Files
fission-src/kubewatcher/kubewatcher.go
T
Soam VasaniandGitHub e238776bf7 V2 types and TPR (#266)
This changes the core fission function, environment and trigger types. It also changes Fission's storage to use ThirdPartyResources.

 - Functions are now specified by packages. Functions can also have both source and deployment packages. A package can be specified by a literal, or by a URL.
 - Environments have a build and runtime component.
 - Triggers reference functions by a FunctionReference. This is a layer of indirection between triggers and functions, and will allow things like incremental function upgrades in future releases.

See Documentation/wip/env-v2.md for design discussion about points 1 and 2.

Changes:

* V2 Types

All types now have a spec, following the pattern of K8s objects.

Functions now have source and deployment packages. A Package can be
specified by literal, or by URL.

Environments now have a builder and runtime component.

All triggers use a new FunctionReference to specify the function. This
for now only uses a function name, but in the future can be extended
to be more flexible.

A new FunctionLoadRequest type is added for specialization requests to
the environment runtime.

* TPR types, TPR init code, and a "fission client"

Implements TPR types using the spec types in fission/types.go.

Adds code for adding creating TPR types, and convenient types for crud
operations on each of our resource types.

Adds code for connecting to K8s API and configuring a REST client with
fission types set up.

* Change old stateful controller into a thin apiserver

This apiserver is now simply a stateless api layer on top of the TPR
types. At the moment it doesn't do anything that couldn't be done by
simply talking to the TPR types. In the future we can have better
validation and potentially some higher level APIs (like versioning for
example) in here.

* Split controller client into files and update for v2 types.

* Update CLI for v2 types.

As far as possible we keep the CLI flags the same. We'll have to add
flags for source/deploy packages and builder/runtime
environments. That will come in the next change.

* Update poolmgr and fetcher for v2 types.

Also adds a poolmgr_test.

* Update router for new types.

Also adds a function reference resolver, which separates out the job
of resolving a FunctionReference to a function.

* Update kubewatcher and timer for v2 types.

* Update Message Queue trigger type for v2 types.

* Minor odds and ends.

* Fission bundle CLI updates

Remove controllerUrl flag, since we don't need it any more.

* Remove etcd deployment (replaced by storing state in TPR)

Also update the poolmgr commandline, and use an env var for the
fetcher image URL.

