fadee5e87b
Co-authored-by: Kevin Pollet <pollet.kevin@gmail.com>
541 lines
17 KiB
Go
541 lines
17 KiB
Go
package crd
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import (
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"context"
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"errors"
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"fmt"
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"net"
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"strconv"
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"strings"
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"github.com/traefik/traefik/v2/pkg/config/dynamic"
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"github.com/traefik/traefik/v2/pkg/log"
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"github.com/traefik/traefik/v2/pkg/provider"
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"github.com/traefik/traefik/v2/pkg/provider/kubernetes/crd/traefik/v1alpha1"
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"github.com/traefik/traefik/v2/pkg/tls"
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corev1 "k8s.io/api/core/v1"
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"k8s.io/apimachinery/pkg/util/intstr"
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)
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const (
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roundRobinStrategy = "RoundRobin"
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httpsProtocol = "https"
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httpProtocol = "http"
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)
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func (p *Provider) loadIngressRouteConfiguration(ctx context.Context, client Client, tlsConfigs map[string]*tls.CertAndStores) *dynamic.HTTPConfiguration {
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conf := &dynamic.HTTPConfiguration{
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Routers: map[string]*dynamic.Router{},
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Middlewares: map[string]*dynamic.Middleware{},
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Services: map[string]*dynamic.Service{},
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ServersTransports: map[string]*dynamic.ServersTransport{},
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}
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for _, ingressRoute := range client.GetIngressRoutes() {
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ctxRt := log.With(ctx, log.Str("ingress", ingressRoute.Name), log.Str("namespace", ingressRoute.Namespace))
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logger := log.FromContext(ctxRt)
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// TODO keep the name ingressClass?
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if !shouldProcessIngress(p.IngressClass, ingressRoute.Annotations[annotationKubernetesIngressClass]) {
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continue
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}
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err := getTLSHTTP(ctx, ingressRoute, client, tlsConfigs)
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if err != nil {
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logger.Errorf("Error configuring TLS: %v", err)
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}
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ingressName := ingressRoute.Name
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if len(ingressName) == 0 {
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ingressName = ingressRoute.GenerateName
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}
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cb := configBuilder{
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client: client,
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allowCrossNamespace: p.AllowCrossNamespace,
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allowExternalNameServices: p.AllowExternalNameServices,
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allowEmptyServices: p.AllowEmptyServices,
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}
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for _, route := range ingressRoute.Spec.Routes {
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if route.Kind != "Rule" {
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logger.Errorf("Unsupported match kind: %s. Only \"Rule\" is supported for now.", route.Kind)
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continue
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}
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if len(route.Match) == 0 {
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logger.Errorf("Empty match rule")
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continue
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}
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serviceKey, err := makeServiceKey(route.Match, ingressName)
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if err != nil {
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logger.Error(err)
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continue
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}
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mds, err := p.makeMiddlewareKeys(ctx, ingressRoute.Namespace, route.Middlewares)
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if err != nil {
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logger.Errorf("Failed to create middleware keys: %v", err)
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continue
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}
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normalized := provider.Normalize(makeID(ingressRoute.Namespace, serviceKey))
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serviceName := normalized
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if len(route.Services) > 1 {
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spec := v1alpha1.TraefikServiceSpec{
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Weighted: &v1alpha1.WeightedRoundRobin{
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Services: route.Services,
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},
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}
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errBuild := cb.buildServicesLB(ctx, ingressRoute.Namespace, spec, serviceName, conf.Services)
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if errBuild != nil {
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logger.Error(errBuild)
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continue
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}
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} else if len(route.Services) == 1 {
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fullName, serversLB, err := cb.nameAndService(ctx, ingressRoute.Namespace, route.Services[0].LoadBalancerSpec)
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if err != nil {
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logger.Error(err)
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continue
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}
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if serversLB != nil {
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conf.Services[serviceName] = serversLB
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} else {
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serviceName = fullName
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}
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}
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r := &dynamic.Router{
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Middlewares: mds,
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Priority: route.Priority,
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EntryPoints: ingressRoute.Spec.EntryPoints,
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Rule: route.Match,
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Service: serviceName,
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}
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if ingressRoute.Spec.TLS != nil {
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r.TLS = &dynamic.RouterTLSConfig{
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CertResolver: ingressRoute.Spec.TLS.CertResolver,
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Domains: ingressRoute.Spec.TLS.Domains,
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}
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if ingressRoute.Spec.TLS.Options != nil && len(ingressRoute.Spec.TLS.Options.Name) > 0 {
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tlsOptionsName := ingressRoute.Spec.TLS.Options.Name
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// Is a Kubernetes CRD reference, (i.e. not a cross-provider reference)
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ns := ingressRoute.Spec.TLS.Options.Namespace
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if !strings.Contains(tlsOptionsName, providerNamespaceSeparator) {
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if len(ns) == 0 {
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ns = ingressRoute.Namespace
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}
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tlsOptionsName = makeID(ns, tlsOptionsName)
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} else if len(ns) > 0 {
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logger.
