目录
kubelet运行在每个worker节点上,接收kube-apiserver发送的请求,管理Pod容器,执行交互命令
kubelet启动时自动向kube-apiserver注册节点信息,内置的cAdivsor统计和监控节点的资源使用资源情况。为确保安全,部署时关闭了kubelet的非安全http端口,对请求进行认证和授权,拒绝未授权的访问
cd /opt/k8s/work
source /opt/k8s/bin/environment.sh
for node_name in ${NODE_NAMES[@]}
do
echo ">>> ${node_name}"
# 创建 token
export BOOTSTRAP_TOKEN=$(kubeadm token create --description kubelet-bootstrap-token --groups system:bootstrappers:${node_name} --kubeconfig ~/.kube/config)
# 设置集群参数
kubectl config set-cluster kubernetes --certificate-authority=/etc/kubernetes/cert/ca.pem --embed-certs=true --server=${KUBE_APISERVER} --kubeconfig=kubelet-bootstrap-${node_name}.kubeconfig
# 设置客户端认证参数
kubectl config set-credentials kubelet-bootstrap --token=${BOOTSTRAP_TOKEN} --kubeconfig=kubelet-bootstrap-${node_name}.kubeconfig
# 设置上下文参数
kubectl config set-context default --cluster=kubernetes --user=kubelet-bootstrap --kubeconfig=kubelet-bootstrap-${node_name}.kubeconfig
# 设置默认上下文
kubectl config use-context default --kubeconfig=kubelet-bootstrap-${node_name}.kubeconfig
done
分发 bootstrap kubeconfig 文件到所有 worker 节点
cd /opt/k8s/work
source /opt/k8s/bin/environment.sh
for node_name in ${NODE_NAMES[@]}
do
echo ">>> ${node_name}"
scp kubelet-bootstrap-${node_name}.kubeconfig root@${node_name}:/etc/kubernetes/kubelet-bootstrap.kubeconfig
done
[root@node01 work]# kubeadm token list --kubeconfig ~/.kube/config
TOKEN TTL EXPIRES USAGES DESCRIPTION EXTRA GROUPS
cu4q2e.ogvim78s3p252ysg 23h 2019-12-06T17:44:24+08:00 authentication,signing kubelet-bootstrap-token system:bootstrappers:node03
nrypmb.35fyygbwr9failr5 23h 2019-12-06T17:44:23+08:00 authentication,signing kubelet-bootstrap-token system:bootstrappers:node01
r5luwb.6x6c5lnit5utyotz 23h 2019-12-06T17:44:23+08:00 authentication,signing kubelet-bootstrap-token system:bootstrappers:node02
sx8n4m.vlltkkv8m23ogxg9 23h 2019-12-06T17:44:24+08:00 authentication,signing kubelet-bootstrap-token system:bootstrappers:node04
[root@node01 work]# kubectl get secrets -n kube-system|grep bootstrap-token
bootstrap-token-cu4q2e bootstrap.kubernetes.io/token 7 33s
bootstrap-token-nrypmb bootstrap.kubernetes.io/token 7 34s
bootstrap-token-r5luwb bootstrap.kubernetes.io/token 7 34s
bootstrap-token-sx8n4m bootstrap.kubernetes.io/token 7 33s
cd /opt/k8s/work
source /opt/k8s/bin/environment.sh
cat > kubelet-config.yaml.template <<EOF
kind: KubeletConfiguration
apiVersion: kubelet.config.k8s.io/v1beta1
address: "##NODE_IP##"
staticPodPath: ""
syncFrequency: 1m
fileCheckFrequency: 20s
httpCheckFrequency: 20s
staticPodURL: ""
port: 10250
readOnlyPort: 0
rotateCertificates: true
serverTLSBootstrap: true
authentication:
anonymous:
enabled: false
webhook:
enabled: true
x509:
clientCAFile: "/etc/kubernetes/cert/ca.pem"
authorization:
mode: Webhook
registryPullQPS: 0
registryBurst: 20
eventRecordQPS: 0
eventBurst: 20
enableDebuggingHandlers: true
enableContentionProfiling: true
healthzPort: 10248
healthzBindAddress: "##NODE_IP##"
clusterDomain: "${CLUSTER_DNS_DOMAIN}"
clusterDNS:
- "${CLUSTER_DNS_SVC_IP}"
nodeStatusUpdateFrequency: 10s
nodeStatusReportFrequency: 1m
imageMinimumGCAge: 2m
imageGCHighThresholdPercent: 85
imageGCLowThresholdPercent: 80
volumeStatsAggPeriod: 1m
kubeletCgroups: ""
systemCgroups: ""
cgroupRoot: ""
