mirror of https://github.com/k3s-io/k3s
480 lines
14 KiB
Go
480 lines
14 KiB
Go
/*
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Copyright 2014 The Kubernetes Authors All rights reserved.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package pod
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import (
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"fmt"
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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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"time"
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"k8s.io/kubernetes/pkg/api"
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"k8s.io/kubernetes/pkg/api/errors"
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"k8s.io/kubernetes/pkg/api/validation"
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"k8s.io/kubernetes/pkg/fields"
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"k8s.io/kubernetes/pkg/kubelet/client"
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"k8s.io/kubernetes/pkg/labels"
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"k8s.io/kubernetes/pkg/registry/generic"
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"k8s.io/kubernetes/pkg/runtime"
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utilnet "k8s.io/kubernetes/pkg/util/net"
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"k8s.io/kubernetes/pkg/util/validation/field"
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)
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// podStrategy implements behavior for Pods
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type podStrategy struct {
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runtime.ObjectTyper
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api.NameGenerator
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}
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// Strategy is the default logic that applies when creating and updating Pod
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// objects via the REST API.
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var Strategy = podStrategy{api.Scheme, api.SimpleNameGenerator}
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// NamespaceScoped is true for pods.
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func (podStrategy) NamespaceScoped() bool {
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return true
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}
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// PrepareForCreate clears fields that are not allowed to be set by end users on creation.
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func (podStrategy) PrepareForCreate(obj runtime.Object) {
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pod := obj.(*api.Pod)
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pod.Status = api.PodStatus{
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Phase: api.PodPending,
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}
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}
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// PrepareForUpdate clears fields that are not allowed to be set by end users on update.
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func (podStrategy) PrepareForUpdate(obj, old runtime.Object) {
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newPod := obj.(*api.Pod)
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oldPod := old.(*api.Pod)
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newPod.Status = oldPod.Status
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}
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// Validate validates a new pod.
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func (podStrategy) Validate(ctx api.Context, obj runtime.Object) field.ErrorList {
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pod := obj.(*api.Pod)
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return validation.ValidatePod(pod)
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}
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// Canonicalize normalizes the object after validation.
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func (podStrategy) Canonicalize(obj runtime.Object) {
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}
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// AllowCreateOnUpdate is false for pods.
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func (podStrategy) AllowCreateOnUpdate() bool {
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return false
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}
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// ValidateUpdate is the default update validation for an end user.
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func (podStrategy) ValidateUpdate(ctx api.Context, obj, old runtime.Object) field.ErrorList {
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errorList := validation.ValidatePod(obj.(*api.Pod))
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return append(errorList, validation.ValidatePodUpdate(obj.(*api.Pod), old.(*api.Pod))...)
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}
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// AllowUnconditionalUpdate allows pods to be overwritten
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func (podStrategy) AllowUnconditionalUpdate() bool {
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return true
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}
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// CheckGracefulDelete allows a pod to be gracefully deleted. It updates the DeleteOptions to
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// reflect the desired grace value.
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func (podStrategy) CheckGracefulDelete(obj runtime.Object, options *api.DeleteOptions) bool {
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if options == nil {
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return false
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}
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pod := obj.(*api.Pod)
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period := int64(0)
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// user has specified a value
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if options.GracePeriodSeconds != nil {
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period = *options.GracePeriodSeconds
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} else {
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// use the default value if set, or deletes the pod immediately (0)
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if pod.Spec.TerminationGracePeriodSeconds != nil {
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period = *pod.Spec.TerminationGracePeriodSeconds
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}
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}
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// if the pod is not scheduled, delete immediately
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if len(pod.Spec.NodeName) == 0 {
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period = 0
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}
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// if the pod is already terminated, delete immediately
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if pod.Status.Phase == api.PodFailed || pod.Status.Phase == api.PodSucceeded {
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period = 0
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}
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// ensure the options and the pod are in sync
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options.GracePeriodSeconds = &period
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return true
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}
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type podStrategyWithoutGraceful struct {
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podStrategy
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}
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// CheckGracefulDelete prohibits graceful deletion.
