8e5b17cf13
Signed-off-by: Mrunal Patel <mrunalp@gmail.com>
383 lines
14 KiB
Go
383 lines
14 KiB
Go
/*
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Copyright 2016 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package dockershim
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import (
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"fmt"
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dockertypes "github.com/docker/engine-api/types"
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dockercontainer "github.com/docker/engine-api/types/container"
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dockerfilters "github.com/docker/engine-api/types/filters"
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"github.com/golang/glog"
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runtimeapi "k8s.io/kubernetes/pkg/kubelet/api/v1alpha1/runtime"
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kubecontainer "k8s.io/kubernetes/pkg/kubelet/container"
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"k8s.io/kubernetes/pkg/kubelet/dockertools"
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"k8s.io/kubernetes/pkg/kubelet/qos"
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"k8s.io/kubernetes/pkg/kubelet/types"
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)
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const (
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defaultSandboxImage = "gcr.io/google_containers/pause-amd64:3.0"
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// Various default sandbox resources requests/limits.
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defaultSandboxCPUshares int64 = 2
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// Termination grace period
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defaultSandboxGracePeriod int = 10
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// Name of the underlying container runtime
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runtimeName = "docker"
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)
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// RunPodSandbox creates and starts a pod-level sandbox. Runtimes should ensure
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// the sandbox is in ready state.
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// For docker, PodSandbox is implemented by a container holding the network
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// namespace for the pod.
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// Note: docker doesn't use LogDirectory (yet).
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func (ds *dockerService) RunPodSandbox(config *runtimeapi.PodSandboxConfig) (string, error) {
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// Step 1: Pull the image for the sandbox.
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image := defaultSandboxImage
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podSandboxImage := ds.podSandboxImage
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if len(podSandboxImage) != 0 {
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image = podSandboxImage
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}
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// NOTE: To use a custom sandbox image in a private repository, users need to configure the nodes with credentials properly.
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// see: http://kubernetes.io/docs/user-guide/images/#configuring-nodes-to-authenticate-to-a-private-repository
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if err := ds.client.PullImage(image, dockertypes.AuthConfig{}, dockertypes.ImagePullOptions{}); err != nil {
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return "", fmt.Errorf("unable to pull image for the sandbox container: %v", err)
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}
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// Step 2: Create the sandbox container.
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createConfig, err := ds.makeSandboxDockerConfig(config, image)
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if err != nil {
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return "", fmt.Errorf("failed to make sandbox docker config for pod %q: %v", config.Metadata.GetName(), err)
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}
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createResp, err := ds.client.CreateContainer(*createConfig)
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recoverFromConflictIfNeeded(ds.client, err)
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if err != nil || createResp == nil {
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return "", fmt.Errorf("failed to create a sandbox for pod %q: %v", config.Metadata.GetName(), err)
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}
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// Step 3: Start the sandbox container.
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// Assume kubelet's garbage collector would remove the sandbox later, if
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// startContainer failed.
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err = ds.client.StartContainer(createResp.ID)
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if err != nil {
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return createResp.ID, fmt.Errorf("failed to start sandbox container for pod %q: %v", config.Metadata.GetName(), err)
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}
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if config.GetLinux().GetSecurityContext().GetNamespaceOptions().GetHostNetwork() {
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return createResp.ID, nil
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}
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// Step 4: Setup networking for the sandbox.
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// All pod networking is setup by a CNI plugin discovered at startup time.
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// This plugin assigns the pod ip, sets up routes inside the sandbox,
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// creates interfaces etc. In theory, its jurisdiction ends with pod
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// sandbox networking, but it might insert iptables rules or open ports
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// on the host as well, to satisfy parts of the pod spec that aren't
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// recognized by the CNI standard yet.
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cID := kubecontainer.BuildContainerID(runtimeName, createResp.ID)
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err = ds.networkPlugin.SetUpPod(config.GetMetadata().GetNamespace(), config.GetMetadata().GetName(), cID)
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// TODO: Do we need to teardown on failure or can we rely on a StopPodSandbox call with the given ID?