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WithField("TLSOption", ingressRoute.Spec.TLS.Options.Name).
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Warnf("Namespace %q is ignored in cross-provider context", ns)
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}
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if !isNamespaceAllowed(p.AllowCrossNamespace, ingressRoute.Namespace, ns) {
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logger.Errorf("TLSOption %s/%s is not in the IngressRoute namespace %s",
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ns, ingressRoute.Spec.TLS.Options.Name, ingressRoute.Namespace)
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continue
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}
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r.TLS.Options = tlsOptionsName
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}
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}
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conf.Routers[normalized] = r
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}
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}
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return conf
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}
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func (p *Provider) makeMiddlewareKeys(ctx context.Context, ingRouteNamespace string, middlewares []v1alpha1.MiddlewareRef) ([]string, error) {
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var mds []string
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for _, mi := range middlewares {
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name := mi.Name
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if !p.AllowCrossNamespace && strings.HasSuffix(mi.Name, providerNamespaceSeparator+providerName) {
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// Since we are not able to know if another namespace is in the name (namespace-name@kubernetescrd),
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// if the provider namespace kubernetescrd is used,
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// we don't allow this format to avoid cross namespace references.
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return nil, fmt.Errorf("invalid reference to middleware %s: with crossnamespace disallowed, the namespace field needs to be explicitly specified", mi.Name)
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}
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if strings.Contains(name, providerNamespaceSeparator) {
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if len(mi.Namespace) > 0 {
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log.FromContext(ctx).
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WithField(log.MiddlewareName, mi.Name).
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Warnf("namespace %q is ignored in cross-provider context", mi.Namespace)
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}
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mds = append(mds, name)
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continue
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}
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ns := ingRouteNamespace
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if len(mi.Namespace) > 0 {
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if !isNamespaceAllowed(p.AllowCrossNamespace, ingRouteNamespace, mi.Namespace) {
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return nil, fmt.Errorf("middleware %s/%s is not in the IngressRoute namespace %s", mi.Namespace, mi.Name, ingRouteNamespace)
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}
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ns = mi.Namespace
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}
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mds = append(mds, provider.Normalize(makeID(ns, name)))
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}
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return mds, nil
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}
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type configBuilder struct {
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client Client
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allowCrossNamespace bool
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allowExternalNameServices bool
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allowEmptyServices bool
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}
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// buildTraefikService creates the configuration for the traefik service defined in tService,
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// and adds it to the given conf map.
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func (c configBuilder) buildTraefikService(ctx context.Context, tService *v1alpha1.TraefikService, conf map[string]*dynamic.Service) error {
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id := provider.Normalize(makeID(tService.Namespace, tService.Name))
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if tService.Spec.Weighted != nil {
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return c.buildServicesLB(ctx, tService.Namespace, tService.Spec, id, conf)
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} else if tService.Spec.Mirroring != nil {
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return c.buildMirroring(ctx, tService, id, conf)
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}
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return errors.New("unspecified service type")
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}
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// buildServicesLB creates the configuration for the load-balancer of services named id, and defined in tService.
