cilium.v2.ciliumEgressGatewayPolicy
Index
fn new(name)
obj metadata
fn withAnnotations(annotations)
fn withAnnotationsMixin(annotations)
fn withClusterName(clusterName)
fn withCreationTimestamp(creationTimestamp)
fn withDeletionGracePeriodSeconds(deletionGracePeriodSeconds)
fn withDeletionTimestamp(deletionTimestamp)
fn withFinalizers(finalizers)
fn withFinalizersMixin(finalizers)
fn withGenerateName(generateName)
fn withGeneration(generation)
fn withLabels(labels)
fn withLabelsMixin(labels)
fn withName(name)
fn withNamespace(namespace)
fn withOwnerReferences(ownerReferences)
fn withOwnerReferencesMixin(ownerReferences)
fn withResourceVersion(resourceVersion)
fn withSelfLink(selfLink)
fn withUid(uid)
obj spec
fn withDestinationCIDRs(destinationCIDRs)
fn withDestinationCIDRsMixin(destinationCIDRs)
fn withExcludedCIDRs(excludedCIDRs)
fn withExcludedCIDRsMixin(excludedCIDRs)
fn withSelectors(selectors)
fn withSelectorsMixin(selectors)
obj spec.egressGateway
fn withEgressIP(egressIP)
fn withInterface(interface)
obj spec.egressGateway.nodeSelector
obj spec.selectors
Fields
fn new
new(name)
new returns an instance of CiliumEgressGatewayPolicy
obj metadata
"ObjectMeta is metadata that all persisted resources must have, which includes all objects users must create."
fn metadata.withAnnotations
withAnnotations(annotations)
"Annotations is an unstructured key value map stored with a resource that may be set by external tools to store and retrieve arbitrary metadata. They are not queryable and should be preserved when modifying objects. More info: http://kubernetes.io/docs/user-guide/annotations"
fn metadata.withAnnotationsMixin
withAnnotationsMixin(annotations)
"Annotations is an unstructured key value map stored with a resource that may be set by external tools to store and retrieve arbitrary metadata. They are not queryable and should be preserved when modifying objects. More info: http://kubernetes.io/docs/user-guide/annotations"
Note: This function appends passed data to existing values
fn metadata.withClusterName
withClusterName(clusterName)
"The name of the cluster which the object belongs to. This is used to distinguish resources with same name and namespace in different clusters. This field is not set anywhere right now and apiserver is going to ignore it if set in create or update request."
fn metadata.withCreationTimestamp
withCreationTimestamp(creationTimestamp)
"Time is a wrapper around time.Time which supports correct marshaling to YAML and JSON. Wrappers are provided for many of the factory methods that the time package offers."
fn metadata.withDeletionGracePeriodSeconds
withDeletionGracePeriodSeconds(deletionGracePeriodSeconds)
"Number of seconds allowed for this object to gracefully terminate before it will be removed from the system. Only set when deletionTimestamp is also set. May only be shortened. Read-only."
fn metadata.withDeletionTimestamp
withDeletionTimestamp(deletionTimestamp)
"Time is a wrapper around time.Time which supports correct marshaling to YAML and JSON. Wrappers are provided for many of the factory methods that the time package offers."
fn metadata.withFinalizers
withFinalizers(finalizers)
"Must be empty before the object is deleted from the registry. Each entry is an identifier for the responsible component that will remove the entry from the list. If the deletionTimestamp of the object is non-nil, entries in this list can only be removed. Finalizers may be processed and removed in any order. Order is NOT enforced because it introduces significant risk of stuck finalizers. finalizers is a shared field, any actor with permission can reorder it. If the finalizer list is processed in order, then this can lead to a situation in which the component responsible for the first finalizer in the list is waiting for a signal (field value, external system, or other) produced by a component responsible for a finalizer later in the list, resulting in a deadlock. Without enforced ordering finalizers are free to order amongst themselves and are not vulnerable to ordering changes in the list."
fn metadata.withFinalizersMixin
withFinalizersMixin(finalizers)
"Must be empty before the object is deleted from the registry. Each entry is an identifier for the responsible component that will remove the entry from the list. If the deletionTimestamp of the object is non-nil, entries in this list can only be removed. Finalizers may be processed and removed in any order. Order is NOT enforced because it introduces significant risk of stuck finalizers. finalizers is a shared field, any actor with permission can reorder it. If the finalizer list is processed in order, then this can lead to a situation in which the component responsible for the first finalizer in the list is waiting for a signal (field value, external system, or other) produced by a component responsible for a finalizer later in the list, resulting in a deadlock. Without enforced ordering finalizers are free to order amongst themselves and are not vulnerable to ordering changes in the list."
