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package marathon
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import (
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"errors"
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"fmt"
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"math"
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"net"
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"net/http"
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"net/url"
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"strconv"
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"strings"
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"text/template"
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"time"
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"github.com/BurntSushi/ty/fun"
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"github.com/Sirupsen/logrus"
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"github.com/cenk/backoff"
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"github.com/containous/flaeg"
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"github.com/containous/traefik/job"
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"github.com/containous/traefik/log"
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"github.com/containous/traefik/provider"
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"github.com/containous/traefik/safe"
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"github.com/containous/traefik/types"
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"github.com/gambol99/go-marathon"
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)
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const (
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traceMaxScanTokenSize = 1024 * 1024
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)
// TaskState denotes the Mesos state a task can have.
type TaskState string
const (
taskStateRunning TaskState = "TASK_RUNNING"
taskStateStaging TaskState = "TASK_STAGING"
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)
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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" `
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ForceTaskHostname bool ` description:"Force to use the task's hostname." `
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Basic * Basic ` description:"Enable basic authentication" `
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marathonClient marathon . Marathon
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}
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// Basic holds basic authentication specific configurations
type Basic struct {
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HTTPBasicAuthUser string ` description:"Basic authentication User" `
HTTPBasicPassword string ` description:"Basic authentication Password" `
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}
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type lightMarathonClient interface {
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Applications ( url . Values ) ( * marathon . Applications , error )
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}
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// Provide allows the marathon provider to provide configurations to traefik
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// using the given configuration channel.
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func ( p * Provider ) Provide ( configurationChan chan <- types . ConfigMessage , pool * safe . Pool , constraints types . Constraints ) error {
p . Constraints = append ( p . Constraints , constraints ... )
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operation := func ( ) error {
config := marathon . NewDefaultConfig ( )
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config . URL = p . Endpoint
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config . EventsTransport = marathon . EventsTransportSSE
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if p . Trace {
config . LogOutput = log . CustomWriterLevel ( logrus . DebugLevel , traceMaxScanTokenSize )
}
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if p . Basic != nil {
config . HTTPBasicAuthUser = p . Basic . HTTPBasicAuthUser
config . HTTPBasicPassword = p . Basic . HTTPBasicPassword
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}
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if len ( p . DCOSToken ) > 0 {
config . DCOSToken = p . DCOSToken
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}
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TLSConfig , err := p . TLS . CreateTLSConfig ( )
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if err != nil {
return err
}
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config . HTTPClient = & http . Client {
Transport : & http . Transport {
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DialContext : ( & net . Dialer {
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KeepAlive : time . Duration ( p . KeepAlive ) ,
Timeout : time . Duration ( p . DialerTimeout ) ,
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} ) . DialContext ,
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TLSClientConfig : TLSConfig ,
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} ,
}
client , err := marathon . NewClient ( config )
if err != nil {
log . Errorf ( "Failed to create a client for marathon, error: %s" , err )
return err
}
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p . marathonClient = client
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if p . Watch {
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update , err := client . AddEventsListener ( marathon . EventIDApplications )
if err != nil {
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log . Errorf ( "Failed to register for events, %s" , err )
return err
}
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pool . Go ( func ( stop chan bool ) {
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defer close ( update )
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for {
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select {
case <- stop :
return
case event := <- update :
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log . Debug ( "Provider event received" , event )
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configuration := p . loadMarathonConfig ( )
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if configuration != nil {
configurationChan <- types . ConfigMessage {
ProviderName : "marathon" ,
Configuration : configuration ,
}
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}
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}
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}
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} )
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}