* Explicit ChecksumType and consts

* Clarify separation of environment interface types
2017-08-05 01:18:30 -07:00

344 lines
9.0 KiB
Go

/*
Copyright 2016 The Fission Authors.
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
package kubewatcher
import (
"bytes"
"encoding/json"
"errors"
"fmt"
"io"
"log"
"reflect"
"strings"
"sync/atomic"
"time"
"k8s.io/client-go/1.5/kubernetes"
"k8s.io/client-go/1.5/pkg/api"
apierrs "k8s.io/client-go/1.5/pkg/api/errors"
"k8s.io/client-go/1.5/pkg/api/meta"
"k8s.io/client-go/1.5/pkg/runtime"
"k8s.io/client-go/1.5/pkg/types"
"k8s.io/client-go/1.5/pkg/watch"
"github.com/fission/fission"
"github.com/fission/fission/publisher"
"github.com/fission/fission/tpr"
)
type requestType int
const (
SYNC requestType = iota
)
type (
KubeWatcher struct {
watches map[types.UID]watchSubscription
kubernetesClient *kubernetes.Clientset
requestChannel chan *kubeWatcherRequest
publisher publisher.Publisher
routerUrl string
}
watchSubscription struct {
watch tpr.Kuberneteswatchtrigger
kubeWatch watch.Interface
lastResourceVersion string
stopped *int32
kubernetesClient *kubernetes.Clientset
publisher publisher.Publisher
}
kubeWatcherRequest struct {
requestType
watches []tpr.Kuberneteswatchtrigger
responseChannel chan *kubeWatcherResponse
}
kubeWatcherResponse struct {
error
}
)
func MakeKubeWatcher(kubernetesClient *kubernetes.Clientset, publisher publisher.Publisher) *KubeWatcher {
kw := &KubeWatcher{
watches: make(map[types.UID]watchSubscription),
kubernetesClient: kubernetesClient,
publisher: publisher,
requestChannel: make(chan *kubeWatcherRequest),
}
go kw.svc()
return kw
}
func (kw *KubeWatcher) Sync(watches []tpr.Kuberneteswatchtrigger) error {
req := &kubeWatcherRequest{
requestType: SYNC,
watches: watches,
responseChannel: make(chan *kubeWatcherResponse),
}
kw.requestChannel <- req
resp := <-req.responseChannel
return resp.error
}
func (kw *KubeWatcher) svc() {
for {
req := <-kw.requestChannel
switch req.requestType {
case SYNC:
newWatchUids := make(map[types.UID]bool)
for _, w := range req.watches {
newWatchUids[w.Metadata.UID] = true
}
// Remove old watches
for uid, ws := range kw.watches {
if _, ok := newWatchUids[uid]; !ok {
kw.removeWatch(&ws.watch)
}
}
// Add new watches
for _, w := range req.watches {
if _, ok := kw.watches[w.Metadata.UID]; !ok {
kw.addWatch(&w)
}
}
req.responseChannel <- &kubeWatcherResponse{error: nil}
}
}
}
// TODO lifted from kubernetes/pkg/kubectl/resource_printer.go.
func printKubernetesObject(obj runtime.Object, w io.Writer) error {
switch obj := obj.(type) {
case *runtime.Unknown:
var buf bytes.Buffer
err := json.Indent(&buf, obj.Raw, "", " ")
if err != nil {
return err
}
buf.WriteRune('\n')
_, err = buf.WriteTo(w)
return err
}
data, err := json.MarshalIndent(obj, "", " ")
if err != nil {
return err
}
data = append(data, '\n')
_, err = w.Write(data)
return err
}
func createKubernetesWatch(kubeClient *kubernetes.Clientset, w *tpr.Kuberneteswatchtrigger, resourceVersion string) (watch.Interface, error) {
var wi watch.Interface
var err error
var watchTimeoutSec int64 = 120
// TODO populate labelselector and fieldselector
listOptions := api.ListOptions{
ResourceVersion: resourceVersion,
TimeoutSeconds: &watchTimeoutSec,
}
// TODO handle the full list of types
switch strings.ToUpper(w.Spec.Type) {
case "POD":
wi, err = kubeClient.Core().Pods(w.Spec.Namespace).Watch(listOptions)
case "SERVICE":
wi, err = kubeClient.Core().Services(w.Spec.Namespace).Watch(listOptions)
case "REPLICATIONCONTROLLER":
wi, err = kubeClient.Core().ReplicationControllers(w.Spec.Namespace).Watch(listOptions)
case "JOB":
wi, err = kubeClient.Batch().Jobs(w.Spec.Namespace).Watch(listOptions)
default:
msg := fmt.Sprintf("Error: unknown obj type '%v'", w.Spec.Type)
log.Println(msg)
err = errors.New(msg)
}
return wi, err
}
func (kw *KubeWatcher) addWatch(w *tpr.Kuberneteswatchtrigger) error {
log.Printf("Adding watch %v: %v", w.Metadata.Name, w.Spec.FunctionReference)
ws, err := MakeWatchSubscription(w, kw.kubernetesClient, kw.publisher)
if err != nil {
return err
}
