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autoscaling/HorizontalPodAutoscaler@v2

Properties

PropertyTypeAttributesDescription
metadataIoK8SApimachineryPkgApisMetaV1ObjectMetaRequired, IdentifierObjectMeta is metadata that all persisted resources must have, which includes all objects users must create.
apiVersion'autoscaling/v2'Read-only, Deploy-time constantAPIVersion defines the versioned schema of this representation of an object. Servers should convert recognized schemas to the latest internal value, and may reject unrecognized values. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources
kind'HorizontalPodAutoscaler'Read-only, Deploy-time constantKind is a string value representing the REST resource this object represents. Servers may infer this from the endpoint the client submits requests to. Cannot be updated. In CamelCase. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds
specIoK8SApiAutoscalingV2HorizontalPodAutoscalerSpecHorizontalPodAutoscalerSpec describes the desired functionality of the HorizontalPodAutoscaler.
statusIoK8SApiAutoscalingV2HorizontalPodAutoscalerStatusHorizontalPodAutoscalerStatus describes the current status of a horizontal pod autoscaler.

IoK8SApimachineryPkgApisMetaV1ObjectMeta

PropertyTypeAttributesDescription
namestringRequired, Deploy-time constant, IdentifierName 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: https://kubernetes.io/docs/concepts/overview/working-with-objects/names#names
annotationsIoK8SApimachineryPkgApisMetaV1ObjectMetaAnnotationsAnnotations 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: https://kubernetes.io/docs/concepts/overview/working-with-objects/annotations
creationTimestampstringRead-onlyTime 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.
deletionGracePeriodSecondsintRead-onlyNumber 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.
deletionTimestampstringRead-onlyTime 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.
finalizersstring[]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.
generationintRead-onlyA sequence number representing a specific generation of the desired state. Populated by the system. Read-only.
labelsIoK8SApimachineryPkgApisMetaV1ObjectMetaLabelsMap 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: https://kubernetes.io/docs/concepts/overview/working-with-objects/labels
managedFieldsIoK8SApimachineryPkgApisMetaV1ManagedFieldsEntry[]Read-onlyManagedFields maps workflow-id and version to the set of fields that are managed by that workflow. This is mostly for internal housekeeping, and users typically shouldn't need to set or understand this field. A workflow can be the user's name, a controller's name, or the name of a specific apply path like "ci-cd". The set of fields is always in the version that the workflow used when modifying the object.
namespacestringDeploy-time constant, IdentifierNamespace 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. Must be a DNS_LABEL. Cannot be updated. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/namespaces
ownerReferencesIoK8SApimachineryPkgApisMetaV1OwnerReference[]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.
resourceVersionstringRead-onlyAn 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. Populated 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
selfLinkstringRead-onlyDeprecated: selfLink is a legacy read-only field that is no longer populated by the system.
uidstringRead-onlyUID 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. Populated by the system. Read-only. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names#uids

IoK8SApiAutoscalingV2HorizontalPodAutoscalerSpec

PropertyTypeAttributesDescription
maxReplicasintRequiredmaxReplicas is the upper limit for the number of replicas to which the autoscaler can scale up. It cannot be less that minReplicas.
scaleTargetRefIoK8SApiAutoscalingV2CrossVersionObjectReferenceRequiredCrossVersionObjectReference contains enough information to let you identify the referred resource.
behaviorIoK8SApiAutoscalingV2HorizontalPodAutoscalerBehaviorHorizontalPodAutoscalerBehavior configures the scaling behavior of the target in both Up and Down directions (scaleUp and scaleDown fields respectively).
metricsIoK8SApiAutoscalingV2MetricSpec[]metrics contains the specifications for which to use to calculate the desired replica count (the maximum replica count across all metrics will be used). The desired replica count is calculated multiplying the ratio between the target value and the current value by the current number of pods. Ergo, metrics used must decrease as the pod count is increased, and vice-versa. See the individual metric source types for more information about how each type of metric must respond. If not set, the default metric will be set to 80% average CPU utilization.
minReplicasintminReplicas is the lower limit for the number of replicas to which the autoscaler can scale down. It defaults to 1 pod. minReplicas is allowed to be 0 if the alpha feature gate HPAScaleToZero is enabled and at least one Object or External metric is configured. Scaling is active as long as at least one metric value is available.

