444 lines
13 KiB
Go
444 lines
13 KiB
Go
package provider
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import (
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"errors"
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"strconv"
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"strings"
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"text/template"
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"fmt"
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"github.com/BurntSushi/ty/fun"
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log "github.com/Sirupsen/logrus"
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"github.com/cenkalti/backoff"
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"github.com/containous/traefik/safe"
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"github.com/containous/traefik/types"
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"github.com/mesos/mesos-go/detector"
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_ "github.com/mesos/mesos-go/detector/zoo" // Registers the ZK detector
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"github.com/mesosphere/mesos-dns/detect"
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"github.com/mesosphere/mesos-dns/logging"
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"github.com/mesosphere/mesos-dns/records"
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"github.com/mesosphere/mesos-dns/records/state"
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"github.com/mesosphere/mesos-dns/util"
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"sort"
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"time"
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)
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//Mesos holds configuration of the mesos provider.
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type Mesos struct {
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BaseProvider
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Endpoint string `description:"Mesos server endpoint. You can also specify multiple endpoint for Mesos"`
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Domain string `description:"Default domain used"`
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ExposedByDefault bool `description:"Expose Mesos apps by default"`
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GroupsAsSubDomains bool `description:"Convert Mesos groups to subdomains"`
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ZkDetectionTimeout int `description:"ZkDetectionTimeout"`
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RefreshSeconds int `description:"RefreshSeconds"`
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IPSources string `description:"IPSources"` // e.g. "host", "docker", "mesos", "rkt"
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StateTimeoutSecond int `description:"HTTP Timeout (in seconds)"`
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Masters []string
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}
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// Provide allows the provider to provide configurations to traefik
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// using the given configuration channel.
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func (provider *Mesos) Provide(configurationChan chan<- types.ConfigMessage, pool *safe.Pool, constraints []types.Constraint) error {
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operation := func() error {
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// initialize logging
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logging.SetupLogs()
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log.Debugf("%s", provider.IPSources)
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var zk string
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var masters []string
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if strings.HasPrefix(provider.Endpoint, "zk://") {
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zk = provider.Endpoint
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} else {
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masters = strings.Split(provider.Endpoint, ",")
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}
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errch := make(chan error)
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changed := detectMasters(zk, masters)
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reload := time.NewTicker(time.Second * time.Duration(provider.RefreshSeconds))
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zkTimeout := time.Second * time.Duration(provider.ZkDetectionTimeout)
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timeout := time.AfterFunc(zkTimeout, func() {
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if zkTimeout > 0 {
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errch <- fmt.Errorf("master detection timed out after %s", zkTimeout)
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}
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})
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defer reload.Stop()
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defer util.HandleCrash()
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if !provider.Watch {
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reload.Stop()
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timeout.Stop()
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}
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for {
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select {
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case <-reload.C:
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configuration := provider.loadMesosConfig()
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if configuration != nil {
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configurationChan <- types.ConfigMessage{
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ProviderName: "mesos",
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Configuration: configuration,
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}
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}
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case masters := <-changed:
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if len(masters) == 0 || masters[0] == "" {
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// no leader
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timeout.Reset(zkTimeout)
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} else {
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timeout.Stop()
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}
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log.Debugf("new masters detected: %v", masters)
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provider.Masters = masters
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configuration := provider.loadMesosConfig()
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if configuration != nil {
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configurationChan <- types.ConfigMessage{
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ProviderName: "mesos",
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Configuration: configuration,
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}
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}
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case err := <-errch:
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log.Errorf("%s", err)
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}
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}
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}
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notify := func(err error, time time.Duration) {
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log.Errorf("mesos connection error %+v, retrying in %s", err, time)
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}
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err := backoff.RetryNotify(operation, backoff.NewExponentialBackOff(), notify)
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if err != nil {
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log.Fatalf("Cannot connect to mesos server %+v", err)
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}
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return nil
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}
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func (provider *Mesos) loadMesosConfig() *types.Configuration {
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var mesosFuncMap = template.FuncMap{
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"getBackend": provider.getBackend,
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"getPort": provider.getPort,
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"getHost": provider.getHost,
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"getWeight": provider.getWeight,
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"getDomain": provider.getDomain,
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"getProtocol": provider.getProtocol,
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"getPassHostHeader": provider.getPassHostHeader,
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"getPriority": provider.getPriority,
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"getEntryPoints": provider.getEntryPoints,
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"getFrontendRule": provider.getFrontendRule,
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"getFrontendBackend": provider.getFrontendBackend,
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"getID": provider.getID,
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"getFrontEndName": provider.getFrontEndName,
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"replace": replace,
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}
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t := records.NewRecordGenerator(time.Duration(provider.StateTimeoutSecond) * time.Second)
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sj, err := t.FindMaster(provider.Masters...)