kw.watches[w.Metadata.UID] = *ws
return nil
}
func (kw *KubeWatcher) removeWatch(w *tpr.Kuberneteswatchtrigger) error {
log.Printf("Removing watch %v: %v", w.Metadata.Name, w.Spec.FunctionReference)
ws, ok := kw.watches[w.Metadata.UID]
if !ok {
return fission.MakeError(fission.ErrorNotFound,
fmt.Sprintf("watch doesn't exist: %v", w.Metadata))
}
delete(kw.watches, w.Metadata.UID)
ws.stop()
return nil
}
// wi, err := kw.createKubernetesWatch(w)
// if err != nil {
// return err
// }
// var stopped int32 = 0
// ws := &watchSubscription{
// Watch: *w,
// kubeWatch: wi,
// stopped: &stopped,
// }
// kw.watches[w.Metadata.Uid] = *ws
// go ws.eventDispatchLoop(kw.publisher)
// return nil
// }
func MakeWatchSubscription(w *tpr.Kuberneteswatchtrigger, kubeClient *kubernetes.Clientset, publisher publisher.Publisher) (*watchSubscription, error) {
var stopped int32 = 0
ws := &watchSubscription{
watch: *w,
kubeWatch: nil,
stopped: &stopped,
kubernetesClient: kubeClient,
publisher: publisher,
lastResourceVersion: "",
}
err := ws.restartWatch()
if err != nil {
return nil, err
}
go ws.eventDispatchLoop()
return ws, nil
}
func (ws *watchSubscription) restartWatch() error {
retries := 60
for {
log.Printf("(re)starting watch %v (ns:%v type:%v) at rv:%v",
ws.watch.Metadata, ws.watch.Spec.Namespace, ws.watch.Spec.Type, ws.lastResourceVersion)
wi, err := createKubernetesWatch(ws.kubernetesClient, &ws.watch, ws.lastResourceVersion)
if err != nil {
retries--
if retries > 0 {
time.Sleep(500 * time.Millisecond)
continue
} else {
return err
}
}
ws.kubeWatch = wi
return nil
}
}
func getResourceVersion(obj runtime.Object) (string, error) {
meta, err := meta.Accessor(obj)
if err != nil {
return "", err
}
return meta.GetResourceVersion(), nil
}
func (ws *watchSubscription) eventDispatchLoop() {
log.Println("Listening to watch ", ws.watch.Metadata.Name)
for {
// check watchSubscription is stopped or not before waiting for event
// comes from the kubeWatch.ResultChan(). This fix the edge case that
// new kubewatch is created in the restartWatch() while the old kubewatch
// is being used in watchSubscription.stop().
if ws.isStopped() {
break
}
ev, more := <-ws.kubeWatch.ResultChan()
if !more {
if ws.isStopped() {
// watch is removed by user.
log.Println("Watch stopped", ws.watch.Metadata.Name)
return
} else {
// watch closed due to timeout, restart it.
log.Printf("Watch %v timed out, restarting", ws.watch.Metadata.Name)
err := ws.restartWatch()
if err != nil {
log.Panicf("Failed to restart watch: %v", err)
}
continue
}
}
if ev.Type == watch.Error {
e := apierrs.FromObject(ev.Object)
log.Println("Watch error, retrying in a second: %v", e)
// Start from the beginning to get around "too old resource version"
ws.lastResourceVersion = ""
time.Sleep(time.Second)
err := ws.restartWatch()
if err != nil {
log.Panicf("Failed to restart watch: %v", err)
}
continue
}
rv, err := getResourceVersion(ev.Object)
if err != nil {
log.Printf("Error getting resourceVersion from object: %v", err)
} else {
ws.lastResourceVersion = rv
}
// Serialize the object
var buf bytes.Buffer
err = printKubernetesObject(ev.Object, &buf)
if err != nil {
log.Printf("Failed to serialize object: %v", err)
// TODO send a POST request indicating error
}
// Event and object type aren't in the serialized object
headers := map[string]string{
"Content-Type": "application/json",
"X-Kubernetes-Event-Type": string(ev.Type),
"X-Kubernetes-Object-Type": reflect.TypeOf(ev.Object).Elem().Name(),
}
// TODO support other function ref types. Or perhaps delegate to router?
if ws.watch.Spec.FunctionReference.Type != fission.FunctionReferenceTypeFunctionName {
log.Printf("Error: unsupported function ref type: %v, can't publish event",
ws.watch.Spec.FunctionReference.Type)
continue
}
url := fission.UrlForFunction(ws.watch.Spec.FunctionReference.Name)
ws.publisher.Publish(buf.String(), headers, url)
}
}
func (ws *watchSubscription) stop() {
atomic.StoreInt32(ws.stopped, 1)
ws.kubeWatch.Stop()
}
func (ws *watchSubscription) isStopped() bool {
return atomic.LoadInt32(ws.stopped) == 1
}