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configuration := p . loadMarathonConfig ( )
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configurationChan <- types . ConfigMessage {
ProviderName : "marathon" ,
Configuration : configuration ,
}
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return nil
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}
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notify := func ( err error , time time . Duration ) {
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log . Errorf ( "Provider connection error %+v, retrying in %s" , err , time )
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}
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err := backoff . RetryNotify ( safe . OperationWithRecover ( operation ) , job . NewBackOff ( backoff . NewExponentialBackOff ( ) ) , notify )
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if err != nil {
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log . Errorf ( "Cannot connect to Provider server %+v" , err )
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}
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return nil
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}
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func ( p * Provider ) loadMarathonConfig ( ) * types . Configuration {
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var MarathonFuncMap = template . FuncMap {
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"getBackend" : p . getBackend ,
"getBackendServer" : p . getBackendServer ,
"getPort" : p . getPort ,
"getWeight" : p . getWeight ,
"getDomain" : p . getDomain ,
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"getSubDomain" : p . getSubDomain ,
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"getProtocol" : p . getProtocol ,
"getPassHostHeader" : p . getPassHostHeader ,
"getPriority" : p . getPriority ,
"getEntryPoints" : p . getEntryPoints ,
"getFrontendRule" : p . getFrontendRule ,
"hasCircuitBreakerLabels" : p . hasCircuitBreakerLabels ,
"hasLoadBalancerLabels" : p . hasLoadBalancerLabels ,
"hasMaxConnLabels" : p . hasMaxConnLabels ,
"getMaxConnExtractorFunc" : p . getMaxConnExtractorFunc ,
"getMaxConnAmount" : p . getMaxConnAmount ,
"getLoadBalancerMethod" : p . getLoadBalancerMethod ,
"getCircuitBreakerExpression" : p . getCircuitBreakerExpression ,
"getSticky" : p . getSticky ,
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"hasHealthCheckLabels" : p . hasHealthCheckLabels ,
"getHealthCheckPath" : p . getHealthCheckPath ,
"getHealthCheckInterval" : p . getHealthCheckInterval ,
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"getBasicAuth" : p . getBasicAuth ,
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}
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v := url . Values { }
v . Add ( "embed" , "apps.tasks" )
applications , err := p . marathonClient . Applications ( v )
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if err != nil {
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log . Errorf ( "Failed to retrieve Marathon applications: %s" , err )
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return nil
}
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filteredApps := fun . Filter ( p . applicationFilter , applications . Apps ) . ( [ ] marathon . Application )
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for i , app := range filteredApps {
filteredApps [ i ] . Tasks = fun . Filter ( func ( task * marathon . Task ) bool {
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return p . taskFilter ( * task , app )
} , app . Tasks ) . ( [ ] * marathon . Task )
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}
templateObjects := struct {
Applications [ ] marathon . Application
Domain string
} {
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filteredApps ,
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p . Domain ,
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}
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configuration , err := p . GetConfiguration ( "templates/marathon.tmpl" , MarathonFuncMap , templateObjects )
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if err != nil {
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log . Errorf ( "failed to render Marathon configuration template: %s" , err )
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}
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return configuration
}
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func ( p * Provider ) applicationFilter ( app marathon . Application ) bool {
// Filter disabled application.
if ! isApplicationEnabled ( app , p . ExposedByDefault ) {
log . Debugf ( "Filtering disabled Marathon application %s" , app . ID )
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return false
}
// Filter by constraints.
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label , _ := p . getLabel ( app , types . LabelTags )
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constraintTags := strings . Split ( label , "," )
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if p . MarathonLBCompatibility {
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if label , ok := p . getLabel ( app , "HAPROXY_GROUP" ) ; ok {
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constraintTags = append ( constraintTags , label )
}
}
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if ok , failingConstraint := p . MatchConstraints ( constraintTags ) ; ! ok {
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if failingConstraint != nil {
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log . Debugf ( "Filtering Marathon application %v pruned by '%v' constraint" , app . ID , failingConstraint . String ( ) )
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}
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return false
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}
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return true
}
func ( p * Provider ) taskFilter ( task marathon . Task , application marathon . Application ) bool {
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if task . State != string ( taskStateRunning ) {
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return false
}
if _ , err := processPorts ( application , task ) ; err != nil {
log . Errorf ( "Filtering Marathon task %s from application %s without port: %s" , task . ID , application . ID , err )
return false
}
// Filter illegal port label specification.
_ , hasPortIndexLabel := p . getLabel ( application , types . LabelPortIndex )
_ , hasPortLabel := p . getLabel ( application , types . LabelPort )
if hasPortIndexLabel && hasPortLabel {
log . Debugf ( "Filtering Marathon task %s from application %s specifying both traefik.portIndex and traefik.port labels" , task . ID , application . ID )
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return false
}
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// Filter task with existing, bad health check results.