IoK8SApiAutoscalingV2HorizontalPodAutoscalerStatus

PropertyTypeAttributesDescription
desiredReplicasintRequireddesiredReplicas is the desired number of replicas of pods managed by this autoscaler, as last calculated by the autoscaler.
conditionsIoK8SApiAutoscalingV2HorizontalPodAutoscalerCondition[]conditions is the set of conditions required for this autoscaler to scale its target, and indicates whether or not those conditions are met.
currentMetricsIoK8SApiAutoscalingV2MetricStatus[]currentMetrics is the last read state of the metrics used by this autoscaler.
currentReplicasintcurrentReplicas is current number of replicas of pods managed by this autoscaler, as last seen by the autoscaler.
lastScaleTimestringTime 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.
observedGenerationintobservedGeneration is the most recent generation observed by this autoscaler.

IoK8SApimachineryPkgApisMetaV1ObjectMetaAnnotations

Additional properties of type string are allowed.

IoK8SApimachineryPkgApisMetaV1ObjectMetaLabels

Additional properties of type string are allowed.

IoK8SApimachineryPkgApisMetaV1ManagedFieldsEntry

PropertyTypeAttributesDescription
apiVersionstringAPIVersion defines the version of this resource that this field set applies to. The format is "group/version" just like the top-level APIVersion field. It is necessary to track the version of a field set because it cannot be automatically converted.
fieldsTypestringFieldsType is the discriminator for the different fields format and version. There is currently only one possible value: "FieldsV1"
fieldsV1anyAny object
managerstringManager is an identifier of the workflow managing these fields.
operationstringOperation is the type of operation which lead to this ManagedFieldsEntry being created. The only valid values for this field are 'Apply' and 'Update'.
subresourcestringSubresource is the name of the subresource used to update that object, or empty string if the object was updated through the main resource. The value of this field is used to distinguish between managers, even if they share the same name. For example, a status update will be distinct from a regular update using the same manager name. Note that the APIVersion field is not related to the Subresource field and it always corresponds to the version of the main resource.
timestringTime 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.

IoK8SApimachineryPkgApisMetaV1OwnerReference

PropertyTypeAttributesDescription
apiVersionstringRequiredAPI version of the referent.
kindstringRequiredKind of the referent. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds
namestringRequiredName of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names#names
uidstringRequiredUID of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names#uids
blockOwnerDeletionboolIf true, AND if the owner has the "foregroundDeletion" finalizer, then the owner cannot be deleted from the key-value store until this reference is removed. See https://kubernetes.io/docs/concepts/architecture/garbage-collection/#foreground-deletion for how the garbage collector interacts with this field and enforces the foreground deletion. Defaults to false. To set this field, a user needs "delete" permission of the owner, otherwise 422 (Unprocessable Entity) will be returned.
controllerboolIf true, this reference points to the managing controller.

IoK8SApiAutoscalingV2CrossVersionObjectReference

PropertyTypeAttributesDescription
kindstringRequiredkind is the kind of the referent; More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds
namestringRequiredname is the name of the referent; More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names
apiVersionstringapiVersion is the API version of the referent

IoK8SApiAutoscalingV2HorizontalPodAutoscalerBehavior

PropertyTypeAttributesDescription
scaleDownIoK8SApiAutoscalingV2HPAScalingRulesHPAScalingRules configures the scaling behavior for one direction via scaling Policy Rules and a configurable metric tolerance. Scaling Policy Rules are applied after calculating DesiredReplicas from metrics for the HPA. They can limit the scaling velocity by specifying scaling policies. They can prevent flapping by specifying the stabilization window, so that the number of replicas is not set instantly, instead, the safest value from the stabilization window is chosen. The tolerance is applied to the metric values and prevents scaling too eagerly for small metric variations. (Note that setting a tolerance requires enabling the alpha HPAConfigurableTolerance feature gate.)
scaleUpIoK8SApiAutoscalingV2HPAScalingRulesHPAScalingRules configures the scaling behavior for one direction via scaling Policy Rules and a configurable metric tolerance. Scaling Policy Rules are applied after calculating DesiredReplicas from metrics for the HPA. They can limit the scaling velocity by specifying scaling policies. They can prevent flapping by specifying the stabilization window, so that the number of replicas is not set instantly, instead, the safest value from the stabilization window is chosen. The tolerance is applied to the metric values and prevents scaling too eagerly for small metric variations. (Note that setting a tolerance requires enabling the alpha HPAConfigurableTolerance feature gate.)