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func (podStrategyWithoutGraceful) CheckGracefulDelete(obj runtime.Object, options *api.DeleteOptions) bool {
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return false
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}
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// StrategyWithoutGraceful implements the legacy instant delele behavior.
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var StrategyWithoutGraceful = podStrategyWithoutGraceful{Strategy}
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type podStatusStrategy struct {
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podStrategy
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}
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var StatusStrategy = podStatusStrategy{Strategy}
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func (podStatusStrategy) PrepareForUpdate(obj, old runtime.Object) {
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newPod := obj.(*api.Pod)
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oldPod := old.(*api.Pod)
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newPod.Spec = oldPod.Spec
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newPod.DeletionTimestamp = nil
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}
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func (podStatusStrategy) ValidateUpdate(ctx api.Context, obj, old runtime.Object) field.ErrorList {
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// TODO: merge valid fields after update
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return validation.ValidatePodStatusUpdate(obj.(*api.Pod), old.(*api.Pod))
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}
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// MatchPod returns a generic matcher for a given label and field selector.
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func MatchPod(label labels.Selector, field fields.Selector) generic.Matcher {
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return &generic.SelectionPredicate{
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Label: label,
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Field: field,
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GetAttrs: func(obj runtime.Object) (labels.Set, fields.Set, error) {
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pod, ok := obj.(*api.Pod)
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if !ok {
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return nil, nil, fmt.Errorf("not a pod")
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}
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// podLabels is already sitting there ready to be used.
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// podFields is not available directly and requires allocation of a map.
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// Only bother if the fields might be useful to determining the match.
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// One common case is for a replication controller to set up a watch
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// based on labels alone; in that case we can avoid allocating the field map.
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// This is especially important in the apiserver.
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podLabels := labels.Set(pod.ObjectMeta.Labels)
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var podFields fields.Set
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if !field.Empty() && label.Matches(podLabels) {
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podFields = PodToSelectableFields(pod)
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}
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return podLabels, podFields, nil
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},
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}
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}
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// PodToSelectableFields returns a field set that represents the object
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// TODO: fields are not labels, and the validation rules for them do not apply.
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func PodToSelectableFields(pod *api.Pod) fields.Set {
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objectMetaFieldsSet := generic.ObjectMetaFieldsSet(pod.ObjectMeta, true)
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podSpecificFieldsSet := fields.Set{
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"spec.nodeName": pod.Spec.NodeName,
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"spec.restartPolicy": string(pod.Spec.RestartPolicy),
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"status.phase": string(pod.Status.Phase),
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}
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return generic.MergeFieldsSets(objectMetaFieldsSet, podSpecificFieldsSet)
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}
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// ResourceGetter is an interface for retrieving resources by ResourceLocation.
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type ResourceGetter interface {
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Get(api.Context, string) (runtime.Object, error)
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}
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func getPod(getter ResourceGetter, ctx api.Context, name string) (*api.Pod, error) {
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obj, err := getter.Get(ctx, name)
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if err != nil {
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return nil, err
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}
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pod := obj.(*api.Pod)
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if pod == nil {
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return nil, fmt.Errorf("Unexpected object type: %#v", pod)
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}
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return pod, nil
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}
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// ResourceLocation returns a URL to which one can send traffic for the specified pod.
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func ResourceLocation(getter ResourceGetter, rt http.RoundTripper, ctx api.Context, id string) (*url.URL, http.RoundTripper, error) {
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// Allow ID as "podname" or "podname:port" or "scheme:podname:port".
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// If port is not specified, try to use the first defined port on the pod.
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scheme, name, port, valid := utilnet.SplitSchemeNamePort(id)
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if !valid {
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("invalid pod request %q", id))
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}
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// TODO: if port is not a number but a "(container)/(portname)", do a name lookup.
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pod, err := getPod(getter, ctx, name)
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if err != nil {
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return nil, nil, err
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}
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// Try to figure out a port.
