43 lines
1.3 KiB
Markdown
43 lines
1.3 KiB
Markdown
---
|
|
title: kube-scheduler
|
|
id: kube-scheduler
|
|
date: 2018-04-12
|
|
full_link: /docs/reference/generated/kube-scheduler/
|
|
short_description: >
|
|
主节点上的组件,该组件监视那些新创建的未指定运行节点的 Pod,并选择节点让 Pod 在上面运行。
|
|
|
|
aka:
|
|
tags:
|
|
- architecture
|
|
- scheduler
|
|
---
|
|
|
|
<!--
|
|
---
|
|
title: kube-scheduler
|
|
id: kube-scheduler
|
|
date: 2018-04-12
|
|
full_link: /docs/reference/generated/kube-scheduler/
|
|
short_description: >
|
|
Component on the master that watches newly created pods that have no node assigned, and selects a node for them to run on.
|
|
|
|
aka:
|
|
tags:
|
|
- architecture
|
|
---
|
|
-->
|
|
|
|
<!--
|
|
Component on the master that watches newly created pods that have no node assigned, and selects a node for them to run on.
|
|
-->
|
|
|
|
主节点上的组件,该组件监视那些新创建的未指定运行节点的 Pod,并选择节点让 Pod 在上面运行。
|
|
|
|
<!--more-->
|
|
|
|
<!--
|
|
Factors taken into account for scheduling decisions include individual and collective resource requirements, hardware/software/policy constraints, affinity and anti-affinity specifications, data locality, inter-workload interference and deadlines.
|
|
-->
|
|
|
|
调度决策考虑的因素包括单个 Pod 和 Pod 集合的资源需求、硬件/软件/策略约束、亲和性和反亲和性规范、数据位置、工作负载间的干扰和最后时限。
|