traefik/provider/marathon/marathon.go
Vincent Demeester 542c3673e4 Extract providers to their own package
This is just doing that and making it compile :)

Signed-off-by: Vincent Demeester <vincent@sbr.pm>
2017-04-18 13:24:17 +02:00

535 lines
17 KiB
Go

package marathon
import (
"errors"
"math"
"net"
"net/http"
"net/url"
"strconv"
"strings"
"text/template"
"time"
"github.com/BurntSushi/ty/fun"
"github.com/cenk/backoff"
"github.com/containous/flaeg"
"github.com/containous/traefik/job"
"github.com/containous/traefik/log"
"github.com/containous/traefik/provider"
"github.com/containous/traefik/safe"
"github.com/containous/traefik/types"
"github.com/gambol99/go-marathon"
)
var _ provider.Provider = (*Provider)(nil)
// Provider holds configuration of the provider.
type Provider struct {
provider.BaseProvider
Endpoint string `description:"Marathon server endpoint. You can also specify multiple endpoint for Marathon"`
Domain string `description:"Default domain used"`
ExposedByDefault bool `description:"Expose Marathon apps by default"`
GroupsAsSubDomains bool `description:"Convert Marathon groups to subdomains"`
DCOSToken string `description:"DCOSToken for DCOS environment, This will override the Authorization header"`
MarathonLBCompatibility bool `description:"Add compatibility with marathon-lb labels"`
TLS *provider.ClientTLS `description:"Enable Docker TLS support"`
DialerTimeout flaeg.Duration `description:"Set a non-default connection timeout for Marathon"`
KeepAlive flaeg.Duration `description:"Set a non-default TCP Keep Alive time in seconds"`
Basic *Basic
marathonClient marathon.Marathon
}
// Basic holds basic authentication specific configurations
type Basic struct {
HTTPBasicAuthUser string
HTTPBasicPassword string
}
type lightMarathonClient interface {
AllTasks(v url.Values) (*marathon.Tasks, error)
Applications(url.Values) (*marathon.Applications, error)
}
// Provide allows the marathon provider to provide configurations to traefik
// using the given configuration channel.
func (p *Provider) Provide(configurationChan chan<- types.ConfigMessage, pool *safe.Pool, constraints types.Constraints) error {
p.Constraints = append(p.Constraints, constraints...)
operation := func() error {
config := marathon.NewDefaultConfig()
config.URL = p.Endpoint
config.EventsTransport = marathon.EventsTransportSSE
if p.Basic != nil {
config.HTTPBasicAuthUser = p.Basic.HTTPBasicAuthUser
config.HTTPBasicPassword = p.Basic.HTTPBasicPassword
}
if len(p.DCOSToken) > 0 {
config.DCOSToken = p.DCOSToken
}
TLSConfig, err := p.TLS.CreateTLSConfig()
if err != nil {
return err
}
config.HTTPClient = &http.Client{
Transport: &http.Transport{
DialContext: (&net.Dialer{
KeepAlive: time.Duration(p.KeepAlive),
Timeout: time.Duration(p.DialerTimeout),
}).DialContext,
TLSClientConfig: TLSConfig,
},
}
client, err := marathon.NewClient(config)
if err != nil {
log.Errorf("Failed to create a client for marathon, error: %s", err)
return err
}
p.marathonClient = client
if p.Watch {
update, err := client.AddEventsListener(marathon.EventIDApplications)
if err != nil {
log.Errorf("Failed to register for events, %s", err)
return err
}
pool.Go(func(stop chan bool) {
defer close(update)
for {
select {
case <-stop:
return
case event := <-update:
log.Debug("Provider event receveived", event)
configuration := p.loadMarathonConfig()
if configuration != nil {
configurationChan <- types.ConfigMessage{
ProviderName: "marathon",
Configuration: configuration,
}
}
}
}
})
}
configuration := p.loadMarathonConfig()
configurationChan <- types.ConfigMessage{
ProviderName: "marathon",
Configuration: configuration,
}
return nil
}
notify := func(err error, time time.Duration) {
log.Errorf("Provider connection error %+v, retrying in %s", err, time)
}
err := backoff.RetryNotify(safe.OperationWithRecover(operation), job.NewBackOff(backoff.NewExponentialBackOff()), notify)
if err != nil {
log.Errorf("Cannot connect to Provider server %+v", err)
}
return nil
}
