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factory.go
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factory.go
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package deployment
import (
"fmt"
"time"
"github.com/golang/glog"
"k8s.io/api/core/v1"
"k8s.io/apimachinery/pkg/api/errors"
"k8s.io/apimachinery/pkg/runtime"
utilruntime "k8s.io/apimachinery/pkg/util/runtime"
"k8s.io/apimachinery/pkg/util/wait"
kcoreinformers "k8s.io/client-go/informers/core/v1"
kclientset "k8s.io/client-go/kubernetes"
kv1core "k8s.io/client-go/kubernetes/typed/core/v1"
"k8s.io/client-go/tools/cache"
"k8s.io/client-go/tools/record"
"k8s.io/client-go/util/workqueue"
"k8s.io/kubernetes/pkg/api/legacyscheme"
kapi "k8s.io/kubernetes/pkg/apis/core"
kcontroller "k8s.io/kubernetes/pkg/controller"
appsutil "github.com/openshift/origin/pkg/apps/util"
)
// NewDeployerController creates a new DeploymentController.
func NewDeployerController(
rcInformer kcoreinformers.ReplicationControllerInformer,
podInformer kcoreinformers.PodInformer,
kubeClientset kclientset.Interface,
sa,
image string,
env []kapi.EnvVar,
codec runtime.Codec,
) *DeploymentController {
eventBroadcaster := record.NewBroadcaster()
eventBroadcaster.StartLogging(glog.Infof)
eventBroadcaster.StartRecordingToSink(&kv1core.EventSinkImpl{Interface: kubeClientset.CoreV1().Events("")})
recorder := eventBroadcaster.NewRecorder(legacyscheme.Scheme, v1.EventSource{Component: "deployer-controller"})
c := &DeploymentController{
rn: kubeClientset.CoreV1(),
pn: kubeClientset.CoreV1(),
queue: workqueue.NewRateLimitingQueue(workqueue.DefaultControllerRateLimiter()),
rcLister: rcInformer.Lister(),
rcListerSynced: rcInformer.Informer().HasSynced,
podLister: podInformer.Lister(),
podListerSynced: podInformer.Informer().HasSynced,
serviceAccount: sa,
deployerImage: image,
environment: appsutil.CopyApiEnvVarToV1EnvVar(env),
recorder: recorder,
codec: codec,
}
rcInformer.Informer().AddEventHandler(cache.ResourceEventHandlerFuncs{
AddFunc: c.addReplicationController,
UpdateFunc: c.updateReplicationController,
})
podInformer.Informer().AddEventHandler(cache.ResourceEventHandlerFuncs{
UpdateFunc: c.updatePod,
DeleteFunc: c.deletePod,
})
return c
}
// Run begins watching and syncing.
func (c *DeploymentController) Run(workers int, stopCh <-chan struct{}) {
defer utilruntime.HandleCrash()
defer c.queue.ShutDown()
glog.Infof("Starting deployer controller")
// Wait for the dc store to sync before starting any work in this controller.
if !cache.WaitForCacheSync(stopCh, c.rcListerSynced, c.podListerSynced) {
return
}
glog.Infof("Deployer controller caches are synced. Starting workers.")
for i := 0; i < workers; i++ {
go wait.Until(c.worker, time.Second, stopCh)
}
<-stopCh
glog.Infof("Shutting down deployer controller")
}
func (c *DeploymentController) addReplicationController(obj interface{}) {
rc := obj.(*v1.ReplicationController)
// Filter out all unrelated replication controllers.
if !appsutil.IsOwnedByConfig(rc) {
return
}
c.enqueueReplicationController(rc)
}
func (c *DeploymentController) updateReplicationController(old, cur interface{}) {
curRC := cur.(*v1.ReplicationController)
// Filter out all unrelated replication controllers.
if !appsutil.IsOwnedByConfig(curRC) {
return
}
c.enqueueReplicationController(curRC)
}
func (c *DeploymentController) updatePod(old, cur interface{}) {
curPod := cur.(*v1.Pod)
oldPod := old.(*v1.Pod)
// We can safely ignore periodic re-lists on Pods as we react to periodic re-lists of RCs
if curPod.ResourceVersion == oldPod.ResourceVersion {
return
}
if rc, err := c.rcForDeployerPod(curPod); err == nil && rc != nil {
c.enqueueReplicationController(rc)
}
}
func (c *DeploymentController) deletePod(obj interface{}) {
pod, ok := obj.(*v1.Pod)
if !ok {
tombstone, ok := obj.(cache.DeletedFinalStateUnknown)
if !ok {
utilruntime.HandleError(fmt.Errorf("couldn't get object from tombstone: %+v", obj))
return
}
pod, ok = tombstone.Obj.(*v1.Pod)
if !ok {
utilruntime.HandleError(fmt.Errorf("tombstone contained object that is not a pod: %+v", obj))
return
}
}
if rc, err := c.rcForDeployerPod(pod); err == nil && rc != nil {
c.enqueueReplicationController(rc)
}
}
func (c *DeploymentController) enqueueReplicationController(rc *v1.ReplicationController) {
key, err := kcontroller.KeyFunc(rc)
if err != nil {
utilruntime.HandleError(fmt.Errorf("couldn't get key for object %#v: %v", rc, err))
return
}
c.queue.Add(key)
}
func (c *DeploymentController) rcForDeployerPod(pod *v1.Pod) (*v1.ReplicationController, error) {
rcName := appsutil.DeploymentNameFor(pod)
if len(rcName) == 0 {
// Not a deployer pod, so don't bother with it.
return nil, nil
}
key := pod.Namespace + "/" + rcName
return c.getByKey(key)
}
func (c *DeploymentController) worker() {
for {
if quit := c.work(); quit {
return
}
}
}
func (c *DeploymentController) work() bool {
key, quit := c.queue.Get()
if quit {
return true
}
defer c.queue.Done(key)
rc, err := c.getByKey(key.(string))
if err != nil {
utilruntime.HandleError(err)
}
if rc == nil {
return false
}
// Resist missing deployer pods from the cache in case of a pending deployment.
// Give some room for a possible rc update failure in case we decided to mark it
// failed.
willBeDropped := c.queue.NumRequeues(key) >= maxRetryCount-2
err = c.handle(rc, willBeDropped)
c.handleErr(err, key, rc)
return false
}
func (c *DeploymentController) getByKey(key string) (*v1.ReplicationController, error) {
namespace, name, err := cache.SplitMetaNamespaceKey(key)
if err != nil {
return nil, err
}
rc, err := c.rcLister.ReplicationControllers(namespace).Get(name)
if errors.IsNotFound(err) {
// TODO tnozicka: this is not normal and should be refactored
glog.V(4).Infof("Replication controller %q has been deleted", key)
return nil, nil
}
if err != nil {
glog.Infof("Unable to retrieve replication controller %q from store: %v", key, err)
c.queue.AddRateLimited(key)
return nil, err
}
return rc, nil
}