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if port == "" {
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for i := range pod.Spec.Containers {
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if len(pod.Spec.Containers[i].Ports) > 0 {
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port = fmt.Sprintf("%d", pod.Spec.Containers[i].Ports[0].ContainerPort)
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break
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}
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}
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}
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loc := &url.URL{
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Scheme: scheme,
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}
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if port == "" {
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loc.Host = pod.Status.PodIP
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} else {
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loc.Host = net.JoinHostPort(pod.Status.PodIP, port)
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}
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return loc, rt, nil
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}
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// getContainerNames returns a formatted string containing the container names
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func getContainerNames(pod *api.Pod) string {
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names := []string{}
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for _, c := range pod.Spec.Containers {
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names = append(names, c.Name)
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}
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return strings.Join(names, " ")
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}
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// LogLocation returns the log URL for a pod container. If opts.Container is blank
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// and only one container is present in the pod, that container is used.
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func LogLocation(
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getter ResourceGetter,
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connInfo client.ConnectionInfoGetter,
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ctx api.Context,
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name string,
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opts *api.PodLogOptions,
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) (*url.URL, http.RoundTripper, error) {
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pod, err := getPod(getter, ctx, name)
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if err != nil {
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return nil, nil, err
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}
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// Try to figure out a container
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// If a container was provided, it must be valid
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container := opts.Container
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if len(container) == 0 {
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switch len(pod.Spec.Containers) {
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case 1:
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container = pod.Spec.Containers[0].Name
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case 0:
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("a container name must be specified for pod %s", name))
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default:
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containerNames := getContainerNames(pod)
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("a container name must be specified for pod %s, choose one of: [%s]", name, containerNames))
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}
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} else {
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if !podHasContainerWithName(pod, container) {
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("container %s is not valid for pod %s", container, name))
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}
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}
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nodeHost := pod.Spec.NodeName
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if len(nodeHost) == 0 {
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// If pod has not been assigned a host, return an empty location
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return nil, nil, nil
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}
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nodeScheme, nodePort, nodeTransport, err := connInfo.GetConnectionInfo(ctx, nodeHost)
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if err != nil {
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return nil, nil, err
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}
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params := url.Values{}
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if opts.Follow {
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params.Add("follow", "true")
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}
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if opts.Previous {
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params.Add("previous", "true")
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}
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if opts.Timestamps {
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params.Add("timestamps", "true")
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}
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if opts.SinceSeconds != nil {
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params.Add("sinceSeconds", strconv.FormatInt(*opts.SinceSeconds, 10))
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}
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if opts.SinceTime != nil {
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params.Add("sinceTime", opts.SinceTime.Format(time.RFC3339))
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}
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if opts.TailLines != nil {
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params.Add("tailLines", strconv.FormatInt(*opts.TailLines, 10))
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}
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if opts.LimitBytes != nil {
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params.Add("limitBytes", strconv.FormatInt(*opts.LimitBytes, 10))
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}
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loc := &url.URL{
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Scheme: nodeScheme,
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Host: fmt.Sprintf("%s:%d", nodeHost, nodePort),
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Path: fmt.Sprintf("/containerLogs/%s/%s/%s", pod.Namespace, pod.Name, container),
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RawQuery: params.Encode(),
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}
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return loc, nodeTransport, nil
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}
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func podHasContainerWithName(pod *api.Pod, containerName string) bool {
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for _, c := range pod.Spec.Containers {
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if c.Name == containerName {
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return true
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}
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}
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return false
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}
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func streamParams(params url.Values, opts runtime.Object) error {
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switch opts := opts.(type) {
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case *api.PodExecOptions:
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if opts.Stdin {
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params.Add(api.ExecStdinParam, "1")
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}
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if opts.Stdout {
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params.Add(api.ExecStdoutParam, "1")
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}
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if opts.Stderr {
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params.Add(api.ExecStderrParam, "1")
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}
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if opts.TTY {
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params.Add(api.ExecTTYParam, "1")
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}
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for _, c := range opts.Command {
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params.Add("command", c)
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}
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case *api.PodAttachOptions:
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if opts.Stdin {
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params.Add(api.ExecStdinParam, "1")
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}
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if opts.Stdout {
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params.Add(api.ExecStdoutParam, "1")
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}
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if opts.Stderr {
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params.Add(api.ExecStderrParam, "1")
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}
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if opts.TTY {
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params.Add(api.ExecTTYParam, "1")
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}
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default:
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return fmt.Errorf("Unknown object for streaming: %v", opts)
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}
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return nil
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}
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// AttachLocation returns the attach URL for a pod container. If opts.Container is blank
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// and only one container is present in the pod, that container is used.