func (p *Provider) loadMarathonConfig() *types.Configuration {
var MarathonFuncMap = template.FuncMap{
"getBackend": p.getBackend,
"getBackendServer": p.getBackendServer,
"getPort": p.getPort,
"getWeight": p.getWeight,
"getDomain": p.getDomain,
"getProtocol": p.getProtocol,
"getPassHostHeader": p.getPassHostHeader,
"getPriority": p.getPriority,
"getEntryPoints": p.getEntryPoints,
"getFrontendRule": p.getFrontendRule,
"getFrontendBackend": p.getFrontendBackend,
"hasCircuitBreakerLabels": p.hasCircuitBreakerLabels,
"hasLoadBalancerLabels": p.hasLoadBalancerLabels,
"hasMaxConnLabels": p.hasMaxConnLabels,
"getMaxConnExtractorFunc": p.getMaxConnExtractorFunc,
"getMaxConnAmount": p.getMaxConnAmount,
"getLoadBalancerMethod": p.getLoadBalancerMethod,
"getCircuitBreakerExpression": p.getCircuitBreakerExpression,
"getSticky": p.getSticky,
}
applications, err := p.marathonClient.Applications(nil)
if err != nil {
log.Errorf("Failed to create a client for marathon, error: %s", err)
return nil
}
tasks, err := p.marathonClient.AllTasks(&marathon.AllTasksOpts{Status: "running"})
if err != nil {
log.Errorf("Failed to create a client for marathon, error: %s", err)
return nil
}
//filter tasks
filteredTasks := fun.Filter(func(task marathon.Task) bool {
return p.taskFilter(task, applications, p.ExposedByDefault)
}, tasks.Tasks).([]marathon.Task)
//filter apps
filteredApps := fun.Filter(func(app marathon.Application) bool {
return p.applicationFilter(app, filteredTasks)
}, applications.Apps).([]marathon.Application)
templateObjects := struct {
Applications []marathon.Application
Tasks []marathon.Task
Domain string
}{
filteredApps,
filteredTasks,
p.Domain,
}
configuration, err := p.GetConfiguration("templates/marathon.tmpl", MarathonFuncMap, templateObjects)
if err != nil {
log.Error(err)
}
return configuration
}
func (p *Provider) taskFilter(task marathon.Task, applications *marathon.Applications, exposedByDefaultFlag bool) bool {
application, err := getApplication(task, applications.Apps)
if err != nil {
log.Errorf("Unable to get marathon application from task %s", task.AppID)
return false
}
ports := processPorts(application, task)
if len(ports) == 0 {
log.Debug("Filtering marathon task without port %s", task.AppID)
return false
}
label, _ := p.getLabel(application, "traefik.tags")
constraintTags := strings.Split(label, ",")
if p.MarathonLBCompatibility {
if label, err := p.getLabel(application, "HAPROXY_GROUP"); err == nil {
constraintTags = append(constraintTags, label)
}
}
if ok, failingConstraint := p.MatchConstraints(constraintTags); !ok {
if failingConstraint != nil {
log.Debugf("Application %v pruned by '%v' constraint", application.ID, failingConstraint.String())
}
return false
}
if !isApplicationEnabled(application, exposedByDefaultFlag) {
log.Debugf("Filtering disabled marathon task %s", task.AppID)
return false
}
//filter indeterminable task port
portIndexLabel := (*application.Labels)["traefik.portIndex"]
portValueLabel := (*application.Labels)["traefik.port"]
if portIndexLabel != "" && portValueLabel != "" {
log.Debugf("Filtering marathon task %s specifying both traefik.portIndex and traefik.port labels", task.AppID)
return false
}
if portIndexLabel != "" {
index, err := strconv.Atoi((*application.Labels)["traefik.portIndex"])
if err != nil || index < 0 || index > len(ports)-1 {
log.Debugf("Filtering marathon task %s with unexpected value for traefik.portIndex label", task.AppID)
return false
}
}
if portValueLabel != "" {
_, err := strconv.Atoi((*application.Labels)["traefik.port"])
if err != nil {
log.Debugf("Filtering marathon task %s with unexpected value for traefik.port label", task.AppID)
return false
}
}
//filter healthchecks
if application.HasHealthChecks() {
if task.HasHealthCheckResults() {
for _, healthcheck := range task.HealthCheckResults {
// found one bad healthcheck, return false
if !healthcheck.Alive {
log.Debugf("Filtering marathon task %s with bad healthcheck", task.AppID)
return false
