Nānā. unuhi.: ka mea kākau o ka ʻatikala - Erkan Erol, he ʻenekinia mai SAP - kaʻana like i kāna aʻo ʻana i nā hana o ka hana o ka hui kubectl exec, kamaʻāina loa i nā mea a pau e hana pū me Kubernetes. Hoʻopili ʻo ia i ka algorithm holoʻokoʻa me nā papa inoa o nā kumu kumu Kubernetes (a me nā papahana pili), e ʻae iā ʻoe e hoʻomaopopo hohonu i ke kumuhana e like me ka mea e pono ai.
I kekahi Pōʻalima, hele mai kekahi hoa hana iaʻu a nīnau mai pehea e hoʻokō ai i kahi kauoha i loko o kahi pod me ka hoʻohana ʻana mea kūʻai-hele. ʻAʻole hiki iaʻu ke pane aku iā ia a ʻike koke wau ʻaʻole wau i ʻike i ke ʻano o ka hana kubectl exec. ʻAe, ua loaʻa iaʻu kekahi mau manaʻo e pili ana i kāna hāmeʻa, akā ʻaʻole wau 100% maopopo i ko lākou pololei a no laila ua hoʻoholo wau e hoʻoponopono i kēia pilikia. Ma ke aʻo ʻana i nā blogs, nā palapala a me nā code kumu, ua aʻo nui wau, a ma kēia ʻatikala makemake wau e kaʻana like i kaʻu ʻike a me ka ʻike. Inā hewa kekahi mea, e ʻoluʻolu e kelepona mai iaʻu ma Twitter.
ʻO ka hoʻomākaukauʻana
No ka hana ʻana i kahi pūʻulu ma kahi MacBook, ua cloned wau ecomm-integration-ballerina/kubernetes-cluster. A laila hoʻoponopono wau i nā helu IP o nā nodes i ka kubeletʻa config, no ka mea ʻaʻole i ʻae nā hoʻonohonoho paʻamau. kubectl exec. Hiki iā ʻoe ke heluhelu hou aʻe e pili ana i ke kumu nui o kēia maanei.
ʻO kēlā me kēia mīkini = kaʻu MacBook
kumu node IP = 192.168.205.10
Node limahana IP = 192.168.205.11
awa kikowaena API = 6443
Nā Components
kaʻina hana kubectl: ke hana mākou i "kubectl exec..." hoʻomaka ke kaʻina hana. Hiki iā ʻoe ke hana i kēia ma kekahi mīkini me ke komo ʻana i ka kikowaena K8s API. Nānā. transl.: Ma nā papa inoa console, hoʻohana ka mea kākau i ka manaʻo "kekahi mīkini", e hōʻike ana e hiki ke hoʻokō ʻia nā kauoha ma luna o kēlā me kēia mīkini me ke komo ʻana iā Kubernetes.
kikowaena api: He ʻāpana ma ka node haku e hiki ai ke komo i ka Kubernetes API. ʻO kēia ka hopena mua no ka mokulele hoʻokele ma Kubernetes.
kubelet: mea hana e holo ana ma kela a me keia node o ka hui. Hāʻawi ia i ka hana o nā ipu i loko o ka pod.
manawa holo ipu (manawa holo pahu): ʻO ka polokalamu ke kuleana no ka holo ʻana i nā ipu. Nā laʻana: Docker, CRI-O, containerd…
kani: OS kernel ma ka node limahana; kuleana no ka hooponopono ana.
polokalamu (pahuhopu) ka pahu: he ipu i loko o ka pod a holo ma luna o kekahi o nā node hana.
He aha kaʻu i ʻike ai
1. Ka hana ma ka ʻaoʻao o ka mea kūʻai aku
E hana i kahi pod ma kahi inoa default:
// any machine
$ kubectl run exec-test-nginx --image=nginx
A laila hoʻokō mākou i ke kauoha exec a kali i 5000 kekona no ka ʻike hou aku:
// any machine
$ kubectl exec -it exec-test-nginx-6558988d5-fgxgg -- sh
# sleep 5000
Hōʻike ʻia ke kaʻina hana kubectl (me pid=8507 i kā mākou hihia):
Hiki iā mākou ke nānā i ke noi ma ka ʻaoʻao api-server:
handler.go:143] kube-apiserver: POST "/api/v1/namespaces/default/pods/exec-test-nginx-6558988d5-fgxgg/exec" satisfied by gorestful with webservice /api/v1
upgradeaware.go:261] Connecting to backend proxy (intercepting redirects) https://192.168.205.11:10250/exec/default/exec-test-nginx-6558988d5-fgxgg/exec-test-nginx?command=sh&input=1&output=1&tty=1
Headers: map[Connection:[Upgrade] Content-Length:[0] Upgrade:[SPDY/3.1] User-Agent:[kubectl/v1.12.10 (darwin/amd64) kubernetes/e3c1340] X-Forwarded-For:[192.168.205.1] X-Stream-Protocol-Version:[v4.channel.k8s.io v3.channel.k8s.io v2.channel.k8s.io channel.k8s.io]]
E hoʻomanaʻo i ka noi HTTP me kahi noi hoʻololi protocol. SPDY hiki i nā "kahawai" kaʻawale o stdin/stdout/stderr/spdy-error e hoʻonui ʻia ma luna o kahi pilina TCP hoʻokahi.