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// It adds it to the given conf map.
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func (c configBuilder) buildServicesLB(ctx context.Context, namespace string, tService v1alpha1.TraefikServiceSpec, id string, conf map[string]*dynamic.Service) error {
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var wrrServices []dynamic.WRRService
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for _, service := range tService.Weighted.Services {
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fullName, k8sService, err := c.nameAndService(ctx, namespace, service.LoadBalancerSpec)
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if err != nil {
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return err
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}
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if k8sService != nil {
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conf[fullName] = k8sService
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}
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weight := service.Weight
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if weight == nil {
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weight = func(i int) *int { return &i }(1)
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}
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wrrServices = append(wrrServices, dynamic.WRRService{
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Name: fullName,
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Weight: weight,
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})
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}
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conf[id] = &dynamic.Service{
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Weighted: &dynamic.WeightedRoundRobin{
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Services: wrrServices,
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Sticky: tService.Weighted.Sticky,
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},
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}
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return nil
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}
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// buildMirroring creates the configuration for the mirroring service named id, and defined by tService.
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// It adds it to the given conf map.
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func (c configBuilder) buildMirroring(ctx context.Context, tService *v1alpha1.TraefikService, id string, conf map[string]*dynamic.Service) error {
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fullNameMain, k8sService, err := c.nameAndService(ctx, tService.Namespace, tService.Spec.Mirroring.LoadBalancerSpec)
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if err != nil {
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return err
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}
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if k8sService != nil {
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conf[fullNameMain] = k8sService
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}
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var mirrorServices []dynamic.MirrorService
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for _, mirror := range tService.Spec.Mirroring.Mirrors {
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mirroredName, k8sService, err := c.nameAndService(ctx, tService.Namespace, mirror.LoadBalancerSpec)
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if err != nil {
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return err
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}
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if k8sService != nil {
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conf[mirroredName] = k8sService
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}
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mirrorServices = append(mirrorServices, dynamic.MirrorService{
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Name: mirroredName,
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Percent: mirror.Percent,
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})
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}
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conf[id] = &dynamic.Service{
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Mirroring: &dynamic.Mirroring{
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Service: fullNameMain,
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Mirrors: mirrorServices,
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MaxBodySize: tService.Spec.Mirroring.MaxBodySize,
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},
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}
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return nil
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}
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// buildServersLB creates the configuration for the load-balancer of servers defined by svc.
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func (c configBuilder) buildServersLB(namespace string, svc v1alpha1.LoadBalancerSpec) (*dynamic.Service, error) {
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servers, err := c.loadServers(namespace, svc)
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if err != nil {
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return nil, err
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}
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lb := &dynamic.ServersLoadBalancer{}
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lb.SetDefaults()
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lb.Servers = servers
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conf := svc
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lb.PassHostHeader = conf.PassHostHeader
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if lb.PassHostHeader == nil {
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passHostHeader := true
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lb.PassHostHeader = &passHostHeader
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}
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if conf.ResponseForwarding != nil && conf.ResponseForwarding.FlushInterval != "" {
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err := lb.ResponseForwarding.FlushInterval.Set(conf.ResponseForwarding.FlushInterval)
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if err != nil {
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return nil, fmt.Errorf("unable to parse flushInterval: %w", err)
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}
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}
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lb.Sticky = svc.Sticky
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lb.ServersTransport, err = c.makeServersTransportKey(namespace, svc.ServersTransport)
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if err != nil {
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return nil, err
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}
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return &dynamic.Service{LoadBalancer: lb}, nil
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}
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func (c *configBuilder) makeServersTransportKey(parentNamespace string, serversTransportName string) (string, error) {
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if serversTransportName == "" {
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return "", nil
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}
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if !c.allowCrossNamespace && strings.HasSuffix(serversTransportName, providerNamespaceSeparator+providerName) {
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// Since we are not able to know if another namespace is in the name (namespace-name@kubernetescrd),
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// if the provider namespace kubernetescrd is used,
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// we don't allow this format to avoid cross namespace references.
