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package abi
import (
"context"
"fmt"
"io"
"io/ioutil"
"os"
"strings"
"github.com/containers/image/v5/types"
"github.com/containers/podman/v2/libpod"
"github.com/containers/podman/v2/libpod/image"
"github.com/containers/podman/v2/pkg/domain/entities"
"github.com/containers/podman/v2/pkg/specgen/generate"
"github.com/containers/podman/v2/pkg/specgen/generate/kube"
"github.com/containers/podman/v2/pkg/util"
"github.com/docker/distribution/reference"
"github.com/ghodss/yaml"
"github.com/pkg/errors"
"github.com/sirupsen/logrus"
v1apps "k8s.io/api/apps/v1"
v1 "k8s.io/api/core/v1"
)
func (ic *ContainerEngine) PlayKube(ctx context.Context, path string, options entities.PlayKubeOptions) (*entities.PlayKubeReport, error) {
var (
kubeObject v1.ObjectReference
)
content, err := ioutil.ReadFile(path)
if err != nil {
return nil, err
}
if err := yaml.Unmarshal(content, &kubeObject); err != nil {
return nil, errors.Wrapf(err, "unable to read %q as YAML", path)
}
// NOTE: pkg/bindings/play is also parsing the file.
// A pkg/kube would be nice to refactor and abstract
// parts of the K8s-related code.
switch kubeObject.Kind {
case "Pod":
var podYAML v1.Pod
var podTemplateSpec v1.PodTemplateSpec
if err := yaml.Unmarshal(content, &podYAML); err != nil {
return nil, errors.Wrapf(err, "unable to read YAML %q as Kube Pod", path)
}
podTemplateSpec.ObjectMeta = podYAML.ObjectMeta
podTemplateSpec.Spec = podYAML.Spec
return ic.playKubePod(ctx, podTemplateSpec.ObjectMeta.Name, &podTemplateSpec, options)
case "Deployment":
var deploymentYAML v1apps.Deployment
if err := yaml.Unmarshal(content, &deploymentYAML); err != nil {
return nil, errors.Wrapf(err, "unable to read YAML %q as Kube Deployment", path)
}
return ic.playKubeDeployment(ctx, &deploymentYAML, options)
default:
return nil, errors.Errorf("invalid YAML kind: %q. [Pod|Deployment] are the only supported Kubernetes Kinds", kubeObject.Kind)
}
}
func (ic *ContainerEngine) playKubeDeployment(ctx context.Context, deploymentYAML *v1apps.Deployment, options entities.PlayKubeOptions) (*entities.PlayKubeReport, error) {
var (
deploymentName string
podSpec v1.PodTemplateSpec
numReplicas int32
i int32
report entities.PlayKubeReport
)
deploymentName = deploymentYAML.ObjectMeta.Name
if deploymentName == "" {
return nil, errors.Errorf("Deployment does not have a name")
}
numReplicas = 1
if deploymentYAML.Spec.Replicas != nil {
numReplicas = *deploymentYAML.Spec.Replicas
}
podSpec = deploymentYAML.Spec.Template
// create "replicas" number of pods
for i = 0; i < numReplicas; i++ {
podName := fmt.Sprintf("%s-pod-%d", deploymentName, i)
podReport, err := ic.playKubePod(ctx, podName, &podSpec, options)
if err != nil {
return nil, errors.Wrapf(err, "error encountered while bringing up pod %s", podName)
}
report.Pods = append(report.Pods, podReport.Pods...)
}
return &report, nil
}
func (ic *ContainerEngine) playKubePod(ctx context.Context, podName string, podYAML *v1.PodTemplateSpec, options entities.PlayKubeOptions) (*entities.PlayKubeReport, error) {
var (
registryCreds *types.DockerAuthConfig
writer io.Writer
playKubePod entities.PlayKubePod
report entities.PlayKubeReport
)
// check for name collision between pod and container
if podName == "" {
return nil, errors.Errorf("pod does not have a name")
}
for _, n := range podYAML.Spec.Containers {
if n.Name == podName {
playKubePod.Logs = append(playKubePod.Logs,
fmt.Sprintf("a container exists with the same name (%q) as the pod in your YAML file; changing pod name to %s_pod\n", podName, podName))
podName = fmt.Sprintf("%s_pod", podName)
}
}
p, err := kube.ToPodGen(ctx, podName, podYAML)
if err != nil {
return nil, err
}
if options.Network != "" {
switch strings.ToLower(options.Network) {
case "bridge", "host":
return nil, errors.Errorf("invalid value passed to --network: bridge or host networking must be configured in YAML")
case "":
return nil, errors.Errorf("invalid value passed to --network: must provide a comma-separated list of CNI networks")
default:
// We'll assume this is a comma-separated list of CNI
// networks.
networks := strings.Split(options.Network, ",")
logrus.Debugf("Pod joining CNI networks: %v", networks)
p.CNINetworks = append(p.CNINetworks, networks...)