Note: This function appends passed data to existing values
fn metadata.withGenerateName
withGenerateName(generateName)
"GenerateName is an optional prefix, used by the server, to generate a unique name ONLY IF the Name field has not been provided. If this field is used, the name returned to the client will be different than the name passed. This value will also be combined with a unique suffix. The provided value has the same validation rules as the Name field, and may be truncated by the length of the suffix required to make the value unique on the server.\n\nIf this field is specified and the generated name exists, the server will NOT return a 409 - instead, it will either return 201 Created or 500 with Reason ServerTimeout indicating a unique name could not be found in the time allotted, and the client should retry (optionally after the time indicated in the Retry-After header).\n\nApplied only if Name is not specified. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#idempotency"
fn metadata.withGeneration
withGeneration(generation)
"A sequence number representing a specific generation of the desired state. Populated by the system. Read-only."
fn metadata.withLabels
withLabels(labels)
"Map of string keys and values that can be used to organize and categorize (scope and select) objects. May match selectors of replication controllers and services. More info: http://kubernetes.io/docs/user-guide/labels"
fn metadata.withLabelsMixin
withLabelsMixin(labels)
"Map of string keys and values that can be used to organize and categorize (scope and select) objects. May match selectors of replication controllers and services. More info: http://kubernetes.io/docs/user-guide/labels"
Note: This function appends passed data to existing values
fn metadata.withName
withName(name)
"Name must be unique within a namespace. Is required when creating resources, although some resources may allow a client to request the generation of an appropriate name automatically. Name is primarily intended for creation idempotence and configuration definition. Cannot be updated. More info: http://kubernetes.io/docs/user-guide/identifiers#names"
fn metadata.withNamespace
withNamespace(namespace)
"Namespace defines the space within which each name must be unique. An empty namespace is equivalent to the \"default\" namespace, but \"default\" is the canonical representation. Not all objects are required to be scoped to a namespace - the value of this field for those objects will be empty.\n\nMust be a DNS_LABEL. Cannot be updated. More info: http://kubernetes.io/docs/user-guide/namespaces"
fn metadata.withOwnerReferences
withOwnerReferences(ownerReferences)
"List of objects depended by this object. If ALL objects in the list have been deleted, this object will be garbage collected. If this object is managed by a controller, then an entry in this list will point to this controller, with the controller field set to true. There cannot be more than one managing controller."
fn metadata.withOwnerReferencesMixin
withOwnerReferencesMixin(ownerReferences)
"List of objects depended by this object. If ALL objects in the list have been deleted, this object will be garbage collected. If this object is managed by a controller, then an entry in this list will point to this controller, with the controller field set to true. There cannot be more than one managing controller."
Note: This function appends passed data to existing values
fn metadata.withResourceVersion
withResourceVersion(resourceVersion)
"An opaque value that represents the internal version of this object that can be used by clients to determine when objects have changed. May be used for optimistic concurrency, change detection, and the watch operation on a resource or set of resources. Clients must treat these values as opaque and passed unmodified back to the server. They may only be valid for a particular resource or set of resources.\n\nPopulated by the system. Read-only. Value must be treated as opaque by clients and . More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#concurrency-control-and-consistency"
fn metadata.withSelfLink
withSelfLink(selfLink)
"SelfLink is a URL representing this object. Populated by the system. Read-only.\n\nDEPRECATED Kubernetes will stop propagating this field in 1.20 release and the field is planned to be removed in 1.21 release."
fn metadata.withUid
withUid(uid)
"UID is the unique in time and space value for this object. It is typically generated by the server on successful creation of a resource and is not allowed to change on PUT operations.\n\nPopulated by the system. Read-only. More info: http://kubernetes.io/docs/user-guide/identifiers#uids"
obj spec
fn spec.withDestinationCIDRs
withDestinationCIDRs(destinationCIDRs)
"DestinationCIDRs is a list of destination CIDRs for destination IP addresses. If a destination IP matches any one CIDR, it will be selected."
fn spec.withDestinationCIDRsMixin
withDestinationCIDRsMixin(destinationCIDRs)
"DestinationCIDRs is a list of destination CIDRs for destination IP addresses. If a destination IP matches any one CIDR, it will be selected."