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return "", fmt.Errorf("invalid reference to serversTransport %s: namespace-name@kubernetescrd format is not allowed when crossnamespace is disallowed", serversTransportName)
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}
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if strings.Contains(serversTransportName, providerNamespaceSeparator) {
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return serversTransportName, nil
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}
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return provider.Normalize(makeID(parentNamespace, serversTransportName)), nil
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}
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func (c configBuilder) loadServers(parentNamespace string, svc v1alpha1.LoadBalancerSpec) ([]dynamic.Server, error) {
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strategy := svc.Strategy
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if strategy == "" {
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strategy = roundRobinStrategy
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}
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if strategy != roundRobinStrategy {
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return nil, fmt.Errorf("load balancing strategy %s is not supported", strategy)
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}
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namespace := namespaceOrFallback(svc, parentNamespace)
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if !isNamespaceAllowed(c.allowCrossNamespace, parentNamespace, namespace) {
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return nil, fmt.Errorf("load balancer service %s/%s is not in the parent resource namespace %s", svc.Namespace, svc.Name, parentNamespace)
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}
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// If the service uses explicitly the provider suffix
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sanitizedName := strings.TrimSuffix(svc.Name, providerNamespaceSeparator+providerName)
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service, exists, err := c.client.GetService(namespace, sanitizedName)
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if err != nil {
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return nil, err
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}
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if !exists {
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return nil, fmt.Errorf("kubernetes service not found: %s/%s", namespace, sanitizedName)
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}
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svcPort, err := getServicePort(service, svc.Port)
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if err != nil {
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return nil, err
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}
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var servers []dynamic.Server
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if service.Spec.Type == corev1.ServiceTypeExternalName {
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if !c.allowExternalNameServices {
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return nil, fmt.Errorf("externalName services not allowed: %s/%s", namespace, sanitizedName)
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}
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protocol, err := parseServiceProtocol(svc.Scheme, svcPort.Name, svcPort.Port)
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if err != nil {
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return nil, err
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}
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hostPort := net.JoinHostPort(service.Spec.ExternalName, strconv.Itoa(int(svcPort.Port)))
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return append(servers, dynamic.Server{
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URL: fmt.Sprintf("%s://%s", protocol, hostPort),
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}), nil
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}
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endpoints, endpointsExists, endpointsErr := c.client.GetEndpoints(namespace, sanitizedName)
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if endpointsErr != nil {
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return nil, endpointsErr
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}
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if !endpointsExists {
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return nil, fmt.Errorf("endpoints not found for %s/%s", namespace, sanitizedName)
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}
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if len(endpoints.Subsets) == 0 && !c.allowEmptyServices {
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return nil, fmt.Errorf("subset not found for %s/%s", namespace, sanitizedName)
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}
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var port int32
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for _, subset := range endpoints.Subsets {
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for _, p := range subset.Ports {
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if svcPort.Name == p.Name {
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port = p.Port
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break
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}
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}
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if port == 0 {
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return nil, fmt.Errorf("cannot define a port for %s/%s", namespace, sanitizedName)
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}
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protocol, err := parseServiceProtocol(svc.Scheme, svcPort.Name, svcPort.Port)
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if err != nil {
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return nil, err
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}
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for _, addr := range subset.Addresses {
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hostPort := net.JoinHostPort(addr.IP, strconv.Itoa(int(port)))
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servers = append(servers, dynamic.Server{
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URL: fmt.Sprintf("%s://%s", protocol, hostPort),
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})
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}
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}
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return servers, nil
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}
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// nameAndService returns the name that should be used for the svc service in the generated config.
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// In addition, if the service is a Kubernetes one,
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// it generates and returns the configuration part for such a service,
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// so that the caller can add it to the global config map.