}
}
// Create the Pod
pod, err := generate.MakePod(p, ic.Libpod)
if err != nil {
return nil, err
}
podInfraID, err := pod.InfraContainerID()
if err != nil {
return nil, err
}
if !options.Quiet {
writer = os.Stderr
}
if len(options.Username) > 0 && len(options.Password) > 0 {
registryCreds = &types.DockerAuthConfig{
Username: options.Username,
Password: options.Password,
}
}
dockerRegistryOptions := image.DockerRegistryOptions{
DockerRegistryCreds: registryCreds,
DockerCertPath: options.CertDir,
DockerInsecureSkipTLSVerify: options.SkipTLSVerify,
}
volumes, err := kube.InitializeVolumes(podYAML.Spec.Volumes)
if err != nil {
return nil, err
}
seccompPaths, err := kube.InitializeSeccompPaths(podYAML.ObjectMeta.Annotations, options.SeccompProfileRoot)
if err != nil {
return nil, err
}
var ctrRestartPolicy string
switch podYAML.Spec.RestartPolicy {
case v1.RestartPolicyAlways:
ctrRestartPolicy = libpod.RestartPolicyAlways
case v1.RestartPolicyOnFailure:
ctrRestartPolicy = libpod.RestartPolicyOnFailure
case v1.RestartPolicyNever:
ctrRestartPolicy = libpod.RestartPolicyNo
default: // Default to Always
ctrRestartPolicy = libpod.RestartPolicyAlways
}
configMaps := []v1.ConfigMap{}
for _, p := range options.ConfigMaps {
f, err := os.Open(p)
if err != nil {
return nil, err
}
defer f.Close()
cm, err := readConfigMapFromFile(f)
if err != nil {
return nil, errors.Wrapf(err, "%q", p)
}
configMaps = append(configMaps, cm)
}
containers := make([]*libpod.Container, 0, len(podYAML.Spec.Containers))
for _, container := range podYAML.Spec.Containers {
pullPolicy := util.PullImageMissing
if len(container.ImagePullPolicy) > 0 {
pullPolicy, err = util.ValidatePullType(string(container.ImagePullPolicy))
if err != nil {
return nil, err
}
}
named, err := reference.ParseNormalizedNamed(container.Image)
if err != nil {
return nil, errors.Wrapf(err, "Failed to parse image %q", container.Image)
}
// In kube, if the image is tagged with latest, it should always pull
if tagged, isTagged := named.(reference.NamedTagged); isTagged {
if tagged.Tag() == image.LatestTag {
pullPolicy = util.PullImageAlways
}
}
// This ensures the image is the image store
newImage, err := ic.Libpod.ImageRuntime().New(ctx, container.Image, options.SignaturePolicy, options.Authfile, writer, &dockerRegistryOptions, image.SigningOptions{}, nil, pullPolicy)
if err != nil {
return nil, err
}
specGen, err := kube.ToSpecGen(ctx, container, container.Image, newImage, volumes, pod.ID(), podName, podInfraID, configMaps, seccompPaths, ctrRestartPolicy)
if err != nil {
return nil, err
}
ctr, err := generate.MakeContainer(ctx, ic.Libpod, specGen)
if err != nil {
return nil, err
}
containers = append(containers, ctr)
}
if options.Start != types.OptionalBoolFalse {
//start the containers
podStartErrors, err := pod.Start(ctx)
if err != nil {
return nil, err
}
// Previous versions of playkube started containers individually and then
// looked for errors. Because we now use the uber-Pod start call, we should
// iterate the map of possible errors and return one if there is a problem. This
// keeps the behavior the same
for _, e := range podStartErrors {
if e != nil {
return nil, e
}
}
}
playKubePod.ID = pod.ID()
for _, ctr := range containers {
playKubePod.Containers = append(playKubePod.Containers, ctr.ID())
}
report.Pods = append(report.Pods, playKubePod)
return &report, nil
}
// readConfigMapFromFile returns a kubernetes configMap obtained from --configmap flag
func readConfigMapFromFile(r io.Reader) (v1.ConfigMap, error) {
var cm v1.ConfigMap
content, err := ioutil.ReadAll(r)
if err != nil {
return cm, errors.Wrapf(err, "unable to read ConfigMap YAML content")
}
if err := yaml.Unmarshal(content, &cm); err != nil {
return cm, errors.Wrapf(err, "unable to read YAML as Kube ConfigMap")
}
if cm.Kind != "ConfigMap" {
return cm, errors.Errorf("invalid YAML kind: %q. [ConfigMap] is the only supported by --configmap", cm.Kind)
}
return cm, nil
}
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