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if application . HasHealthChecks ( ) {
if task . HasHealthCheckResults ( ) {
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for _ , healthcheck := range task . HealthCheckResults {
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if ! healthcheck . Alive {
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log . Debugf ( "Filtering Marathon task %s from application %s with bad health check" , task . ID , application . ID )
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return false
}
}
}
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}
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return true
}
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func isApplicationEnabled ( application marathon . Application , exposedByDefault bool ) bool {
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return exposedByDefault && ( * application . Labels ) [ types . LabelEnable ] != "false" || ( * application . Labels ) [ types . LabelEnable ] == "true"
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}
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func ( p * Provider ) getLabel ( application marathon . Application , label string ) ( string , bool ) {
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for key , value := range * application . Labels {
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if key == label {
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return value , true
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}
}
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return "" , false
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}
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func ( p * Provider ) getPort ( task marathon . Task , application marathon . Application ) string {
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port , err := processPorts ( application , task )
if err != nil {
log . Errorf ( "Unable to process ports for Marathon application %s and task %s: %s" , application . ID , task . ID , err )
return ""
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}
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return strconv . Itoa ( port )
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}
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func ( p * Provider ) getWeight ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelWeight ) ; ok {
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return label
}
return "0"
}
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func ( p * Provider ) getDomain ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelDomain ) ; ok {
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return label
}
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return p . Domain
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}
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func ( p * Provider ) getProtocol ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelProtocol ) ; ok {
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return label
}
return "http"
}
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func ( p * Provider ) getSticky ( application marathon . Application ) string {
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if sticky , ok := p . getLabel ( application , types . LabelBackendLoadbalancerSticky ) ; ok {
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return sticky
}
return "false"
}
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func ( p * Provider ) getPassHostHeader ( application marathon . Application ) string {
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if passHostHeader , ok := p . getLabel ( application , types . LabelFrontendPassHostHeader ) ; ok {
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return passHostHeader
}
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return "true"
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}
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func ( p * Provider ) getPriority ( application marathon . Application ) string {
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if priority , ok := p . getLabel ( application , types . LabelFrontendPriority ) ; ok {
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return priority
}
return "0"
}
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func ( p * Provider ) getEntryPoints ( application marathon . Application ) [ ] string {
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if entryPoints , ok := p . getLabel ( application , types . LabelFrontendEntryPoints ) ; ok {
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return strings . Split ( entryPoints , "," )
}
return [ ] string { }
}
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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 ( p * Provider ) getFrontendRule ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelFrontendRule ) ; ok {
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return label
}
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if p . MarathonLBCompatibility {
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if label , ok := p . getLabel ( application , "HAPROXY_0_VHOST" ) ; ok {
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return "Host:" + label
}
}
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return "Host:" + p . getSubDomain ( application . ID ) + "." + p . Domain
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}
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func ( p * Provider ) getBackend ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelBackend ) ; ok {
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return label
}
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return provider . Replace ( "/" , "-" , application . ID )
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}
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func ( p * Provider ) getSubDomain ( name string ) string {
if p . GroupsAsSubDomains {
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splitedName := strings . Split ( strings . TrimPrefix ( name , "/" ) , "/" )
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provider . ReverseStringSlice ( & splitedName )
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reverseName := strings . Join ( splitedName , "." )
return reverseName
}
return strings . Replace ( strings . TrimPrefix ( name , "/" ) , "/" , "-" , - 1 )
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}
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func ( p * Provider ) hasCircuitBreakerLabels ( application marathon . Application ) bool {
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_ , ok := p . getLabel ( application , types . LabelBackendCircuitbreakerExpression )
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return ok
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}
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func ( p * Provider ) hasLoadBalancerLabels ( application marathon . Application ) bool {
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_ , errMethod := p . getLabel ( application , types . LabelBackendLoadbalancerMethod )
_ , errSticky := p . getLabel ( application , types . LabelBackendLoadbalancerSticky )
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return errMethod || errSticky
