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subscription_test.go
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subscription_test.go
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/*
Copyright 2014 The go-marathon Authors All rights reserved.
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 marathon
import (
"net"
"net/http"
"testing"
"time"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
const (
eventPublishTimeout time.Duration = 250 * time.Millisecond
SSEConnectWaitTime time.Duration = 250 * time.Millisecond
)
type testCaseList []testCase
func (l testCaseList) find(name string) *testCase {
for _, testCase := range l {
if testCase.name == name {
return &testCase
}
}
return nil
}
type testCase struct {
name string
source string
expectation interface{}
}
var testCases = testCaseList{
testCase{
name: "status_update_event",
source: `{
"eventType": "status_update_event",
"timestamp": "2014-03-01T23:29:30.158Z",
"slaveId": "20140909-054127-177048842-5050-1494-0",
"taskId": "my-app_0-1396592784349",
"taskStatus": "TASK_RUNNING",
"appId": "/my-app",
"host": "slave-1234.acme.org",
"ports": [31372],
"version": "2014-04-04T06:26:23.051Z"
}`,
expectation: &EventStatusUpdate{
EventType: "status_update_event",
Timestamp: "2014-03-01T23:29:30.158Z",
SlaveID: "20140909-054127-177048842-5050-1494-0",
TaskID: "my-app_0-1396592784349",
TaskStatus: "TASK_RUNNING",
AppID: "/my-app",
Host: "slave-1234.acme.org",
Ports: []int{31372},
Version: "2014-04-04T06:26:23.051Z",
},
},
testCase{
name: "health_status_changed_event",
source: `{
"eventType": "health_status_changed_event",
"timestamp": "2014-03-01T23:29:30.158Z",
"appId": "/my-app",
"taskId": "my-app_0-1396592784349",
"version": "2014-04-04T06:26:23.051Z",
"alive": true
}`,
expectation: &EventHealthCheckChanged{
EventType: "health_status_changed_event",
Timestamp: "2014-03-01T23:29:30.158Z",
AppID: "/my-app",
TaskID: "my-app_0-1396592784349",
Version: "2014-04-04T06:26:23.051Z",
Alive: true,
},
},
testCase{
name: "failed_health_check_event",
source: `{
"eventType": "failed_health_check_event",
"timestamp": "2014-03-01T23:29:30.158Z",
"appId": "/my-app",
"taskId": "my-app_0-1396592784349",
"healthCheck": {
"protocol": "HTTP",
"path": "/health",
"portIndex": 0,
"gracePeriodSeconds": 5,
"intervalSeconds": 10,
"timeoutSeconds": 10,
"maxConsecutiveFailures": 3
}
}`,
expectation: &EventFailedHealthCheck{
EventType: "failed_health_check_event",
Timestamp: "2014-03-01T23:29:30.158Z",
AppID: "/my-app",
HealthCheck: struct {
GracePeriodSeconds float64 `json:"gracePeriodSeconds"`
IntervalSeconds float64 `json:"intervalSeconds"`
MaxConsecutiveFailures float64 `json:"maxConsecutiveFailures"`
Path string `json:"path"`
PortIndex float64 `json:"portIndex"`
Protocol string `json:"protocol"`
TimeoutSeconds float64 `json:"timeoutSeconds"`
}{
GracePeriodSeconds: 5,
IntervalSeconds: 10,
MaxConsecutiveFailures: 3,
Path: "/health",
PortIndex: 0,
Protocol: "HTTP",
TimeoutSeconds: 10,
},
},
},
// For Marathon 1.1.1 and before
testCase{
name: "deployment_info",
source: `{
"eventType": "deployment_info",
"timestamp": "2016-07-29T08:03:52.542Z",
"plan": {
"id": "dcf63e4a-ef27-4816-e865-1730fcb26ac3",
"version": "2016-07-29T08:03:52.542Z",
"original": {},
"target": {},
"steps": [
{
"actions": [
{
"type": "ScaleApplication",
"app": "/my-app"
}
]
}
]
},
"currentStep": {
"actions": [
{
"type": "ScaleApplication",
"app": "/my-app"
}
]
}
}`,
expectation: &EventDeploymentInfo{