IoK8SApiAutoscalingV2MetricSpec

PropertyTypeAttributesDescription
typestringRequiredtype is the type of metric source. It should be one of "ContainerResource", "External", "Object", "Pods" or "Resource", each mapping to a matching field in the object.
containerResourceIoK8SApiAutoscalingV2ContainerResourceMetricSourceContainerResourceMetricSource indicates how to scale on a resource metric known to Kubernetes, as specified in requests and limits, describing each pod in the current scale target (e.g. CPU or memory). The values will be averaged together before being compared to the target. Such metrics are built in to Kubernetes, and have special scaling options on top of those available to normal per-pod metrics using the "pods" source. Only one "target" type should be set.
externalIoK8SApiAutoscalingV2ExternalMetricSourceExternalMetricSource indicates how to scale on a metric not associated with any Kubernetes object (for example length of queue in cloud messaging service, or QPS from loadbalancer running outside of cluster).
objectIoK8SApiAutoscalingV2ObjectMetricSourceObjectMetricSource indicates how to scale on a metric describing a kubernetes object (for example, hits-per-second on an Ingress object).
podsIoK8SApiAutoscalingV2PodsMetricSourcePodsMetricSource indicates how to scale on a metric describing each pod in the current scale target (for example, transactions-processed-per-second). The values will be averaged together before being compared to the target value.
resourceIoK8SApiAutoscalingV2ResourceMetricSourceResourceMetricSource indicates how to scale on a resource metric known to Kubernetes, as specified in requests and limits, describing each pod in the current scale target (e.g. CPU or memory). The values will be averaged together before being compared to the target. Such metrics are built in to Kubernetes, and have special scaling options on top of those available to normal per-pod metrics using the "pods" source. Only one "target" type should be set.

IoK8SApiAutoscalingV2HorizontalPodAutoscalerCondition

PropertyTypeAttributesDescription
statusstringRequiredstatus is the status of the condition (True, False, Unknown)
typestringRequiredtype describes the current condition
lastTransitionTimestringTime 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.
messagestringmessage is a human-readable explanation containing details about the transition
reasonstringreason is the reason for the condition's last transition.

IoK8SApiAutoscalingV2MetricStatus

PropertyTypeAttributesDescription
typestringRequiredtype is the type of metric source. It will be one of "ContainerResource", "External", "Object", "Pods" or "Resource", each corresponds to a matching field in the object.
containerResourceIoK8SApiAutoscalingV2ContainerResourceMetricStatusContainerResourceMetricStatus indicates the current value of a resource metric known to Kubernetes, as specified in requests and limits, describing a single container in each pod in the current scale target (e.g. CPU or memory). Such metrics are built in to Kubernetes, and have special scaling options on top of those available to normal per-pod metrics using the "pods" source.
externalIoK8SApiAutoscalingV2ExternalMetricStatusExternalMetricStatus indicates the current value of a global metric not associated with any Kubernetes object.
objectIoK8SApiAutoscalingV2ObjectMetricStatusObjectMetricStatus indicates the current value of a metric describing a kubernetes object (for example, hits-per-second on an Ingress object).
podsIoK8SApiAutoscalingV2PodsMetricStatusPodsMetricStatus indicates the current value of a metric describing each pod in the current scale target (for example, transactions-processed-per-second).
resourceIoK8SApiAutoscalingV2ResourceMetricStatusResourceMetricStatus indicates the current value of a resource metric known to Kubernetes, as specified in requests and limits, describing each pod in the current scale target (e.g. CPU or memory). Such metrics are built in to Kubernetes, and have special scaling options on top of those available to normal per-pod metrics using the "pods" source.

