388 lines
12 KiB
Go
388 lines
12 KiB
Go
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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"strconv"
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"strings"
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"text/template"
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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/provider/label"
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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 defaultService = ""
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type appData struct {
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marathon.Application
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SegmentLabels map[string]string
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SegmentName string
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LinkedApps []*appData
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}
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func (p *Provider) buildConfigurationV2(applications *marathon.Applications) *types.Configuration {
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var MarathonFuncMap = template.FuncMap{
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"getDomain": label.GetFuncString(label.TraefikDomain, p.Domain), // see https://github.com/containous/traefik/pull/1693
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"getSubDomain": p.getSubDomain, // see https://github.com/containous/traefik/pull/1693
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"getBackendName": p.getBackendName,
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// Backend functions
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"getPort": getPort,
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"getCircuitBreaker": label.GetCircuitBreaker,
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"getLoadBalancer": label.GetLoadBalancer,
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"getMaxConn": label.GetMaxConn,
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"getHealthCheck": label.GetHealthCheck,
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"getBuffering": label.GetBuffering,
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"getServers": p.getServers,
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// Frontend functions
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"getSegmentNameSuffix": getSegmentNameSuffix,
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"getFrontendRule": p.getFrontendRule,
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"getFrontendName": p.getFrontendName,
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"getPassHostHeader": label.GetFuncBool(label.TraefikFrontendPassHostHeader, label.DefaultPassHostHeader),
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"getPassTLSCert": label.GetFuncBool(label.TraefikFrontendPassTLSCert, label.DefaultPassTLSCert),
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"getPassTLSClientCert": label.GetTLSClientCert,
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"getPriority": label.GetFuncInt(label.TraefikFrontendPriority, label.DefaultFrontendPriority),
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"getEntryPoints": label.GetFuncSliceString(label.TraefikFrontendEntryPoints),
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"getBasicAuth": label.GetFuncSliceString(label.TraefikFrontendAuthBasic), // Deprecated
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"getAuth": label.GetAuth,
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"getRedirect": label.GetRedirect,
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"getErrorPages": label.GetErrorPages,
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"getRateLimit": label.GetRateLimit,
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"getHeaders": label.GetHeaders,
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"getWhiteList": label.GetWhiteList,
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}
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apps := make(map[string]*appData)
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for _, app := range applications.Apps {
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if p.applicationFilter(app) {
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// Tasks
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var filteredTasks []*marathon.Task
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for _, task := range app.Tasks {
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if p.taskFilter(*task, app) {
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filteredTasks = append(filteredTasks, task)
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logIllegalServices(*task, app)
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}
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}
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app.Tasks = filteredTasks
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// segments
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segmentProperties := label.ExtractTraefikLabels(stringValueMap(app.Labels))
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for segmentName, labels := range segmentProperties {
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data := &appData{
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Application: app,
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SegmentLabels: labels,
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SegmentName: segmentName,
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}
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backendName := p.getBackendName(*data)
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if baseApp, ok := apps[backendName]; ok {
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baseApp.LinkedApps = append(baseApp.LinkedApps, data)
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} else {
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apps[backendName] = data
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}
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}
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}
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}
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templateObjects := struct {
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Applications map[string]*appData
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Domain string
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}{
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Applications: apps,
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Domain: 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: %v", err)
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}
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return configuration
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}
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func (p *Provider) applicationFilter(app marathon.Application) bool {
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// Filter disabled application.
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if !label.IsEnabled(stringValueMap(app.Labels), p.ExposedByDefault) {
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log.Debugf("Filtering disabled Marathon application %s", app.ID)
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return false
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}
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// Filter by constraints.
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constraintTags := label.GetSliceStringValue(stringValueMap(app.Labels), label.TraefikTags)
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if p.MarathonLBCompatibility {
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if haGroup := label.GetStringValue(stringValueMap(app.Labels), labelLbCompatibilityGroup, ""); len(haGroup) > 0 {
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constraintTags = append(constraintTags, haGroup)
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}
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}
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if p.FilterMarathonConstraints && app.Constraints != nil {
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for _, constraintParts := range *app.Constraints {
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constraintTags = append(constraintTags, strings.Join(constraintParts, ":"))
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}
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}
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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 %s pruned by %q 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
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}
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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
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}
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if ready := p.readyChecker.Do(task, application); !ready {
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log.Infof("Filtering unready task %s from application %s", task.ID, application.ID)
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return false
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}
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return true
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}
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// logIllegalServices logs illegal service configurations.