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if err != nil {
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log.Errorf("Failed to create a client for mesos, error: %s", err)
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return nil
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}
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tasks := provider.taskRecords(sj)
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//filter tasks
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filteredTasks := fun.Filter(func(task state.Task) bool {
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return mesosTaskFilter(task, provider.ExposedByDefault)
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}, tasks).([]state.Task)
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filteredApps := []state.Task{}
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for _, value := range filteredTasks {
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if !taskInSlice(value, filteredApps) {
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filteredApps = append(filteredApps, value)
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}
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}
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templateObjects := struct {
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Applications []state.Task
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Tasks []state.Task
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Domain string
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}{
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filteredApps,
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filteredTasks,
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provider.Domain,
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}
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configuration, err := provider.getConfiguration("templates/mesos.tmpl", mesosFuncMap, templateObjects)
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if err != nil {
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log.Error(err)
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}
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return configuration
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}
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func taskInSlice(a state.Task, list []state.Task) bool {
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for _, b := range list {
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if b.DiscoveryInfo.Name == a.DiscoveryInfo.Name {
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return true
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}
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}
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return false
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}
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// labels returns all given Status.[]Labels' values whose keys are equal
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// to the given key
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func labels(task state.Task, key string) string {
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for _, l := range task.Labels {
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if l.Key == key {
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return l.Value
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}
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}
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return ""
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}
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func mesosTaskFilter(task state.Task, exposedByDefaultFlag bool) bool {
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if len(task.DiscoveryInfo.Ports.DiscoveryPorts) == 0 {
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log.Debugf("Filtering mesos task without port %s", task.Name)
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return false
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}
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if !isMesosApplicationEnabled(task, exposedByDefaultFlag) {
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log.Debugf("Filtering disabled mesos task %s", task.DiscoveryInfo.Name)
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return false
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}
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//filter indeterminable task port
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portIndexLabel := labels(task, "traefik.portIndex")
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portValueLabel := labels(task, "traefik.port")
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if portIndexLabel != "" && portValueLabel != "" {
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log.Debugf("Filtering mesos task %s specifying both traefik.portIndex and traefik.port labels", task.Name)
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return false
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}
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if portIndexLabel == "" && portValueLabel == "" && len(task.DiscoveryInfo.Ports.DiscoveryPorts) > 1 {
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log.Debugf("Filtering mesos task %s with more than 1 port and no traefik.portIndex or traefik.port label", task.Name)
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return false
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}
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if portIndexLabel != "" {
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index, err := strconv.Atoi(labels(task, "traefik.portIndex"))
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if err != nil || index < 0 || index > len(task.DiscoveryInfo.Ports.DiscoveryPorts)-1 {
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log.Debugf("Filtering mesos task %s with unexpected value for traefik.portIndex label", task.Name)
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return false
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}
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}
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if portValueLabel != "" {
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port, err := strconv.Atoi(labels(task, "traefik.port"))
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if err != nil {
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log.Debugf("Filtering mesos task %s with unexpected value for traefik.port label", task.Name)
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return false
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}
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var foundPort bool
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for _, exposedPort := range task.DiscoveryInfo.Ports.DiscoveryPorts {
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if port == exposedPort.Number {
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foundPort = true
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break
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}
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}
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if !foundPort {
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log.Debugf("Filtering mesos task %s without a matching port for traefik.port label", task.Name)
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return false
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}
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}
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//filter healthchecks
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if task.Statuses != nil && len(task.Statuses) > 0 && task.Statuses[0].Healthy != nil && !*task.Statuses[0].Healthy {
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log.Debugf("Filtering mesos task %s with bad healthcheck", task.DiscoveryInfo.Name)
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return false
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}
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return true
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}
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func getMesos(task state.Task, apps []state.Task) (state.Task, error) {
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for _, application := range apps {
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if application.DiscoveryInfo.Name == task.DiscoveryInfo.Name {
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return application, nil
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}
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}
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return state.Task{}, errors.New("Application not found: " + task.DiscoveryInfo.Name)
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}
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func isMesosApplicationEnabled(task state.Task, exposedByDefault bool) bool {
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return exposedByDefault && labels(task, "traefik.enable") != "false" || labels(task, "traefik.enable") == "true"
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}
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func (provider *Mesos) getLabel(task state.Task, label string) (string, error) {
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for _, tmpLabel := range task.Labels {
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if tmpLabel.Key == label {
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return tmpLabel.Value, nil
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}
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}
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return "", errors.New("Label not found:" + label)
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}
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func (provider *Mesos) getPort(task state.Task, applications []state.Task) string {
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application, err := getMesos(task, applications)
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if err != nil {
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log.Errorf("Unable to get mesos application from task %s", task.DiscoveryInfo.Name)
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return ""
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}
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if portIndexLabel, err := provider.getLabel(application, "traefik.portIndex"); err == nil {
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if index, err := strconv.Atoi(portIndexLabel); err == nil {
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return strconv.Itoa(task.DiscoveryInfo.Ports.DiscoveryPorts[index].Number)
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}
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}
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if portValueLabel, err := provider.getLabel(application, "traefik.port"); err == nil {
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return portValueLabel
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}
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for _, port := range task.DiscoveryInfo.Ports.DiscoveryPorts {
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return strconv.Itoa(port.Number)