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func AttachLocation(
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getter ResourceGetter,
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connInfo client.ConnectionInfoGetter,
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ctx api.Context,
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name string,
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opts *api.PodAttachOptions,
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) (*url.URL, http.RoundTripper, error) {
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return streamLocation(getter, connInfo, ctx, name, opts, opts.Container, "attach")
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}
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// ExecLocation returns the exec URL for a pod container. If opts.Container is blank
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// and only one container is present in the pod, that container is used.
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func ExecLocation(
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getter ResourceGetter,
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connInfo client.ConnectionInfoGetter,
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ctx api.Context,
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name string,
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opts *api.PodExecOptions,
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) (*url.URL, http.RoundTripper, error) {
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return streamLocation(getter, connInfo, ctx, name, opts, opts.Container, "exec")
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}
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func streamLocation(
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getter ResourceGetter,
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connInfo client.ConnectionInfoGetter,
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ctx api.Context,
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name string,
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opts runtime.Object,
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container,
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path string,
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) (*url.URL, http.RoundTripper, error) {
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pod, err := getPod(getter, ctx, name)
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if err != nil {
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return nil, nil, err
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}
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// Try to figure out a container
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// If a container was provided, it must be valid
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if container == "" {
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switch len(pod.Spec.Containers) {
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case 1:
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container = pod.Spec.Containers[0].Name
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case 0:
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("a container name must be specified for pod %s", name))
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default:
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containerNames := getContainerNames(pod)
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("a container name must be specified for pod %s, choose one of: [%s]", name, containerNames))
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}
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} else {
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if !podHasContainerWithName(pod, container) {
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("container %s is not valid for pod %s", container, name))
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}
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}
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nodeHost := pod.Spec.NodeName
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if len(nodeHost) == 0 {
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// If pod has not been assigned a host, return an empty location
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("pod %s does not have a host assigned", name))
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}
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nodeScheme, nodePort, nodeTransport, err := connInfo.GetConnectionInfo(ctx, nodeHost)
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if err != nil {
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return nil, nil, err
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}
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params := url.Values{}
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if err := streamParams(params, opts); err != nil {
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return nil, nil, err
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}
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loc := &url.URL{
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Scheme: nodeScheme,
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Host: fmt.Sprintf("%s:%d", nodeHost, nodePort),
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Path: fmt.Sprintf("/%s/%s/%s/%s", path, pod.Namespace, pod.Name, container),
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RawQuery: params.Encode(),
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}
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return loc, nodeTransport, nil
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}
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// PortForwardLocation returns the port-forward URL for a pod.
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func PortForwardLocation(
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getter ResourceGetter,
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connInfo client.ConnectionInfoGetter,
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ctx api.Context,
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name string,
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) (*url.URL, http.RoundTripper, error) {
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pod, err := getPod(getter, ctx, name)
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if err != nil {
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return nil, nil, err
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}
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nodeHost := pod.Spec.NodeName
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if len(nodeHost) == 0 {
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// If pod has not been assigned a host, return an empty location
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return nil, nil, errors.NewBadRequest(fmt.Sprintf("pod %s does not have a host assigned", name))
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}
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nodeScheme, nodePort, nodeTransport, err := connInfo.GetConnectionInfo(ctx, nodeHost)
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if err != nil {
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return nil, nil, err
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}
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loc := &url.URL{
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Scheme: nodeScheme,
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Host: fmt.Sprintf("%s:%d", nodeHost, nodePort),
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Path: fmt.Sprintf("/portForward/%s/%s", pod.Namespace, pod.Name),
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}
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return loc, nodeTransport, nil
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}
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