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return createResp.ID, err
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}
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// StopPodSandbox stops the sandbox. If there are any running containers in the
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// sandbox, they should be force terminated.
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// TODO: This function blocks sandbox teardown on networking teardown. Is it
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// better to cut our losses assuming an out of band GC routine will cleanup
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// after us?
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func (ds *dockerService) StopPodSandbox(podSandboxID string) error {
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status, err := ds.PodSandboxStatus(podSandboxID)
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if err != nil {
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return fmt.Errorf("Failed to get sandbox status: %v", err)
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}
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if !status.GetLinux().GetNamespaces().GetOptions().GetHostNetwork() {
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m := status.GetMetadata()
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cID := kubecontainer.BuildContainerID(runtimeName, podSandboxID)
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if err := ds.networkPlugin.TearDownPod(m.GetNamespace(), m.GetName(), cID); err != nil {
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// TODO: Figure out a way to retry this error. We can't
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// right now because the plugin throws errors when it doesn't find
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// eth0, which might not exist for various reasons (setup failed,
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// conf changed etc). In theory, it should teardown everything else
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// so there's no need to retry.
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glog.Errorf("Failed to teardown sandbox %v for pod %v/%v: %v", m.GetNamespace(), m.GetName(), podSandboxID, err)
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}
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}
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return ds.client.StopContainer(podSandboxID, defaultSandboxGracePeriod)
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// TODO: Stop all running containers in the sandbox.
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}
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// RemovePodSandbox removes the sandbox. If there are running containers in the
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// sandbox, they should be forcibly removed.
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func (ds *dockerService) RemovePodSandbox(podSandboxID string) error {
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return ds.client.RemoveContainer(podSandboxID, dockertypes.ContainerRemoveOptions{RemoveVolumes: true})
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// TODO: remove all containers in the sandbox.
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}
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// getIPFromPlugin interrogates the network plugin for an IP.
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func (ds *dockerService) getIPFromPlugin(sandbox *dockertypes.ContainerJSON) (string, error) {
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metadata, err := parseSandboxName(sandbox.Name)
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if err != nil {
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return "", err
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}
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msg := fmt.Sprintf("Couldn't find network status for %s/%s through plugin", *metadata.Namespace, *metadata.Name)
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if sharesHostNetwork(sandbox) {
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return "", fmt.Errorf("%v: not responsible for host-network sandboxes", msg)
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}
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cID := kubecontainer.BuildContainerID(runtimeName, sandbox.ID)
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networkStatus, err := ds.networkPlugin.GetPodNetworkStatus(*metadata.Namespace, *metadata.Name, cID)
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if err != nil {
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// This might be a sandbox that somehow ended up without a default
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// interface (eth0). We can't distinguish this from a more serious
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// error, so callers should probably treat it as non-fatal.
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return "", fmt.Errorf("%v: %v", msg, err)
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}
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if networkStatus == nil {
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return "", fmt.Errorf("%v: invalid network status for", msg)
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}
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return networkStatus.IP.String(), nil
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}
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// getIP returns the ip given the output of `docker inspect` on a pod sandbox,
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// first interrogating any registered plugins, then simply trusting the ip
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// in the sandbox itself. We look for an ipv4 address before ipv6.
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func (ds *dockerService) getIP(sandbox *dockertypes.ContainerJSON) (string, error) {
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if sandbox.NetworkSettings == nil {
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return "", nil
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}
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if IP, err := ds.getIPFromPlugin(sandbox); err != nil {
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glog.Warningf("%v", err)
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} else if IP != "" {
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return IP, nil
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}
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// TODO: trusting the docker ip is not a great idea. However docker uses
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// eth0 by default and so does CNI, so if we find a docker IP here, we
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// conclude that the plugin must have failed setup, or forgotten its ip.
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// This is not a sensible assumption for plugins across the board, but if
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// a plugin doesn't want this behavior, it can throw an error.