cgroupsPerQOS: true
cgroupDriver: systemd
runtimeRequestTimeout: 10m
hairpinMode: promiscuous-bridge
maxPods: 220
podCIDR: "${CLUSTER_CIDR}"
podPidsLimit: -1
resolvConf: /etc/resolv.conf
maxOpenFiles: 1000000
kubeAPIQPS: 1000
kubeAPIBurst: 2000
serializeImagePulls: false
evictionHard:
memory.available: "100Mi"
nodefs.available: "10%"
nodefs.inodesFree: "5%"
imagefs.available: "15%"
evictionSoft: {}
enableControllerAttachDetach: true
failSwapOn: true
containerLogMaxSize: 20Mi
containerLogMaxFiles: 10
systemReserved: {}
kubeReserved: {}
systemReservedCgroup: ""
kubeReservedCgroup: ""
enforceNodeAllocatable: ["pods"]
EOF
为各个节点创建和分发kubelet配置文件
cd /opt/k8s/work
source /opt/k8s/bin/environment.sh
for node_ip in ${NODE_IPS[@]}
do
echo ">>> ${node_ip}"
sed -e "s/##NODE_IP##/${node_ip}/" kubelet-config.yaml.template > kubelet-config-${node_ip}.yaml.template
scp kubelet-config-${node_ip}.yaml.template root@${node_ip}:/etc/kubernetes/kubelet-config.yaml
done
cd /opt/k8s/work
source /opt/k8s/bin/environment.sh
cat > kubelet.service.template <<EOF
[Unit]
Description=Kubernetes Kubelet
Documentation=https://github.com/GoogleCloudPlatform/kubernetes
After=docker.service
Requires=docker.service
[Service]
WorkingDirectory=${K8S_DIR}/kubelet
ExecStart=/opt/k8s/bin/kubelet \ --allow-privileged=true \ --bootstrap-kubeconfig=/etc/kubernetes/kubelet-bootstrap.kubeconfig \ --cert-dir=/etc/kubernetes/cert \ --cni-conf-dir=/etc/cni/net.d \ --container-runtime=docker \ --container-runtime-endpoint=unix:///var/run/dockershim.sock \ --root-dir=${K8S_DIR}/kubelet \ --kubeconfig=/etc/kubernetes/kubelet.kubeconfig \ --config=/etc/kubernetes/kubelet-config.yaml \ --hostname-override=##NODE_NAME## \ --pod-infra-container-image=gcr.azk8s.cn/google_containers/pause-amd64:3.1 \ --image-pull-progress-deadline=15m \ --volume-plugin-dir=${K8S_DIR}/kubelet/kubelet-plugins/volume/exec/ \ --logtostderr=true \ --v=2
Restart=always
RestartSec=5
StartLimitInterval=0
[Install]
WantedBy=multi-user.target
EOF
分发启动文件
d /opt/k8s/work
source /opt/k8s/bin/environment.sh
for node_name in ${NODE_NAMES[@]}
do
echo ">>> ${node_name}"
sed -e "s/##NODE_NAME##/${node_name}/" kubelet.service.template > kubelet-${node_name}.service
scp kubelet-${node_name}.service root@${node_name}:/etc/systemd/system/kubelet.service
done
Bootstrap Token Auth 和授予权限 kubelet 启动时查找 --kubeletconfig
参数对应的文件是否存在,如果不存在则使用 --bootstrap-kubeconfig 指定的 kubeconfig 文件向
kube-apiserver 发送证书签名请求 (CSR)。 kube-apiserver 收到 CSR 请求后,对其中的 Token
进行认证,认证通过后将请求的 user 设置为 system:bootstrap:,group 设置为
system:bootstrappers,这一过程称为 Bootstrap Token Auth。
kubectl create clusterrolebinding kubelet-bootstrap --clusterrole=system:node-bootstrapper --group=system:bootstrappers
source /opt/k8s/bin/environment.sh
for node_ip in ${NODE_IPS[@]}
do
echo ">>> ${node_ip}"
ssh root@${node_ip} "mkdir -p ${K8S_DIR}/kubelet/kubelet-plugins/volume/exec/"
ssh root@${node_ip} "/usr/sbin/swapoff -a"
ssh root@${node_ip} "systemctl daemon-reload && systemctl enable kubelet && systemctl restart kubelet"
done
关闭 swap 分区,否则 kubelet 会启动失败;
kubelet 启动后使用 –bootstrap-kubeconfig 向 kube-apiserver 发送 CSR 请求,当这个
CSR 被 approve 后,kube-controller-manager 为 kubelet 创建 TLS 客户端证书、私钥和
