diff --git a/agent.k8s.elastic.co/agent_v1alpha1.json b/agent.k8s.elastic.co/agent_v1alpha1.json index 4f2a925a..da74c147 100644 --- a/agent.k8s.elastic.co/agent_v1alpha1.json +++ b/agent.k8s.elastic.co/agent_v1alpha1.json @@ -2,11 +2,11 @@ "description": "Agent is the Schema for the Agents API.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -21,18 +21,17 @@ "x-kubernetes-preserve-unknown-fields": true }, "configRef": { - "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Agent configuration. Agent settings must be specified as yaml, under a single \"agent.yml\" entry. At most one of [`Config`, `ConfigRef`] can be specified.", + "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Agent configuration.\nAgent settings must be specified as yaml, under a single \"agent.yml\" entry. At most one of [`Config`, `ConfigRef`]\ncan be specified.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "daemonSet": { - "description": "DaemonSet specifies the Agent should be deployed as a DaemonSet, and allows providing its spec. Cannot be used along with `deployment`.", + "description": "DaemonSet specifies the Agent should be deployed as a DaemonSet, and allows providing its spec.\nCannot be used along with `deployment` or `statefulSet`.", "properties": { "podTemplate": { "description": "PodTemplateSpec describes the data a pod should have when created from a template", @@ -43,7 +42,7 @@ "description": "DaemonSetUpdateStrategy is a struct used to control the update strategy for a DaemonSet.", "properties": { "rollingUpdate": { - "description": "Rolling update config params. Present only if type = \"RollingUpdate\". --- TODO: Update this to follow our convention for oneOf, whatever we decide it to be. Same as Deployment `strategy.rollingUpdate`. See https://github.com/kubernetes/kubernetes/issues/35345", + "description": "Rolling update config params. Present only if type = \"RollingUpdate\".\n---\nTODO: Update this to follow our convention for oneOf, whatever we decide it\nto be. Same as Deployment `strategy.rollingUpdate`.\nSee https://github.com/kubernetes/kubernetes/issues/35345", "properties": { "maxSurge": { "anyOf": [ @@ -54,7 +53,7 @@ "type": "string" } ], - "description": "The maximum number of nodes with an existing available DaemonSet pod that can have an updated DaemonSet pod during during an update. Value can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%). This can not be 0 if MaxUnavailable is 0. Absolute number is calculated from percentage by rounding up to a minimum of 1. Default value is 0. Example: when this is set to 30%, at most 30% of the total number of nodes that should be running the daemon pod (i.e. status.desiredNumberScheduled) can have their a new pod created before the old pod is marked as deleted. The update starts by launching new pods on 30% of nodes. Once an updated pod is available (Ready for at least minReadySeconds) the old DaemonSet pod on that node is marked deleted. If the old pod becomes unavailable for any reason (Ready transitions to false, is evicted, or is drained) an updated pod is immediatedly created on that node without considering surge limits. Allowing surge implies the possibility that the resources consumed by the daemonset on any given node can double if the readiness check fails, and so resource intensive daemonsets should take into account that they may cause evictions during disruption. This is beta field and enabled/disabled by DaemonSetUpdateSurge feature gate.", + "description": "The maximum number of nodes with an existing available DaemonSet pod that\ncan have an updated DaemonSet pod during during an update.\nValue can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%).\nThis can not be 0 if MaxUnavailable is 0.\nAbsolute number is calculated from percentage by rounding up to a minimum of 1.\nDefault value is 0.\nExample: when this is set to 30%, at most 30% of the total number of nodes\nthat should be running the daemon pod (i.e. status.desiredNumberScheduled)\ncan have their a new pod created before the old pod is marked as deleted.\nThe update starts by launching new pods on 30% of nodes. Once an updated\npod is available (Ready for at least minReadySeconds) the old DaemonSet pod\non that node is marked deleted. If the old pod becomes unavailable for any\nreason (Ready transitions to false, is evicted, or is drained) an updated\npod is immediatedly created on that node without considering surge limits.\nAllowing surge implies the possibility that the resources consumed by the\ndaemonset on any given node can double if the readiness check fails, and\nso resource intensive daemonsets should take into account that they may\ncause evictions during disruption.", "x-kubernetes-int-or-string": true }, "maxUnavailable": { @@ -66,27 +65,24 @@ "type": "string" } ], - "description": "The maximum number of DaemonSet pods that can be unavailable during the update. Value can be an absolute number (ex: 5) or a percentage of total number of DaemonSet pods at the start of the update (ex: 10%). Absolute number is calculated from percentage by rounding up. This cannot be 0 if MaxSurge is 0 Default value is 1. Example: when this is set to 30%, at most 30% of the total number of nodes that should be running the daemon pod (i.e. status.desiredNumberScheduled) can have their pods stopped for an update at any given time. The update starts by stopping at most 30% of those DaemonSet pods and then brings up new DaemonSet pods in their place. Once the new pods are available, it then proceeds onto other DaemonSet pods, thus ensuring that at least 70% of original number of DaemonSet pods are available at all times during the update.", + "description": "The maximum number of DaemonSet pods that can be unavailable during the\nupdate. Value can be an absolute number (ex: 5) or a percentage of total\nnumber of DaemonSet pods at the start of the update (ex: 10%). Absolute\nnumber is calculated from percentage by rounding up.\nThis cannot be 0 if MaxSurge is 0\nDefault value is 1.\nExample: when this is set to 30%, at most 30% of the total number of nodes\nthat should be running the daemon pod (i.e. status.desiredNumberScheduled)\ncan have their pods stopped for an update at any given time. The update\nstarts by stopping at most 30% of those DaemonSet pods and then brings\nup new DaemonSet pods in their place. Once the new pods are available,\nit then proceeds onto other DaemonSet pods, thus ensuring that at least\n70% of original number of DaemonSet pods are available at all times during\nthe update.", "x-kubernetes-int-or-string": true } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { "description": "Type of daemon set update. Can be \"RollingUpdate\" or \"OnDelete\". Default is RollingUpdate.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "deployment": { - "description": "Deployment specifies the Agent should be deployed as a Deployment, and allows providing its spec. Cannot be used along with `daemonSet`.", + "description": "Deployment specifies the Agent should be deployed as a Deployment, and allows providing its spec.\nCannot be used along with `daemonSet` or `statefulSet`.", "properties": { "podTemplate": { "description": "PodTemplateSpec describes the data a pod should have when created from a template", @@ -101,7 +97,7 @@ "description": "DeploymentStrategy describes how to replace existing pods with new ones.", "properties": { "rollingUpdate": { - "description": "Rolling update config params. Present only if DeploymentStrategyType = RollingUpdate. --- TODO: Update this to follow our convention for oneOf, whatever we decide it to be.", + "description": "Rolling update config params. Present only if DeploymentStrategyType =\nRollingUpdate.\n---\nTODO: Update this to follow our convention for oneOf, whatever we decide it\nto be.", "properties": { "maxSurge": { "anyOf": [ @@ -112,7 +108,7 @@ "type": "string" } ], - "description": "The maximum number of pods that can be scheduled above the desired number of pods. Value can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%). This can not be 0 if MaxUnavailable is 0. Absolute number is calculated from percentage by rounding up. Defaults to 25%. Example: when this is set to 30%, the new ReplicaSet can be scaled up immediately when the rolling update starts, such that the total number of old and new pods do not exceed 130% of desired pods. Once old pods have been killed, new ReplicaSet can be scaled up further, ensuring that total number of pods running at any time during the update is at most 130% of desired pods.", + "description": "The maximum number of pods that can be scheduled above the desired number of\npods.\nValue can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%).\nThis can not be 0 if MaxUnavailable is 0.\nAbsolute number is calculated from percentage by rounding up.\nDefaults to 25%.\nExample: when this is set to 30%, the new ReplicaSet can be scaled up immediately when\nthe rolling update starts, such that the total number of old and new pods do not exceed\n130% of desired pods. Once old pods have been killed,\nnew ReplicaSet can be scaled up further, ensuring that total number of pods running\nat any time during the update is at most 130% of desired pods.", "x-kubernetes-int-or-string": true }, "maxUnavailable": { @@ -124,27 +120,24 @@ "type": "string" } ], - "description": "The maximum number of pods that can be unavailable during the update. Value can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%). Absolute number is calculated from percentage by rounding down. This can not be 0 if MaxSurge is 0. Defaults to 25%. Example: when this is set to 30%, the old ReplicaSet can be scaled down to 70% of desired pods immediately when the rolling update starts. Once new pods are ready, old ReplicaSet can be scaled down further, followed by scaling up the new ReplicaSet, ensuring that the total number of pods available at all times during the update is at least 70% of desired pods.", + "description": "The maximum number of pods that can be unavailable during the update.\nValue can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%).\nAbsolute number is calculated from percentage by rounding down.\nThis can not be 0 if MaxSurge is 0.\nDefaults to 25%.\nExample: when this is set to 30%, the old ReplicaSet can be scaled down to 70% of desired pods\nimmediately when the rolling update starts. Once new pods are ready, old ReplicaSet\ncan be scaled down further, followed by scaling up the new ReplicaSet, ensuring\nthat the total number of pods available at all times during the update is at\nleast 70% of desired pods.", "x-kubernetes-int-or-string": true } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { "description": "Type of deployment. Can be \"Recreate\" or \"RollingUpdate\". Default is RollingUpdate.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "elasticsearchRefs": { - "description": "ElasticsearchRefs is a reference to a list of Elasticsearch clusters running in the same Kubernetes cluster. Due to existing limitations, only a single ES cluster is currently supported.", + "description": "ElasticsearchRefs is a reference to a list of Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single ES cluster is currently supported.", "items": { "properties": { "name": { @@ -159,16 +152,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -177,7 +169,7 @@ "type": "boolean" }, "fleetServerRef": { - "description": "FleetServerRef is a reference to Fleet Server that this Agent should connect to to obtain it's configuration. Don't set unless `mode` is set to `fleet`.", + "description": "FleetServerRef is a reference to Fleet Server that this Agent should connect to to obtain it's configuration.\nDon't set unless `mode` is set to `fleet`.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -188,16 +180,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for the Agent in Fleet mode with Fleet Server enabled.", @@ -206,7 +197,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -233,22 +224,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -256,72 +246,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -332,7 +322,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -344,15 +334,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -362,19 +351,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -384,43 +373,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -443,29 +427,25 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Agent Docker image to deploy. Version has to match the Agent in the image.", "type": "string" }, "kibanaRef": { - "description": "KibanaRef is a reference to Kibana where Fleet should be set up and this Agent should be enrolled. Don't set unless `mode` is set to `fleet`.", + "description": "KibanaRef is a reference to Kibana where Fleet should be set up and this Agent should be enrolled. Don't set\nunless `mode` is set to `fleet`.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -476,19 +456,18 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "mode": { - "description": "Mode specifies the source of configuration for the Agent. The configuration can be specified locally through `config` or `configRef` (`standalone` mode), or come from Fleet during runtime (`fleet` mode). Defaults to `standalone` mode.", + "description": "Mode specifies the source of configuration for the Agent. The configuration can be specified locally through\n`config` or `configRef` (`standalone` mode), or come from Fleet during runtime (`fleet` mode).\nDefaults to `standalone` mode.", "enum": [ "standalone", "fleet" @@ -496,21 +475,21 @@ "type": "string" }, "policyID": { - "description": "PolicyID optionally determines into which Agent Policy this Agent will be enrolled. If left empty the default policy will be used.", + "description": "PolicyID determines into which Agent Policy this Agent will be enrolled.\nThis field will become mandatory in a future release, default policies are deprecated since 8.1.0.", "type": "string" }, "revisionHistoryLimit": { - "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying DaemonSet or Deployment.", + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying DaemonSet or Deployment or StatefulSet.", "format": "int32", "type": "integer" }, "secureSettings": { - "description": "SecureSettings is a list of references to Kubernetes Secrets containing sensitive configuration options for the Agent. Secrets data can be then referenced in the Agent config using the Secret's keys or as specified in `Entries` field of each SecureSetting.", + "description": "SecureSettings is a list of references to Kubernetes Secrets containing sensitive configuration options for the Agent.\nSecrets data can be then referenced in the Agent config using the Secret's keys or as specified in `Entries` field of\neach SecureSetting.", "items": { "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -519,15 +498,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -539,15 +517,248 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to an Elasticsearch resource in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to an Elasticsearch resource in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, + "statefulSet": { + "description": "StatefulSet specifies the Agent should be deployed as a StatefulSet, and allows providing its spec.\nCannot be used along with `daemonSet` or `deployment`.", + "properties": { + "podManagementPolicy": { + "default": "Parallel", + "description": "PodManagementPolicy controls how pods are created during initial scale up,\nwhen replacing pods on nodes, or when scaling down. The default policy is\n`Parallel`, where pods are created in parallel to match the desired scale\nwithout waiting, and on scale down will delete all pods at once.\nThe alternative policy is `OrderedReady`, the default for vanilla kubernetes\nStatefulSets, where pods are created in increasing order in increasing order\n(pod-0, then pod-1, etc.) and the controller will wait until each pod is ready before\ncontinuing. When scaling down, the pods are removed in the opposite order.", + "enum": [ + "OrderedReady", + "Parallel" + ], + "type": "string" + }, + "podTemplate": { + "description": "PodTemplateSpec describes the data a pod should have when created from a template", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "replicas": { + "format": "int32", + "type": "integer" + }, + "serviceName": { + "type": "string" + }, + "volumeClaimTemplates": { + "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod.\nEvery claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate.\nItems defined here take precedence over any default claims added by the operator with the same name.", + "items": { + "description": "PersistentVolumeClaim is a user's request for and claim to a persistent volume", + "properties": { + "apiVersion": { + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", + "type": "string" + }, + "kind": { + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", + "type": "string" + }, + "metadata": { + "description": "Standard object's metadata.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "spec defines the desired characteristics of a volume requested by a pod author.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", + "properties": { + "accessModes": { + "description": "accessModes contains the desired access modes the volume should have.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", + "items": { + "type": "string" + }, + "type": "array" + }, + "dataSource": { + "description": "dataSource field can be used to specify either:\n* An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot)\n* An existing PVC (PersistentVolumeClaim)\nIf the provisioner or an external controller can support the specified data source,\nit will create a new volume based on the contents of the specified data source.\nWhen the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef,\nand dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified.\nIf the namespace is specified, then dataSourceRef will not be copied to dataSource.", + "properties": { + "apiGroup": { + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", + "type": "string" + }, + "kind": { + "description": "Kind is the type of resource being referenced", + "type": "string" + }, + "name": { + "description": "Name is the name of resource being referenced", + "type": "string" + } + }, + "required": [ + "kind", + "name" + ], + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "dataSourceRef": { + "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty\nvolume is desired. This may be any object from a non-empty API group (non\ncore object) or a PersistentVolumeClaim object.\nWhen this field is specified, volume binding will only succeed if the type of\nthe specified object matches some installed volume populator or dynamic\nprovisioner.