720912e880
Signed-off-by: Emile Vauge <emile@vauge.com>
313 lines
13 KiB
Go
313 lines
13 KiB
Go
package k8s
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import (
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"encoding/json"
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"strconv"
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"time"
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)
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// TypeMeta describes an individual object in an API response or request
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// with strings representing the type of the object and its API schema version.
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// Structures that are versioned or persisted should inline TypeMeta.
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type TypeMeta struct {
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// Kind is a string value representing the REST resource this object represents.
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// Servers may infer this from the endpoint the client submits requests to.
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// Cannot be updated.
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// In CamelCase.
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// More info: http://releases.k8s.io/HEAD/docs/devel/api-conventions.md#types-kinds
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Kind string `json:"kind,omitempty"`
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// APIVersion defines the versioned schema of this representation of an object.
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// Servers should convert recognized schemas to the latest internal value, and
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// may reject unrecognized values.
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// More info: http://releases.k8s.io/HEAD/docs/devel/api-conventions.md#resources
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APIVersion string `json:"apiVersion,omitempty"`
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}
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// ObjectMeta is metadata that all persisted resources must have, which includes all objects
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// users must create.
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type ObjectMeta struct {
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// Name is unique within a namespace. Name is required when creating resources, although
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// some resources may allow a client to request the generation of an appropriate name
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// automatically. Name is primarily intended for creation idempotence and configuration
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// definition.
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Name string `json:"name,omitempty"`
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// GenerateName indicates that the name should be made unique by the server prior to persisting
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// it. A non-empty value for the field indicates the name will be made unique (and the name
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// returned to the client will be different than the name passed). The value of this field will
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// be combined with a unique suffix on the server if the Name field has not been provided.
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// The provided value must be valid within the rules for Name, and may be truncated by the length
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// of the suffix required to make the value unique on the server.
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//
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// If this field is specified, and Name is not present, the server will NOT return a 409 if the
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// generated name exists - instead, it will either return 201 Created or 500 with Reason
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// ServerTimeout indicating a unique name could not be found in the time allotted, and the client
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// should retry (optionally after the time indicated in the Retry-After header).
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GenerateName string `json:"generateName,omitempty"`
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// Namespace defines the space within which name must be unique. An empty namespace is
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// equivalent to the "default" namespace, but "default" is the canonical representation.
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// Not all objects are required to be scoped to a namespace - the value of this field for
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// those objects will be empty.
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Namespace string `json:"namespace,omitempty"`
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// SelfLink is a URL representing this object.
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SelfLink string `json:"selfLink,omitempty"`
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// UID is the unique in time and space value for this object. It is typically generated by
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// the server on successful creation of a resource and is not allowed to change on PUT
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// operations.
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UID UID `json:"uid,omitempty"`
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// An opaque value that represents the version of this resource. May be used for optimistic
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// concurrency, change detection, and the watch operation on a resource or set of resources.
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// Clients must treat these values as opaque and values may only be valid for a particular
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// resource or set of resources. Only servers will generate resource versions.
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ResourceVersion string `json:"resourceVersion,omitempty"`
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// A sequence number representing a specific generation of the desired state.
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// Populated by the system. Read-only.
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Generation int64 `json:"generation,omitempty"`
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// CreationTimestamp is a timestamp representing the server time when this object was
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// created. It is not guaranteed to be set in happens-before order across separate operations.
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// Clients may not set this value. It is represented in RFC3339 form and is in UTC.
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CreationTimestamp Time `json:"creationTimestamp,omitempty"`
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// DeletionTimestamp is the time after which this resource will be deleted. This
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// field is set by the server when a graceful deletion is requested by the user, and is not
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// directly settable by a client. The resource will be deleted (no longer visible from
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// resource lists, and not reachable by name) after the time in this field. Once set, this
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// value may not be unset or be set further into the future, although it may be shortened
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// or the resource may be deleted prior to this time. For example, a user may request that
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// a pod is deleted in 30 seconds. The Kubelet will react by sending a graceful termination
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// signal to the containers in the pod. Once the resource is deleted in the API, the Kubelet
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// will send a hard termination signal to the container.
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DeletionTimestamp *Time `json:"deletionTimestamp,omitempty"`
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// DeletionGracePeriodSeconds records the graceful deletion value set when graceful deletion
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// was requested. Represents the most recent grace period, and may only be shortened once set.