IoK8SApiAutoscalingV2HPAScalingRules

PropertyTypeAttributesDescription
policiesIoK8SApiAutoscalingV2HPAScalingPolicy[]policies is a list of potential scaling polices which can be used during scaling. If not set, use the default values: - For scale up: allow doubling the number of pods, or an absolute change of 4 pods in a 15s window. - For scale down: allow all pods to be removed in a 15s window.
selectPolicystringselectPolicy is used to specify which policy should be used. If not set, the default value Max is used.
stabilizationWindowSecondsintstabilizationWindowSeconds is the number of seconds for which past recommendations should be considered while scaling up or scaling down. StabilizationWindowSeconds must be greater than or equal to zero and less than or equal to 3600 (one hour). If not set, use the default values: - For scale up: 0 (i.e. no stabilization is done). - For scale down: 300 (i.e. the stabilization window is 300 seconds long).
tolerancestringQuantity is a fixed-point representation of a number. It provides convenient marshaling/unmarshaling in JSON and YAML, in addition to String() and AsInt64() accessors. The serialization format is: ``` <quantity> ::= <signedNumber><suffix> (Note that <suffix> may be empty, from the "" case in <decimalSI>.) <digit> ::= 0 | 1 | ... | 9 <digits> ::= <digit> | <digit><digits> <number> ::= <digits> | <digits>.<digits> | <digits>. | .<digits> <sign> ::= "+" | "-" <signedNumber> ::= <number> | <sign><number> <suffix> ::= <binarySI> | <decimalExponent> | <decimalSI> <binarySI> ::= Ki | Mi | Gi | Ti | Pi | Ei (International System of units; See: http://physics.nist.gov/cuu/Units/binary.html) <decimalSI> ::= m | "" | k | M | G | T | P | E (Note that 1024 = 1Ki but 1000 = 1k; I didn't choose the capitalization.) <decimalExponent> ::= "e" <signedNumber> | "E" <signedNumber> ``` No matter which of the three exponent forms is used, no quantity may represent a number greater than 2^63-1 in magnitude, nor may it have more than 3 decimal places. Numbers larger or more precise will be capped or rounded up. (E.g.: 0.1m will rounded up to 1m.) This may be extended in the future if we require larger or smaller quantities. When a Quantity is parsed from a string, it will remember the type of suffix it had, and will use the same type again when it is serialized. Before serializing, Quantity will be put in "canonical form". This means that Exponent/suffix will be adjusted up or down (with a corresponding increase or decrease in Mantissa) such that: - No precision is lost - No fractional digits will be emitted - The exponent (or suffix) is as large as possible. The sign will be omitted unless the number is negative. Examples: - 1.5 will be serialized as "1500m" - 1.5Gi will be serialized as "1536Mi" Note that the quantity will NEVER be internally represented by a floating point number. That is the whole point of this exercise. Non-canonical values will still parse as long as they are well formed, but will be re-emitted in their canonical form. (So always use canonical form, or don't diff.) This format is intended to make it difficult to use these numbers without writing some sort of special handling code in the hopes that that will cause implementors to also use a fixed point implementation.

IoK8SApiAutoscalingV2ContainerResourceMetricSource

PropertyTypeAttributesDescription
containerstringRequiredcontainer is the name of the container in the pods of the scaling target
namestringRequiredname is the name of the resource in question.
targetIoK8SApiAutoscalingV2MetricTargetRequiredMetricTarget defines the target value, average value, or average utilization of a specific metric

IoK8SApiAutoscalingV2ExternalMetricSource

PropertyTypeAttributesDescription
metricIoK8SApiAutoscalingV2MetricIdentifierRequiredMetricIdentifier defines the name and optionally selector for a metric
targetIoK8SApiAutoscalingV2MetricTargetRequiredMetricTarget defines the target value, average value, or average utilization of a specific metric

IoK8SApiAutoscalingV2ObjectMetricSource

PropertyTypeAttributesDescription
describedObjectIoK8SApiAutoscalingV2CrossVersionObjectReferenceRequiredCrossVersionObjectReference contains enough information to let you identify the referred resource.
metricIoK8SApiAutoscalingV2MetricIdentifierRequiredMetricIdentifier defines the name and optionally selector for a metric
targetIoK8SApiAutoscalingV2MetricTargetRequiredMetricTarget defines the target value, average value, or average utilization of a specific metric

IoK8SApiAutoscalingV2PodsMetricSource

PropertyTypeAttributesDescription
metricIoK8SApiAutoscalingV2MetricIdentifierRequiredMetricIdentifier defines the name and optionally selector for a metric
targetIoK8SApiAutoscalingV2MetricTargetRequiredMetricTarget defines the target value, average value, or average utilization of a specific metric

IoK8SApiAutoscalingV2ResourceMetricSource

PropertyTypeAttributesDescription
namestringRequiredname is the name of the resource in question.
targetIoK8SApiAutoscalingV2MetricTargetRequiredMetricTarget defines the target value, average value, or average utilization of a specific metric

IoK8SApiAutoscalingV2ContainerResourceMetricStatus

PropertyTypeAttributesDescription
containerstringRequiredcontainer is the name of the container in the pods of the scaling target
currentIoK8SApiAutoscalingV2MetricValueStatusRequiredMetricValueStatus holds the current value for a metric
namestringRequiredname is the name of the resource in question.

