Files
fission-src/executor/poolmgr/gpm.go
T
VishalandGitHub 5d2abdd95b OpenTracing for Fission (#1079)
Added Opentracing integration using opencensus libraries for all Fission components.
2019-02-07 11:56:41 +05:30

357 lines
9.8 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 poolmgr
import (
"context"
"log"
"os"
"strconv"
"strings"
"time"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/types"
"k8s.io/client-go/kubernetes"
k8sCache "k8s.io/client-go/tools/cache"
"github.com/fission/fission"
"github.com/fission/fission/cache"
"github.com/fission/fission/crd"
"github.com/fission/fission/executor/fscache"
"github.com/fission/fission/executor/reaper"
)
type requestType int
const (
GET_POOL requestType = iota
CLEANUP_POOLS
)
type (
GenericPoolManager struct {
pools map[string]*GenericPool
kubernetesClient *kubernetes.Clientset
namespace string
fissionClient *crd.FissionClient
functionEnv *cache.Cache
fsCache *fscache.FunctionServiceCache
instanceId string
requestChannel chan *request
enableIstio bool
collectorEndpoint string
funcStore k8sCache.Store
funcController k8sCache.Controller
pkgStore k8sCache.Store
pkgController k8sCache.Controller
idlePodReapTime time.Duration
}
request struct {
requestType
env *crd.Environment
envList []crd.Environment
responseChannel chan *response
}
response struct {
error
pool *GenericPool
}
)
func MakeGenericPoolManager(
fissionClient *crd.FissionClient,
kubernetesClient *kubernetes.Clientset,
functionNamespace string,
instanceId string) *GenericPoolManager {
gpm := &GenericPoolManager{
pools: make(map[string]*GenericPool),
kubernetesClient: kubernetesClient,
namespace: functionNamespace,
fissionClient: fissionClient,
functionEnv: cache.MakeCache(10*time.Second, 0),
fsCache: fscache.MakeFunctionServiceCache(),
instanceId: instanceId,
requestChannel: make(chan *request),
idlePodReapTime: 2 * time.Minute,
collectorEndpoint: os.Getenv("TRACE_JAEGER_COLLECTOR_ENDPOINT"),
}
go gpm.service()
go gpm.eagerPoolCreator()
if len(os.Getenv("ENABLE_ISTIO")) > 0 {
istio, err := strconv.ParseBool(os.Getenv("ENABLE_ISTIO"))
if err != nil {
log.Println("Failed to parse ENABLE_ISTIO")
}
gpm.enableIstio = istio
}
gpm.funcStore, gpm.funcController = gpm.makeFuncController(
gpm.fissionClient, gpm.kubernetesClient, gpm.namespace, gpm.enableIstio)
gpm.pkgStore, gpm.pkgController = gpm.makePkgController(gpm.fissionClient, gpm.kubernetesClient, gpm.namespace)
return gpm
}
func (gpm *GenericPoolManager) Run(ctx context.Context) {
go gpm.funcController.Run(ctx.Done())
go gpm.pkgController.Run(ctx.Done())
go gpm.idleObjectReaper()
}
func (gpm *GenericPoolManager) service() {
for {
req := <-gpm.requestChannel
switch req.requestType {
case GET_POOL:
// just because they are missing in the cache, we end up creating another duplicate pool.
var err error
pool, ok := gpm.pools[crd.CacheKey(&req.env.Metadata)]
if !ok {
poolsize := gpm.getEnvPoolsize(req.env)
switch req.env.Spec.AllowedFunctionsPerContainer {
case fission.AllowedFunctionsPerContainerInfinite:
poolsize = 1
}
// To support backward compatibility, if envs are created in default ns, we go ahead
// and create pools in fission-function ns as earlier.
ns := gpm.namespace
if req.env.Metadata.Namespace != metav1.NamespaceDefault {
ns = req.env.Metadata.Namespace
}
pool, err = MakeGenericPool(
gpm.fissionClient, gpm.kubernetesClient, req.env, poolsize,
ns, gpm.namespace, gpm.fsCache, gpm.instanceId, gpm.enableIstio,
gpm.collectorEndpoint)
if err != nil {
req.responseChannel <- &response{error: err}
continue
}
gpm.pools[crd.CacheKey(&req.env.Metadata)] = pool
}
req.responseChannel <- &response{pool: pool}
case CLEANUP_POOLS:
latestEnvPoolsize := make(map[string]int)
for _, env := range req.envList {
latestEnvPoolsize[crd.CacheKey(&env.Metadata)] = int(gpm.getEnvPoolsize(&env))
}
for key, pool := range gpm.pools {
poolsize, ok := latestEnvPoolsize[key]
if !ok || poolsize == 0 {
// Env no longer exists or pool size changed to zero
log.Printf("Destroying generic pool for environment %v", pool.env.Metadata)
delete(gpm.pools, key)
// and delete the pool asynchronously.