Note: This function appends passed data to existing values
fn spec.withExcludedCIDRs
withExcludedCIDRs(excludedCIDRs)
"ExcludedCIDRs is a list of destination CIDRs that will be excluded from the egress gateway redirection and SNAT logic. Should be a subset of destinationCIDRs otherwise it will not have any effect."
fn spec.withExcludedCIDRsMixin
withExcludedCIDRsMixin(excludedCIDRs)
"ExcludedCIDRs is a list of destination CIDRs that will be excluded from the egress gateway redirection and SNAT logic. Should be a subset of destinationCIDRs otherwise it will not have any effect."
Note: This function appends passed data to existing values
fn spec.withSelectors
withSelectors(selectors)
"Egress represents a list of rules by which egress traffic is filtered from the source pods."
fn spec.withSelectorsMixin
withSelectorsMixin(selectors)
"Egress represents a list of rules by which egress traffic is filtered from the source pods."
Note: This function appends passed data to existing values
obj spec.egressGateway
"EgressGateway is the gateway node responsible for SNATing traffic."
fn spec.egressGateway.withEgressIP
withEgressIP(egressIP)
"EgressIP is the source IP address that the egress traffic is SNATed with. \n Example: When set to \"192.168.1.100\", matching egress traffic will be redirected to the node matching the NodeSelector field and SNATed with IP address 192.168.1.100. \n When none of the Interface or EgressIP fields is specified, the policy will use the first IPv4 assigned to the interface with the default route."
fn spec.egressGateway.withInterface
withInterface(interface)
"Interface is the network interface to which the egress IP address that the traffic is SNATed with is assigned. \n Example: When set to \"eth1\", matching egress traffic will be redirected to the node matching the NodeSelector field and SNATed with the first IPv4 address assigned to the eth1 interface. \n When none of the Interface or EgressIP fields is specified, the policy will use the first IPv4 assigned to the interface with the default route."
obj spec.egressGateway.nodeSelector
"This is a label selector which selects the node that should act as egress gateway for the given policy. In case multiple nodes are selected, only the first one in the lexical ordering over the node names will be used. This field follows standard label selector semantics."
fn spec.egressGateway.nodeSelector.withMatchExpressions
withMatchExpressions(matchExpressions)
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
fn spec.egressGateway.nodeSelector.withMatchExpressionsMixin
withMatchExpressionsMixin(matchExpressions)
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
Note: This function appends passed data to existing values
fn spec.egressGateway.nodeSelector.withMatchLabels
withMatchLabels(matchLabels)
"matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels map is equivalent to an element of matchExpressions, whose key field is \"key\", the operator is \"In\", and the values array contains only \"value\". The requirements are ANDed."
fn spec.egressGateway.nodeSelector.withMatchLabelsMixin
withMatchLabelsMixin(matchLabels)
"matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels map is equivalent to an element of matchExpressions, whose key field is \"key\", the operator is \"In\", and the values array contains only \"value\". The requirements are ANDed."
Note: This function appends passed data to existing values
obj spec.egressGateway.nodeSelector.matchExpressions
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
fn spec.egressGateway.nodeSelector.matchExpressions.withKey
withKey(key)
"key is the label key that the selector applies to."
fn spec.egressGateway.nodeSelector.matchExpressions.withOperator
withOperator(operator)
"operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist."
fn spec.egressGateway.nodeSelector.matchExpressions.withValues
withValues(values)
"values is an array of string values. If the operator is In or NotIn, the values array must be non-empty. If the operator is Exists or DoesNotExist, the values array must be empty. This array is replaced during a strategic merge patch."
fn spec.egressGateway.nodeSelector.matchExpressions.withValuesMixin
withValuesMixin(values)
"values is an array of string values. If the operator is In or NotIn, the values array must be non-empty. If the operator is Exists or DoesNotExist, the values array must be empty. This array is replaced during a strategic merge patch."