IoK8SApiAutoscalingV2ExternalMetricStatus

PropertyTypeAttributesDescription
currentIoK8SApiAutoscalingV2MetricValueStatusRequiredMetricValueStatus holds the current value for a metric
metricIoK8SApiAutoscalingV2MetricIdentifierRequiredMetricIdentifier defines the name and optionally selector for a metric

IoK8SApiAutoscalingV2ObjectMetricStatus

PropertyTypeAttributesDescription
currentIoK8SApiAutoscalingV2MetricValueStatusRequiredMetricValueStatus holds the current value for a metric
describedObjectIoK8SApiAutoscalingV2CrossVersionObjectReferenceRequiredCrossVersionObjectReference contains enough information to let you identify the referred resource.
metricIoK8SApiAutoscalingV2MetricIdentifierRequiredMetricIdentifier defines the name and optionally selector for a metric

IoK8SApiAutoscalingV2PodsMetricStatus

PropertyTypeAttributesDescription
currentIoK8SApiAutoscalingV2MetricValueStatusRequiredMetricValueStatus holds the current value for a metric
metricIoK8SApiAutoscalingV2MetricIdentifierRequiredMetricIdentifier defines the name and optionally selector for a metric

IoK8SApiAutoscalingV2ResourceMetricStatus

PropertyTypeAttributesDescription
currentIoK8SApiAutoscalingV2MetricValueStatusRequiredMetricValueStatus holds the current value for a metric
namestringRequiredname is the name of the resource in question.

IoK8SApiAutoscalingV2HPAScalingPolicy

PropertyTypeAttributesDescription
periodSecondsintRequiredperiodSeconds specifies the window of time for which the policy should hold true. PeriodSeconds must be greater than zero and less than or equal to 1800 (30 min).
typestringRequiredtype is used to specify the scaling policy.
valueintRequiredvalue contains the amount of change which is permitted by the policy. It must be greater than zero