–kubeletconfig 文件。 注意:kube-controller-manager 需要配置 –cluster-signing-cert-file 和 –cluster-signing-key-file 参数,才会为 TLS Bootstrap 创建证书和私钥。
[root@node01 work]# kubectl get csr
NAME AGE REQUESTOR CONDITION
csr-5ttvq 2m6s system:bootstrap:r5luwb Pending
csr-gmt4v 2m5s system:bootstrap:cu4q2e Pending
csr-hhfw4 2m6s system:bootstrap:nrypmb Pending
csr-qpfp8 11s system:bootstrap:sx8n4m Pending
这里4个节点均处于pending(等待)状态
自动approve CSR请求
创建三个ClusterRoleBinding,分别用于自动approve client、renew client、renew server证书
cd /opt/k8s/work
cat > csr-crb.yaml <<EOF
# Approve all CSRs for the group "system:bootstrappers"
kind: ClusterRoleBinding
apiVersion: rbac.authorization.k8s.io/v1
metadata:
name: auto-approve-csrs-for-group
subjects:
- kind: Group
name: system:bootstrappers
apiGroup: rbac.authorization.k8s.io
roleRef:
kind: ClusterRole
name: system:certificates.k8s.io:certificatesigningrequests:nodeclient
apiGroup: rbac.authorization.k8s.io
---
# To let a node of the group "system:nodes" renew its own credentials
kind: ClusterRoleBinding
apiVersion: rbac.authorization.k8s.io/v1
metadata:
name: node-client-cert-renewal
subjects:
- kind: Group
name: system:nodes
apiGroup: rbac.authorization.k8s.io
roleRef:
kind: ClusterRole
name: system:certificates.k8s.io:certificatesigningrequests:selfnodeclient
apiGroup: rbac.authorization.k8s.io
---
# A ClusterRole which instructs the CSR approver to approve a node requesting a
# serving cert matching its client cert.
kind: ClusterRole
apiVersion: rbac.authorization.k8s.io/v1
metadata:
name: approve-node-server-renewal-csr
rules:
- apiGroups: ["certificates.k8s.io"]
resources: ["certificatesigningrequests/selfnodeserver"]
verbs: ["create"]
---
# To let a node of the group "system:nodes" renew its own server credentials
kind: ClusterRoleBinding
apiVersion: rbac.authorization.k8s.io/v1
metadata:
name: node-server-cert-renewal
subjects:
- kind: Group
name: system:nodes
apiGroup: rbac.authorization.k8s.io
roleRef:
kind: ClusterRole
name: approve-node-server-renewal-csr
apiGroup: rbac.authorization.k8s.io
EOF
kubectl apply -f csr-crb.yaml
等待1-10分钟,3个节点的CSR都会自动approved
[root@node01 work]# kubectl get csr
NAME AGE REQUESTOR CONDITION
csr-5ttvq 3m33s system:bootstrap:r5luwb Approved,Issued
csr-gmt4v 3m32s system:bootstrap:cu4q2e Approved,Issued
csr-hhfw4 3m33s system:bootstrap:nrypmb Approved,Issued
csr-lktrc 1s system:node:node01 Pending
csr-qpfp8 98s system:bootstrap:sx8n4m Approved,Issued
csr-s4q5h 102s system:bootstrap:sx8n4m Approved,Issued
csr-s7fds 1s system:node:node02 Pending
csr-wszxt 34s system:node:node04 Pending
Pending的CSR用于创建kubelet serve证书,需要手动approve (后面步骤)
目前所有节点均为ready状态
[root@node01 work]# kubectl get nodes
NAME STATUS ROLES AGE VERSION
node01 Ready <none> 26s v1.15.6
node02 Ready <none> 26s v1.15.6
node03 Ready <none> 25s v1.15.6
node04 Ready <none> 59s v1.15.6
基于安全考虑,CSR approving controllers不会自动approve kubelet server证书签名请求,需要手动approve
kubectl get csr | grep Pending | awk '{print $1}' | xargs kubectl certificate approve
kubelet启动后监听多个端口,用于接受kube-apiserver或其他客户端发送的请求
[root@node01 work]# netstat -lntup|grep kubelet
tcp 0 0 127.0.0.1:36615 0.0.0.0:* LISTEN 10549/kubelet
tcp 0 0 10.0.20.11:10248 0.0.0.0:* LISTEN 10549/kubelet
tcp 0 0 10.0.20.11:10250 0.0.0.0:* LISTEN 10549/kubelet
原文:https://www.cnblogs.com/winstom/p/11992168.html