliability
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In versions of Kubernetes prior to 1.13, NodeStatus is the heartbeat from the
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node. Node lease feature is enabled by default since 1.14 as a beta feature
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(feature gate `NodeLease`, [KEP-0009](https://github.com/kubernetes/enhancements/blob/master/keps/sig-node/0009-node-heartbeat.md)).
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When node lease feature is enabled, each node has an associated `Lease` object in
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`kube-node-lease` namespace that is renewed by the node periodically, and both
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NodeStatus and node lease are treated as heartbeats from the node. Node leases
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are renewed frequently while NodeStatus is reported from node to master only
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when there is some change or enough time has passed (default is 1 minute, which
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is longer than the default timeout of 40 seconds for unreachable nodes). Since
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node lease is much more lightweight than NodeStatus, this feature makes node
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heartbeat significantly cheaper from both scalability and performance
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perspectives.
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In Kubernetes 1.4, we updated the logic of the node controller to better handle
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cases when a large number of nodes have problems with reaching the master
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