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if sandbox.NetworkSettings.IPAddress != "" {
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return sandbox.NetworkSettings.IPAddress, nil
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}
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return sandbox.NetworkSettings.GlobalIPv6Address, nil
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}
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// PodSandboxStatus returns the status of the PodSandbox.
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func (ds *dockerService) PodSandboxStatus(podSandboxID string) (*runtimeapi.PodSandboxStatus, error) {
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// Inspect the container.
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r, err := ds.client.InspectContainer(podSandboxID)
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if err != nil {
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return nil, err
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}
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// Parse the timstamps.
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createdAt, _, _, err := getContainerTimestamps(r)
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if err != nil {
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return nil, fmt.Errorf("failed to parse timestamp for container %q: %v", podSandboxID, err)
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}
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ct := createdAt.UnixNano()
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// Translate container to sandbox state.
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state := runtimeapi.PodSandboxState_SANDBOX_NOTREADY
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if r.State.Running {
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state = runtimeapi.PodSandboxState_SANDBOX_READY
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}
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IP, err := ds.getIP(r)
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if err != nil {
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return nil, err
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}
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network := &runtimeapi.PodSandboxNetworkStatus{Ip: &IP}
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netNS := getNetworkNamespace(r)
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metadata, err := parseSandboxName(r.Name)
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if err != nil {
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return nil, err
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}
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hostNetwork := sharesHostNetwork(r)
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labels, annotations := extractLabels(r.Config.Labels)
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return &runtimeapi.PodSandboxStatus{
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Id: &r.ID,
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State: &state,
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CreatedAt: &ct,
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Metadata: metadata,
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Labels: labels,
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Annotations: annotations,
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Network: network,
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Linux: &runtimeapi.LinuxPodSandboxStatus{
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Namespaces: &runtimeapi.Namespace{
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Network: &netNS,
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Options: &runtimeapi.NamespaceOption{
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HostNetwork: &hostNetwork,
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},
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},
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},
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}, nil
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}
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// ListPodSandbox returns a list of Sandbox.
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func (ds *dockerService) ListPodSandbox(filter *runtimeapi.PodSandboxFilter) ([]*runtimeapi.PodSandbox, error) {
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// By default, list all containers whether they are running or not.
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opts := dockertypes.ContainerListOptions{All: true}
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filterOutReadySandboxes := false
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opts.Filter = dockerfilters.NewArgs()
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f := newDockerFilter(&opts.Filter)
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// Add filter to select only sandbox containers.
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f.AddLabel(containerTypeLabelKey, containerTypeLabelSandbox)
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if filter != nil {
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if filter.Id != nil {
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f.Add("id", filter.GetId())
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}
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if filter.State != nil {
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if filter.GetState() == runtimeapi.PodSandboxState_SANDBOX_READY {
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// Only list running containers.
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opts.All = false
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} else {
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// runtimeapi.PodSandboxState_SANDBOX_NOTREADY can mean the
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// container is in any of the non-running state (e.g., created,
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// exited). We can't tell docker to filter out running
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// containers directly, so we'll need to filter them out
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// ourselves after getting the results.
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filterOutReadySandboxes = true
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}
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}
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if filter.LabelSelector != nil {
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for k, v := range filter.LabelSelector {
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f.AddLabel(k, v)
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}
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}
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}
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containers, err := ds.client.ListContainers(opts)
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if err != nil {
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return nil, err
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}
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// Convert docker containers to runtime api sandboxes.
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result := []*runtimeapi.PodSandbox{}
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for i := range containers {
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c := containers[i]
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converted, err := toRuntimeAPISandbox(&c)
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if err != nil {
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glog.V(4).Infof("Unable to convert docker to runtime API sandbox: %v", err)
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continue
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}
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if filterOutReadySandboxes && converted.GetState() == runtimeapi.PodSandboxState_SANDBOX_READY {
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continue
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}
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result = append(result, converted)
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}
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return result, nil
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}
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// applySandboxLinuxOptions applies LinuxPodSandboxConfig to dockercontainer.HostConfig and dockercontainer.ContainerCreateConfig.