IoK8SApiAutoscalingV2MetricTarget

PropertyTypeAttributesDescription
typestringRequiredtype represents whether the metric type is Utilization, Value, or AverageValue
averageUtilizationintaverageUtilization is the target value of the average of the resource metric across all relevant pods, represented as a percentage of the requested value of the resource for the pods. Currently only valid for Resource metric source type
averageValuestringQuantity is a fixed-point representation of a number. It provides convenient marshaling/unmarshaling in JSON and YAML, in addition to String() and AsInt64() accessors. The serialization format is: ``` <quantity> ::= <signedNumber><suffix> (Note that <suffix> may be empty, from the "" case in <decimalSI>.) <digit> ::= 0 | 1 | ... | 9 <digits> ::= <digit> | <digit><digits> <number> ::= <digits> | <digits>.<digits> | <digits>. | .<digits> <sign> ::= "+" | "-" <signedNumber> ::= <number> | <sign><number> <suffix> ::= <binarySI> | <decimalExponent> | <decimalSI> <binarySI> ::= Ki | Mi | Gi | Ti | Pi | Ei (International System of units; See: http://physics.nist.gov/cuu/Units/binary.html) <decimalSI> ::= m | "" | k | M | G | T | P | E (Note that 1024 = 1Ki but 1000 = 1k; I didn't choose the capitalization.) <decimalExponent> ::= "e" <signedNumber> | "E" <signedNumber> ``` No matter which of the three exponent forms is used, no quantity may represent a number greater than 2^63-1 in magnitude, nor may it have more than 3 decimal places. Numbers larger or more precise will be capped or rounded up. (E.g.: 0.1m will rounded up to 1m.) This may be extended in the future if we require larger or smaller quantities. When a Quantity is parsed from a string, it will remember the type of suffix it had, and will use the same type again when it is serialized. Before serializing, Quantity will be put in "canonical form". This means that Exponent/suffix will be adjusted up or down (with a corresponding increase or decrease in Mantissa) such that: - No precision is lost - No fractional digits will be emitted - The exponent (or suffix) is as large as possible. The sign will be omitted unless the number is negative. Examples: - 1.5 will be serialized as "1500m" - 1.5Gi will be serialized as "1536Mi" Note that the quantity will NEVER be internally represented by a floating point number. That is the whole point of this exercise. Non-canonical values will still parse as long as they are well formed, but will be re-emitted in their canonical form. (So always use canonical form, or don't diff.) This format is intended to make it difficult to use these numbers without writing some sort of special handling code in the hopes that that will cause implementors to also use a fixed point implementation.
valuestringQuantity is a fixed-point representation of a number. It provides convenient marshaling/unmarshaling in JSON and YAML, in addition to String() and AsInt64() accessors. The serialization format is: ``` <quantity> ::= <signedNumber><suffix> (Note that <suffix> may be empty, from the "" case in <decimalSI>.) <digit> ::= 0 | 1 | ... | 9 <digits> ::= <digit> | <digit><digits> <number> ::= <digits> | <digits>.<digits> | <digits>. | .<digits> <sign> ::= "+" | "-" <signedNumber> ::= <number> | <sign><number> <suffix> ::= <binarySI> | <decimalExponent> | <decimalSI> <binarySI> ::= Ki | Mi | Gi | Ti | Pi | Ei (International System of units; See: http://physics.nist.gov/cuu/Units/binary.html) <decimalSI> ::= m | "" | k | M | G | T | P | E (Note that 1024 = 1Ki but 1000 = 1k; I didn't choose the capitalization.) <decimalExponent> ::= "e" <signedNumber> | "E" <signedNumber> ``` No matter which of the three exponent forms is used, no quantity may represent a number greater than 2^63-1 in magnitude, nor may it have more than 3 decimal places. Numbers larger or more precise will be capped or rounded up. (E.g.: 0.1m will rounded up to 1m.) This may be extended in the future if we require larger or smaller quantities. When a Quantity is parsed from a string, it will remember the type of suffix it had, and will use the same type again when it is serialized. Before serializing, Quantity will be put in "canonical form". This means that Exponent/suffix will be adjusted up or down (with a corresponding increase or decrease in Mantissa) such that: - No precision is lost - No fractional digits will be emitted - The exponent (or suffix) is as large as possible. The sign will be omitted unless the number is negative. Examples: - 1.5 will be serialized as "1500m" - 1.5Gi will be serialized as "1536Mi" Note that the quantity will NEVER be internally represented by a floating point number. That is the whole point of this exercise. Non-canonical values will still parse as long as they are well formed, but will be re-emitted in their canonical form. (So always use canonical form, or don't diff.) This format is intended to make it difficult to use these numbers without writing some sort of special handling code in the hopes that that will cause implementors to also use a fixed point implementation.

IoK8SApiAutoscalingV2MetricIdentifier

PropertyTypeAttributesDescription
namestringRequiredname is the name of the given metric
selectorIoK8SApimachineryPkgApisMetaV1LabelSelectorA label selector is a label query over a set of resources. The result of matchLabels and matchExpressions are ANDed. An empty label selector matches all objects. A null label selector matches no objects.