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DeletionGracePeriodSeconds *int64 `json:"deletionGracePeriodSeconds,omitempty"`
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// Labels are key value pairs that may be used to scope and select individual resources.
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// Label keys are of the form:
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// label-key ::= prefixed-name | name
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// prefixed-name ::= prefix '/' name
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// prefix ::= DNS_SUBDOMAIN
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// name ::= DNS_LABEL
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// The prefix is optional. If the prefix is not specified, the key is assumed to be private
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// to the user. Other system components that wish to use labels must specify a prefix. The
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// "kubernetes.io/" prefix is reserved for use by kubernetes components.
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// TODO: replace map[string]string with labels.LabelSet type
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Labels map[string]string `json:"labels,omitempty"`
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// Annotations are unstructured key value data stored with a resource that may be set by
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// external tooling. They are not queryable and should be preserved when modifying
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// objects. Annotation keys have the same formatting restrictions as Label keys. See the
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// comments on Labels for details.
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Annotations map[string]string `json:"annotations,omitempty"`
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}
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// UID is a type that holds unique ID values, including UUIDs. Because we
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// don't ONLY use UUIDs, this is an alias to string. Being a type captures
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// intent and helps make sure that UIDs and names do not get conflated.
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type UID string
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// Time is a wrapper around time.Time which supports correct
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// marshaling to YAML and JSON. Wrappers are provided for many
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// of the factory methods that the time package offers.
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//
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// +protobuf.options.marshal=false
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// +protobuf.as=Timestamp
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type Time struct {
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time.Time `protobuf:"-"`
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}
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// Service is a named abstraction of software service (for example, mysql) consisting of local port
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// (for example 3306) that the proxy listens on, and the selector that determines which pods
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// will answer requests sent through the proxy.
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type Service struct {
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TypeMeta `json:",inline"`
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ObjectMeta `json:"metadata,omitempty"`
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// Spec defines the behavior of a service.
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Spec ServiceSpec `json:"spec,omitempty"`
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// Status represents the current status of a service.
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Status ServiceStatus `json:"status,omitempty"`
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}
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// ServiceSpec describes the attributes that a user creates on a service
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type ServiceSpec struct {
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// Type determines how the service will be exposed. Valid options: ClusterIP, NodePort, LoadBalancer
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Type ServiceType `json:"type,omitempty"`
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// Required: The list of ports that are exposed by this service.
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Ports []ServicePort `json:"ports"`
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// This service will route traffic to pods having labels matching this selector. If empty or not present,
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// the service is assumed to have endpoints set by an external process and Kubernetes will not modify
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// those endpoints.
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Selector map[string]string `json:"selector"`
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// ClusterIP is usually assigned by the master. If specified by the user
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// we will try to respect it or else fail the request. This field can
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// not be changed by updates.
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// Valid values are None, empty string (""), or a valid IP address
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// None can be specified for headless services when proxying is not required
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ClusterIP string `json:"clusterIP,omitempty"`
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// ExternalIPs are used by external load balancers, or can be set by
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// users to handle external traffic that arrives at a node.
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ExternalIPs []string `json:"externalIPs,omitempty"`
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// Only applies to Service Type: LoadBalancer
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// LoadBalancer will get created with the IP specified in this field.
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// This feature depends on whether the underlying cloud-provider supports specifying
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// the loadBalancerIP when a load balancer is created.
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// This field will be ignored if the cloud-provider does not support the feature.
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LoadBalancerIP string `json:"loadBalancerIP,omitempty"`
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// Required: Supports "ClientIP" and "None". Used to maintain session affinity.
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SessionAffinity ServiceAffinity `json:"sessionAffinity,omitempty"`
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}
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// ServicePort service port
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type ServicePort struct {
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// Optional if only one ServicePort is defined on this service: The
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// name of this port within the service. This must be a DNS_LABEL.
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// All ports within a ServiceSpec must have unique names. This maps to
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// the 'Name' field in EndpointPort objects.
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Name string `json:"name"`
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// The IP protocol for this port. Supports "TCP" and "UDP".
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Protocol Protocol `json:"protocol"`
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// The port that will be exposed on the service.