}
}
}
}
return true
}
func (p *Provider) applicationFilter(app marathon.Application, filteredTasks []marathon.Task) bool {
label, _ := p.getLabel(app, "traefik.tags")
constraintTags := strings.Split(label, ",")
if p.MarathonLBCompatibility {
if label, err := p.getLabel(app, "HAPROXY_GROUP"); err == nil {
constraintTags = append(constraintTags, label)
}
}
if ok, failingConstraint := p.MatchConstraints(constraintTags); !ok {
if failingConstraint != nil {
log.Debugf("Application %v pruned by '%v' constraint", app.ID, failingConstraint.String())
}
return false
}
return fun.Exists(func(task marathon.Task) bool {
return task.AppID == app.ID
}, filteredTasks)
}
func getApplication(task marathon.Task, apps []marathon.Application) (marathon.Application, error) {
for _, application := range apps {
if application.ID == task.AppID {
return application, nil
}
}
return marathon.Application{}, errors.New("Application not found: " + task.AppID)
}
func isApplicationEnabled(application marathon.Application, exposedByDefault bool) bool {
return exposedByDefault && (*application.Labels)["traefik.enable"] != "false" || (*application.Labels)["traefik.enable"] == "true"
}
func (p *Provider) getLabel(application marathon.Application, label string) (string, error) {
for key, value := range *application.Labels {
if key == label {
return value, nil
}
}
return "", errors.New("Label not found:" + label)
}
func (p *Provider) getPort(task marathon.Task, applications []marathon.Application) string {
application, err := getApplication(task, applications)
if err != nil {
log.Errorf("Unable to get marathon application from task %s", task.AppID)
return ""
}
ports := processPorts(application, task)
if portIndexLabel, err := p.getLabel(application, "traefik.portIndex"); err == nil {
if index, err := strconv.Atoi(portIndexLabel); err == nil {
return strconv.Itoa(ports[index])
}
}
if portValueLabel, err := p.getLabel(application, "traefik.port"); err == nil {
return portValueLabel
}
for _, port := range ports {
return strconv.Itoa(port)
}
return ""
}
func (p *Provider) getWeight(task marathon.Task, applications []marathon.Application) string {
application, errApp := getApplication(task, applications)
if errApp != nil {
log.Errorf("Unable to get marathon application from task %s", task.AppID)
return "0"
}
if label, err := p.getLabel(application, "traefik.weight"); err == nil {
return label
}
return "0"
}
func (p *Provider) getDomain(application marathon.Application) string {
if label, err := p.getLabel(application, "traefik.domain"); err == nil {
return label
}
return p.Domain
}
func (p *Provider) getProtocol(task marathon.Task, applications []marathon.Application) string {
application, errApp := getApplication(task, applications)
if errApp != nil {
log.Errorf("Unable to get marathon application from task %s", task.AppID)
return "http"
}
if label, err := p.getLabel(application, "traefik.protocol"); err == nil {
return label
}
return "http"
}
func (p *Provider) getSticky(application marathon.Application) string {
if sticky, err := p.getLabel(application, "traefik.backend.loadbalancer.sticky"); err == nil {
return sticky
}
return "false"
}
func (p *Provider) getPassHostHeader(application marathon.Application) string {
if passHostHeader, err := p.getLabel(application, "traefik.frontend.passHostHeader"); err == nil {
return passHostHeader
}
return "true"
}
func (p *Provider) getPriority(application marathon.Application) string {
if priority, err := p.getLabel(application, "traefik.frontend.priority"); err == nil {
return priority
}
return "0"
}
func (p *Provider) getEntryPoints(application marathon.Application) []string {
if entryPoints, err := p.getLabel(application, "traefik.frontend.entryPoints"); err == nil {
return strings.Split(entryPoints, ",")
}
return []string{}
}
// getFrontendRule returns the frontend rule for the specified application, using
// it's label. It returns a default one (Host) if the label is not present.