\nThis field will replace the functionality of the dataSource field and as such\nif both fields are non-empty, they must have the same value. For backwards\ncompatibility, when namespace isn't specified in dataSourceRef,\nboth fields (dataSource and dataSourceRef) will be set to the same\nvalue automatically if one of them is empty and the other is non-empty.\nWhen namespace is specified in dataSourceRef,\ndataSource isn't set to the same value and must be empty.\nThere are three important differences between dataSource and dataSourceRef:\n* While dataSource only allows two specific types of objects, dataSourceRef\n allows any non-core object, as well as PersistentVolumeClaim objects.\n* While dataSource ignores disallowed values (dropping them), dataSourceRef\n preserves all values, and generates an error if a disallowed value is\n specified.\n* While dataSource only allows local objects, dataSourceRef allows objects\n in any namespaces.\n(Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled.\n(Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "properties": { + "apiGroup": { + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", + "type": "string" + }, + "kind": { + "description": "Kind is the type of resource being referenced", + "type": "string" + }, + "name": { + "description": "Name is the name of resource being referenced", + "type": "string" + }, + "namespace": { + "description": "Namespace is the namespace of resource being referenced\nNote that when a namespace is specified, a gateway.networking.k8s.io/ReferenceGrant object is required in the referent namespace to allow that namespace's owner to accept the reference. See the ReferenceGrant documentation for details.\n(Alpha) This field requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "type": "string" + } + }, + "required": [ + "kind", + "name" + ], + "type": "object" + }, + "resources": { + "description": "resources represents the minimum resources the volume should have.\nIf RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements\nthat are lower than previous value but must still be higher than capacity recorded in the\nstatus field of the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", + "properties": { + "limits": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "description": "Limits describes the maximum amount of compute resources allowed.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "type": "object" + }, + "requests": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "description": "Requests describes the minimum amount of compute resources required.\nIf Requests is omitted for a container, it defaults to Limits if that is explicitly specified,\notherwise to an implementation-defined value. Requests cannot exceed Limits.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "type": "object" + } + }, + "type": "object" + }, + "selector": { + "description": "selector is a label query over volumes to consider for binding.", + "properties": { + "matchExpressions": { + "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", + "items": { + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", + "properties": { + "key": { + "description": "key is the label key that the selector applies to.", + "type": "string" + }, + "operator": { + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", + "type": "string" + }, + "values": { + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", + "items": { + "type": "string" + }, + "type": "array" + } + }, + "required": [ + "key", + "operator" + ], + "type": "object" + }, + "type": "array" + }, + "matchLabels": { + "additionalProperties": { + "type": "string" + }, + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", + "type": "object" + } + }, + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "storageClassName": { + "description": "storageClassName is the name of the StorageClass required by the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "type": "string" + }, + "volumeAttributesClassName": { + "description": "volumeAttributesClassName may be used to set the VolumeAttributesClass used by this claim.\nIf specified, the CSI driver will create or update the volume with the attributes defined\nin the corresponding VolumeAttributesClass. This has a different purpose than storageClassName,\nit can be changed after the claim is created. An empty string value means that no VolumeAttributesClass\nwill be applied to the claim but it's not allowed to reset this field to empty string once it is set.\nIf unspecified and the PersistentVolumeClaim is unbound, the default VolumeAttributesClass\nwill be set by the persistentvolume controller if it exists.\nIf the resource referred to by volumeAttributesClass does not exist, this PersistentVolumeClaim will be\nset to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource\nexists.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#volumeattributesclass\n(Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled.", + "type": "string" + }, + "volumeMode": { + "description": "volumeMode defines what type of volume is required by the claim.\nValue of Filesystem is implied when not included in claim spec.", + "type": "string" + }, + "volumeName": { + "description": "volumeName is the binding reference to the PersistentVolume backing this claim.", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, "version": { "description": "Version of the Agent.", "type": "string" @@ -556,8 +767,7 @@ "required": [ "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "AgentStatus defines the observed state of the Agent", @@ -571,7 +781,7 @@ "description": "AssociationStatus is the status of an association resource.", "type": "string" }, - "description": "AssociationStatusMap is the map of association's namespaced name string to its AssociationStatus. For resources that have a single Association of a given type (for ex. single ES reference), this map contains a single entry.", + "description": "AssociationStatusMap is the map of association's namespaced name string to its AssociationStatus. For resources that\nhave a single Association of a given type (for ex. single ES reference), this map contains a single entry.", "type": "object" }, "expectedNodes": { @@ -590,18 +800,17 @@ "type": "string" }, "observedGeneration": { - "description": "ObservedGeneration is the most recent generation observed for this Elastic Agent. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the Elastic Agent controller has not yet processed the changes contained in the Elastic Agent specification.", + "description": "ObservedGeneration is the most recent generation observed for this Elastic Agent.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Elastic\nAgent controller has not yet processed the changes contained in the Elastic Agent specification.", "format": "int64", "type": "integer" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/apm.k8s.elastic.co/apmserver_v1.json b/apm.k8s.elastic.co/apmserver_v1.json index 477ba703..0a2308b5 100644 --- a/apm.k8s.elastic.co/apmserver_v1.json +++ b/apm.k8s.elastic.co/apmserver_v1.json @@ -2,11 +2,11 @@ "description": "ApmServer represents an APM Server resource in a Kubernetes cluster.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -37,16 +37,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for the APM Server resource.", @@ -55,7 +54,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -82,22 +81,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -105,72 +103,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -181,7 +179,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -193,15 +191,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -211,19 +208,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -233,43 +230,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -292,29 +284,25 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the APM Server Docker image to deploy.", "type": "string" }, "kibanaRef": { - "description": "KibanaRef is a reference to a Kibana instance running in the same Kubernetes cluster. It allows APM agent central configuration management in Kibana.", + "description": "KibanaRef is a reference to a Kibana instance running in the same Kubernetes cluster.\nIt allows APM agent central configuration management in Kibana.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -325,16 +313,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "podTemplate": { "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the APM Server pods.", @@ -352,7 +339,7 @@ "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -361,15 +348,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -381,13 +367,12 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "version": { @@ -398,8 +383,7 @@ "required": [ "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "ApmServerStatus defines the observed state of ApmServer", @@ -427,7 +411,7 @@ "type": "string" }, "observedGeneration": { - "description": "ObservedGeneration represents the .metadata.generation that the status is based upon. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the APM Server controller has not yet processed the changes contained in the APM Server specification.", + "description": "ObservedGeneration represents the .metadata.generation that the status is based upon.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the APM Server\ncontroller has not yet processed the changes contained in the APM Server specification.", "format": "int64", "type": "integer" }, @@ -444,13 +428,12 @@ "type": "string" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/apm.k8s.elastic.co/apmserver_v1alpha1.json b/apm.k8s.elastic.co/apmserver_v1alpha1.json index 2b57e5a9..0a2308b5 100644 --- a/apm.k8s.elastic.co/apmserver_v1alpha1.json +++ b/apm.k8s.elastic.co/apmserver_v1alpha1.json @@ -1,4 +1,439 @@ { - "description": "to not break compatibility when upgrading from previous versions of the CRD", + "description": "ApmServer represents an APM Server resource in a Kubernetes cluster.", + "properties": { + "apiVersion": { + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", + "type": "string" + }, + "kind": { + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", + "type": "string" + }, + "metadata": { + "type": "object" + }, + "spec": { + "description": "ApmServerSpec holds the specification of an APM Server.", + "properties": { + "config": { + "description": "Config holds the APM Server configuration. See: https://www.elastic.co/guide/en/apm/server/current/configuring-howto-apm-server.html", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "count": { + "description": "Count of APM Server instances to deploy.", + "format": "int32", + "type": "integer" + }, + "elasticsearchRef": { + "description": "ElasticsearchRef is a reference to the output Elasticsearch cluster running in the same Kubernetes cluster.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "http": { + "description": "HTTP holds the HTTP layer configuration for the APM Server resource.", + "properties": { + "service": { + "description": "Service defines the template for the associated Kubernetes Service object.", + "properties": { + "metadata": { + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "Spec is the specification of the service.", + "properties": { + "allocateLoadBalancerNodePorts": { + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", + "type": "boolean" + }, + "clusterIP": { + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "clusterIPs": { + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "externalIPs": { + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", + "items": { + "type": "string" + }, + "type": "array" + }, + "externalName": { + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "type": "string" + }, + "externalTrafficPolicy": { + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", + "type": "string" + }, + "healthCheckNodePort": { + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", + "format": "int32", + "type": "integer" + }, + "internalTrafficPolicy": { + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", + "type": "string" + }, + "ipFamilies": { + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", + "items": { + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "ipFamilyPolicy": { + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", + "type": "string" + }, + "loadBalancerClass": { + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "type": "string" + }, + "loadBalancerIP": { + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", + "type": "string" + }, + "loadBalancerSourceRanges": { + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "items": { + "type": "string" + }, + "type": "array" + }, + "ports": { + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "description": "ServicePort contains information on service's port.", + "properties": { + "appProtocol": { + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", + "type": "string" + }, + "name": { + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", + "type": "string" + }, + "nodePort": { + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "format": "int32", + "type": "integer" + }, + "port": { + "description": "The port that will be exposed by this service.", + "format": "int32", + "type": "integer" + }, + "protocol": { + "default": "TCP", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", + "type": "string" + }, + "targetPort": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "port" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-list-map-keys": [ + "port", + "protocol" + ], + "x-kubernetes-list-type": "map" + }, + "publishNotReadyAddresses": { + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", + "type": "boolean" + }, + "selector": { + "additionalProperties": { + "type": "string" + }, + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "sessionAffinity": { + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "sessionAffinityConfig": { + "description": "sessionAffinityConfig contains the configurations of session affinity.", + "properties": { + "clientIP": { + "description": "clientIP contains the configurations of Client IP based session affinity.", + "properties": { + "timeoutSeconds": { + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", + "format": "int32", + "type": "integer" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "type": { + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "tls": { + "description": "TLS defines options for configuring TLS for HTTP.", + "properties": { + "certificate": { + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "selfSignedCertificate": { + "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", + "properties": { + "disabled": { + "description": "Disabled indicates that the provisioning of the self-signed certifcate should be disabled.", + "type": "boolean" + }, + "subjectAltNames": { + "description": "SubjectAlternativeNames is a list of SANs to include in the generated HTTP TLS certificate.", + "items": { + "description": "SubjectAlternativeName represents a SAN entry in a x509 certificate.", + "properties": { + "dns": { + "description": "DNS is the DNS name of the subject.", + "type": "string" + }, + "ip": { + "description": "IP is the IP address of the subject.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "image": { + "description": "Image is the APM Server Docker image to deploy.", + "type": "string" + }, + "kibanaRef": { + "description": "KibanaRef is a reference to a Kibana instance running in the same Kubernetes cluster.\nIt allows APM agent central configuration management in Kibana.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "podTemplate": { + "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the APM Server pods.", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "revisionHistoryLimit": { + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying Deployment.", + "format": "int32", + "type": "integer" + }, + "secureSettings": { + "description": "SecureSettings is a list of references to Kubernetes secrets containing sensitive configuration options for APM Server.", + "items": { + "description": "SecretSource defines a data source based on a Kubernetes Secret.", + "properties": { + "entries": { + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", + "items": { + "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", + "properties": { + "key": { + "description": "Key is the key contained in the secret.", + "type": "string" + }, + "path": { + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", + "type": "string" + } + }, + "required": [ + "key" + ], + "type": "object" + }, + "type": "array" + }, + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "required": [ + "secretName" + ], + "type": "object" + }, + "type": "array" + }, + "serviceAccountName": { + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", + "type": "string" + }, + "version": { + "description": "Version of the APM Server.", + "type": "string" + } + }, + "required": [ + "version" + ], + "type": "object" + }, + "status": { + "description": "ApmServerStatus defines the observed state of ApmServer", + "properties": { + "availableNodes": { + "description": "AvailableNodes is the number of available replicas in the deployment.", + "format": "int32", + "type": "integer" + }, + "count": { + "description": "Count corresponds to Scale.Status.Replicas, which is the actual number of observed instances of the scaled object.", + "format": "int32", + "type": "integer" + }, + "elasticsearchAssociationStatus": { + "description": "ElasticsearchAssociationStatus is the status of any auto-linking to Elasticsearch clusters.", + "type": "string" + }, + "health": { + "description": "Health of the deployment.", + "type": "string" + }, + "kibanaAssociationStatus": { + "description": "KibanaAssociationStatus is the status of any auto-linking to Kibana.", + "type": "string" + }, + "observedGeneration": { + "description": "ObservedGeneration represents the .metadata.generation that the status is based upon.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the APM Server\ncontroller has not yet processed the changes contained in the APM Server specification.", + "format": "int64", + "type": "integer" + }, + "secretTokenSecret": { + "description": "SecretTokenSecretName is the name of the Secret that contains the secret token", + "type": "string" + }, + "selector": { + "description": "Selector is the label selector used to find all pods.", + "type": "string" + }, + "service": { + "description": "ExternalService is the name of the service the agents should connect to.", + "type": "string" + }, + "version": { + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", + "type": "string" + } + }, + "type": "object" + } + }, "type": "object" -} +} \ No newline at end of file diff --git a/apm.k8s.elastic.co/apmserver_v1beta1.json b/apm.k8s.elastic.co/apmserver_v1beta1.json index 4e8cbf0b..0a2308b5 100644 --- a/apm.k8s.elastic.co/apmserver_v1beta1.json +++ b/apm.k8s.elastic.co/apmserver_v1beta1.json @@ -2,11 +2,11 @@ "description": "ApmServer represents an APM Server resource in a Kubernetes cluster.