EventType: "deployment_info",
Timestamp: "2016-07-29T08:03:52.542Z",
Plan: &DeploymentPlan{
ID: "dcf63e4a-ef27-4816-e865-1730fcb26ac3",
Version: "2016-07-29T08:03:52.542Z",
Original: &Group{},
Target: &Group{},
Steps: []*StepActions{
&StepActions{
Actions: []struct {
Action string `json:"action"`
Type string `json:"type"`
App string `json:"app"`
}{
{
Type: "ScaleApplication",
App: "/my-app",
},
},
},
},
},
CurrentStep: &StepActions{
Actions: []struct {
Action string `json:"action"`
Type string `json:"type"`
App string `json:"app"`
}{
{
Type: "ScaleApplication",
App: "/my-app",
},
},
},
},
},
// For Marathon 1.1.2 and after
testCase{
name: "deployment_step_success",
source: `{
"eventType": "deployment_step_success",
"timestamp": "2016-07-29T08:03:52.542Z",
"plan": {
"id": "dcf63e4a-ef27-4816-e865-1730fcb26ac3",
"version": "2016-07-29T08:03:52.542Z",
"original": {},
"target": {},
"steps": [
{
"actions": [
{
"action": "ScaleApplication",
"app": "/my-app"
}
]
}
]
},
"currentStep": {
"actions": [
{
"action": "ScaleApplication",
"app": "/my-app"
}
]
}
}`,
expectation: &EventDeploymentInfo{
EventType: "deployment_info",
Timestamp: "2016-07-29T08:03:52.542Z",
Plan: &DeploymentPlan{
ID: "dcf63e4a-ef27-4816-e865-1730fcb26ac3",
Version: "2016-07-29T08:03:52.542Z",
Original: &Group{},
Target: &Group{},
Steps: []*StepActions{
&StepActions{
Actions: []struct {
Action string `json:"action"`
Type string `json:"type"`
App string `json:"app"`
}{
{
Action: "ScaleApplication",
App: "/my-app",
},
},
},
},
},
CurrentStep: &StepActions{
Actions: []struct {
Action string `json:"action"`
Type string `json:"type"`
App string `json:"app"`
}{
{
Action: "ScaleApplication",
App: "/my-app",
},
},
},
},
},
}
func TestSubscriptions(t *testing.T) {
endpoint := newFakeMarathonEndpoint(t, nil)
defer endpoint.Close()
sub, err := endpoint.Client.Subscriptions()
assert.NoError(t, err)
assert.NotNil(t, sub)
assert.NotNil(t, sub.CallbackURLs)
assert.Equal(t, len(sub.CallbackURLs), 1)
}
func TestSubscribe(t *testing.T) {
endpoint := newFakeMarathonEndpoint(t, nil)
defer endpoint.Close()
err := endpoint.Client.Subscribe("http://localhost:9292/callback")
assert.NoError(t, err)
}
func TestUnsubscribe(t *testing.T) {
endpoint := newFakeMarathonEndpoint(t, nil)
defer endpoint.Close()
err := endpoint.Client.Unsubscribe("http://localhost:9292/callback")
assert.NoError(t, err)
}
func TestSSEWithGlobalTimeout(t *testing.T) {
clientCfg := NewDefaultConfig()
clientCfg.HTTPSSEClient = &http.Client{
Timeout: 1 * time.Second,
}
config := configContainer{
client: &clientCfg,
}
config.client.EventsTransport = EventsTransportSSE
endpoint := newFakeMarathonEndpoint(t, &config)
defer endpoint.Close()
_, err := endpoint.Client.AddEventsListener(EventIDApplications)
assert.Error(t, err)
}
func TestEventStreamEventsReceived(t *testing.T) {
require.True(t, len(testCases) > 1, "must have at least 2 test cases to end prematurely")
clientCfg := NewDefaultConfig()
config := configContainer{
client: &clientCfg,
}
config.client.EventsTransport = EventsTransportSSE
endpoint := newFakeMarathonEndpoint(t, &config)
defer endpoint.Close()
events, err := endpoint.Client.AddEventsListener(EventIDApplications | EventIDDeploymentInfo | EventIDDeploymentStepSuccess)
assert.NoError(t, err)
almostAllTestCases := testCases[:len(testCases)-1]
finalTestCase := testCases[len(testCases)-1]
// Give it a bit of time so that the subscription can be set up
time.Sleep(SSEConnectWaitTime)
// Publish all but one test event.