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func (c configBuilder) nameAndService(ctx context.Context, parentNamespace string, service v1alpha1.LoadBalancerSpec) (string, *dynamic.Service, error) {
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svcCtx := log.With(ctx, log.Str(log.ServiceName, service.Name))
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namespace := namespaceOrFallback(service, parentNamespace)
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if !isNamespaceAllowed(c.allowCrossNamespace, parentNamespace, namespace) {
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return "", nil, fmt.Errorf("service %s/%s not in the parent resource namespace %s", service.Namespace, service.Name, parentNamespace)
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}
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|
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switch {
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case service.Kind == "" || service.Kind == "Service":
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serversLB, err := c.buildServersLB(namespace, service)
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if err != nil {
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return "", nil, err
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}
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fullName := fullServiceName(svcCtx, namespace, service, service.Port)
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|
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return fullName, serversLB, nil
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case service.Kind == "TraefikService":
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return fullServiceName(svcCtx, namespace, service, intstr.FromInt(0)), nil, nil
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default:
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return "", nil, fmt.Errorf("unsupported service kind %s", service.Kind)
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}
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}
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|
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func splitSvcNameProvider(name string) (string, string) {
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parts := strings.Split(name, providerNamespaceSeparator)
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svc := strings.Join(parts[:len(parts)-1], providerNamespaceSeparator)
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pvd := parts[len(parts)-1]
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return svc, pvd
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}
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func fullServiceName(ctx context.Context, namespace string, service v1alpha1.LoadBalancerSpec, port intstr.IntOrString) string {
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if (port.Type == intstr.Int && port.IntVal != 0) || (port.Type == intstr.String && port.StrVal != "") {
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return provider.Normalize(fmt.Sprintf("%s-%s-%s", namespace, service.Name, &port))
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}
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|
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if !strings.Contains(service.Name, providerNamespaceSeparator) {
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return provider.Normalize(fmt.Sprintf("%s-%s", namespace, service.Name))
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}
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name, pName := splitSvcNameProvider(service.Name)
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if pName == providerName {
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return provider.Normalize(fmt.Sprintf("%s-%s", namespace, name))
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}
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|
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if service.Namespace != "" {
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log.FromContext(ctx).Warnf("namespace %q is ignored in cross-provider context", service.Namespace)
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}
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|
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return provider.Normalize(name) + providerNamespaceSeparator + pName
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}
|
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|
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func namespaceOrFallback(lb v1alpha1.LoadBalancerSpec, fallback string) string {
|
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if lb.Namespace != "" {
|
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return lb.Namespace
|
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}
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return fallback
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}
|
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|
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// getTLSHTTP mutates tlsConfigs.
|
|
func getTLSHTTP(ctx context.Context, ingressRoute *v1alpha1.IngressRoute, k8sClient Client, tlsConfigs map[string]*tls.CertAndStores) error {
|
|
if ingressRoute.Spec.TLS == nil {
|
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return nil
|
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}
|
|
if ingressRoute.Spec.TLS.SecretName == "" {
|
|
log.FromContext(ctx).Debugf("No secret name provided")
|
|
return nil
|
|
}
|
|
|
|
configKey := ingressRoute.Namespace + "/" + ingressRoute.Spec.TLS.SecretName
|
|
if _, tlsExists := tlsConfigs[configKey]; !tlsExists {
|
|
tlsConf, err := getTLS(k8sClient, ingressRoute.Spec.TLS.SecretName, ingressRoute.Namespace)
|
|
if err != nil {
|
|
return err
|
|
}
|
|
|
|
tlsConfigs[configKey] = tlsConf
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
// parseServiceProtocol parses the scheme, port name, and number to determine the correct protocol.
|
|
// an error is returned if the scheme provided is invalid.
|
|
func parseServiceProtocol(providedScheme, portName string, portNumber int32) (string, error) {
|
|
switch providedScheme {
|
|
case httpProtocol, httpsProtocol, "h2c":
|
|
return providedScheme, nil
|
|
case "":
|
|
if portNumber == 443 || strings.HasPrefix(portName, httpsProtocol) {
|
|
return httpsProtocol, nil
|
|
}
|
|
return httpProtocol, nil
|
|
}
|
|
|
|
return "", fmt.Errorf("invalid scheme %q specified", providedScheme)
|
|
}
|