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -29,19 +29,23 @@ "description": "ElasticsearchRef is a reference to the output Elasticsearch cluster running in the same Kubernetes cluster.", "properties": { "name": { - "description": "Name of the Kubernetes object.", + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", "type": "string" }, "namespace": { "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" } }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for the APM Server resource.", @@ -50,7 +54,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -77,22 +81,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -100,72 +103,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -176,7 +179,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -188,15 +191,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -206,19 +208,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -228,43 +230,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -287,39 +284,62 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the APM Server Docker image to deploy.", "type": "string" }, + "kibanaRef": { + "description": "KibanaRef is a reference to a Kibana instance running in the same Kubernetes cluster.\nIt allows APM agent central configuration management in Kibana.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, "podTemplate": { "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the APM Server pods.", "type": "object", "x-kubernetes-preserve-unknown-fields": true }, + "revisionHistoryLimit": { + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying Deployment.", + "format": "int32", + "type": "integer" + }, "secureSettings": { "description": "SecureSettings is a list of references to Kubernetes secrets containing sensitive configuration options for APM Server.", "items": { "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -328,15 +348,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -348,46 +367,73 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, + "serviceAccountName": { + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", + "type": "string" + }, "version": { "description": "Version of the APM Server.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "required": [ + "version" + ], + "type": "object" }, "status": { "description": "ApmServerStatus defines the observed state of ApmServer", "properties": { - "associationStatus": { - "description": "Association is the status of any auto-linking to Elasticsearch clusters.", - "type": "string" - }, "availableNodes": { + "description": "AvailableNodes is the number of available replicas in the deployment.", + "format": "int32", + "type": "integer" + }, + "count": { + "description": "Count corresponds to Scale.Status.Replicas, which is the actual number of observed instances of the scaled object.", "format": "int32", "type": "integer" }, + "elasticsearchAssociationStatus": { + "description": "ElasticsearchAssociationStatus is the status of any auto-linking to Elasticsearch clusters.", + "type": "string" + }, "health": { - "description": "ApmServerHealth expresses the status of the Apm Server instances.", + "description": "Health of the deployment.", + "type": "string" + }, + "kibanaAssociationStatus": { + "description": "KibanaAssociationStatus is the status of any auto-linking to Kibana.", "type": "string" }, + "observedGeneration": { + "description": "ObservedGeneration represents the .metadata.generation that the status is based upon.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the APM Server\ncontroller has not yet processed the changes contained in the APM Server specification.", + "format": "int64", + "type": "integer" + }, "secretTokenSecret": { "description": "SecretTokenSecretName is the name of the Secret that contains the secret token", "type": "string" }, + "selector": { + "description": "Selector is the label selector used to find all pods.", + "type": "string" + }, "service": { "description": "ExternalService is the name of the service the agents should connect to.", "type": "string" + }, + "version": { + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", + "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/autoscaling.k8s.elastic.co/elasticsearchautoscaler_v1alpha1.json b/autoscaling.k8s.elastic.co/elasticsearchautoscaler_v1alpha1.json new file mode 100644 index 00000000..743c9e6a --- /dev/null +++ b/autoscaling.k8s.elastic.co/elasticsearchautoscaler_v1alpha1.json @@ -0,0 +1,393 @@ +{ + "description": "ElasticsearchAutoscaler represents an ElasticsearchAutoscaler resource in a Kubernetes cluster.", + "properties": { + "apiVersion": { + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", + "type": "string" + }, + "kind": { + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", + "type": "string" + }, + "metadata": { + "type": "object" + }, + "spec": { + "description": "ElasticsearchAutoscalerSpec holds the specification of an Elasticsearch autoscaler resource.", + "properties": { + "elasticsearchRef": { + "description": "ElasticsearchRef is a reference to an Elasticsearch cluster that exists in the same namespace.", + "properties": { + "name": { + "description": "Name is the name of the Elasticsearch resource to scale automatically.", + "minLength": 1, + "type": "string" + } + }, + "type": "object" + }, + "policies": { + "items": { + "description": "AutoscalingPolicySpec holds a named autoscaling policy and the associated resources limits (cpu, memory, storage).", + "properties": { + "deciders": { + "additionalProperties": { + "additionalProperties": { + "type": "string" + }, + "description": "DeciderSettings allow the user to tweak autoscaling deciders.\nThe map data structure complies with the format expected by Elasticsearch.", + "type": "object" + }, + "description": "Deciders allow the user to override default settings for autoscaling deciders.", + "type": "object" + }, + "name": { + "description": "Name identifies the autoscaling policy in the autoscaling specification.", + "type": "string" + }, + "resources": { + "description": "AutoscalingResources model the limits, submitted by the user, for the supported resources in an autoscaling policy.\nOnly the node count range is mandatory. For other resources, a limit range is required only\nif the Elasticsearch autoscaling capacity API returns a requirement for a given resource.\nFor example, the memory limit range is only required if the autoscaling API response contains a memory requirement.\nIf there is no limit range for a resource, and if that resource is not mandatory, then the resources in the NodeSets\nmanaged by the autoscaling policy are left untouched.", + "properties": { + "cpu": { + "description": "QuantityRange models a resource limit range for resources which can be expressed with resource.Quantity.", + "properties": { + "max": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Max represents the upper limit for the resources managed by the autoscaler.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "min": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Min represents the lower limit for the resources managed by the autoscaler.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "requestsToLimitsRatio": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "RequestsToLimitsRatio allows to customize Kubernetes resource Limit based on the Request.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "max", + "min" + ], + "type": "object" + }, + "memory": { + "description": "QuantityRange models a resource limit range for resources which can be expressed with resource.Quantity.", + "properties": { + "max": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Max represents the upper limit for the resources managed by the autoscaler.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "min": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Min represents the lower limit for the resources managed by the autoscaler.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "requestsToLimitsRatio": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "RequestsToLimitsRatio allows to customize Kubernetes resource Limit based on the Request.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "max", + "min" + ], + "type": "object" + }, + "nodeCount": { + "description": "NodeCountRange is used to model the minimum and the maximum number of nodes over all the NodeSets managed by the same autoscaling policy.", + "properties": { + "max": { + "description": "Max represents the maximum number of nodes in a tier.", + "format": "int32", + "type": "integer" + }, + "min": { + "description": "Min represents the minimum number of nodes in a tier.", + "format": "int32", + "type": "integer" + } + }, + "required": [ + "max", + "min" + ], + "type": "object" + }, + "storage": { + "description": "QuantityRange models a resource limit range for resources which can be expressed with resource.Quantity.", + "properties": { + "max": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Max represents the upper limit for the resources managed by the autoscaler.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "min": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Min represents the lower limit for the resources managed by the autoscaler.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "requestsToLimitsRatio": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "RequestsToLimitsRatio allows to customize Kubernetes resource Limit based on the Request.", + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "max", + "min" + ], + "type": "object" + } + }, + "required": [ + "nodeCount" + ], + "type": "object" + }, + "roles": { + "description": "An autoscaling policy must target a unique set of roles.", + "items": { + "type": "string" + }, + "type": "array" + } + }, + "required": [ + "resources" + ], + "type": "object" + }, + "type": "array" + }, + "pollingPeriod": { + "description": "PollingPeriod is the period at which to synchronize with the Elasticsearch autoscaling API.", + "type": "string" + } + }, + "required": [ + "policies" + ], + "type": "object" + }, + "status": { + "properties": { + "conditions": { + "description": "Conditions holds the current service state of the autoscaling controller.", + "items": { + "description": "Condition represents Elasticsearch resource's condition.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastTransitionTime": { + "format": "date-time", + "type": "string" + }, + "message": { + "type": "string" + }, + "status": { + "type": "string" + }, + "type": { + "description": "ConditionType defines the condition of an Elasticsearch resource.", + "type": "string" + } + }, + "required": [ + "status", + "type" + ], + "type": "object" + }, + "type": "array" + }, + "observedGeneration": { + "description": "ObservedGeneration is the last observed generation by the controller.", + "format": "int64", + "type": "integer" + }, + "policies": { + "description": "AutoscalingPolicyStatuses is used to expose state messages to user or external system.", + "items": { + "properties": { + "lastModificationTime": { + "description": "LastModificationTime is the last time the resources have been updated, used by the cooldown algorithm.", + "format": "date-time", + "type": "string" + }, + "name": { + "description": "Name is the name of the autoscaling policy", + "type": "string" + }, + "nodeSets": { + "description": "NodeSetNodeCount holds the number of nodes for each nodeSet.", + "items": { + "description": "NodeSetNodeCount models the number of nodes expected in a given NodeSet.", + "properties": { + "name": { + "description": "Name of the Nodeset.", + "type": "string" + }, + "nodeCount": { + "description": "NodeCount is the number of nodes, as computed by the autoscaler, expected in this NodeSet.", + "format": "int32", + "type": "integer" + } + }, + "required": [ + "name", + "nodeCount" + ], + "type": "object" + }, + "type": "array" + }, + "resources": { + "description": "ResourcesSpecification holds the resource values common to all the nodeSets managed by a same autoscaling policy.\nOnly the resources managed by the autoscaling controller are saved in the Status.", + "properties": { + "limits": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "description": "ResourceList is a set of (resource name, quantity) pairs.", + "type": "object" + }, + "requests": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "description": "ResourceList is a set of (resource name, quantity) pairs.", + "type": "object" + } + }, + "type": "object" + }, + "state": { + "description": "PolicyStates may contain various messages regarding the current state of this autoscaling policy.", + "items": { + "properties": { + "messages": { + "items": { + "type": "string" + }, + "type": "array" + }, + "type": { + "type": "string" + } + }, + "required": [ + "messages", + "type" + ], + "type": "object" + }, + "type": "array" + } + }, + "required": [ + "name" + ], + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" +} \ No newline at end of file diff --git a/beat.k8s.elastic.co/beat_v1beta1.json b/beat.k8s.elastic.co/beat_v1beta1.json index f525b194..fe1fdeba 100644 --- a/beat.k8s.elastic.co/beat_v1beta1.json +++ b/beat.k8s.elastic.co/beat_v1beta1.json @@ -2,11 +2,11 @@ "description": "Beat is the Schema for the Beats API.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -21,18 +21,17 @@ "x-kubernetes-preserve-unknown-fields": true }, "configRef": { - "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Beat configuration. Beat settings must be specified as yaml, under a single \"beat.yml\" entry. At most one of [`Config`, `ConfigRef`] can be specified.", + "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Beat configuration.\nBeat settings must be specified as yaml, under a single \"beat.yml\" entry. At most one of [`Config`, `ConfigRef`]\ncan be specified.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "daemonSet": { - "description": "DaemonSet specifies the Beat should be deployed as a DaemonSet, and allows providing its spec. Cannot be used along with `deployment`. If both are absent a default for the Type is used.", + "description": "DaemonSet specifies the Beat should be deployed as a DaemonSet, and allows providing its spec.\nCannot be used along with `deployment`. If both are absent a default for the Type is used.", "properties": { "podTemplate": { "description": "PodTemplateSpec describes the data a pod should have when created from a template", @@ -43,7 +42,7 @@ "description": "DaemonSetUpdateStrategy is a struct used to control the update strategy for a DaemonSet.", "properties": { "rollingUpdate": { - "description": "Rolling update config params. Present only if type = \"RollingUpdate\". --- TODO: Update this to follow our convention for oneOf, whatever we decide it to be. Same as Deployment `strategy.rollingUpdate`. See https://github.com/kubernetes/kubernetes/issues/35345", + "description": "Rolling update config params. Present only if type = \"RollingUpdate\".\n---\nTODO: Update this to follow our convention for oneOf, whatever we decide it\nto be. Same as Deployment `strategy.rollingUpdate`.\nSee https://github.com/kubernetes/kubernetes/issues/35345", "properties": { "maxSurge": { "anyOf": [ @@ -54,7 +53,7 @@ "type": "string" } ], - "description": "The maximum number of nodes with an existing available DaemonSet pod that can have an updated DaemonSet pod during during an update. Value can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%). This can not be 0 if MaxUnavailable is 0. Absolute number is calculated from percentage by rounding up to a minimum of 1. Default value is 0. Example: when this is set to 30%, at most 30% of the total number of nodes that should be running the daemon pod (i.e. status.desiredNumberScheduled) can have their a new pod created before the old pod is marked as deleted. The update starts by launching new pods on 30% of nodes. Once an updated pod is available (Ready for at least minReadySeconds) the old DaemonSet pod on that node is marked deleted. If the old pod becomes unavailable for any reason (Ready transitions to false, is evicted, or is drained) an updated pod is immediatedly created on that node without considering surge limits. Allowing surge implies the possibility that the resources consumed by the daemonset on any given node can double if the readiness check fails, and so resource intensive daemonsets should take into account that they may cause evictions during disruption. This is beta field and enabled/disabled by DaemonSetUpdateSurge feature gate.", + "description": "The maximum number of nodes with an existing available DaemonSet pod that\ncan have an updated DaemonSet pod during during an update.\nValue can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%).\nThis can not be 0 if MaxUnavailable is 0.\nAbsolute number is calculated from percentage by rounding up to a minimum of 1.\nDefault value is 0.\nExample: when this is set to 30%, at most 30% of the total number of nodes\nthat should be running the daemon pod (i.e. status.desiredNumberScheduled)\ncan have their a new pod created before the old pod is marked as deleted.\nThe update starts by launching new pods on 30% of nodes. Once an updated\npod is available (Ready for at least minReadySeconds) the old DaemonSet pod\non that node is marked deleted. If the old pod becomes unavailable for any\nreason (Ready transitions to false, is evicted, or is drained) an updated\npod is immediatedly created on that node without considering surge limits.\nAllowing surge implies the possibility that the resources consumed by the\ndaemonset on any given node can double if the readiness check fails, and\nso resource intensive daemonsets should take into account that they may\ncause evictions during disruption.", "x-kubernetes-int-or-string": true }, "maxUnavailable": { @@ -66,27 +65,24 @@ "type": "string" } ], - "description": "The maximum number of DaemonSet pods that can be unavailable during the update. Value can be an absolute number (ex: 5) or a percentage of total number of DaemonSet pods at the start of the update (ex: 10%). Absolute number is calculated from percentage by rounding up. This cannot be 0 if MaxSurge is 0 Default value is 1. Example: when this is set to 30%, at most 30% of the total number of nodes that should be running the daemon pod (i.e. status.desiredNumberScheduled) can have their pods stopped for an update at any given time. The update starts by stopping at most 30% of those DaemonSet pods and then brings up new DaemonSet pods in their place. Once the new pods are available, it then proceeds onto other DaemonSet pods, thus ensuring that at least 70% of original number of DaemonSet pods are available at all times during the update.", + "description": "The maximum number of DaemonSet pods that can be unavailable during the\nupdate. Value can be an absolute number (ex: 5) or a percentage of total\nnumber of DaemonSet pods at the start of the update (ex: 10%). Absolute\nnumber is calculated from percentage by rounding up.