for _, testCase := range almostAllTestCases {
endpoint.Server.PublishEvent(testCase.source)
}
// Receive test events.
for i := 0; i < len(almostAllTestCases); i++ {
select {
case event := <-events:
tc := testCases.find(event.Name)
if !assert.NotNil(t, tc, "received unknown event: %s", event.Name) {
continue
}
assert.Equal(t, tc.expectation, event.Event)
case <-time.After(eventPublishTimeout):
assert.Fail(t, "did not receive event in time")
}
}
// Publish last test event that we do not intend to consume anymore.
endpoint.Server.PublishEvent(finalTestCase.source)
// Give event stream some time to buffer another event.
time.Sleep(eventPublishTimeout)
// Trigger done channel closure.
endpoint.Client.RemoveEventsListener(events)
// Give pending goroutine time to consume done signal.
time.Sleep(eventPublishTimeout)
// Validate that channel is closed.
select {
case _, more := <-events:
assert.False(t, more, "should not have received another event")
default:
assert.Fail(t, "channel was not closed")
}
}
func TestConnectToSSESuccess(t *testing.T) {
clientCfg := NewDefaultConfig()
// Use non-existent address as first cluster member
clientCfg.URL = "http://127.0.0.1:11111"
clientCfg.EventsTransport = EventsTransportSSE
config := configContainer{client: &clientCfg}
endpoint := newFakeMarathonEndpoint(t, &config)
defer endpoint.Close()
client := endpoint.Client.(*marathonClient)
// Add real server as member to the cluster
client.hosts.members = append(client.hosts.members, &member{endpoint: endpoint.Server.httpSrv.URL})
// Connection should work as one of the Marathon members is up
stream, err := client.connectToSSE()
if assert.NoError(t, err, "expected no error in connectToSSE") {
stream.Close()
}
}
func TestConnectToSSEFailure(t *testing.T) {
clientCfg := NewDefaultConfig()
clientCfg.EventsTransport = EventsTransportSSE
config := configContainer{client: &clientCfg}
endpoint := newFakeMarathonEndpoint(t, &config)
endpoint.Close()
client := endpoint.Client.(*marathonClient)
// No Marathon member is up, we should get an error
stream, err := client.connectToSSE()
if !assert.Error(t, err, "expected error in connectToSSE when all cluster members are down") {
stream.Close()
}
}
func TestRegisterSEESubscriptionReconnectsStreamOnError(t *testing.T) {
clientCfg := NewDefaultConfig()
clientCfg.HTTPSSEClient = &http.Client{
Transport: &http.Transport{
Dial: (&net.Dialer{
// set timeout to a small fraction of SSEConnectWaitTime to give client enough time
// to detect error and reconnect during sleep
Timeout: SSEConnectWaitTime / 10,
}).Dial,
},
}
clientCfg.EventsTransport = EventsTransportSSE
config := configContainer{client: &clientCfg}
endpoint1 := newFakeMarathonEndpoint(t, &config)
endpoint2 := newFakeMarathonEndpoint(t, &config)
defer endpoint2.Close()
client1 := endpoint1.Client.(*marathonClient)
// Add the second server to the cluster members
client1.hosts.members = append(client1.hosts.members, &member{endpoint: endpoint2.Server.httpSrv.URL})
events, err := endpoint1.Client.AddEventsListener(EventIDApplications)
require.NoError(t, err)
// Give it a bit of time so that the subscription can be set up
time.Sleep(SSEConnectWaitTime)
// This should make the SSE subscription fail and reconnect to another cluster member
endpoint1.Close()
// Give it a bit of time so that the subscription can reconnect
time.Sleep(SSEConnectWaitTime)
// Now that our SSE subscription failed over, we can publish on the second server and the message should be consumed
endpoint2.Server.PublishEvent(testCases[0].source)
select {
case event := <-events:
tc := testCases.find(event.Name)
assert.NotNil(t, tc, "received unknown event: %s", event.Name)
case <-time.After(eventPublishTimeout):
assert.Fail(t, "did not receive event in time")
}
}