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// While we cannot filter on the service level, they will eventually get
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// rejected once the server configuration is rendered.
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func logIllegalServices(task marathon.Task, app marathon.Application) {
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segmentProperties := label.ExtractTraefikLabels(stringValueMap(app.Labels))
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for segmentName, labels := range segmentProperties {
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// Check for illegal/missing ports.
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if _, err := processPorts(app, task, labels); err != nil {
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log.Warnf("%s has an illegal configuration: no proper port available", identifier(app, task, segmentName))
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continue
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}
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// Check for illegal port label combinations.
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hasPortLabel := label.Has(labels, label.TraefikPort)
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hasPortIndexLabel := label.Has(labels, label.TraefikPortIndex)
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if hasPortLabel && hasPortIndexLabel {
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log.Warnf("%s has both port and port index specified; port will take precedence", identifier(app, task, segmentName))
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}
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}
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}
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func getSegmentNameSuffix(serviceName string) string {
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if len(serviceName) > 0 {
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return "-service-" + provider.Normalize(serviceName)
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}
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return ""
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}
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func (p *Provider) getSubDomain(name string) string {
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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, ".")
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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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func (p *Provider) getBackendName(app appData) string {
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value := label.GetStringValue(app.SegmentLabels, label.TraefikBackend, "")
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if len(value) > 0 {
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return provider.Normalize("backend" + value)
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}
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return provider.Normalize("backend" + app.ID + getSegmentNameSuffix(app.SegmentName))
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}
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func (p *Provider) getFrontendName(app appData) string {
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return provider.Normalize("frontend" + app.ID + getSegmentNameSuffix(app.SegmentName))
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}
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// getFrontendRule returns the frontend rule for the specified application, using
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// its label. If service is provided, it will look for serviceName label before generic one.
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// It returns a default one (Host) if the label is not present.
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func (p *Provider) getFrontendRule(app appData) string {
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if value := label.GetStringValue(app.SegmentLabels, label.TraefikFrontendRule, ""); len(value) > 0 {
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return value
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}
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if p.MarathonLBCompatibility {
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if value := label.GetStringValue(stringValueMap(app.Labels), labelLbCompatibility, ""); len(value) > 0 {
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return "Host:" + value
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}
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}
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domain := label.GetStringValue(app.SegmentLabels, label.TraefikDomain, p.Domain)
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if len(app.SegmentName) > 0 {
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return "Host:" + strings.ToLower(provider.Normalize(app.SegmentName)) + "." + p.getSubDomain(app.ID) + "." + domain
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}
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return "Host:" + p.getSubDomain(app.ID) + "." + domain
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}
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func getPort(task marathon.Task, app appData) string {
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port, err := processPorts(app.Application, task, app.SegmentLabels)
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if err != nil {
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log.Errorf("Unable to process ports for %s: %s", identifier(app.Application, task, app.SegmentName), err)
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return ""
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}
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return strconv.Itoa(port)
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}
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// processPorts returns the configured port.
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// An explicitly specified port is preferred. If none is specified, it selects
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// one of the available port. The first such found port is returned unless an
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// optional index is provided.