\nThis cannot be 0 if MaxSurge is 0\nDefault value is 1.\nExample: when this is set to 30%, at most 30% of the total number of nodes\nthat should be running the daemon pod (i.e. status.desiredNumberScheduled)\ncan have their pods stopped for an update at any given time. The update\nstarts by stopping at most 30% of those DaemonSet pods and then brings\nup new DaemonSet pods in their place. Once the new pods are available,\nit then proceeds onto other DaemonSet pods, thus ensuring that at least\n70% of original number of DaemonSet pods are available at all times during\nthe update.", "x-kubernetes-int-or-string": true } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { "description": "Type of daemon set update. Can be \"RollingUpdate\" or \"OnDelete\". Default is RollingUpdate.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "deployment": { - "description": "Deployment specifies the Beat should be deployed as a Deployment, and allows providing its spec. Cannot be used along with `daemonSet`. If both are absent a default for the Type is used.", + "description": "Deployment specifies the Beat should be deployed as a Deployment, and allows providing its spec.\nCannot be used along with `daemonSet`. If both are absent a default for the Type is used.", "properties": { "podTemplate": { "description": "PodTemplateSpec describes the data a pod should have when created from a template", @@ -101,7 +97,7 @@ "description": "DeploymentStrategy describes how to replace existing pods with new ones.", "properties": { "rollingUpdate": { - "description": "Rolling update config params. Present only if DeploymentStrategyType = RollingUpdate. --- TODO: Update this to follow our convention for oneOf, whatever we decide it to be.", + "description": "Rolling update config params. Present only if DeploymentStrategyType =\nRollingUpdate.\n---\nTODO: Update this to follow our convention for oneOf, whatever we decide it\nto be.", "properties": { "maxSurge": { "anyOf": [ @@ -112,7 +108,7 @@ "type": "string" } ], - "description": "The maximum number of pods that can be scheduled above the desired number of pods. Value can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%). This can not be 0 if MaxUnavailable is 0. Absolute number is calculated from percentage by rounding up. Defaults to 25%. Example: when this is set to 30%, the new ReplicaSet can be scaled up immediately when the rolling update starts, such that the total number of old and new pods do not exceed 130% of desired pods. Once old pods have been killed, new ReplicaSet can be scaled up further, ensuring that total number of pods running at any time during the update is at most 130% of desired pods.", + "description": "The maximum number of pods that can be scheduled above the desired number of\npods.\nValue can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%).\nThis can not be 0 if MaxUnavailable is 0.\nAbsolute number is calculated from percentage by rounding up.\nDefaults to 25%.\nExample: when this is set to 30%, the new ReplicaSet can be scaled up immediately when\nthe rolling update starts, such that the total number of old and new pods do not exceed\n130% of desired pods. Once old pods have been killed,\nnew ReplicaSet can be scaled up further, ensuring that total number of pods running\nat any time during the update is at most 130% of desired pods.", "x-kubernetes-int-or-string": true }, "maxUnavailable": { @@ -124,24 +120,21 @@ "type": "string" } ], - "description": "The maximum number of pods that can be unavailable during the update. Value can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%). Absolute number is calculated from percentage by rounding down. This can not be 0 if MaxSurge is 0. Defaults to 25%. Example: when this is set to 30%, the old ReplicaSet can be scaled down to 70% of desired pods immediately when the rolling update starts. Once new pods are ready, old ReplicaSet can be scaled down further, followed by scaling up the new ReplicaSet, ensuring that the total number of pods available at all times during the update is at least 70% of desired pods.", + "description": "The maximum number of pods that can be unavailable during the update.\nValue can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%).\nAbsolute number is calculated from percentage by rounding down.\nThis can not be 0 if MaxSurge is 0.\nDefaults to 25%.\nExample: when this is set to 30%, the old ReplicaSet can be scaled down to 70% of desired pods\nimmediately when the rolling update starts. Once new pods are ready, old ReplicaSet\ncan be scaled down further, followed by scaling up the new ReplicaSet, ensuring\nthat the total number of pods available at all times during the update is at\nleast 70% of desired pods.", "x-kubernetes-int-or-string": true } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { "description": "Type of deployment. Can be \"Recreate\" or \"RollingUpdate\". Default is RollingUpdate.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "elasticsearchRef": { "description": "ElasticsearchRef is a reference to an Elasticsearch cluster running in the same Kubernetes cluster.", @@ -155,23 +148,22 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Beat Docker image to deploy. Version and Type have to match the Beat in the image.", "type": "string" }, "kibanaRef": { - "description": "KibanaRef is a reference to a Kibana instance running in the same Kubernetes cluster. It allows automatic setup of dashboards and visualizations.", + "description": "KibanaRef is a reference to a Kibana instance running in the same Kubernetes cluster.\nIt allows automatic setup of dashboards and visualizations.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -182,16 +174,85 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" + }, + "monitoring": { + "description": "Monitoring enables you to collect and ship logs and metrics for this Beat.\nMetricbeat and/or Filebeat sidecars are configured and send monitoring data to an\nElasticsearch monitoring cluster running in the same Kubernetes cluster.", + "properties": { + "logs": { + "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "metrics": { + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" }, "revisionHistoryLimit": { "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying DaemonSet or Deployment.", @@ -199,12 +260,12 @@ "type": "integer" }, "secureSettings": { - "description": "SecureSettings is a list of references to Kubernetes Secrets containing sensitive configuration options for the Beat. Secrets data can be then referenced in the Beat config using the Secret's keys or as specified in `Entries` field of each SecureSetting.", + "description": "SecureSettings is a list of references to Kubernetes Secrets containing sensitive configuration options for the Beat.\nSecrets data can be then referenced in the Beat config using the Secret's keys or as specified in `Entries` field of\neach SecureSetting.", "items": { "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -213,15 +274,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -233,17 +293,16 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to Elasticsearch resource in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to Elasticsearch resource in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "type": { - "description": "Type is the type of the Beat to deploy (filebeat, metricbeat, heartbeat, auditbeat, journalbeat, packetbeat, and so on). Any string can be used, but well-known types will have the image field defaulted and have the appropriate Elasticsearch roles created automatically. It also allows for dashboard setup when combined with a `KibanaRef`.", + "description": "Type is the type of the Beat to deploy (filebeat, metricbeat, heartbeat, auditbeat, journalbeat, packetbeat, and so on).\nAny string can be used, but well-known types will have the image field defaulted and have the appropriate\nElasticsearch roles created automatically. It also allows for dashboard setup when combined with a `KibanaRef`.", "maxLength": 20, "pattern": "[a-zA-Z0-9-]+", "type": "string" @@ -257,8 +316,7 @@ "type", "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "BeatStatus defines the observed state of a Beat.", @@ -282,19 +340,26 @@ "description": "AssociationStatus is the status of an association resource.", "type": "string" }, + "monitoringAssociationStatus": { + "additionalProperties": { + "description": "AssociationStatus is the status of an association resource.", + "type": "string" + }, + "description": "AssociationStatusMap is the map of association's namespaced name string to its AssociationStatus. For resources that\nhave a single Association of a given type (for ex. single ES reference), this map contains a single entry.", + "type": "object" + }, "observedGeneration": { - "description": "ObservedGeneration represents the .metadata.generation that the status is based upon. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the Beats controller has not yet processed the changes contained in the Beats specification.", + "description": "ObservedGeneration represents the .metadata.generation that the status is based upon.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Beats\ncontroller has not yet processed the changes contained in the Beats specification.", "format": "int64", "type": "integer" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/druid.apache.org/druidingestion_v1alpha1.json b/druid.apache.org/druidingestion_v1alpha1.json new file mode 100644 index 00000000..c59bb6a5 --- /dev/null +++ b/druid.apache.org/druidingestion_v1alpha1.json @@ -0,0 +1,107 @@ +{ + "description": "Ingestion is the Schema for the Ingestion API", + "properties": { + "apiVersion": { + "description": "APIVersion 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", + "type": "string" + }, + "kind": { + "description": "Kind 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", + "type": "string" + }, + "metadata": { + "type": "object" + }, + "spec": { + "properties": { + "auth": { + "properties": { + "secretRef": { + "description": "SecretReference represents a Secret Reference. It has enough information to retrieve secret in any namespace", + "properties": { + "name": { + "description": "name is unique within a namespace to reference a secret resource.", + "type": "string" + }, + "namespace": { + "description": "namespace defines the space within which the secret name must be unique.", + "type": "string" + } + }, + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "type": { + "type": "string" + } + }, + "required": [ + "secretRef", + "type" + ], + "type": "object" + }, + "druidCluster": { + "type": "string" + }, + "ingestion": { + "properties": { + "spec": { + "type": "string" + }, + "type": { + "type": "string" + } + }, + "required": [ + "type" + ], + "type": "object" + }, + "suspend": { + "type": "boolean" + } + }, + "required": [ + "druidCluster", + "ingestion" + ], + "type": "object" + }, + "status": { + "properties": { + "currentIngestionSpec.json": { + "type": "string" + }, + "lastUpdateTime": { + "format": "date-time", + "type": "string" + }, + "message": { + "type": "string" + }, + "reason": { + "type": "string" + }, + "status": { + "type": "string" + }, + "taskId": { + "type": "string" + }, + "type": { + "type": "string" + } + }, + "required": [ + "currentIngestionSpec.json", + "taskId" + ], + "type": "object" + } + }, + "required": [ + "spec" + ], + "type": "object" +} \ No newline at end of file diff --git a/elasticsearch.k8s.elastic.co/elasticsearch_v1.json b/elasticsearch.k8s.elastic.co/elasticsearch_v1.json index 5a6dee52..c8a65cf4 100644 --- a/elasticsearch.k8s.elastic.co/elasticsearch_v1.json +++ b/elasticsearch.k8s.elastic.co/elasticsearch_v1.json @@ -2,11 +2,11 @@ "description": "Elasticsearch represents an Elasticsearch resource in a Kubernetes cluster.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -18,6 +18,10 @@ "auth": { "description": "Auth contains user authentication and authorization security settings for Elasticsearch.", "properties": { + "disableElasticUser": { + "description": "DisableElasticUser disables the default elastic user that is created by ECK.", + "type": "boolean" + }, "fileRealm": { "description": "FileRealm to propagate to the Elasticsearch cluster.", "items": { @@ -28,8 +32,7 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -43,14 +46,12 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds HTTP layer settings for Elasticsearch.", @@ -59,7 +60,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -86,22 +87,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -109,72 +109,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -185,7 +185,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -197,15 +197,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -215,19 +214,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -237,43 +236,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -296,37 +290,33 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Elasticsearch Docker image to deploy.", "type": "string" }, "monitoring": { - "description": "Monitoring enables you to collect and ship log and monitoring data of this Elasticsearch cluster. See https://www.elastic.co/guide/en/elasticsearch/reference/current/monitor-elasticsearch-cluster.html. Metricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different Elasticsearch monitoring clusters running in the same Kubernetes cluster.", + "description": "Monitoring enables you to collect and ship log and monitoring data of this Elasticsearch cluster.\nSee https://www.elastic.co/guide/en/elasticsearch/reference/current/monitor-elasticsearch-cluster.html.\nMetricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different\nElasticsearch monitoring clusters running in the same Kubernetes cluster.", "properties": { "logs": { - "description": "Logs holds references to Elasticsearch clusters which receive log data from this Elasticsearch cluster.", + "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", "properties": { "elasticsearchRefs": { - "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster. Due to existing limitations, only a single Elasticsearch cluster is currently supported.", + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", "items": { - "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator or a Secret describing an external Elastic resource not managed by the operator.", + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -337,30 +327,28 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "metrics": { - "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this Elasticsearch cluster.", + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", "properties": { "elasticsearchRefs": { - "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster. Due to existing limitations, only a single Elasticsearch cluster is currently supported.", + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", "items": { - "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator or a Secret describing an external Elastic resource not managed by the operator.", + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -371,26 +359,23 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "nodeSets": { "description": "NodeSets allow specifying groups of Elasticsearch nodes sharing the same configuration and Pod templates.", @@ -403,7 +388,7 @@ "x-kubernetes-preserve-unknown-fields": true }, "count": { - "description": "Count of Elasticsearch nodes to deploy. If the node set is managed by an autoscaling policy the initial value is automatically set by the autoscaling controller.", + "description": "Count of Elasticsearch nodes to deploy.\nIf the node set is managed by an autoscaling policy the initial value is automatically set by the autoscaling controller.", "format": "int32", "type": "integer" }, @@ -419,20 +404,20 @@ "x-kubernetes-preserve-unknown-fields": true }, "volumeClaimTemplates": { - "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod in this NodeSet. Every claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate. Items defined here take precedence over any default claims added by the operator with the same name.", + "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod in this NodeSet.\nEvery claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate.\nItems defined here take precedence over any default claims added by the operator with the same name.", "items": { "description": "PersistentVolumeClaim is a user's request for and claim to a persistent volume", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { - "description": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "description": "Standard object's metadata.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", "properties": { "annotations": { "additionalProperties": { @@ -459,24 +444,23 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { - "description": "spec defines the desired characteristics of a volume requested by a pod author. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", + "description": "spec defines the desired characteristics of a volume requested by a pod author.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", "properties": { "accessModes": { - "description": "accessModes contains the desired access modes the volume should have. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", + "description": "accessModes contains the desired access modes the volume should have.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", "items": { "type": "string" }, "type": "array" }, "dataSource": { - "description": "dataSource field can be used to specify either: * An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot) * An existing PVC (PersistentVolumeClaim) If the provisioner or an external controller can support the specified data source, it will create a new volume based on the contents of the specified data source. If the AnyVolumeDataSource feature gate is enabled, this field will always have the same contents as the DataSourceRef field.", + "description": "dataSource field can be used to specify either:\n* An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot)\n* An existing PVC (PersistentVolumeClaim)\nIf the provisioner or an external controller can support the specified data source,\nit will create a new volume based on the contents of the specified data source.\nWhen the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef,\nand dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified.\nIf the namespace is specified, then dataSourceRef will not be copied to dataSource.", "properties": { "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", "type": "string" }, "kind": { @@ -493,14 +477,13 @@ "name" ], "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" }, "dataSourceRef": { - "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty volume is desired. This may be any local object from a non-empty API group (non core object) or a PersistentVolumeClaim object. When this field is specified, volume binding will only succeed if the type of the specified object matches some installed volume populator or dynamic provisioner. This field will replace the functionality of the DataSource field and as such if both fields are non-empty, they must have the same value. For backwards compatibility, both fields (DataSource and DataSourceRef) will be set to the same value automatically if one of them is empty and the other is non-empty. There are two important differences between DataSource and DataSourceRef: * While DataSource only allows two specific types of objects, DataSourceRef allows any non-core object, as well as PersistentVolumeClaim objects. * While DataSource ignores disallowed values (dropping them), DataSourceRef preserves all values, and generates an error if a disallowed value is specified. (Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled.", + "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty\nvolume is desired. This may be any object from a non-empty API group (non\ncore object) or a PersistentVolumeClaim object.\nWhen this field is specified, volume binding will only succeed if the type of\nthe specified object matches some installed volume populator or dynamic\nprovisioner.\nThis field will replace the functionality of the dataSource field and as such\nif both fields are non-empty, they must have the same value. For backwards\ncompatibility, when namespace isn't specified in dataSourceRef,\nboth fields (dataSource and dataSourceRef) will be set to the same\nvalue automatically if one of them is empty and the other is non-empty.\nWhen namespace is specified in dataSourceRef,\ndataSource isn't set to the same value and must be empty.\nThere are three important differences between dataSource and dataSourceRef:\n* While dataSource only allows two specific types of objects, dataSourceRef\n allows any non-core object, as well as PersistentVolumeClaim objects.\n* While dataSource ignores disallowed values (dropping them), dataSourceRef\n preserves all values, and generates an error if a disallowed value is\n specified.\n* While dataSource only allows local objects, dataSourceRef allows objects\n in any namespaces.\n(Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled.\n(Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", "properties": { "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", "type": "string" }, "kind": { @@ -510,18 +493,20 @@ "name": { "description": "Name is the name of resource being referenced", "type": "string" + }, + "namespace": { + "description": "Namespace is the namespace of resource being referenced\nNote that when a namespace is specified, a gateway.networking.k8s.io/ReferenceGrant object is required in the referent namespace to allow that namespace's owner to accept the reference. See the ReferenceGrant documentation for details.\n(Alpha) This field requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "type": "string" } }, "required": [ "kind", "name" ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "type": "object" }, "resources": { - "description": "resources represents the minimum resources the volume should have. If RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements that are lower than previous value but must still be higher than capacity recorded in the status field of the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", + "description": "resources represents the minimum resources the volume should have.\nIf RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements\nthat are lower than previous value but must still be higher than capacity recorded in the\nstatus field of the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", "properties": { "limits": { "additionalProperties": { @@ -536,7 +521,7 @@ "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", "x-kubernetes-int-or-string": true }, - "description": "Limits describes the maximum amount of compute resources allowed. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "description": "Limits describes the maximum amount of compute resources allowed.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", "type": "object" }, "requests": { @@ -552,12 +537,11 @@ "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", "x-kubernetes-int-or-string": true }, - "description": "Requests describes the minimum amount of compute resources required. If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, otherwise to an implementation-defined value. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "description": "Requests describes the minimum amount of compute resources required.\nIf Requests is omitted for a container, it defaults to Limits if that is explicitly specified,\notherwise to an implementation-defined value. Requests cannot exceed Limits.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selector": { "description": "selector is a label query over volumes to consider for binding.", @@ -565,18 +549,18 @@ "matchExpressions": { "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", "properties": { "key": { "description": "key is the label key that the selector applies to.", "type": "string" }, "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", "type": "string" }, "values": { - "description": "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.", + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", "items": { "type": "string" }, @@ -587,8 +571,7 @@ "key", "operator" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -596,20 +579,23 @@ "additionalProperties": { "type": "string" }, - "description": "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.", + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", "type": "object" } }, "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" }, "storageClassName": { - "description": "storageClassName is the name of the StorageClass required by the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "description": "storageClassName is the name of the StorageClass required by the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "type": "string" + }, + "volumeAttributesClassName": { + "description": "volumeAttributesClassName may be used to set the VolumeAttributesClass used by this claim.\nIf specified, the CSI driver will create or update the volume with the attributes defined\nin the corresponding VolumeAttributesClass. This has a different purpose than storageClassName,\nit can be changed after the claim is created. An empty string value means that no VolumeAttributesClass\nwill be applied to the claim but it's not allowed to reset this field to empty string once it is set.\nIf unspecified and the PersistentVolumeClaim is unbound, the default VolumeAttributesClass\nwill be set by the persistentvolume controller if it exists.\nIf the resource referred to by volumeAttributesClass does not exist, this PersistentVolumeClaim will be\nset to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource\nexists.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#volumeattributesclass\n(Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled.", "type": "string" }, "volumeMode": { - "description": "volumeMode defines what type of volume is required by the claim. Value of Filesystem is implied when not included in claim spec.", + "description": "volumeMode defines what type of volume is required by the claim.\nValue of Filesystem is implied when not included in claim spec.", "type": "string" }, "volumeName": { @@ -617,106 +603,10 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false - }, - "status": { - "description": "status represents the current information/status of a persistent volume claim. Read-only. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", - "properties": { - "accessModes": { - "description": "accessModes contains the actual access modes the volume backing the PVC has. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", - "items": { - "type": "string" - }, - "type": "array" - }, - "allocatedResources": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "allocatedResources is the storage resource within AllocatedResources tracks the capacity allocated to a PVC. It may be larger than the actual capacity when a volume expansion operation is requested. For storage quota, the larger value from allocatedResources and PVC.spec.resources is used. If allocatedResources is not set, PVC.spec.resources alone is used for quota calculation. If a volume expansion capacity request is lowered, allocatedResources is only lowered if there are no expansion operations in progress and if the actual volume capacity is equal or lower than the requested capacity. This is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", - "type": "object" - }, - "capacity": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "capacity represents the actual resources of the underlying volume.", - "type": "object" - }, - "conditions": { - "description": "conditions is the current Condition of persistent volume claim. If underlying persistent volume is being resized then the Condition will be set to 'ResizeStarted'.", - "items": { - "description": "PersistentVolumeClaimCondition contails details about state of pvc", - "properties": { - "lastProbeTime": { - "description": "lastProbeTime is the time we probed the condition.", - "format": "date-time", - "type": "string" - }, - "lastTransitionTime": { - "description": "lastTransitionTime is the time the condition transitioned from one status to another.", - "format": "date-time", - "type": "string" - }, - "message": { - "description": "message is the human-readable message indicating details about last transition.", - "type": "string" - }, - "reason": { - "description": "reason is a unique, this should be a short, machine understandable string that gives the reason for condition's last transition. If it reports \"ResizeStarted\" that means the underlying persistent volume is being resized.", - "type": "string" - }, - "status": { - "type": "string" - }, - "type": { - "description": "PersistentVolumeClaimConditionType is a valid value of PersistentVolumeClaimCondition.Type", - "type": "string" - } - }, - "required": [ - "status", - "type" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "phase": { - "description": "phase represents the current phase of PersistentVolumeClaim.", - "type": "string" - }, - "resizeStatus": { - "description": "resizeStatus stores status of resize operation. ResizeStatus is not set by default but when expansion is complete resizeStatus is set to empty string by resize controller or kubelet. This is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } @@ -724,17 +614,16 @@ "required": [ "name" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "minItems": 1, "type": "array" }, "podDisruptionBudget": { - "description": "PodDisruptionBudget provides access to the default pod disruption budget for the Elasticsearch cluster. The default budget selects all cluster pods and sets `maxUnavailable` to 1. To disable, set `PodDisruptionBudget` to the empty value (`{}` in YAML).", + "description": "PodDisruptionBudget provides access to the default Pod disruption budget for the Elasticsearch cluster.\nThe default budget doesn't allow any Pod to be removed in case the cluster is not green or if there is only one node of type `data` or `master`.\nIn all other cases the default PodDisruptionBudget sets `minUnavailable` equal to the total number of nodes minus 1.\nTo disable, set `PodDisruptionBudget` to the empty value (`{}` in YAML).", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the PDB. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the PDB.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -761,8 +650,7 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the PDB.", @@ -776,7 +664,7 @@ "type": "string" } ], - "description": "An eviction is allowed if at most \"maxUnavailable\" pods selected by \"selector\" are unavailable after the eviction, i.e. even in absence of the evicted pod. For example, one can prevent all voluntary evictions by specifying 0. This is a mutually exclusive setting with \"minAvailable\".", + "description": "An eviction is allowed if at most \"maxUnavailable\" pods selected by\n\"selector\" are unavailable after the eviction, i.e. even in absence of\nthe evicted pod. For example, one can prevent all voluntary evictions\nby specifying 0. This is a mutually exclusive setting with \"minAvailable\".", "x-kubernetes-int-or-string": true }, "minAvailable": { @@ -788,27 +676,27 @@ "type": "string" } ], - "description": "An eviction is allowed if at least \"minAvailable\" pods selected by \"selector\" will still be available after the eviction, i.e. even in the absence of the evicted pod. So for example you can prevent all voluntary evictions by specifying \"100%\".", + "description": "An eviction is allowed if at least \"minAvailable\" pods selected by\n\"selector\" will still be available after the eviction, i.e. even in the\nabsence of the evicted pod. So for example you can prevent all voluntary\nevictions by specifying \"100%\".", "x-kubernetes-int-or-string": true }, "selector": { - "description": "Label query over pods whose evictions are managed by the disruption budget. A null selector will match no pods, while an empty ({}) selector will select all pods within the namespace.", + "description": "Label query over pods whose evictions are managed by the disruption\nbudget.\nA null selector will match no pods, while an empty ({}) selector will select\nall pods within the namespace.", "properties": { "matchExpressions": { "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", "properties": { "key": { "description": "key is the label key that the selector applies to.", "type": "string" }, "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", "type": "string" }, "values": { - "description": "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.", + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", "items": { "type": "string" }, @@ -819,8 +707,7 @@ "key", "operator" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -828,21 +715,22 @@ "additionalProperties": { "type": "string" }, - "description": "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.", + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", "type": "object" } }, "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" + }, + "unhealthyPodEvictionPolicy": { + "description": "UnhealthyPodEvictionPolicy defines the criteria for when unhealthy pods\nshould be considered for eviction. Current implementation considers healthy pods,\nas pods that have status.conditions item with type=\"Ready\",status=\"True\".\n\n\nValid policies are IfHealthyBudget and AlwaysAllow.\nIf no policy is specified, the default behavior will be used,\nwhich corresponds to the IfHealthyBudget policy.\n\n\nIfHealthyBudget policy means that running pods (status.phase=\"Running\"),\nbut not yet healthy can be evicted only if the guarded application is not\ndisrupted (status.currentHealthy is at least equal to status.desiredHealthy).\nHealthy pods will be subject to the PDB for eviction.\n\n\nAlwaysAllow policy means that all running pods (status.phase=\"Running\"),\nbut not yet healthy are considered disrupted and can be evicted regardless\nof whether the criteria in a PDB is met. This means perspective running\npods of a disrupted application might not get a chance to become healthy.\nHealthy pods will be subject to the PDB for eviction.\n\n\nAdditional policies may be added in the future.\nClients making eviction decisions should disallow eviction of unhealthy pods\nif they encounter an unrecognized policy in this field.\n\n\nThis field is beta-level. The eviction API uses this field when\nthe feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default).", + "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "remoteClusters": { "description": "RemoteClusters enables you to establish uni-directional connections to a remote Elasticsearch cluster.", @@ -861,15 +749,14 @@ "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "name": { - "description": "Name is the name of the remote cluster as it is set in the Elasticsearch settings. The name is expected to be unique for each remote clusters.", + "description": "Name is the name of the remote cluster as it is set in the Elasticsearch settings.\nThe name is expected to be unique for each remote clusters.", "minLength": 1, "type": "string" } @@ -877,8 +764,7 @@ "required": [ "name" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -893,7 +779,7 @@ "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -902,15 +788,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -922,13 +807,12 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. a remote Elasticsearch cluster) in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. a remote Elasticsearch cluster) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "transport": { @@ -938,7 +822,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -965,22 +849,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -988,72 +871,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -1064,7 +947,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -1076,15 +959,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -1094,19 +976,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -1116,46 +998,50 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS on the transport layer.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the CA certificate and private key for generating node certificates. The referenced secret should contain the following: \n - `ca.crt`: The CA certificate in PEM format. - `ca.key`: The private key for the CA certificate in PEM format.", + "description": "Certificate is a reference to a Kubernetes secret that contains the CA certificate\nand private key for generating node certificates.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The CA certificate in PEM format.\n- `ca.key`: The private key for the CA certificate in PEM format.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" + }, + "certificateAuthorities": { + "description": "CertificateAuthorities is a reference to a config map that contains one or more x509 certificates for\ntrusted authorities in PEM format. The certificates need to be in a file called `ca.crt`.", + "properties": { + "configMapName": { + "type": "string" + } + }, + "type": "object" }, "otherNameSuffix": { - "description": "OtherNameSuffix when defined will be prefixed with the Pod name and used as the common name, and the first DNSName, as well as an OtherName required by Elasticsearch in the Subject Alternative Name extension of each Elasticsearch node's transport TLS certificate. Example: if set to \"node.cluster.local\", the generated certificate will have its otherName set to \".node.cluster.local\".", + "description": "OtherNameSuffix when defined will be prefixed with the Pod name and used as the common name,\nand the first DNSName, as well as an OtherName required by Elasticsearch in the Subject Alternative Name\nextension of each Elasticsearch node's transport TLS certificate.