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func (ds *dockerService) applySandboxLinuxOptions(hc *dockercontainer.HostConfig, lc *runtimeapi.LinuxPodSandboxConfig, createConfig *dockertypes.ContainerCreateConfig, image string) error {
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// Apply Cgroup options.
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cgroupParent, err := ds.GenerateExpectedCgroupParent(lc.GetCgroupParent())
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if err != nil {
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return err
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}
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hc.CgroupParent = cgroupParent
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// Apply security context.
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applySandboxSecurityContext(lc, createConfig.Config, hc, ds.networkPlugin)
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return nil
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}
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// makeSandboxDockerConfig returns dockertypes.ContainerCreateConfig based on runtimeapi.PodSandboxConfig.
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func (ds *dockerService) makeSandboxDockerConfig(c *runtimeapi.PodSandboxConfig, image string) (*dockertypes.ContainerCreateConfig, error) {
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// Merge annotations and labels because docker supports only labels.
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labels := makeLabels(c.GetLabels(), c.GetAnnotations())
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// Apply a label to distinguish sandboxes from regular containers.
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labels[containerTypeLabelKey] = containerTypeLabelSandbox
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// Apply a container name label for infra container. This is used in summary v1.
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// TODO(random-liu): Deprecate this label once container metrics is directly got from CRI.
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labels[types.KubernetesContainerNameLabel] = sandboxContainerName
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hc := &dockercontainer.HostConfig{}
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createConfig := &dockertypes.ContainerCreateConfig{
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Name: makeSandboxName(c),
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Config: &dockercontainer.Config{
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Hostname: c.GetHostname(),
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// TODO: Handle environment variables.
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Image: image,
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Labels: labels,
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},
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HostConfig: hc,
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}
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// Set sysctls if requested
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sysctls, err := getSysctlsFromAnnotations(c.Annotations)
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if err != nil {
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return nil, fmt.Errorf("failed to get sysctls from annotations %v for sandbox %q: %v", c.Annotations, c.Metadata.GetName(), err)
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}
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hc.Sysctls = sysctls
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// Apply linux-specific options.
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if lc := c.GetLinux(); lc != nil {
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if err := ds.applySandboxLinuxOptions(hc, lc, createConfig, image); err != nil {
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return nil, err
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}
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}
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// Set port mappings.
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exposedPorts, portBindings := makePortsAndBindings(c.GetPortMappings())
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createConfig.Config.ExposedPorts = exposedPorts
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hc.PortBindings = portBindings
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// Set DNS options.
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if dnsConfig := c.GetDnsConfig(); dnsConfig != nil {
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hc.DNS = dnsConfig.GetServers()
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hc.DNSSearch = dnsConfig.GetSearches()
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hc.DNSOptions = dnsConfig.GetOptions()
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}
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// Apply resource options.
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setSandboxResources(hc)
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// Set security options.
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securityOpts, err := getSandboxSecurityOpts(c, ds.seccompProfileRoot)
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if err != nil {
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return nil, fmt.Errorf("failed to generate sandbox security options for sandbox %q: %v", c.Metadata.GetName(), err)
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}
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hc.SecurityOpt = append(hc.SecurityOpt, securityOpts...)
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return createConfig, nil
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}
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// sharesHostNetwork true if the given container is sharing the hosts's
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// network namespace.
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func sharesHostNetwork(container *dockertypes.ContainerJSON) bool {
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if container != nil && container.HostConfig != nil {
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return string(container.HostConfig.NetworkMode) == namespaceModeHost
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}
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return false
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}
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func setSandboxResources(hc *dockercontainer.HostConfig) {
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hc.Resources = dockercontainer.Resources{
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MemorySwap: dockertools.DefaultMemorySwap(),
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CPUShares: defaultSandboxCPUshares,
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// Use docker's default cpu quota/period.
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}
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// TODO: Get rid of the dependency on kubelet internal package.
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hc.OomScoreAdj = qos.PodInfraOOMAdj
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}
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