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func processPorts(app marathon.Application, task marathon.Task, labels map[string]string) (int, error) {
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if label.Has(labels, label.TraefikPort) {
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port := label.GetIntValue(labels, label.TraefikPort, 0)
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if port <= 0 {
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return 0, fmt.Errorf("explicitly specified port %d must be larger than zero", port)
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} else if port > 0 {
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return port, nil
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}
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}
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ports := retrieveAvailablePorts(app, task)
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if len(ports) == 0 {
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return 0, errors.New("no port found")
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}
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portIndex := label.GetIntValue(labels, label.TraefikPortIndex, 0)
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if portIndex < 0 || portIndex > len(ports)-1 {
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return 0, fmt.Errorf("index %d must be within range (0, %d)", portIndex, len(ports)-1)
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}
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return ports[portIndex], nil
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}
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func retrieveAvailablePorts(app marathon.Application, task marathon.Task) []int {
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// Using default port configuration
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if len(task.Ports) > 0 {
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return task.Ports
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}
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// Using port definition if available
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if app.PortDefinitions != nil && len(*app.PortDefinitions) > 0 {
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var ports []int
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for _, def := range *app.PortDefinitions {
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if def.Port != nil {
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ports = append(ports, *def.Port)
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}
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}
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return ports
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}
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// If using IP-per-task using this port definition
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if app.IPAddressPerTask != nil && app.IPAddressPerTask.Discovery != nil && len(*(app.IPAddressPerTask.Discovery.Ports)) > 0 {
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var ports []int
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for _, def := range *(app.IPAddressPerTask.Discovery.Ports) {
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ports = append(ports, def.Number)
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}
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return ports
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}
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return []int{}
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}
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func identifier(app marathon.Application, task marathon.Task, segmentName string) string {
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id := fmt.Sprintf("Marathon task %s from application %s", task.ID, app.ID)
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if segmentName != "" {
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id += fmt.Sprintf(" (segment: %s)", segmentName)
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}
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return id
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}
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func (p *Provider) getServers(app appData) map[string]types.Server {
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var servers map[string]types.Server
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for _, task := range app.Tasks {
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name, server, err := p.getServer(app, *task)
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if err != nil {
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log.Error(err)
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continue
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}
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if servers == nil {
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servers = make(map[string]types.Server)
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}
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servers[name] = *server
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}
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for _, linkedApp := range app.LinkedApps {
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for _, task := range linkedApp.Tasks {
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name, server, err := p.getServer(*linkedApp, *task)
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if err != nil {
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log.Error(err)
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continue
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}
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if servers == nil {
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servers = make(map[string]types.Server)
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}
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servers[name] = *server
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}
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}
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return servers
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}
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func (p *Provider) getServer(app appData, task marathon.Task) (string, *types.Server, error) {
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host, err := p.getServerHost(task, app)
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if len(host) == 0 {
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return "", nil, err
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}
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port := getPort(task, app)
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protocol := label.GetStringValue(app.SegmentLabels, label.TraefikProtocol, label.DefaultProtocol)
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serverName := provider.Normalize("server-" + app.ID + "-" + task.ID + getSegmentNameSuffix(app.SegmentName))
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return serverName, &types.Server{
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URL: fmt.Sprintf("%s://%s", protocol, net.JoinHostPort(host, port)),
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Weight: label.GetIntValue(app.SegmentLabels, label.TraefikWeight, label.DefaultWeight),
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}, nil
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}
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func (p *Provider) getServerHost(task marathon.Task, app appData) (string, error) {
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networks := app.Networks
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var hostFlag bool
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if networks == nil {
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hostFlag = app.IPAddressPerTask == nil
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} else {
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hostFlag = (*networks)[0].Mode != marathon.ContainerNetworkMode
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}
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if hostFlag || p.ForceTaskHostname {
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if len(task.Host) == 0 {
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return "", fmt.Errorf("host is undefined for task %q app %q", task.ID, app.ID)
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}
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return task.Host, nil
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}
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numTaskIPAddresses := len(task.IPAddresses)
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switch numTaskIPAddresses {
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case 0:
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return "", fmt.Errorf("missing IP address for Marathon application %s on task %s", app.ID, task.ID)
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case 1:
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return task.IPAddresses[0].IPAddress, nil
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default:
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ipAddressIdx := label.GetIntValue(stringValueMap(app.Labels), labelIPAddressIdx, math.MinInt32)
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if ipAddressIdx == math.MinInt32 {
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return "", fmt.Errorf("found %d task IP addresses but missing IP address index for Marathon application %s on task %s",
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numTaskIPAddresses, app.ID, task.ID)
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}
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if ipAddressIdx < 0 || ipAddressIdx > numTaskIPAddresses {
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return "", fmt.Errorf("cannot use IP address index to select from %d task IP addresses for Marathon application %s on task %s",
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numTaskIPAddresses, app.ID, task.ID)
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}
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return task.IPAddresses[ipAddressIdx].IPAddress, nil
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}
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}
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