Note: This function appends passed data to existing values
obj spec.selectors
"Egress represents a list of rules by which egress traffic is filtered from the source pods."
obj spec.selectors.namespaceSelector
"Selects Namespaces using cluster-scoped labels. This field follows standard label selector semantics; if present but empty, it selects all namespaces."
fn spec.selectors.namespaceSelector.withMatchExpressions
withMatchExpressions(matchExpressions)
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
fn spec.selectors.namespaceSelector.withMatchExpressionsMixin
withMatchExpressionsMixin(matchExpressions)
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
Note: This function appends passed data to existing values
fn spec.selectors.namespaceSelector.withMatchLabels
withMatchLabels(matchLabels)
"matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels map is equivalent to an element of matchExpressions, whose key field is \"key\", the operator is \"In\", and the values array contains only \"value\". The requirements are ANDed."
fn spec.selectors.namespaceSelector.withMatchLabelsMixin
withMatchLabelsMixin(matchLabels)
"matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels map is equivalent to an element of matchExpressions, whose key field is \"key\", the operator is \"In\", and the values array contains only \"value\". The requirements are ANDed."
Note: This function appends passed data to existing values
obj spec.selectors.namespaceSelector.matchExpressions
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
fn spec.selectors.namespaceSelector.matchExpressions.withKey
withKey(key)
"key is the label key that the selector applies to."
fn spec.selectors.namespaceSelector.matchExpressions.withOperator
withOperator(operator)
"operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist."
fn spec.selectors.namespaceSelector.matchExpressions.withValues
withValues(values)
"values is an array of string values. If the operator is In or NotIn, the values array must be non-empty. If the operator is Exists or DoesNotExist, the values array must be empty. This array is replaced during a strategic merge patch."
fn spec.selectors.namespaceSelector.matchExpressions.withValuesMixin
withValuesMixin(values)
"values is an array of string values. If the operator is In or NotIn, the values array must be non-empty. If the operator is Exists or DoesNotExist, the values array must be empty. This array is replaced during a strategic merge patch."
Note: This function appends passed data to existing values
obj spec.selectors.podSelector
"This is a label selector which selects Pods. This field follows standard label selector semantics; if present but empty, it selects all pods."
fn spec.selectors.podSelector.withMatchExpressions
withMatchExpressions(matchExpressions)
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
fn spec.selectors.podSelector.withMatchExpressionsMixin
withMatchExpressionsMixin(matchExpressions)
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
Note: This function appends passed data to existing values
fn spec.selectors.podSelector.withMatchLabels
withMatchLabels(matchLabels)
"matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels map is equivalent to an element of matchExpressions, whose key field is \"key\", the operator is \"In\", and the values array contains only \"value\". The requirements are ANDed."
fn spec.selectors.podSelector.withMatchLabelsMixin
withMatchLabelsMixin(matchLabels)
"matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels map is equivalent to an element of matchExpressions, whose key field is \"key\", the operator is \"In\", and the values array contains only \"value\". The requirements are ANDed."
Note: This function appends passed data to existing values
obj spec.selectors.podSelector.matchExpressions
"matchExpressions is a list of label selector requirements. The requirements are ANDed."
fn spec.selectors.podSelector.matchExpressions.withKey
withKey(key)
"key is the label key that the selector applies to."
fn spec.selectors.podSelector.matchExpressions.withOperator
withOperator(operator)
"operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist."
fn spec.selectors.podSelector.matchExpressions.withValues
withValues(values)
"values is an array of string values. If the operator is In or NotIn, the values array must be non-empty. If the operator is Exists or DoesNotExist, the values array must be empty. This array is replaced during a strategic merge patch."
fn spec.selectors.podSelector.matchExpressions.withValuesMixin
withValuesMixin(values)
"values is an array of string values. If the operator is In or NotIn, the values array must be non-empty. If the operator is Exists or DoesNotExist, the values array must be empty. This array is replaced during a strategic merge patch."
Note: This function appends passed data to existing values