IoK8SApiAutoscalingV2MetricValueStatus

PropertyTypeAttributesDescription
averageUtilizationintcurrentAverageUtilization is the current value of the average of the resource metric across all relevant pods, represented as a percentage of the requested value of the resource for the pods.
averageValuestringQuantity is a fixed-point representation of a number. It provides convenient marshaling/unmarshaling in JSON and YAML, in addition to String() and AsInt64() accessors. The serialization format is: ``` <quantity> ::= <signedNumber><suffix> (Note that <suffix> may be empty, from the "" case in <decimalSI>.) <digit> ::= 0 | 1 | ... | 9 <digits> ::= <digit> | <digit><digits> <number> ::= <digits> | <digits>.<digits> | <digits>. | .<digits> <sign> ::= "+" | "-" <signedNumber> ::= <number> | <sign><number> <suffix> ::= <binarySI> | <decimalExponent> | <decimalSI> <binarySI> ::= Ki | Mi | Gi | Ti | Pi | Ei (International System of units; See: http://physics.nist.gov/cuu/Units/binary.html) <decimalSI> ::= m | "" | k | M | G | T | P | E (Note that 1024 = 1Ki but 1000 = 1k; I didn't choose the capitalization.) <decimalExponent> ::= "e" <signedNumber> | "E" <signedNumber> ``` No matter which of the three exponent forms is used, no quantity may represent a number greater than 2^63-1 in magnitude, nor may it have more than 3 decimal places. Numbers larger or more precise will be capped or rounded up. (E.g.: 0.1m will rounded up to 1m.) This may be extended in the future if we require larger or smaller quantities. When a Quantity is parsed from a string, it will remember the type of suffix it had, and will use the same type again when it is serialized. Before serializing, Quantity will be put in "canonical form". This means that Exponent/suffix will be adjusted up or down (with a corresponding increase or decrease in Mantissa) such that: - No precision is lost - No fractional digits will be emitted - The exponent (or suffix) is as large as possible. The sign will be omitted unless the number is negative. Examples: - 1.5 will be serialized as "1500m" - 1.5Gi will be serialized as "1536Mi" Note that the quantity will NEVER be internally represented by a floating point number. That is the whole point of this exercise. Non-canonical values will still parse as long as they are well formed, but will be re-emitted in their canonical form. (So always use canonical form, or don't diff.) This format is intended to make it difficult to use these numbers without writing some sort of special handling code in the hopes that that will cause implementors to also use a fixed point implementation.
valuestringQuantity is a fixed-point representation of a number. It provides convenient marshaling/unmarshaling in JSON and YAML, in addition to String() and AsInt64() accessors. The serialization format is: ``` <quantity> ::= <signedNumber><suffix> (Note that <suffix> may be empty, from the "" case in <decimalSI>.) <digit> ::= 0 | 1 | ... | 9 <digits> ::= <digit> | <digit><digits> <number> ::= <digits> | <digits>.<digits> | <digits>. | .<digits> <sign> ::= "+" | "-" <signedNumber> ::= <number> | <sign><number> <suffix> ::= <binarySI> | <decimalExponent> | <decimalSI> <binarySI> ::= Ki | Mi | Gi | Ti | Pi | Ei (International System of units; See: http://physics.nist.gov/cuu/Units/binary.html) <decimalSI> ::= m | "" | k | M | G | T | P | E (Note that 1024 = 1Ki but 1000 = 1k; I didn't choose the capitalization.) <decimalExponent> ::= "e" <signedNumber> | "E" <signedNumber> ``` No matter which of the three exponent forms is used, no quantity may represent a number greater than 2^63-1 in magnitude, nor may it have more than 3 decimal places. Numbers larger or more precise will be capped or rounded up. (E.g.: 0.1m will rounded up to 1m.) This may be extended in the future if we require larger or smaller quantities. When a Quantity is parsed from a string, it will remember the type of suffix it had, and will use the same type again when it is serialized. Before serializing, Quantity will be put in "canonical form". This means that Exponent/suffix will be adjusted up or down (with a corresponding increase or decrease in Mantissa) such that: - No precision is lost - No fractional digits will be emitted - The exponent (or suffix) is as large as possible. The sign will be omitted unless the number is negative. Examples: - 1.5 will be serialized as "1500m" - 1.5Gi will be serialized as "1536Mi" Note that the quantity will NEVER be internally represented by a floating point number. That is the whole point of this exercise. Non-canonical values will still parse as long as they are well formed, but will be re-emitted in their canonical form. (So always use canonical form, or don't diff.) This format is intended to make it difficult to use these numbers without writing some sort of special handling code in the hopes that that will cause implementors to also use a fixed point implementation.

IoK8SApimachineryPkgApisMetaV1LabelSelector

PropertyTypeAttributesDescription
matchExpressionsIoK8SApimachineryPkgApisMetaV1LabelSelectorRequirement[]matchExpressions is a list of label selector requirements. The requirements are ANDed.
matchLabelsIoK8SApimachineryPkgApisMetaV1LabelSelectorMatchLabelsmatchLabels 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.

IoK8SApimachineryPkgApisMetaV1LabelSelectorRequirement

PropertyTypeAttributesDescription
keystringRequiredkey is the label key that the selector applies to.
operatorstringRequiredoperator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.
valuesstring[]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.

IoK8SApimachineryPkgApisMetaV1LabelSelectorMatchLabels

Additional properties of type string are allowed.