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}
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func ( p * Provider ) hasMaxConnLabels ( application marathon . Application ) bool {
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if _ , ok := p . getLabel ( application , types . LabelBackendMaxconnAmount ) ; ! ok {
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return false
}
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_ , ok := p . getLabel ( application , types . LabelBackendMaxconnExtractorfunc )
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return ok
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}
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func ( p * Provider ) getMaxConnAmount ( application marathon . Application ) int64 {
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if label , ok := p . getLabel ( application , types . LabelBackendMaxconnAmount ) ; ok {
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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
}
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func ( p * Provider ) getMaxConnExtractorFunc ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelBackendMaxconnExtractorfunc ) ; ok {
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return label
}
return "request.host"
}
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func ( p * Provider ) getLoadBalancerMethod ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelBackendLoadbalancerMethod ) ; ok {
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return label
}
return "wrr"
}
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func ( p * Provider ) getCircuitBreakerExpression ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelBackendCircuitbreakerExpression ) ; ok {
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return label
}
return "NetworkErrorRatio() > 1"
}
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func ( p * Provider ) hasHealthCheckLabels ( application marathon . Application ) bool {
return p . getHealthCheckPath ( application ) != ""
}
func ( p * Provider ) getHealthCheckPath ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelBackendHealthcheckPath ) ; ok {
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return label
}
return ""
}
func ( p * Provider ) getHealthCheckInterval ( application marathon . Application ) string {
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if label , ok := p . getLabel ( application , types . LabelBackendHealthcheckInterval ) ; ok {
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return label
}
return ""
}
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func ( p * Provider ) getBasicAuth ( application marathon . Application ) [ ] string {
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if basicAuth , ok := p . getLabel ( application , types . LabelFrontendAuthBasic ) ; ok {
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return strings . Split ( basicAuth , "," )
}
return [ ] string { }
}
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func processPorts ( application marathon . Application , task marathon . Task ) ( int , error ) {
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if portLabel , ok := ( * application . Labels ) [ types . LabelPort ] ; ok {
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port , err := strconv . Atoi ( portLabel )
switch {
case err != nil :
return 0 , fmt . Errorf ( "failed to parse port label: %s" , err )
case port <= 0 :
return 0 , fmt . Errorf ( "explicitly specified port %d must be larger than zero" , port )
}
return port , nil
}
ports := retrieveAvailablePorts ( application , task )
if len ( ports ) == 0 {
return 0 , errors . New ( "no port found" )
}
portIndex := 0
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portIndexLabel , ok := ( * application . Labels ) [ types . LabelPortIndex ]
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if ok {
var err error
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portIndex , err = parseIndex ( portIndexLabel , len ( ports ) )
if err != nil {
return 0 , fmt . Errorf ( "cannot use port index to select from %d ports: %s" , len ( ports ) , err )
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}
}
return ports [ portIndex ] , nil
}
func retrieveAvailablePorts ( application marathon . Application , task marathon . Task ) [ ] int {
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// 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 {
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var ports [ ] int
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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 {
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var ports [ ] int
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for _ , def := range * ( ( * application . IPAddressPerTask ) . Discovery ) . Ports {
ports = append ( ports , def . Number )
}
return ports
}
return [ ] int { }
}
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func ( p * Provider ) getBackendServer ( task marathon . Task , application marathon . Application ) string {
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numTaskIPAddresses := len ( task . IPAddresses )
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switch {
case application . IPAddressPerTask == nil || p . ForceTaskHostname :
return task . Host
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case numTaskIPAddresses == 0 :
log . Errorf ( "Missing IP address for Marathon application %s on task %s" , application . ID , task . ID )
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return ""
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case numTaskIPAddresses == 1 :
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return task . IPAddresses [ 0 ] . IPAddress
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default :
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ipAddressIdxStr , ok := p . getLabel ( application , "traefik.ipAddressIdx" )
if ! ok {
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log . Errorf ( "Found %d task IP addresses but missing IP address index for Marathon application %s on task %s" , numTaskIPAddresses , application . ID , task . ID )
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return ""
}
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ipAddressIdx , err := parseIndex ( ipAddressIdxStr , numTaskIPAddresses )
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if err != nil {
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log . Errorf ( "Cannot use IP address index to select from %d task IP addresses for Marathon application %s on task %s: %s" , numTaskIPAddresses , application . ID , task . ID , err )
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return ""
}
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return task . IPAddresses [ ipAddressIdx ] . IPAddress
}
}
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func parseIndex ( index string , length int ) ( int , error ) {
parsed , err := strconv . Atoi ( index )
switch {
case err != nil :
return 0 , fmt . Errorf ( "failed to parse index '%s': %s" , index , err )
case parsed < 0 , parsed > length - 1 :
return 0 , fmt . Errorf ( "index %d must be within range (0, %d)" , parsed , length - 1 )
}
return parsed , nil
}