\nExample: if set to \"node.cluster.local\", the generated certificate will have its otherName set to \".node.cluster.local\".", "type": "string" }, "subjectAltNames": { @@ -1172,18 +1058,15 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "updateStrategy": { "description": "UpdateStrategy specifies how updates to the cluster should be performed.", @@ -1192,29 +1075,27 @@ "description": "ChangeBudget defines the constraints to consider when applying changes to the Elasticsearch cluster.", "properties": { "maxSurge": { - "description": "MaxSurge is the maximum number of new pods that can be created exceeding the original number of pods defined in the specification. MaxSurge is only taken into consideration when scaling up. Setting a negative value will disable the restriction. Defaults to unbounded if not specified.", + "description": "MaxSurge is the maximum number of new Pods that can be created exceeding the original number of Pods defined in\nthe specification. MaxSurge is only taken into consideration when scaling up. Setting a negative value will\ndisable the restriction. Defaults to unbounded if not specified.", "format": "int32", "type": "integer" }, "maxUnavailable": { - "description": "MaxUnavailable is the maximum number of pods that can be unavailable (not ready) during the update due to circumstances under the control of the operator. Setting a negative value will disable this restriction. Defaults to 1 if not specified.", + "description": "MaxUnavailable is the maximum number of Pods that can be unavailable (not ready) during the update due to\ncircumstances under the control of the operator. Setting a negative value will disable this restriction.\nDefaults to 1 if not specified.", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "version": { "description": "Version of Elasticsearch.", "type": "string" }, "volumeClaimDeletePolicy": { - "description": "VolumeClaimDeletePolicy sets the policy for handling deletion of PersistentVolumeClaims for all NodeSets. Possible values are DeleteOnScaledownOnly and DeleteOnScaledownAndClusterDeletion. Defaults to DeleteOnScaledownAndClusterDeletion.", + "description": "VolumeClaimDeletePolicy sets the policy for handling deletion of PersistentVolumeClaims for all NodeSets.\nPossible values are DeleteOnScaledownOnly and DeleteOnScaledownAndClusterDeletion. Defaults to DeleteOnScaledownAndClusterDeletion.", "enum": [ "DeleteOnScaledownOnly", "DeleteOnScaledownAndClusterDeletion" @@ -1226,8 +1107,7 @@ "nodeSets", "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "ElasticsearchStatus represents the observed state of Elasticsearch.", @@ -1238,9 +1118,9 @@ "type": "integer" }, "conditions": { - "description": "Conditions holds the current service state of an Elasticsearch cluster. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "Conditions holds the current service state of an Elasticsearch cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", "items": { - "description": "Condition represents Elasticsearch resource's condition. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "Condition represents Elasticsearch resource's condition.\n**This API is in technical preview and may be changed or removed in a future release.**", "properties": { "lastTransitionTime": { "format": "date-time", @@ -1261,8 +1141,7 @@ "status", "type" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -1271,10 +1150,10 @@ "type": "string" }, "inProgressOperations": { - "description": "InProgressOperations represents changes being applied by the operator to the Elasticsearch cluster. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "InProgressOperations represents changes being applied by the operator to the Elasticsearch cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", "properties": { "downscale": { - "description": "DownscaleOperation provides details about in progress downscale operations. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "DownscaleOperation provides details about in progress downscale operations.\n**This API is in technical preview and may be changed or removed in a future release.**", "properties": { "lastUpdatedTime": { "format": "date-time", @@ -1283,10 +1162,10 @@ "nodes": { "description": "Nodes which are scheduled to be removed from the cluster.", "items": { - "description": "DownscaledNode provides an overview of in progress changes applied by the operator to remove Elasticsearch nodes from the cluster. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "DownscaledNode provides an overview of in progress changes applied by the operator to remove Elasticsearch nodes from the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", "properties": { "explanation": { - "description": "Explanation provides details about an in progress node shutdown. It is only available for clusters managed with the Elasticsearch shutdown API.", + "description": "Explanation provides details about an in progress node shutdown. It is only available for clusters managed with the\nElasticsearch shutdown API.", "type": "string" }, "name": { @@ -1294,7 +1173,7 @@ "type": "string" }, "shutdownStatus": { - "description": "Shutdown status as returned by the Elasticsearch shutdown API. If the Elasticsearch shutdown API is not available, the shutdown status is then inferred from the remaining shards on the nodes, as observed by the operator.", + "description": "Shutdown status as returned by the Elasticsearch shutdown API.\nIf the Elasticsearch shutdown API is not available, the shutdown status is then inferred from the remaining\nshards on the nodes, as observed by the operator.", "type": "string" } }, @@ -1302,21 +1181,19 @@ "name", "shutdownStatus" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, "stalled": { - "description": "Stalled represents a state where no progress can be made. It is only available for clusters managed with the Elasticsearch shutdown API.", + "description": "Stalled represents a state where no progress can be made.\nIt is only available for clusters managed with the Elasticsearch shutdown API.", "type": "boolean" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "upgrade": { - "description": "UpgradeOperation provides an overview of the pending or in progress changes applied by the operator to update the Elasticsearch nodes in the cluster. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "UpgradeOperation provides an overview of the pending or in progress changes applied by the operator to update the Elasticsearch nodes in the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", "properties": { "lastUpdatedTime": { "format": "date-time", @@ -1325,7 +1202,7 @@ "nodes": { "description": "Nodes that must be restarted for upgrade.", "items": { - "description": "UpgradedNode provides details about the status of nodes which are expected to be updated. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "UpgradedNode provides details about the status of nodes which are expected to be updated.\n**This API is in technical preview and may be changed or removed in a future release.**", "properties": { "message": { "description": "Optional message to explain why a node may not be immediately restarted for upgrade.", @@ -1340,7 +1217,7 @@ "type": "string" }, "status": { - "description": "Status states if the node is either in the process of being deleted for an upgrade, or blocked by a predicate or another condition stated in the message field.", + "description": "Status states if the node is either in the process of being deleted for an upgrade,\nor blocked by a predicate or another condition stated in the message field.", "type": "string" } }, @@ -1348,17 +1225,15 @@ "name", "status" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "upscale": { - "description": "UpscaleOperation provides an overview of in progress changes applied by the operator to add Elasticsearch nodes to the cluster. **This API is in technical preview and may be changed or removed in a future release.**", + "description": "UpscaleOperation provides an overview of in progress changes applied by the operator to add Elasticsearch nodes to the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", "properties": { "lastUpdatedTime": { "format": "date-time", @@ -1385,14 +1260,12 @@ "name", "status" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "required": [ @@ -1400,19 +1273,18 @@ "upgrade", "upscale" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "monitoringAssociationStatus": { "additionalProperties": { "description": "AssociationStatus is the status of an association resource.", "type": "string" }, - "description": "AssociationStatusMap is the map of association's namespaced name string to its AssociationStatus. For resources that have a single Association of a given type (for ex. single ES reference), this map contains a single entry.", + "description": "AssociationStatusMap is the map of association's namespaced name string to its AssociationStatus. For resources that\nhave a single Association of a given type (for ex. single ES reference), this map contains a single entry.", "type": "object" }, "observedGeneration": { - "description": "ObservedGeneration is the most recent generation observed for this Elasticsearch cluster. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the Elasticsearch controller has not yet processed the changes contained in the Elasticsearch specification.", + "description": "ObservedGeneration is the most recent generation observed for this Elasticsearch cluster.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Elasticsearch\ncontroller has not yet processed the changes contained in the Elasticsearch specification.", "format": "int64", "type": "integer" }, @@ -1421,13 +1293,12 @@ "type": "string" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/elasticsearch.k8s.elastic.co/elasticsearch_v1alpha1.json b/elasticsearch.k8s.elastic.co/elasticsearch_v1alpha1.json index 2b57e5a9..c8a65cf4 100644 --- a/elasticsearch.k8s.elastic.co/elasticsearch_v1alpha1.json +++ b/elasticsearch.k8s.elastic.co/elasticsearch_v1alpha1.json @@ -1,4 +1,1304 @@ { - "description": "to not break compatibility when upgrading from previous versions of the CRD", + "description": "Elasticsearch represents an Elasticsearch resource in a Kubernetes cluster.", + "properties": { + "apiVersion": { + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", + "type": "string" + }, + "kind": { + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", + "type": "string" + }, + "metadata": { + "type": "object" + }, + "spec": { + "description": "ElasticsearchSpec holds the specification of an Elasticsearch cluster.", + "properties": { + "auth": { + "description": "Auth contains user authentication and authorization security settings for Elasticsearch.", + "properties": { + "disableElasticUser": { + "description": "DisableElasticUser disables the default elastic user that is created by ECK.", + "type": "boolean" + }, + "fileRealm": { + "description": "FileRealm to propagate to the Elasticsearch cluster.", + "items": { + "description": "FileRealmSource references users to create in the Elasticsearch cluster.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + }, + "roles": { + "description": "Roles to propagate to the Elasticsearch cluster.", + "items": { + "description": "RoleSource references roles to create in the Elasticsearch cluster.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "http": { + "description": "HTTP holds HTTP layer settings for Elasticsearch.", + "properties": { + "service": { + "description": "Service defines the template for the associated Kubernetes Service object.", + "properties": { + "metadata": { + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "Spec is the specification of the service.", + "properties": { + "allocateLoadBalancerNodePorts": { + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", + "type": "boolean" + }, + "clusterIP": { + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "clusterIPs": { + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "externalIPs": { + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", + "items": { + "type": "string" + }, + "type": "array" + }, + "externalName": { + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "type": "string" + }, + "externalTrafficPolicy": { + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", + "type": "string" + }, + "healthCheckNodePort": { + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", + "format": "int32", + "type": "integer" + }, + "internalTrafficPolicy": { + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", + "type": "string" + }, + "ipFamilies": { + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", + "items": { + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "ipFamilyPolicy": { + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", + "type": "string" + }, + "loadBalancerClass": { + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "type": "string" + }, + "loadBalancerIP": { + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", + "type": "string" + }, + "loadBalancerSourceRanges": { + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "items": { + "type": "string" + }, + "type": "array" + }, + "ports": { + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "description": "ServicePort contains information on service's port.", + "properties": { + "appProtocol": { + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", + "type": "string" + }, + "name": { + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", + "type": "string" + }, + "nodePort": { + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "format": "int32", + "type": "integer" + }, + "port": { + "description": "The port that will be exposed by this service.", + "format": "int32", + "type": "integer" + }, + "protocol": { + "default": "TCP", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", + "type": "string" + }, + "targetPort": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "port" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-list-map-keys": [ + "port", + "protocol" + ], + "x-kubernetes-list-type": "map" + }, + "publishNotReadyAddresses": { + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", + "type": "boolean" + }, + "selector": { + "additionalProperties": { + "type": "string" + }, + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "sessionAffinity": { + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "sessionAffinityConfig": { + "description": "sessionAffinityConfig contains the configurations of session affinity.", + "properties": { + "clientIP": { + "description": "clientIP contains the configurations of Client IP based session affinity.", + "properties": { + "timeoutSeconds": { + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", + "format": "int32", + "type": "integer" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "type": { + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "tls": { + "description": "TLS defines options for configuring TLS for HTTP.", + "properties": { + "certificate": { + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "selfSignedCertificate": { + "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", + "properties": { + "disabled": { + "description": "Disabled indicates that the provisioning of the self-signed certifcate should be disabled.", + "type": "boolean" + }, + "subjectAltNames": { + "description": "SubjectAlternativeNames is a list of SANs to include in the generated HTTP TLS certificate.", + "items": { + "description": "SubjectAlternativeName represents a SAN entry in a x509 certificate.", + "properties": { + "dns": { + "description": "DNS is the DNS name of the subject.", + "type": "string" + }, + "ip": { + "description": "IP is the IP address of the subject.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "image": { + "description": "Image is the Elasticsearch Docker image to deploy.", + "type": "string" + }, + "monitoring": { + "description": "Monitoring enables you to collect and ship log and monitoring data of this Elasticsearch cluster.\nSee https://www.elastic.co/guide/en/elasticsearch/reference/current/monitor-elasticsearch-cluster.html.\nMetricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different\nElasticsearch monitoring clusters running in the same Kubernetes cluster.", + "properties": { + "logs": { + "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "metrics": { + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "nodeSets": { + "description": "NodeSets allow specifying groups of Elasticsearch nodes sharing the same configuration and Pod templates.", + "items": { + "description": "NodeSet is the specification for a group of Elasticsearch nodes sharing the same configuration and a Pod template.", + "properties": { + "config": { + "description": "Config holds the Elasticsearch configuration.", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "count": { + "description": "Count of Elasticsearch nodes to deploy.\nIf the node set is managed by an autoscaling policy the initial value is automatically set by the autoscaling controller.", + "format": "int32", + "type": "integer" + }, + "name": { + "description": "Name of this set of nodes. Becomes a part of the Elasticsearch node.name setting.", + "maxLength": 23, + "pattern": "[a-zA-Z0-9-]+", + "type": "string" + }, + "podTemplate": { + "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the Pods belonging to this NodeSet.", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "volumeClaimTemplates": { + "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod in this NodeSet.\nEvery claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate.\nItems defined here take precedence over any default claims added by the operator with the same name.", + "items": { + "description": "PersistentVolumeClaim is a user's request for and claim to a persistent volume", + "properties": { + "apiVersion": { + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", + "type": "string" + }, + "kind": { + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", + "type": "string" + }, + "metadata": { + "description": "Standard object's metadata.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "spec defines the desired characteristics of a volume requested by a pod author.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", + "properties": { + "accessModes": { + "description": "accessModes contains the desired access modes the volume should have.