func (p *Provider) getFrontendRule(application marathon.Application) string {
if label, err := p.getLabel(application, "traefik.frontend.rule"); err == nil {
return label
}
if p.MarathonLBCompatibility {
if label, err := p.getLabel(application, "HAPROXY_0_VHOST"); err == nil {
return "Host:" + label
}
}
return "Host:" + p.getSubDomain(application.ID) + "." + p.Domain
}
func (p *Provider) getBackend(task marathon.Task, applications []marathon.Application) string {
application, errApp := getApplication(task, applications)
if errApp != nil {
log.Errorf("Unable to get marathon application from task %s", task.AppID)
return ""
}
return p.getFrontendBackend(application)
}
func (p *Provider) getFrontendBackend(application marathon.Application) string {
if label, err := p.getLabel(application, "traefik.backend"); err == nil {
return label
}
return provider.Replace("/", "-", application.ID)
}
func (p *Provider) getSubDomain(name string) string {
if p.GroupsAsSubDomains {
splitedName := strings.Split(strings.TrimPrefix(name, "/"), "/")
provider.ReverseStringSlice(&splitedName)
reverseName := strings.Join(splitedName, ".")
return reverseName
}
return strings.Replace(strings.TrimPrefix(name, "/"), "/", "-", -1)
}
func (p *Provider) hasCircuitBreakerLabels(application marathon.Application) bool {
if _, err := p.getLabel(application, "traefik.backend.circuitbreaker.expression"); err != nil {
return false
}
return true
}
func (p *Provider) hasLoadBalancerLabels(application marathon.Application) bool {
_, errMethod := p.getLabel(application, "traefik.backend.loadbalancer.method")
_, errSticky := p.getLabel(application, "traefik.backend.loadbalancer.sticky")
if errMethod != nil && errSticky != nil {
return false
}
return true
}
func (p *Provider) hasMaxConnLabels(application marathon.Application) bool {
if _, err := p.getLabel(application, "traefik.backend.maxconn.amount"); err != nil {
return false
}
if _, err := p.getLabel(application, "traefik.backend.maxconn.extractorfunc"); err != nil {
return false
}
return true
}
func (p *Provider) getMaxConnAmount(application marathon.Application) int64 {
if label, err := p.getLabel(application, "traefik.backend.maxconn.amount"); err == nil {
i, errConv := strconv.ParseInt(label, 10, 64)
if errConv != nil {
log.Errorf("Unable to parse traefik.backend.maxconn.amount %s", label)
return math.MaxInt64
}
return i
}
return math.MaxInt64
}
func (p *Provider) getMaxConnExtractorFunc(application marathon.Application) string {
if label, err := p.getLabel(application, "traefik.backend.maxconn.extractorfunc"); err == nil {
return label
}
return "request.host"
}
func (p *Provider) getLoadBalancerMethod(application marathon.Application) string {
if label, err := p.getLabel(application, "traefik.backend.loadbalancer.method"); err == nil {
return label
}
return "wrr"
}
func (p *Provider) getCircuitBreakerExpression(application marathon.Application) string {
if label, err := p.getLabel(application, "traefik.backend.circuitbreaker.expression"); err == nil {
return label
}
return "NetworkErrorRatio() > 1"
}
func processPorts(application marathon.Application, task marathon.Task) []int {
// Using default port configuration
if task.Ports != nil && len(task.Ports) > 0 {
return task.Ports
}
// Using port definition if available
if application.PortDefinitions != nil && len(*application.PortDefinitions) > 0 {
var ports []int
for _, def := range *application.PortDefinitions {
if def.Port != nil {
ports = append(ports, *def.Port)
}
}
return ports
}
// If using IP-per-task using this port definition
if application.IPAddressPerTask != nil && len(*((*application.IPAddressPerTask).Discovery).Ports) > 0 {
var ports []int
for _, def := range *((*application.IPAddressPerTask).Discovery).Ports {
ports = append(ports, def.Number)
}
return ports
}
return []int{}
}
func (p *Provider) getBackendServer(task marathon.Task, applications []marathon.Application) string {
application, err := getApplication(task, applications)
if err != nil {
log.Errorf("Unable to get marathon application from task %s", task.AppID)
return ""
}
if len(task.IPAddresses) == 0 {
return ""
} else if len(task.IPAddresses) == 1 {
return task.IPAddresses[0].IPAddress
} else {
ipAddressIdxStr, err := p.getLabel(application, "traefik.ipAddressIdx")
if err != nil {
log.Errorf("Unable to get marathon IPAddress from task %s", task.AppID)
return ""
}
ipAddressIdx, err := strconv.Atoi(ipAddressIdxStr)
if err != nil {
log.Errorf("Invalid marathon IPAddress from task %s", task.AppID)
return ""
}
return task.IPAddresses[ipAddressIdx].IPAddress
}
}