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}
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return ""
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}
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func (provider *Mesos) getWeight(task state.Task, applications []state.Task) string {
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application, errApp := getMesos(task, applications)
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if errApp != nil {
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log.Errorf("Unable to get mesos application from task %s", task.DiscoveryInfo.Name)
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return "0"
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}
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if label, err := provider.getLabel(application, "traefik.weight"); err == nil {
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return label
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}
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return "0"
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}
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func (provider *Mesos) getDomain(task state.Task) string {
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if label, err := provider.getLabel(task, "traefik.domain"); err == nil {
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return label
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}
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return provider.Domain
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}
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func (provider *Mesos) getProtocol(task state.Task, applications []state.Task) string {
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application, errApp := getMesos(task, applications)
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if errApp != nil {
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log.Errorf("Unable to get mesos application from task %s", task.DiscoveryInfo.Name)
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return "http"
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}
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if label, err := provider.getLabel(application, "traefik.protocol"); err == nil {
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return label
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}
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return "http"
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}
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func (provider *Mesos) getPassHostHeader(task state.Task) string {
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if passHostHeader, err := provider.getLabel(task, "traefik.frontend.passHostHeader"); err == nil {
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return passHostHeader
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}
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return "false"
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}
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func (provider *Mesos) getPriority(task state.Task) string {
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if priority, err := provider.getLabel(task, "traefik.frontend.priority"); err == nil {
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return priority
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}
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return "0"
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}
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func (provider *Mesos) getEntryPoints(task state.Task) []string {
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if entryPoints, err := provider.getLabel(task, "traefik.frontend.entryPoints"); err == nil {
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return strings.Split(entryPoints, ",")
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}
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return []string{}
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}
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// getFrontendRule returns the frontend rule for the specified application, using
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// it's label. It returns a default one (Host) if the label is not present.
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func (provider *Mesos) getFrontendRule(task state.Task) string {
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if label, err := provider.getLabel(task, "traefik.frontend.rule"); err == nil {
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return label
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}
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return "Host:" + strings.ToLower(strings.Replace(provider.getSubDomain(task.DiscoveryInfo.Name), "_", "-", -1)) + "." + provider.Domain
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}
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func (provider *Mesos) getBackend(task state.Task, applications []state.Task) string {
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application, errApp := getMesos(task, applications)
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if errApp != nil {
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log.Errorf("Unable to get mesos application from task %s", task.DiscoveryInfo.Name)
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return ""
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}
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return provider.getFrontendBackend(application)
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}
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func (provider *Mesos) getFrontendBackend(task state.Task) string {
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if label, err := provider.getLabel(task, "traefik.backend"); err == nil {
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return label
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}
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return "-" + cleanupSpecialChars(task.DiscoveryInfo.Name)
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}
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func (provider *Mesos) getHost(task state.Task) string {
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return task.IP(strings.Split(provider.IPSources, ",")...)
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}
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func (provider *Mesos) getID(task state.Task) string {
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return cleanupSpecialChars(task.ID)
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}
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func (provider *Mesos) getFrontEndName(task state.Task) string {
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return strings.Replace(cleanupSpecialChars(task.ID), "/", "-", -1)
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}
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func cleanupSpecialChars(s string) string {
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return strings.Replace(strings.Replace(strings.Replace(s, ".", "-", -1), ":", "-", -1), "_", "-", -1)
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}
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func detectMasters(zk string, masters []string) <-chan []string {
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changed := make(chan []string, 1)
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if zk != "" {
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log.Debugf("Starting master detector for ZK ", zk)
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if md, err := detector.New(zk); err != nil {
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log.Fatalf("failed to create master detector: %v", err)
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} else if err := md.Detect(detect.NewMasters(masters, changed)); err != nil {
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log.Fatalf("failed to initialize master detector: %v", err)
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}
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} else {
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changed <- masters
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}
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return changed
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}
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func (provider *Mesos) taskRecords(sj state.State) []state.Task {
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var p []state.Task // == nil
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for _, f := range sj.Frameworks {
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for _, task := range f.Tasks {
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for _, slave := range sj.Slaves {
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if task.SlaveID == slave.ID {
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task.SlaveIP = slave.Hostname
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}
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}
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// only do running and discoverable tasks
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if task.State == "TASK_RUNNING" {
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p = append(p, task)
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}
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}
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}
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return p
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}
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// ErrorFunction A function definition that returns an error
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// to be passed to the Ignore or Panic error handler
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type ErrorFunction func() error
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// Ignore Calls an ErrorFunction, and ignores the result.
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// This allows us to be more explicit when there is no error
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// handling to be done, for example in defers
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func Ignore(f ErrorFunction) {
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_ = f()
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}
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func (provider *Mesos) getSubDomain(name string) string {
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if provider.GroupsAsSubDomains {
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splitedName := strings.Split(strings.TrimPrefix(name, "/"), "/")
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sort.Sort(sort.Reverse(sort.StringSlice(splitedName)))
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reverseName := strings.Join(splitedName, ".")
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return reverseName
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}
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return strings.Replace(strings.TrimPrefix(name, "/"), "/", "-", -1)
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}
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