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", + "items": { + "type": "string" + }, + "type": "array" + }, + "dataSource": { + "description": "dataSource field can be used to specify either:\n* An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot)\n* An existing PVC (PersistentVolumeClaim)\nIf the provisioner or an external controller can support the specified data source,\nit will create a new volume based on the contents of the specified data source.\nWhen the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef,\nand dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified.\nIf the namespace is specified, then dataSourceRef will not be copied to dataSource.", + "properties": { + "apiGroup": { + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", + "type": "string" + }, + "kind": { + "description": "Kind is the type of resource being referenced", + "type": "string" + }, + "name": { + "description": "Name is the name of resource being referenced", + "type": "string" + } + }, + "required": [ + "kind", + "name" + ], + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "dataSourceRef": { + "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty\nvolume is desired. This may be any object from a non-empty API group (non\ncore object) or a PersistentVolumeClaim object.\nWhen this field is specified, volume binding will only succeed if the type of\nthe specified object matches some installed volume populator or dynamic\nprovisioner.\nThis field will replace the functionality of the dataSource field and as such\nif both fields are non-empty, they must have the same value. For backwards\ncompatibility, when namespace isn't specified in dataSourceRef,\nboth fields (dataSource and dataSourceRef) will be set to the same\nvalue automatically if one of them is empty and the other is non-empty.\nWhen namespace is specified in dataSourceRef,\ndataSource isn't set to the same value and must be empty.\nThere are three important differences between dataSource and dataSourceRef:\n* While dataSource only allows two specific types of objects, dataSourceRef\n allows any non-core object, as well as PersistentVolumeClaim objects.\n* While dataSource ignores disallowed values (dropping them), dataSourceRef\n preserves all values, and generates an error if a disallowed value is\n specified.\n* While dataSource only allows local objects, dataSourceRef allows objects\n in any namespaces.\n(Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled.\n(Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "properties": { + "apiGroup": { + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", + "type": "string" + }, + "kind": { + "description": "Kind is the type of resource being referenced", + "type": "string" + }, + "name": { + "description": "Name is the name of resource being referenced", + "type": "string" + }, + "namespace": { + "description": "Namespace is the namespace of resource being referenced\nNote that when a namespace is specified, a gateway.networking.k8s.io/ReferenceGrant object is required in the referent namespace to allow that namespace's owner to accept the reference. See the ReferenceGrant documentation for details.\n(Alpha) This field requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "type": "string" + } + }, + "required": [ + "kind", + "name" + ], + "type": "object" + }, + "resources": { + "description": "resources represents the minimum resources the volume should have.\nIf RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements\nthat are lower than previous value but must still be higher than capacity recorded in the\nstatus field of the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", + "properties": { + "limits": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "description": "Limits describes the maximum amount of compute resources allowed.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "type": "object" + }, + "requests": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "description": "Requests describes the minimum amount of compute resources required.\nIf Requests is omitted for a container, it defaults to Limits if that is explicitly specified,\notherwise to an implementation-defined value. Requests cannot exceed Limits.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "type": "object" + } + }, + "type": "object" + }, + "selector": { + "description": "selector is a label query over volumes to consider for binding.", + "properties": { + "matchExpressions": { + "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", + "items": { + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", + "properties": { + "key": { + "description": "key is the label key that the selector applies to.", + "type": "string" + }, + "operator": { + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", + "type": "string" + }, + "values": { + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", + "items": { + "type": "string" + }, + "type": "array" + } + }, + "required": [ + "key", + "operator" + ], + "type": "object" + }, + "type": "array" + }, + "matchLabels": { + "additionalProperties": { + "type": "string" + }, + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", + "type": "object" + } + }, + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "storageClassName": { + "description": "storageClassName is the name of the StorageClass required by the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "type": "string" + }, + "volumeAttributesClassName": { + "description": "volumeAttributesClassName may be used to set the VolumeAttributesClass used by this claim.\nIf specified, the CSI driver will create or update the volume with the attributes defined\nin the corresponding VolumeAttributesClass. This has a different purpose than storageClassName,\nit can be changed after the claim is created. An empty string value means that no VolumeAttributesClass\nwill be applied to the claim but it's not allowed to reset this field to empty string once it is set.\nIf unspecified and the PersistentVolumeClaim is unbound, the default VolumeAttributesClass\nwill be set by the persistentvolume controller if it exists.\nIf the resource referred to by volumeAttributesClass does not exist, this PersistentVolumeClaim will be\nset to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource\nexists.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#volumeattributesclass\n(Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled.", + "type": "string" + }, + "volumeMode": { + "description": "volumeMode defines what type of volume is required by the claim.\nValue of Filesystem is implied when not included in claim spec.", + "type": "string" + }, + "volumeName": { + "description": "volumeName is the binding reference to the PersistentVolume backing this claim.", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "required": [ + "name" + ], + "type": "object" + }, + "minItems": 1, + "type": "array" + }, + "podDisruptionBudget": { + "description": "PodDisruptionBudget provides access to the default Pod disruption budget for the Elasticsearch cluster.\nThe default budget doesn't allow any Pod to be removed in case the cluster is not green or if there is only one node of type `data` or `master`.\nIn all other cases the default PodDisruptionBudget sets `minUnavailable` equal to the total number of nodes minus 1.\nTo disable, set `PodDisruptionBudget` to the empty value (`{}` in YAML).", + "properties": { + "metadata": { + "description": "ObjectMeta is the metadata of the PDB.\nThe name and namespace provided here are managed by ECK and will be ignored.", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "Spec is the specification of the PDB.", + "properties": { + "maxUnavailable": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "An eviction is allowed if at most \"maxUnavailable\" pods selected by\n\"selector\" are unavailable after the eviction, i.e. even in absence of\nthe evicted pod. For example, one can prevent all voluntary evictions\nby specifying 0. This is a mutually exclusive setting with \"minAvailable\".", + "x-kubernetes-int-or-string": true + }, + "minAvailable": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "An eviction is allowed if at least \"minAvailable\" pods selected by\n\"selector\" will still be available after the eviction, i.e. even in the\nabsence of the evicted pod. So for example you can prevent all voluntary\nevictions by specifying \"100%\".", + "x-kubernetes-int-or-string": true + }, + "selector": { + "description": "Label query over pods whose evictions are managed by the disruption\nbudget.\nA null selector will match no pods, while an empty ({}) selector will select\nall pods within the namespace.", + "properties": { + "matchExpressions": { + "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", + "items": { + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", + "properties": { + "key": { + "description": "key is the label key that the selector applies to.", + "type": "string" + }, + "operator": { + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", + "type": "string" + }, + "values": { + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", + "items": { + "type": "string" + }, + "type": "array" + } + }, + "required": [ + "key", + "operator" + ], + "type": "object" + }, + "type": "array" + }, + "matchLabels": { + "additionalProperties": { + "type": "string" + }, + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", + "type": "object" + } + }, + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "unhealthyPodEvictionPolicy": { + "description": "UnhealthyPodEvictionPolicy defines the criteria for when unhealthy pods\nshould be considered for eviction. Current implementation considers healthy pods,\nas pods that have status.conditions item with type=\"Ready\",status=\"True\".\n\n\nValid policies are IfHealthyBudget and AlwaysAllow.\nIf no policy is specified, the default behavior will be used,\nwhich corresponds to the IfHealthyBudget policy.\n\n\nIfHealthyBudget policy means that running pods (status.phase=\"Running\"),\nbut not yet healthy can be evicted only if the guarded application is not\ndisrupted (status.currentHealthy is at least equal to status.desiredHealthy).\nHealthy pods will be subject to the PDB for eviction.\n\n\nAlwaysAllow policy means that all running pods (status.phase=\"Running\"),\nbut not yet healthy are considered disrupted and can be evicted regardless\nof whether the criteria in a PDB is met. This means perspective running\npods of a disrupted application might not get a chance to become healthy.\nHealthy pods will be subject to the PDB for eviction.\n\n\nAdditional policies may be added in the future.\nClients making eviction decisions should disallow eviction of unhealthy pods\nif they encounter an unrecognized policy in this field.\n\n\nThis field is beta-level. The eviction API uses this field when\nthe feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default).", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "remoteClusters": { + "description": "RemoteClusters enables you to establish uni-directional connections to a remote Elasticsearch cluster.", + "items": { + "description": "RemoteCluster declares a remote Elasticsearch cluster connection.", + "properties": { + "elasticsearchRef": { + "description": "ElasticsearchRef is a reference to an Elasticsearch cluster running within the same k8s cluster.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "name": { + "description": "Name is the name of the remote cluster as it is set in the Elasticsearch settings.\nThe name is expected to be unique for each remote clusters.", + "minLength": 1, + "type": "string" + } + }, + "required": [ + "name" + ], + "type": "object" + }, + "type": "array" + }, + "revisionHistoryLimit": { + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying StatefulSets.", + "format": "int32", + "type": "integer" + }, + "secureSettings": { + "description": "SecureSettings is a list of references to Kubernetes secrets containing sensitive configuration options for Elasticsearch.", + "items": { + "description": "SecretSource defines a data source based on a Kubernetes Secret.", + "properties": { + "entries": { + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", + "items": { + "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", + "properties": { + "key": { + "description": "Key is the key contained in the secret.", + "type": "string" + }, + "path": { + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", + "type": "string" + } + }, + "required": [ + "key" + ], + "type": "object" + }, + "type": "array" + }, + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "required": [ + "secretName" + ], + "type": "object" + }, + "type": "array" + }, + "serviceAccountName": { + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. a remote Elasticsearch cluster) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", + "type": "string" + }, + "transport": { + "description": "Transport holds transport layer settings for Elasticsearch.", + "properties": { + "service": { + "description": "Service defines the template for the associated Kubernetes Service object.", + "properties": { + "metadata": { + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "Spec is the specification of the service.", + "properties": { + "allocateLoadBalancerNodePorts": { + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", + "type": "boolean" + }, + "clusterIP": { + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "clusterIPs": { + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "externalIPs": { + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", + "items": { + "type": "string" + }, + "type": "array" + }, + "externalName": { + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "type": "string" + }, + "externalTrafficPolicy": { + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", + "type": "string" + }, + "healthCheckNodePort": { + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", + "format": "int32", + "type": "integer" + }, + "internalTrafficPolicy": { + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", + "type": "string" + }, + "ipFamilies": { + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", + "items": { + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "ipFamilyPolicy": { + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", + "type": "string" + }, + "loadBalancerClass": { + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "type": "string" + }, + "loadBalancerIP": { + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", + "type": "string" + }, + "loadBalancerSourceRanges": { + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "items": { + "type": "string" + }, + "type": "array" + }, + "ports": { + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "description": "ServicePort contains information on service's port.", + "properties": { + "appProtocol": { + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", + "type": "string" + }, + "name": { + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", + "type": "string" + }, + "nodePort": { + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "format": "int32", + "type": "integer" + }, + "port": { + "description": "The port that will be exposed by this service.", + "format": "int32", + "type": "integer" + }, + "protocol": { + "default": "TCP", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", + "type": "string" + }, + "targetPort": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "port" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-list-map-keys": [ + "port", + "protocol" + ], + "x-kubernetes-list-type": "map" + }, + "publishNotReadyAddresses": { + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", + "type": "boolean" + }, + "selector": { + "additionalProperties": { + "type": "string" + }, + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "sessionAffinity": { + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "sessionAffinityConfig": { + "description": "sessionAffinityConfig contains the configurations of session affinity.", + "properties": { + "clientIP": { + "description": "clientIP contains the configurations of Client IP based session affinity.", + "properties": { + "timeoutSeconds": { + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", + "format": "int32", + "type": "integer" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "type": { + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "tls": { + "description": "TLS defines options for configuring TLS on the transport layer.", + "properties": { + "certificate": { + "description": "Certificate is a reference to a Kubernetes secret that contains the CA certificate\nand private key for generating node certificates.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The CA certificate in PEM format.\n- `ca.key`: The private key for the CA certificate in PEM format.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "certificateAuthorities": { + "description": "CertificateAuthorities is a reference to a config map that contains one or more x509 certificates for\ntrusted authorities in PEM format. The certificates need to be in a file called `ca.crt`.", + "properties": { + "configMapName": { + "type": "string" + } + }, + "type": "object" + }, + "otherNameSuffix": { + "description": "OtherNameSuffix when defined will be prefixed with the Pod name and used as the common name,\nand the first DNSName, as well as an OtherName required by Elasticsearch in the Subject Alternative Name\nextension of each Elasticsearch node's transport TLS certificate.\nExample: if set to \"node.cluster.local\", the generated certificate will have its otherName set to \".node.cluster.local\".", + "type": "string" + }, + "subjectAltNames": { + "description": "SubjectAlternativeNames is a list of SANs to include in the generated node transport TLS certificates.", + "items": { + "description": "SubjectAlternativeName represents a SAN entry in a x509 certificate.", + "properties": { + "dns": { + "description": "DNS is the DNS name of the subject.", + "type": "string" + }, + "ip": { + "description": "IP is the IP address of the subject.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "updateStrategy": { + "description": "UpdateStrategy specifies how updates to the cluster should be performed.", + "properties": { + "changeBudget": { + "description": "ChangeBudget defines the constraints to consider when applying changes to the Elasticsearch cluster.", + "properties": { + "maxSurge": { + "description": "MaxSurge is the maximum number of new Pods that can be created exceeding the original number of Pods defined in\nthe specification. MaxSurge is only taken into consideration when scaling up. Setting a negative value will\ndisable the restriction. Defaults to unbounded if not specified.", + "format": "int32", + "type": "integer" + }, + "maxUnavailable": { + "description": "MaxUnavailable is the maximum number of Pods that can be unavailable (not ready) during the update due to\ncircumstances under the control of the operator. Setting a negative value will disable this restriction.