Loaʻa i ka server API ka noi a hoʻololi iā ia i PodExecOptions:
// PodExecOptions is the query options to a Pod's remote exec call
type PodExecOptions struct {
metav1.TypeMeta
// Stdin if true indicates that stdin is to be redirected for the exec call
Stdin bool
// Stdout if true indicates that stdout is to be redirected for the exec call
Stdout bool
// Stderr if true indicates that stderr is to be redirected for the exec call
Stderr bool
// TTY if true indicates that a tty will be allocated for the exec call
TTY bool
// Container in which to execute the command.
Container string
// Command is the remote command to execute; argv array; not executed within a shell.
Command []string
}
No ka hana ʻana i nā hana i koi ʻia, pono e ʻike ka api-server i ka pod e pono ai e hoʻopili:
// ExecLocation returns the exec URL for a pod container. If opts.Container is blank
// and only one container is present in the pod, that container is used.
func ExecLocation(
getter ResourceGetter,
connInfo client.ConnectionInfoGetter,
ctx context.Context,
name string,
opts *api.PodExecOptions,
) (*url.URL, http.RoundTripper, error) {
return streamLocation(getter, connInfo, ctx, name, opts, opts.Container, "exec")
}
ʻOiaʻiʻo, lawe ʻia ka ʻikepili e pili ana i ka hopena mai ka ʻike e pili ana i ka node:
nodeName := types.NodeName(pod.Spec.NodeName)
if len(nodeName) == 0 {
// If pod has not been assigned a host, return an empty location
return nil, nil, errors.NewBadRequest(fmt.Sprintf("pod %s does not have a host assigned", name))
}
nodeInfo, err := connInfo.GetConnectionInfo(ctx, nodeName)
Hooray! He awa ko Kubelet (node.Status.DaemonEndpoints.KubeletEndpoint.Port) kahi e hoʻopili ai ke kikowaena API:
// GetConnectionInfo retrieves connection info from the status of a Node API object.
func (k *NodeConnectionInfoGetter) GetConnectionInfo(ctx context.Context, nodeName types.NodeName) (*ConnectionInfo, error) {
node, err := k.nodes.Get(ctx, string(nodeName), metav1.GetOptions{})
if err != nil {
return nil, err
}
// Find a kubelet-reported address, using preferred address type
host, err := nodeutil.GetPreferredNodeAddress(node, k.preferredAddressTypes)
if err != nil {
return nil, err
}
// Use the kubelet-reported port, if present
port := int(node.Status.DaemonEndpoints.KubeletEndpoint.Port)
if port <= 0 {
port = k.defaultPort
}
return &ConnectionInfo{
Scheme: k.scheme,
Hostname: host,
Port: strconv.Itoa(port),
Transport: k.transport,
}, nil
}
Hoʻopau ʻia kēia mau pilina ma ke kubelet's HTTPS endpoint. Ma ka maʻamau, ʻaʻole hōʻoia ʻo apiserver i ka palapala hōʻoia o ka kubelet, kahi e hoʻopilikia ai ka pilina i "man-in-the-middle attacks" (MITM) a palekana ʻole e hana ma nā pūnaewele hilinaʻi ʻole a/a i ʻole ka lehulehu.
