Files
fission-src/router/functionHandler.go
T
Erwin van EykandSoam Vasani 33f967b61b Fission workflow env integration (#336)
Add a flag to the environment to control multiple specialization -- the max number of functions per container. This can be set to 1 or infinity. 

Add an api proxy to workflow apiserver from the controller.

Add function metadata to FunctionLoadRequest; every v2 environment now knows which function it's loading (but can ignore that information if it wants to).

Add function identity headers to router. This is useful for multiple specialization, so the router can disambiguate between different function calls. (If this turns out to be a non-trivial perf overhead, we could add these headers conditionally, but for now they are always added.)
2017-09-26 18:36:07 -07:00

167 lines
4.7 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 router
import (
"fmt"
"log"
"net"
"net/http"
"net/http/httputil"
"net/url"
"time"
"github.com/gorilla/mux"
"k8s.io/client-go/1.5/pkg/api"
poolmgrClient "github.com/fission/fission/poolmgr/client"
)
type functionHandler struct {
fmap *functionServiceMap
poolmgr *poolmgrClient.Client
function *api.ObjectMeta
}
func (fh *functionHandler) getServiceForFunction() (*url.URL, error) {
// call poolmgr, get a url for a function
svcName, err := fh.poolmgr.GetServiceForFunction(fh.function)
if err != nil {
return nil, err
}
svcUrl, err := url.Parse(fmt.Sprintf("http://%v", svcName))
if err != nil {
return nil, err
}
return svcUrl, nil
}
// A layer on top of http.DefaultTransport, with retries.
type RetryingRoundTripper struct {
maxRetries int
initalTimeout time.Duration
}
func (rrt RetryingRoundTripper) RoundTrip(req *http.Request) (*http.Response, error) {
timeout := rrt.initalTimeout
transport := http.DefaultTransport.(*http.Transport)
// Do max-1 retries; the last one uses default transport timeouts
for i := rrt.maxRetries - 1; i > 0; i-- {
// update timeout in transport
transport.DialContext = (&net.Dialer{
Timeout: timeout,
KeepAlive: 30 * time.Second,
}).DialContext
resp, err := transport.RoundTrip(req)
if err == nil {
return resp, nil
}
timeout *= time.Duration(2)
log.Printf("Retrying request to %v in %v", req.URL.Host, timeout)
time.Sleep(timeout)
}
// finally, one more retry with the default timeout
return http.DefaultTransport.RoundTrip(req)
}
func (fh *functionHandler) tapService(serviceUrl *url.URL) {
if fh.poolmgr == nil {
return
}
fh.poolmgr.TapService(serviceUrl)
}
func (fh *functionHandler) handler(responseWriter http.ResponseWriter, request *http.Request) {
reqStartTime := time.Now()
// retrieve url params and add them to request header
vars := mux.Vars(request)
for k, v := range vars {
request.Header.Add(fmt.Sprintf("X-Fission-Params-%v", k), v)
}
// System Params
MetadataToHeaders(HEADERS_FISSION_FUNCTION_PREFIX, fh.function, request)
// cache lookup
serviceUrl, err := fh.fmap.lookup(fh.function)
if err != nil {
// Cache miss: request the Pool Manager to make a new service.
log.Printf("Not cached, getting new service for %v", fh.function)
var poolErr error
serviceUrl, poolErr = fh.getServiceForFunction()
if poolErr != nil {
log.Printf("Failed to get service for function %v: %v", fh.function.Name, poolErr)
// We might want a specific error code or header for fission
// failures as opposed to user function bugs.
http.Error(responseWriter, "Internal server error (fission)", 500)
return
}
// add it to the map
fh.fmap.assign(fh.function, serviceUrl)
} else {
// if we're using our cache, asynchronously tell
// poolmgr we're using this service
go fh.tapService(serviceUrl)
}
// Proxy off our request to the serviceUrl, and send the response back.
// TODO: As an optimization we may want to cache proxies too -- this might get us
// connection reuse and possibly better performance
director := func(req *http.Request) {
log.Printf("Proxying request for %v to %v", req.URL, serviceUrl.Host)
// send this request to serviceurl
req.URL.Scheme = serviceUrl.Scheme
req.URL.Host = serviceUrl.Host
// To keep the function run container simple, it
// doesn't do any routing. In the future if we have
// multiple functions per container, we could use the
// function metadata here.
req.URL.Path = "/"
// leave the query string intact (req.URL.RawQuery)
if _, ok := req.Header["User-Agent"]; !ok {
// explicitly disable User-Agent so it's not set to default value
req.Header.Set("User-Agent", "")
}
}
// Initial requests to new k8s services sometimes seem to
// fail, but retries work. So use a transport that does retries.
proxy := &httputil.ReverseProxy{
Director: director,
Transport: RetryingRoundTripper{
maxRetries: 10,
initalTimeout: 50 * time.Millisecond,
},
}
delay := time.Now().Sub(reqStartTime)
if delay > 100*time.Millisecond {
log.Printf("Request delay for %v: %v", serviceUrl, delay)
}
proxy.ServeHTTP(responseWriter, request)
}