Skip to content
Permalink
v0.0.5
Switch branches/tags

Name already in use

A tag already exists with the provided branch name. Many Git commands accept both tag and branch names, so creating this branch may cause unexpected behavior. Are you sure you want to create this branch?
Go to file
 
 
Cannot retrieve contributors at this time
184 lines (163 sloc) 4.06 KB
// Copyright 2016 CoreOS, Inc.
//
// 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 zetcd
import (
"sync"
etcd "github.com/coreos/etcd/clientv3"
"github.com/golang/glog"
"golang.org/x/net/context"
)
type Watches interface {
// Watch creates a watch request on a given path and evtype.
Watch(rev ZXid, xid Xid, path string, evtype EventType, cb WatchHandler)
// Wait blocks until all watches that rely on the given rev are dispatched.
Wait(rev ZXid, path string, evtype EventType)
}
type WatchHandler func(ZXid, EventType)
type watches struct {
mu sync.Mutex
c *etcd.Client
path2watch [5]map[string]*watch
ctx context.Context
cancel context.CancelFunc
}
type watch struct {
c *etcd.Client
xid Xid
evtype EventType
path string
wch etcd.WatchChan
ctx context.Context
cancel context.CancelFunc
// startRev is the etcd store revision when this watch began
startRev ZXid
donec chan struct{}
}
func ev2evtype(ev *etcd.Event) EventType {
switch {
case ev.IsCreate():
return EventNodeCreated
case ev.Type == etcd.EventTypeDelete:
return EventNodeDeleted
case ev.IsModify():
return EventNodeDataChanged
default:
return EventNotWatching
}
}
func newWatches(c *etcd.Client) *watches {
ctx, cancel := context.WithCancel(context.TODO())
ws := &watches{
c: c,
ctx: ctx,
cancel: cancel,
}
for i := 0; i < len(ws.path2watch); i++ {
ws.path2watch[i] = make(map[string]*watch)
}
return ws
}
func (ws *watches) Watch(rev ZXid, xid Xid, path string, evtype EventType, cb WatchHandler) {
ws.mu.Lock()
curw := ws.path2watch[evtype][path]
ws.mu.Unlock()
if curw != nil {
return
}
ctx, cancel := context.WithCancel(ws.ctx)
var wch etcd.WatchChan
switch evtype {
case EventNodeDataChanged:
fallthrough
case EventNodeCreated:
fallthrough
// use rev+1 watch begins AFTER the requested zxid
case EventNodeDeleted:
wch = ws.c.Watch(ctx, mkPathKey(path), etcd.WithRev(int64(rev+1)))
case EventNodeChildrenChanged:
wch = ws.c.Watch(
ctx,
getListPfx(path),
etcd.WithPrefix(),
etcd.WithRev(int64(rev+1)))
default:
panic("unsupported watch op")
}
ws.mu.Lock()
defer ws.mu.Unlock()
curw = ws.path2watch[evtype][path]
if curw != nil {
glog.V(7).Infof("ELIDING WATCH on xid=%d evtype=%d, already have %s evtype=%d", xid, evtype, path, curw.evtype)
cancel()
return
}
w := &watch{ws.c, xid, evtype, path, wch, ctx, cancel, rev, make(chan struct{})}
ws.path2watch[evtype][path] = w
go ws.runWatch(w, cb)
}
func (ws *watches) runWatch(w *watch, cb WatchHandler) {
defer func() {
close(w.donec)
<-w.wch
}()
for {
select {
case resp, ok := <-w.wch:
if !ok {
return
}
if len(resp.Events) == 0 {
continue
}
evtype := ev2evtype(resp.Events[0])
ws.mu.Lock()
delete(ws.path2watch[w.evtype], w.path)
ws.mu.Unlock()
cb(ZXid(resp.Header.Revision), evtype)
w.cancel()
case <-w.ctx.Done():
}
}
}
func (ws *watches) close() {
ws.mu.Lock()
defer ws.mu.Unlock()
ws.cancel()
for i := range ws.path2watch {
for _, w := range ws.path2watch[i] {
for range w.wch {
}
}
}
}
// Wait until watcher depending on the given rev completes.
// NOTE: path is internal zkpath representation
// TODO: watch waiting may need to be proxy-wide to be correct
// TODO: better algorithm
func (ws *watches) Wait(rev ZXid, path string, evtype EventType) {
ch := []<-chan struct{}{}
ws.mu.Lock()
for k, w := range ws.path2watch[evtype] {
if k != path {
continue
}
if w.startRev <= rev && w.evtype == evtype {
ch = append(ch, w.donec)
}
}
ws.mu.Unlock()
for _, c := range ch {
<-c
}
}