etcd/lease/lessor_test.go
Xiang Li e9a0a103e5 *: refresh the lease TTL correctly when a leader is elected.
The new leader needs to refresh with an extened TTL to gracefully handle
the potential concurrent leader issue. Clients might still send keep alive
to old leader until the old leader itself gives up leadership at most after
an election timeout.
2016-03-15 22:40:03 -07:00

237 lines
5.6 KiB
Go

// Copyright 2015 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 lease
import (
"io/ioutil"
"os"
"path"
"reflect"
"testing"
"time"
"github.com/coreos/etcd/storage/backend"
)
// TestLessorGrant ensures Lessor can grant wanted lease.
// The granted lease should have a unique ID with a term
// that is greater than minLeaseTTL.
func TestLessorGrant(t *testing.T) {
dir, be := NewTestBackend(t)
defer os.RemoveAll(dir)
defer be.Close()
le := newLessor(be)
le.Promote(0)
l, err := le.Grant(1, 1)
if err != nil {
t.Fatalf("could not grant lease 1 (%v)", err)
}
gl := le.get(l.ID)
if !reflect.DeepEqual(gl, l) {
t.Errorf("lease = %v, want %v", gl, l)
}
if l.expiry.Sub(time.Now()) < time.Duration(minLeaseTTL)*time.Second-time.Second {
t.Errorf("term = %v, want at least %v", l.expiry.Sub(time.Now()), time.Duration(minLeaseTTL)*time.Second-time.Second)
}
nl, err := le.Grant(1, 1)
if err == nil {
t.Errorf("allocated the same lease")
}
nl, err = le.Grant(2, 1)
if err != nil {
t.Errorf("could not grant lease 2 (%v)", err)
}
if nl.ID == l.ID {
t.Errorf("new lease.id = %x, want != %x", nl.ID, l.ID)
}
be.BatchTx().Lock()
_, vs := be.BatchTx().UnsafeRange(leaseBucketName, int64ToBytes(int64(l.ID)), nil, 0)
if len(vs) != 1 {
t.Errorf("len(vs) = %d, want 1", len(vs))
}
be.BatchTx().Unlock()
}
// TestLessorRevoke ensures Lessor can revoke a lease.
// The items in the revoked lease should be removed from
// the backend.
// The revoked lease cannot be got from Lessor again.
func TestLessorRevoke(t *testing.T) {
dir, be := NewTestBackend(t)
defer os.RemoveAll(dir)
defer be.Close()
fd := &fakeDeleter{}
le := newLessor(be)
le.SetRangeDeleter(fd)
// grant a lease with long term (100 seconds) to
// avoid early termination during the test.
l, err := le.Grant(1, 100)
if err != nil {
t.Fatalf("could not grant lease for 100s ttl (%v)", err)
}
items := []LeaseItem{
{"foo"},
{"bar"},
}
if err := le.Attach(l.ID, items); err != nil {
t.Fatalf("failed to attach items to the lease: %v", err)
}
if err = le.Revoke(l.ID); err != nil {
t.Fatal("failed to revoke lease:", err)
}
if le.get(l.ID) != nil {
t.Errorf("got revoked lease %x", l.ID)
}
wdeleted := []string{"foo_", "bar_"}
if !reflect.DeepEqual(fd.deleted, wdeleted) {
t.Errorf("deleted= %v, want %v", fd.deleted, wdeleted)
}
be.BatchTx().Lock()
_, vs := be.BatchTx().UnsafeRange(leaseBucketName, int64ToBytes(int64(l.ID)), nil, 0)
if len(vs) != 0 {
t.Errorf("len(vs) = %d, want 0", len(vs))
}
be.BatchTx().Unlock()
}
// TestLessorRenew ensures Lessor can renew an existing lease.
func TestLessorRenew(t *testing.T) {
dir, be := NewTestBackend(t)
defer be.Close()
defer os.RemoveAll(dir)
le := newLessor(be)
le.Promote(0)
l, err := le.Grant(1, 5)
if err != nil {
t.Fatalf("failed to grant lease (%v)", err)
}
// manually change the ttl field
l.TTL = 10
ttl, err := le.Renew(l.ID)
if err != nil {
t.Fatalf("failed to renew lease (%v)", err)
}
if ttl != l.TTL {
t.Errorf("ttl = %d, want %d", ttl, l.TTL)
}
l = le.get(l.ID)
if l.expiry.Sub(time.Now()) < 9*time.Second {
t.Errorf("failed to renew the lease")
}
}
func TestLessorDetach(t *testing.T) {
dir, be := NewTestBackend(t)
defer os.RemoveAll(dir)
defer be.Close()
fd := &fakeDeleter{}
le := newLessor(be)
le.SetRangeDeleter(fd)
// grant a lease with long term (100 seconds) to
// avoid early termination during the test.
l, err := le.Grant(1, 100)
if err != nil {
t.Fatalf("could not grant lease for 100s ttl (%v)", err)
}
items := []LeaseItem{
{"foo"},
{"bar"},
}
if err := le.Attach(l.ID, items); err != nil {
t.Fatalf("failed to attach items to the lease: %v", err)
}
if err := le.Detach(l.ID, items[0:1]); err != nil {
t.Fatalf("failed to de-attach items to the lease: %v", err)
}
l = le.Lookup(l.ID)
if len(l.itemSet) != 1 {
t.Fatalf("len(l.itemSet) = %d, failed to de-attach items", len(l.itemSet))
}
if _, ok := l.itemSet[LeaseItem{"bar"}]; !ok {
t.Fatalf("de-attached wrong item, want %q exists", "bar")
}
}
// TestLessorRecover ensures Lessor recovers leases from
// persist backend.
func TestLessorRecover(t *testing.T) {
dir, be := NewTestBackend(t)
defer os.RemoveAll(dir)
defer be.Close()
le := newLessor(be)
l1, err1 := le.Grant(1, 10)
l2, err2 := le.Grant(2, 20)
if err1 != nil || err2 != nil {
t.Fatalf("could not grant initial leases (%v, %v)", err1, err2)
}
// Create a new lessor with the same backend
nle := newLessor(be)
nl1 := nle.get(l1.ID)
if nl1 == nil || nl1.TTL != l1.TTL {
t.Errorf("nl1 = %v, want nl1.TTL= %d", nl1.TTL, l1.TTL)
}
nl2 := nle.get(l2.ID)
if nl2 == nil || nl2.TTL != l2.TTL {
t.Errorf("nl2 = %v, want nl2.TTL= %d", nl2.TTL, l2.TTL)
}
}
type fakeDeleter struct {
deleted []string
}
func (fd *fakeDeleter) DeleteRange(key, end []byte) (int64, int64) {
fd.deleted = append(fd.deleted, string(key)+"_"+string(end))
return 0, 0
}
func NewTestBackend(t *testing.T) (string, backend.Backend) {
tmpPath, err := ioutil.TempDir("", "lease")
if err != nil {
t.Fatalf("failed to create tmpdir (%v)", err)
}
return tmpPath, backend.New(path.Join(tmpPath, "be"), time.Second, 10000)
}