go pool.destroy()
}
}
// no response, caller doesn't wait
}
}
}
func (gpm *GenericPoolManager) GetPool(env *crd.Environment) (*GenericPool, error) {
c := make(chan *response)
gpm.requestChannel <- &request{
requestType: GET_POOL,
env: env,
responseChannel: c,
}
resp := <-c
return resp.pool, resp.error
}
func (gpm *GenericPoolManager) CleanupPools(envs []crd.Environment) {
gpm.requestChannel <- &request{
requestType: CLEANUP_POOLS,
envList: envs,
}
}
func (gpm *GenericPoolManager) GetFuncSvc(ctx context.Context, metadata *metav1.ObjectMeta) (*fscache.FuncSvc, error) {
// from Func -> get Env
log.Printf("[%v] getting environment for function", metadata.Name)
env, err := gpm.getFunctionEnv(metadata)
if err != nil {
return nil, err
}
pool, err := gpm.GetPool(env)
if err != nil {
return nil, err
}
// from GenericPool -> get one function container
// (this also adds to the cache)
log.Printf("[%v] getting function service from pool", metadata.Name)
return pool.GetFuncSvc(ctx, metadata)
}
func (gpm *GenericPoolManager) getFunctionEnv(m *metav1.ObjectMeta) (*crd.Environment, error) {
var env *crd.Environment
// Cached ?
result, err := gpm.functionEnv.Get(crd.CacheKey(m))
if err == nil {
env = result.(*crd.Environment)
return env, nil
}
// Cache miss -- get func from controller
f, err := gpm.fissionClient.Functions(m.Namespace).Get(m.Name)
if err != nil {
return nil, err
}
// Get env from metadata
log.Printf("[%v] getting env", m)
env, err = gpm.fissionClient.Environments(f.Spec.Environment.Namespace).Get(f.Spec.Environment.Name)
if err != nil {
return nil, err
}
// cache for future lookups
gpm.functionEnv.Set(crd.CacheKey(m), env)
return env, nil
}
func (gpm *GenericPoolManager) eagerPoolCreator() {
pollSleep := time.Duration(2 * time.Second)
for {
// get list of envs from controller
envs, err := gpm.fissionClient.Environments(metav1.NamespaceAll).List(metav1.ListOptions{})
if err != nil {
if fission.IsNetworkError(err) {
log.Printf("Encountered network error, retrying: %v", err)
time.Sleep(5 * time.Second)
continue
}
log.Fatalf("Failed to get environment list: %v", err)
}
// Create pools for all envs. TODO: we should make this a bit less eager, only
// creating pools for envs that are actually used by functions. Also we might want
// to keep these eagerly created pools smaller than the ones created when there are
// actual function calls.
for i := range envs.Items {
env := envs.Items[i]
// Create pool only if poolsize greater than zero
if gpm.getEnvPoolsize(&env) > 0 {
_, err := gpm.GetPool(&envs.Items[i])
if err != nil {
log.Printf("eager-create pool failed: %v", err)
}
}
}
// Clean up pools whose env was deleted
gpm.CleanupPools(envs.Items)
time.Sleep(pollSleep)
}
}
func (gpm *GenericPoolManager) getEnvPoolsize(env *crd.Environment) int32 {
var poolsize int32
if env.Spec.Version < 3 {
poolsize = 3
} else {
poolsize = int32(env.Spec.Poolsize)
}
return poolsize
}
// IsValid checks if pod is not deleted and that it has the address passed as the argument. Also checks that all the
// containers in it are reporting a ready status for the healthCheck.
func (gpm *GenericPoolManager) IsValid(fsvc *fscache.FuncSvc) bool {
for _, obj := range fsvc.KubernetesObjects {
if obj.Kind == "pod" {
pod, err := gpm.kubernetesClient.CoreV1().Pods(obj.Namespace).Get(obj.Name, metav1.GetOptions{})
if err == nil && strings.Contains(fsvc.Address, pod.Status.PodIP) && fission.IsReadyPod(pod) {
log.Printf("Valid pod address : %s", fsvc.Address)
return true
}
}
}
return false
}
// idleObjectReaper reaps objects after certain idle time
func (gpm *GenericPoolManager) idleObjectReaper() {
pollSleep := time.Duration(gpm.idlePodReapTime)
for {
time.Sleep(pollSleep)
envs, err := gpm.fissionClient.Environments(metav1.NamespaceAll).List(metav1.ListOptions{})
if err != nil {
log.Fatalf("Failed to get environment list: %v", err)
}
envList := make(map[types.UID]struct{})
for _, env := range envs.Items {
envList[env.Metadata.UID] = struct{}{}
}
funcSvcs, err := gpm.fsCache.ListOld(gpm.idlePodReapTime)
if err != nil {
log.Printf("Error reaping idle pods: %v", err)
continue
}
for _, fsvc := range funcSvcs {
if fsvc.Executor != fscache.POOLMGR {
continue
}
// For function with the environment that no longer exists, executor
// cleanups the idle pod as usual and prints log to notify user.
if _, ok := envList[fsvc.Environment.Metadata.UID]; !ok {
log.Printf("Environment %v for function %v no longer exists",
fsvc.Environment.Metadata.Name, fsvc.Name)
}
if fsvc.Environment.Spec.AllowedFunctionsPerContainer == fission.AllowedFunctionsPerContainerInfinite {
continue
}
deleted, err := gpm.fsCache.DeleteOld(fsvc, gpm.idlePodReapTime)
if err != nil {
log.Printf("Error deleting Kubernetes objects for fsvc '%v': %v", fsvc, err)
}
if !deleted {
continue
}
for _, kubeobj := range fsvc.KubernetesObjects {
reaper.CleanupKubeObject(gpm.kubernetesClient, &kubeobj)
}
}
}
}