I kēia manawa ʻike ka server API i ka hopena a hoʻokumu i kahi pilina:
// Connect returns a handler for the pod exec proxy
func (r *ExecREST) Connect(ctx context.Context, name string, opts runtime.Object, responder rest.Responder) (http.Handler, error) {
execOpts, ok := opts.(*api.PodExecOptions)
if !ok {
return nil, fmt.Errorf("invalid options object: %#v", opts)
}
location, transport, err := pod.ExecLocation(r.Store, r.KubeletConn, ctx, name, execOpts)
if err != nil {
return nil, err
}
return newThrottledUpgradeAwareProxyHandler(location, transport, false, true, true, responder), nil
}
ʻO ka mea mua, e ʻike i ka IP o ka node hana. I kā mākou hihia, ʻo 192.168.205.11 kēia:
// any machine
$ kubectl get nodes k8s-node-1 -o wide
NAME STATUS ROLES AGE VERSION INTERNAL-IP EXTERNAL-IP OS-IMAGE KERNEL-VERSION CONTAINER-RUNTIME
k8s-node-1 Ready <none> 9h v1.15.3 192.168.205.11 <none> Ubuntu 16.04.6 LTS 4.4.0-159-generic docker://17.3.3
A laila hoʻonoho i ke awa kubelet (10250 i kā mākou hihia):
// any machine
$ kubectl get nodes k8s-node-1 -o jsonpath='{.status.daemonEndpoints.kubeletEndpoint}'
map[Port:10250]
ʻO ka manawa kēia e hoʻāʻo ai i ka pūnaewele. Aia kahi pilina me ka node limahana (192.168.205.11)? ʻo ia! Inā 'oe e "pepehi" i ke kaʻina hana exec, e nalowale ana, no laila ʻike wau ua hoʻokumu ʻia ka pilina e ka api-server ma muli o ke kauoha exec i hoʻokō ʻia.
Akā e kali, pehea i huki ai ʻo kubelet i kēia? He daemon ka kubelet e wehe ana i ke komo i ka API ma o ke awa no nā noi api-server:
// Server is the library interface to serve the stream requests.
type Server interface {
http.Handler
// Get the serving URL for the requests.
// Requests must not be nil. Responses may be nil iff an error is returned.
GetExec(*runtimeapi.ExecRequest) (*runtimeapi.ExecResponse, error)
GetAttach(req *runtimeapi.AttachRequest) (*runtimeapi.AttachResponse, error)
GetPortForward(*runtimeapi.PortForwardRequest) (*runtimeapi.PortForwardResponse, error)
// Start the server.
// addr is the address to serve on (address:port) stayUp indicates whether the server should
// listen until Stop() is called, or automatically stop after all expected connections are
// closed. Calling Get{Exec,Attach,PortForward} increments the expected connection count.
// Function does not return until the server is stopped.
Start(stayUp bool) error
// Stop the server, and terminate any open connections.
Stop() error
}
Hoʻokomo ʻo Kubelet i kahi kikowaena RuntimeServiceClient, kahi ʻāpana o ka Container Runtime Interface (Ua kākau mākou e pili ana i ia mea, no ka laʻana, maanei - kokoke. unuhi.):
Ka papa inoa lōʻihi mai ka cri-api ma nā kubernetes/kubernetes
// For semantics around ctx use and closing/ending streaming RPCs, please refer to https://godoc.org/google.golang.org/grpc#ClientConn.NewStream.
type RuntimeServiceClient interface {
// Version returns the runtime name, runtime version, and runtime API version.
Version(ctx context.Context, in *VersionRequest, opts ...grpc.CallOption) (*VersionResponse, error)
// RunPodSandbox creates and starts a pod-level sandbox. Runtimes must ensure
// the sandbox is in the ready state on success.
RunPodSandbox(ctx context.Context, in *RunPodSandboxRequest, opts ...grpc.CallOption) (*RunPodSandboxResponse, error)
// StopPodSandbox stops any running process that is part of the sandbox and
// reclaims network resources (e.g., IP addresses) allocated to the sandbox.
// If there are any running containers in the sandbox, they must be forcibly
// terminated.
// This call is idempotent, and must not return an error if all relevant
// resources have already been reclaimed. kubelet will call StopPodSandbox
// at least once before calling RemovePodSandbox. It will also attempt to
// reclaim resources eagerly, as soon as a sandbox is not needed. Hence,
// multiple StopPodSandbox calls are expected.
StopPodSandbox(ctx context.Context, in *StopPodSandboxRequest, opts ...grpc.CallOption) (*StopPodSandboxResponse, error)
// RemovePodSandbox removes the sandbox. If there are any running containers
// in the sandbox, they must be forcibly terminated and removed.
// This call is idempotent, and must not return an error if the sandbox has
// already been removed.
RemovePodSandbox(ctx context.Context, in *RemovePodSandboxRequest, opts ...grpc.CallOption) (*RemovePodSandboxResponse, error)
// PodSandboxStatus returns the status of the PodSandbox. If the PodSandbox is not
// present, returns an error.
PodSandboxStatus(ctx context.Context, in *PodSandboxStatusRequest, opts ...grpc.CallOption) (*PodSandboxStatusResponse, error)
// ListPodSandbox returns a list of PodSandboxes.
