This documentation is for a release that is no longer maintained
See documentation for the latest supported version 3 or the latest supported version 4.Chapter 6. Using CPU Manager
CPU Manager manages groups of CPUs and constrains workloads to specific CPUs.
CPU Manager is useful for workloads that have some of these attributes:
- Require as much CPU time as possible.
- Are sensitive to processor cache misses.
- Are low-latency network applications.
- Coordinate with other processes and benefit from sharing a single processor cache.
6.1. Setting up CPU Manager Copy linkLink copied to clipboard!
Procedure
Optional: Label a node:
oc label node perf-node.example.com cpumanager=true
# oc label node perf-node.example.com cpumanager=trueCopy to Clipboard Copied! Toggle word wrap Toggle overflow Edit the
MachineConfigPoolof the nodes where CPU Manager should be enabled. In this example, all workers have CPU Manager enabled:oc edit machineconfigpool worker
# oc edit machineconfigpool workerCopy to Clipboard Copied! Toggle word wrap Toggle overflow Add a label to the worker machine config pool:
metadata: creationTimestamp: 2020-xx-xxx generation: 3 labels: custom-kubelet: cpumanager-enabledmetadata: creationTimestamp: 2020-xx-xxx generation: 3 labels: custom-kubelet: cpumanager-enabledCopy to Clipboard Copied! Toggle word wrap Toggle overflow Create a
KubeletConfig,cpumanager-kubeletconfig.yaml, custom resource (CR). Refer to the label created in the previous step to have the correct nodes updated with the new kubelet config. See themachineConfigPoolSelectorsection:Copy to Clipboard Copied! Toggle word wrap Toggle overflow Create the dynamic kubelet config:
oc create -f cpumanager-kubeletconfig.yaml
# oc create -f cpumanager-kubeletconfig.yamlCopy to Clipboard Copied! Toggle word wrap Toggle overflow This adds the CPU Manager feature to the kubelet config and, if needed, the Machine Config Operator (MCO) reboots the node. To enable CPU Manager, a reboot is not needed.
Check for the merged kubelet config:
Copy to Clipboard Copied! Toggle word wrap Toggle overflow Check the worker for the updated
kubelet.conf:oc debug node/perf-node.example.com
# oc debug node/perf-node.example.com sh-4.2# cat /host/etc/kubernetes/kubelet.conf | grep cpuManager cpuManagerPolicy: static1 cpuManagerReconcilePeriod: 5s2 Copy to Clipboard Copied! Toggle word wrap Toggle overflow Create a pod that requests a core or multiple cores. Both limits and requests must have their CPU value set to a whole integer. That is the number of cores that will be dedicated to this pod:
Copy to Clipboard Copied! Toggle word wrap Toggle overflow Create the pod:
oc create -f cpumanager-pod.yaml
# oc create -f cpumanager-pod.yamlCopy to Clipboard Copied! Toggle word wrap Toggle overflow Verify that the pod is scheduled to the node that you labeled:
Copy to Clipboard Copied! Toggle word wrap Toggle overflow Verify that the
cgroupsare set up correctly. Get the process ID (PID) of thepauseprocess:Copy to Clipboard Copied! Toggle word wrap Toggle overflow Pods of quality of service (QoS) tier
Guaranteedare placed within thekubepods.slice. Pods of other QoS tiers end up in childcgroupsofkubepods:cd /sys/fs/cgroup/cpuset/kubepods.slice/kubepods-pod69c01f8e_6b74_11e9_ac0f_0a2b62178a22.slice/crio-b5437308f1ad1a7db0574c542bdf08563b865c0345c86e9585f8c0b0a655612c.scope for i in `ls cpuset.cpus tasks` ; do echo -n "$i "; cat $i ; done
# cd /sys/fs/cgroup/cpuset/kubepods.slice/kubepods-pod69c01f8e_6b74_11e9_ac0f_0a2b62178a22.slice/crio-b5437308f1ad1a7db0574c542bdf08563b865c0345c86e9585f8c0b0a655612c.scope # for i in `ls cpuset.cpus tasks` ; do echo -n "$i "; cat $i ; done cpuset.cpus 1 tasks 32706Copy to Clipboard Copied! Toggle word wrap Toggle overflow Check the allowed CPU list for the task:
grep ^Cpus_allowed_list /proc/32706/status
# grep ^Cpus_allowed_list /proc/32706/status Cpus_allowed_list: 1Copy to Clipboard Copied! Toggle word wrap Toggle overflow Verify that another pod (in this case, the pod in the
burstableQoS tier) on the system cannot run on the core allocated for theGuaranteedpod:cat /sys/fs/cgroup/cpuset/kubepods.slice/kubepods-besteffort.slice/kubepods-besteffort-podc494a073_6b77_11e9_98c0_06bba5c387ea.slice/crio-c56982f57b75a2420947f0afc6cafe7534c5734efc34157525fa9abbf99e3849.scope/cpuset.cpus 0
# cat /sys/fs/cgroup/cpuset/kubepods.slice/kubepods-besteffort.slice/kubepods-besteffort-podc494a073_6b77_11e9_98c0_06bba5c387ea.slice/crio-c56982f57b75a2420947f0afc6cafe7534c5734efc34157525fa9abbf99e3849.scope/cpuset.cpus 0Copy to Clipboard Copied! Toggle word wrap Toggle overflow Copy to Clipboard Copied! Toggle word wrap Toggle overflow This VM has two CPU cores. You set
kube-reservedto 500 millicores, meaning half of one core is subtracted from the total capacity of the node to arrive at theNode Allocatableamount. You can see thatAllocatable CPUis 1500 millicores. This means you can run one of the CPU Manager pods since each will take one whole core. A whole core is equivalent to 1000 millicores. If you try to schedule a second pod, the system will accept the pod, but it will never be scheduled:NAME READY STATUS RESTARTS AGE cpumanager-6cqz7 1/1 Running 0 33m cpumanager-7qc2t 0/1 Pending 0 11s
NAME READY STATUS RESTARTS AGE cpumanager-6cqz7 1/1 Running 0 33m cpumanager-7qc2t 0/1 Pending 0 11sCopy to Clipboard Copied! Toggle word wrap Toggle overflow