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Port int `json:"port"`
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// Optional: The target port on pods selected by this service. If this
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// is a string, it will be looked up as a named port in the target
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// Pod's container ports. If this is not specified, the value
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// of the 'port' field is used (an identity map).
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// This field is ignored for services with clusterIP=None, and should be
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// omitted or set equal to the 'port' field.
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TargetPort IntOrString `json:"targetPort"`
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// The port on each node on which this service is exposed.
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// Default is to auto-allocate a port if the ServiceType of this Service requires one.
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NodePort int `json:"nodePort"`
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}
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// ServiceStatus represents the current status of a service
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type ServiceStatus struct {
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// LoadBalancer contains the current status of the load-balancer,
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// if one is present.
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LoadBalancer LoadBalancerStatus `json:"loadBalancer,omitempty"`
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}
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// LoadBalancerStatus represents the status of a load-balancer
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type LoadBalancerStatus struct {
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// Ingress is a list containing ingress points for the load-balancer;
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// traffic intended for the service should be sent to these ingress points.
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Ingress []LoadBalancerIngress `json:"ingress,omitempty"`
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}
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// LoadBalancerIngress represents the status of a load-balancer ingress point:
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// traffic intended for the service should be sent to an ingress point.
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type LoadBalancerIngress struct {
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// IP is set for load-balancer ingress points that are IP based
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// (typically GCE or OpenStack load-balancers)
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IP string `json:"ip,omitempty"`
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// Hostname is set for load-balancer ingress points that are DNS based
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// (typically AWS load-balancers)
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Hostname string `json:"hostname,omitempty"`
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}
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// ServiceAffinity Session Affinity Type string
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type ServiceAffinity string
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// ServiceType Service Type string describes ingress methods for a service
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type ServiceType string
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// Protocol defines network protocols supported for things like container ports.
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type Protocol string
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// IntOrString is a type that can hold an int32 or a string. When used in
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// JSON or YAML marshalling and unmarshalling, it produces or consumes the
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// inner type. This allows you to have, for example, a JSON field that can
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// accept a name or number.
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// TODO: Rename to Int32OrString
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//
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// +protobuf=true
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// +protobuf.options.(gogoproto.goproto_stringer)=false
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type IntOrString struct {
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Type Type
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IntVal int32
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StrVal string
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}
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// String returns the string value, or the Itoa of the int value.
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func (intstr *IntOrString) String() string {
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if intstr.Type == String {
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return intstr.StrVal
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}
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return strconv.Itoa(intstr.IntValue())
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}
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// IntValue returns the IntVal if type Int, or if
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// it is a String, will attempt a conversion to int.
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func (intstr *IntOrString) IntValue() int {
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if intstr.Type == String {
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i, _ := strconv.Atoi(intstr.StrVal)
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return i
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}
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return int(intstr.IntVal)
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}
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// UnmarshalJSON implements the json.Unmarshaller interface.
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func (intstr *IntOrString) UnmarshalJSON(value []byte) error {
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if value[0] == '"' {
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intstr.Type = String
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return json.Unmarshal(value, &intstr.StrVal)
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}
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intstr.Type = Int
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return json.Unmarshal(value, &intstr.IntVal)
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}
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// Type represents the stored type of IntOrString.
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type Type int
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const (
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// Int int
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Int Type = iota // The IntOrString holds an int.
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//String string
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String // The IntOrString holds a string.
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)
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// ServiceList holds a list of services.
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type ServiceList struct {
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TypeMeta `json:",inline"`
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ListMeta `json:"metadata,omitempty"`
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Items []Service `json:"items"`
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}
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// ListMeta describes metadata that synthetic resources must have, including lists and
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// various status objects. A resource may have only one of {ObjectMeta, ListMeta}.
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type ListMeta struct {
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// SelfLink is a URL representing this object.
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// Populated by the system.
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// Read-only.
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SelfLink string `json:"selfLink,omitempty"`
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// String that identifies the server's internal version of this object that
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// can be used by clients to determine when objects have changed.
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// Value must be treated as opaque by clients and passed unmodified back to the server.
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// Populated by the system.
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// Read-only.
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// More info: http://releases.k8s.io/HEAD/docs/devel/api-conventions.md#concurrency-control-and-consistency
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ResourceVersion string `json:"resourceVersion,omitempty"`
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}
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