ListPodSandbox(ctx context.Context, in *ListPodSandboxRequest, opts ...grpc.CallOption) (*ListPodSandboxResponse, error)
// CreateContainer creates a new container in specified PodSandbox
CreateContainer(ctx context.Context, in *CreateContainerRequest, opts ...grpc.CallOption) (*CreateContainerResponse, error)
// StartContainer starts the container.
StartContainer(ctx context.Context, in *StartContainerRequest, opts ...grpc.CallOption) (*StartContainerResponse, error)
// StopContainer stops a running container with a grace period (i.e., timeout).
// This call is idempotent, and must not return an error if the container has
// already been stopped.
// TODO: what must the runtime do after the grace period is reached?
StopContainer(ctx context.Context, in *StopContainerRequest, opts ...grpc.CallOption) (*StopContainerResponse, error)
// RemoveContainer removes the container. If the container is running, the
// container must be forcibly removed.
// This call is idempotent, and must not return an error if the container has
// already been removed.
RemoveContainer(ctx context.Context, in *RemoveContainerRequest, opts ...grpc.CallOption) (*RemoveContainerResponse, error)
// ListContainers lists all containers by filters.
ListContainers(ctx context.Context, in *ListContainersRequest, opts ...grpc.CallOption) (*ListContainersResponse, error)
// ContainerStatus returns status of the container. If the container is not
// present, returns an error.
ContainerStatus(ctx context.Context, in *ContainerStatusRequest, opts ...grpc.CallOption) (*ContainerStatusResponse, error)
// UpdateContainerResources updates ContainerConfig of the container.
UpdateContainerResources(ctx context.Context, in *UpdateContainerResourcesRequest, opts ...grpc.CallOption) (*UpdateContainerResourcesResponse, error)
// ReopenContainerLog asks runtime to reopen the stdout/stderr log file
// for the container. This is often called after the log file has been
// rotated. If the container is not running, container runtime can choose
// to either create a new log file and return nil, or return an error.
// Once it returns error, new container log file MUST NOT be created.
ReopenContainerLog(ctx context.Context, in *ReopenContainerLogRequest, opts ...grpc.CallOption) (*ReopenContainerLogResponse, error)
// ExecSync runs a command in a container synchronously.
ExecSync(ctx context.Context, in *ExecSyncRequest, opts ...grpc.CallOption) (*ExecSyncResponse, error)
// Exec prepares a streaming endpoint to execute a command in the container.
Exec(ctx context.Context, in *ExecRequest, opts ...grpc.CallOption) (*ExecResponse, error)
// Attach prepares a streaming endpoint to attach to a running container.
Attach(ctx context.Context, in *AttachRequest, opts ...grpc.CallOption) (*AttachResponse, error)
// PortForward prepares a streaming endpoint to forward ports from a PodSandbox.
PortForward(ctx context.Context, in *PortForwardRequest, opts ...grpc.CallOption) (*PortForwardResponse, error)
// ContainerStats returns stats of the container. If the container does not
// exist, the call returns an error.
ContainerStats(ctx context.Context, in *ContainerStatsRequest, opts ...grpc.CallOption) (*ContainerStatsResponse, error)
// ListContainerStats returns stats of all running containers.
ListContainerStats(ctx context.Context, in *ListContainerStatsRequest, opts ...grpc.CallOption) (*ListContainerStatsResponse, error)
// UpdateRuntimeConfig updates the runtime configuration based on the given request.
UpdateRuntimeConfig(ctx context.Context, in *UpdateRuntimeConfigRequest, opts ...grpc.CallOption) (*UpdateRuntimeConfigResponse, error)
// Status returns the status of the runtime.
Status(ctx context.Context, in *StatusRequest, opts ...grpc.CallOption) (*StatusResponse, error)
}
ʻO ka Container Runtime ke kuleana no ka hoʻokō RuntimeServiceServer:
Ka papa inoa lōʻihi mai ka cri-api ma nā kubernetes/kubernetes
// RuntimeServiceServer is the server API for RuntimeService service.
type RuntimeServiceServer interface {
// Version returns the runtime name, runtime version, and runtime API version.
Version(context.Context, *VersionRequest) (*VersionResponse, error)
// RunPodSandbox creates and starts a pod-level sandbox. Runtimes must ensure
// the sandbox is in the ready state on success.
RunPodSandbox(context.Context, *RunPodSandboxRequest) (*RunPodSandboxResponse, error)
// StopPodSandbox stops any running process that is part of the sandbox and
// reclaims network resources (e.g., IP addresses) allocated to the sandbox.
// If there are any running containers in the sandbox, they must be forcibly
// terminated.
// This call is idempotent, and must not return an error if all relevant
// resources have already been reclaimed. kubelet will call StopPodSandbox
// at least once before calling RemovePodSandbox. It will also attempt to
// reclaim resources eagerly, as soon as a sandbox is not needed. Hence,
// multiple StopPodSandbox calls are expected.
StopPodSandbox(context.Context, *StopPodSandboxRequest) (*StopPodSandboxResponse, error)
// RemovePodSandbox removes the sandbox. If there are any running containers
// in the sandbox, they must be forcibly terminated and removed.
// This call is idempotent, and must not return an error if the sandbox has
// already been removed.
RemovePodSandbox(context.Context, *RemovePodSandboxRequest) (*RemovePodSandboxResponse, error)
// PodSandboxStatus returns the status of the PodSandbox. If the PodSandbox is not
// present, returns an error.
PodSandboxStatus(context.Context, *PodSandboxStatusRequest) (*PodSandboxStatusResponse, error)
// ListPodSandbox returns a list of PodSandboxes.
ListPodSandbox(context.Context, *ListPodSandboxRequest) (*ListPodSandboxResponse, error)
// CreateContainer creates a new container in specified PodSandbox
CreateContainer(context.Context, *CreateContainerRequest) (*CreateContainerResponse, error)
// StartContainer starts the container.
StartContainer(context.Context, *StartContainerRequest) (*StartContainerResponse, error)
// StopContainer stops a running container with a grace period (i.e., timeout).
// This call is idempotent, and must not return an error if the container has
// already been stopped.
// TODO: what must the runtime do after the grace period is reached?
StopContainer(context.Context, *StopContainerRequest) (*StopContainerResponse, error)
// RemoveContainer removes the container. If the container is running, the
// container must be forcibly removed.
// This call is idempotent, and must not return an error if the container has
// already been removed.
RemoveContainer(context.Context, *RemoveContainerRequest) (*RemoveContainerResponse, error)
// ListContainers lists all containers by filters.
ListContainers(context.Context, *ListContainersRequest) (*ListContainersResponse, error)
// ContainerStatus returns status of the container. If the container is not
// present, returns an error.
ContainerStatus(context.Context, *ContainerStatusRequest) (*ContainerStatusResponse, error)
// UpdateContainerResources updates ContainerConfig of the container.
UpdateContainerResources(context.Context, *UpdateContainerResourcesRequest) (*UpdateContainerResourcesResponse, error)
// ReopenContainerLog asks runtime to reopen the stdout/stderr log file
// for the container. This is often called after the log file has been
// rotated. If the container is not running, container runtime can choose
// to either create a new log file and return nil, or return an error.
// Once it returns error, new container log file MUST NOT be created.
ReopenContainerLog(context.Context, *ReopenContainerLogRequest) (*ReopenContainerLogResponse, error)
// ExecSync runs a command in a container synchronously.
ExecSync(context.Context, *ExecSyncRequest) (*ExecSyncResponse, error)
// Exec prepares a streaming endpoint to execute a command in the container.
Exec(context.Context, *ExecRequest) (*ExecResponse, error)
// Attach prepares a streaming endpoint to attach to a running container.
Attach(context.Context, *AttachRequest) (*AttachResponse, error)
// PortForward prepares a streaming endpoint to forward ports from a PodSandbox.
PortForward(context.Context, *PortForwardRequest) (*PortForwardResponse, error)
// ContainerStats returns stats of the container. If the container does not
// exist, the call returns an error.
ContainerStats(context.Context, *ContainerStatsRequest) (*ContainerStatsResponse, error)
// ListContainerStats returns stats of all running containers.
ListContainerStats(context.Context, *ListContainerStatsRequest) (*ListContainerStatsResponse, error)
// UpdateRuntimeConfig updates the runtime configuration based on the given request.
UpdateRuntimeConfig(context.Context, *UpdateRuntimeConfigRequest) (*UpdateRuntimeConfigResponse, error)
// Status returns the status of the runtime.
Status(context.Context, *StatusRequest) (*StatusResponse, error)
}
Hiki i ka API Server ke hoʻomaka i kahi pilina i kahi kubelet.
Hoʻomau kēia mau pilina a hiki i ka pau ʻana o ke kau hoʻokō interactive:
ma waena o kubectl a me api-server;
ma waena o api-server a me kubectl;
ma waena o ka kubelet a me ka manawa holo pahu.
ʻAʻole hiki iā Kubectl a i ʻole api-server ke holo i kekahi mea ma nā node limahana. Hiki i ke kubelet ke holo, akā pili pū me ka manawa holo o ka ipu no kēia mau hana.