\nDefaults to 1 if not specified.", + "format": "int32", + "type": "integer" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "version": { + "description": "Version of Elasticsearch.", + "type": "string" + }, + "volumeClaimDeletePolicy": { + "description": "VolumeClaimDeletePolicy sets the policy for handling deletion of PersistentVolumeClaims for all NodeSets.\nPossible values are DeleteOnScaledownOnly and DeleteOnScaledownAndClusterDeletion. Defaults to DeleteOnScaledownAndClusterDeletion.", + "enum": [ + "DeleteOnScaledownOnly", + "DeleteOnScaledownAndClusterDeletion" + ], + "type": "string" + } + }, + "required": [ + "nodeSets", + "version" + ], + "type": "object" + }, + "status": { + "description": "ElasticsearchStatus represents the observed state of Elasticsearch.", + "properties": { + "availableNodes": { + "description": "AvailableNodes is the number of available instances.", + "format": "int32", + "type": "integer" + }, + "conditions": { + "description": "Conditions holds the current service state of an Elasticsearch cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "items": { + "description": "Condition represents Elasticsearch resource's condition.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastTransitionTime": { + "format": "date-time", + "type": "string" + }, + "message": { + "type": "string" + }, + "status": { + "type": "string" + }, + "type": { + "description": "ConditionType defines the condition of an Elasticsearch resource.", + "type": "string" + } + }, + "required": [ + "status", + "type" + ], + "type": "object" + }, + "type": "array" + }, + "health": { + "description": "ElasticsearchHealth is the health of the cluster as returned by the health API.", + "type": "string" + }, + "inProgressOperations": { + "description": "InProgressOperations represents changes being applied by the operator to the Elasticsearch cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "downscale": { + "description": "DownscaleOperation provides details about in progress downscale operations.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastUpdatedTime": { + "format": "date-time", + "type": "string" + }, + "nodes": { + "description": "Nodes which are scheduled to be removed from the cluster.", + "items": { + "description": "DownscaledNode provides an overview of in progress changes applied by the operator to remove Elasticsearch nodes from the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "explanation": { + "description": "Explanation provides details about an in progress node shutdown. It is only available for clusters managed with the\nElasticsearch shutdown API.", + "type": "string" + }, + "name": { + "description": "Name of the Elasticsearch node that should be removed.", + "type": "string" + }, + "shutdownStatus": { + "description": "Shutdown status as returned by the Elasticsearch shutdown API.\nIf the Elasticsearch shutdown API is not available, the shutdown status is then inferred from the remaining\nshards on the nodes, as observed by the operator.", + "type": "string" + } + }, + "required": [ + "name", + "shutdownStatus" + ], + "type": "object" + }, + "type": "array" + }, + "stalled": { + "description": "Stalled represents a state where no progress can be made.\nIt is only available for clusters managed with the Elasticsearch shutdown API.", + "type": "boolean" + } + }, + "type": "object" + }, + "upgrade": { + "description": "UpgradeOperation provides an overview of the pending or in progress changes applied by the operator to update the Elasticsearch nodes in the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastUpdatedTime": { + "format": "date-time", + "type": "string" + }, + "nodes": { + "description": "Nodes that must be restarted for upgrade.", + "items": { + "description": "UpgradedNode provides details about the status of nodes which are expected to be updated.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "message": { + "description": "Optional message to explain why a node may not be immediately restarted for upgrade.", + "type": "string" + }, + "name": { + "description": "Name of the Elasticsearch node that should be upgraded.", + "type": "string" + }, + "predicate": { + "description": "Predicate is the name of the predicate currently preventing this node from being deleted for an upgrade.", + "type": "string" + }, + "status": { + "description": "Status states if the node is either in the process of being deleted for an upgrade,\nor blocked by a predicate or another condition stated in the message field.", + "type": "string" + } + }, + "required": [ + "name", + "status" + ], + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "upscale": { + "description": "UpscaleOperation provides an overview of in progress changes applied by the operator to add Elasticsearch nodes to the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastUpdatedTime": { + "format": "date-time", + "type": "string" + }, + "nodes": { + "description": "Nodes expected to be added by the operator.", + "items": { + "properties": { + "message": { + "description": "Optional message to explain why a node may not be immediately added.", + "type": "string" + }, + "name": { + "description": "Name of the Elasticsearch node that should be added to the cluster.", + "type": "string" + }, + "status": { + "description": "NewNodeStatus states if a new node is being created, or if the upscale is delayed.", + "type": "string" + } + }, + "required": [ + "name", + "status" + ], + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "required": [ + "downscale", + "upgrade", + "upscale" + ], + "type": "object" + }, + "monitoringAssociationStatus": { + "additionalProperties": { + "description": "AssociationStatus is the status of an association resource.", + "type": "string" + }, + "description": "AssociationStatusMap is the map of association's namespaced name string to its AssociationStatus. For resources that\nhave a single Association of a given type (for ex. single ES reference), this map contains a single entry.", + "type": "object" + }, + "observedGeneration": { + "description": "ObservedGeneration is the most recent generation observed for this Elasticsearch cluster.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Elasticsearch\ncontroller has not yet processed the changes contained in the Elasticsearch specification.", + "format": "int64", + "type": "integer" + }, + "phase": { + "description": "ElasticsearchOrchestrationPhase is the phase Elasticsearch is in from the controller point of view.", + "type": "string" + }, + "version": { + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", + "type": "string" + } + }, + "type": "object" + } + }, "type": "object" -} +} \ No newline at end of file diff --git a/elasticsearch.k8s.elastic.co/elasticsearch_v1beta1.json b/elasticsearch.k8s.elastic.co/elasticsearch_v1beta1.json index c7041413..c8a65cf4 100644 --- a/elasticsearch.k8s.elastic.co/elasticsearch_v1beta1.json +++ b/elasticsearch.k8s.elastic.co/elasticsearch_v1beta1.json @@ -2,11 +2,11 @@ "description": "Elasticsearch represents an Elasticsearch resource in a Kubernetes cluster.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -15,6 +15,44 @@ "spec": { "description": "ElasticsearchSpec holds the specification of an Elasticsearch cluster.", "properties": { + "auth": { + "description": "Auth contains user authentication and authorization security settings for Elasticsearch.", + "properties": { + "disableElasticUser": { + "description": "DisableElasticUser disables the default elastic user that is created by ECK.", + "type": "boolean" + }, + "fileRealm": { + "description": "FileRealm to propagate to the Elasticsearch cluster.", + "items": { + "description": "FileRealmSource references users to create in the Elasticsearch cluster.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + }, + "roles": { + "description": "Roles to propagate to the Elasticsearch cluster.", + "items": { + "description": "RoleSource references roles to create in the Elasticsearch cluster.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, "http": { "description": "HTTP holds HTTP layer settings for Elasticsearch.", "properties": { @@ -22,7 +60,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -49,22 +87,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -72,72 +109,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -148,7 +185,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -160,15 +197,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -178,19 +214,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -200,43 +236,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -259,27 +290,93 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Elasticsearch Docker image to deploy.", "type": "string" }, + "monitoring": { + "description": "Monitoring enables you to collect and ship log and monitoring data of this Elasticsearch cluster.\nSee https://www.elastic.co/guide/en/elasticsearch/reference/current/monitor-elasticsearch-cluster.html.\nMetricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different\nElasticsearch monitoring clusters running in the same Kubernetes cluster.", + "properties": { + "logs": { + "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "metrics": { + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + }, "nodeSets": { "description": "NodeSets allow specifying groups of Elasticsearch nodes sharing the same configuration and Pod templates.", "items": { @@ -287,12 +384,12 @@ "properties": { "config": { "description": "Config holds the Elasticsearch configuration.", - "type": "object" + "type": "object", + "x-kubernetes-preserve-unknown-fields": true }, "count": { - "description": "Count of Elasticsearch nodes to deploy.", + "description": "Count of Elasticsearch nodes to deploy.\nIf the node set is managed by an autoscaling policy the initial value is automatically set by the autoscaling controller.", "format": "int32", - "minimum": 1, "type": "integer" }, "name": { @@ -303,23 +400,24 @@ }, "podTemplate": { "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the Pods belonging to this NodeSet.", - "type": "object" + "type": "object", + "x-kubernetes-preserve-unknown-fields": true }, "volumeClaimTemplates": { - "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod in this NodeSet. Every claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate. Items defined here take precedence over any default claims added by the operator with the same name.", + "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod in this NodeSet.\nEvery claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate.\nItems defined here take precedence over any default claims added by the operator with the same name.", "items": { "description": "PersistentVolumeClaim is a user's request for and claim to a persistent volume", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { - "description": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "description": "Standard object's metadata.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", "properties": { "annotations": { "additionalProperties": { @@ -346,24 +444,23 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { - "description": "spec defines the desired characteristics of a volume requested by a pod author. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", + "description": "spec defines the desired characteristics of a volume requested by a pod author.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", "properties": { "accessModes": { - "description": "accessModes contains the desired access modes the volume should have. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", + "description": "accessModes contains the desired access modes the volume should have.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", "items": { "type": "string" }, "type": "array" }, "dataSource": { - "description": "dataSource field can be used to specify either: * An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot) * An existing PVC (PersistentVolumeClaim) If the provisioner or an external controller can support the specified data source, it will create a new volume based on the contents of the specified data source. If the AnyVolumeDataSource feature gate is enabled, this field will always have the same contents as the DataSourceRef field.", + "description": "dataSource field can be used to specify either:\n* An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot)\n* An existing PVC (PersistentVolumeClaim)\nIf the provisioner or an external controller can support the specified data source,\nit will create a new volume based on the contents of the specified data source.\nWhen the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef,\nand dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified.\nIf the namespace is specified, then dataSourceRef will not be copied to dataSource.", "properties": { "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", "type": "string" }, "kind": { @@ -380,14 +477,13 @@ "name" ], "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" }, "dataSourceRef": { - "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty volume is desired. This may be any local object from a non-empty API group (non core object) or a PersistentVolumeClaim object. When this field is specified, volume binding will only succeed if the type of the specified object matches some installed volume populator or dynamic provisioner. This field will replace the functionality of the DataSource field and as such if both fields are non-empty, they must have the same value. For backwards compatibility, both fields (DataSource and DataSourceRef) will be set to the same value automatically if one of them is empty and the other is non-empty. There are two important differences between DataSource and DataSourceRef: * While DataSource only allows two specific types of objects, DataSourceRef allows any non-core object, as well as PersistentVolumeClaim objects. * While DataSource ignores disallowed values (dropping them), DataSourceRef preserves all values, and generates an error if a disallowed value is specified. (Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled.", + "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty\nvolume is desired. This may be any object from a non-empty API group (non\ncore object) or a PersistentVolumeClaim object.\nWhen this field is specified, volume binding will only succeed if the type of\nthe specified object matches some installed volume populator or dynamic\nprovisioner.\nThis field will replace the functionality of the dataSource field and as such\nif both fields are non-empty, they must have the same value. For backwards\ncompatibility, when namespace isn't specified in dataSourceRef,\nboth fields (dataSource and dataSourceRef) will be set to the same\nvalue automatically if one of them is empty and the other is non-empty.\nWhen namespace is specified in dataSourceRef,\ndataSource isn't set to the same value and must be empty.\nThere are three important differences between dataSource and dataSourceRef:\n* While dataSource only allows two specific types of objects, dataSourceRef\n allows any non-core object, as well as PersistentVolumeClaim objects.\n* While dataSource ignores disallowed values (dropping them), dataSourceRef\n preserves all values, and generates an error if a disallowed value is\n specified.\n* While dataSource only allows local objects, dataSourceRef allows objects\n in any namespaces.\n(Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled.\n(Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", "properties": { "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", "type": "string" }, "kind": { @@ -397,18 +493,20 @@ "name": { "description": "Name is the name of resource being referenced", "type": "string" + }, + "namespace": { + "description": "Namespace is the namespace of resource being referenced\nNote that when a namespace is specified, a gateway.networking.k8s.io/ReferenceGrant object is required in the referent namespace to allow that namespace's owner to accept the reference. See the ReferenceGrant documentation for details.\n(Alpha) This field requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "type": "string" } }, "required": [ "kind", "name" ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "type": "object" }, "resources": { - "description": "resources represents the minimum resources the volume should have. If RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements that are lower than previous value but must still be higher than capacity recorded in the status field of the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", + "description": "resources represents the minimum resources the volume should have.\nIf RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements\nthat are lower than previous value but must still be higher than capacity recorded in the\nstatus field of the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", "properties": { "limits": { "additionalProperties": { @@ -423,7 +521,7 @@ "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", "x-kubernetes-int-or-string": true }, - "description": "Limits describes the maximum amount of compute resources allowed. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "description": "Limits describes the maximum amount of compute resources allowed.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", "type": "object" }, "requests": { @@ -439,12 +537,11 @@ "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", "x-kubernetes-int-or-string": true }, - "description": "Requests describes the minimum amount of compute resources required. If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, otherwise to an implementation-defined value. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "description": "Requests describes the minimum amount of compute resources required.\nIf Requests is omitted for a container, it defaults to Limits if that is explicitly specified,\notherwise to an implementation-defined value. Requests cannot exceed Limits.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selector": { "description": "selector is a label query over volumes to consider for binding.", @@ -452,18 +549,18 @@ "matchExpressions": { "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", "properties": { "key": { "description": "key is the label key that the selector applies to.", "type": "string" }, "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", "type": "string" }, "values": { - "description": "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.", + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", "items": { "type": "string" }, @@ -474,8 +571,7 @@ "key", "operator" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -483,20 +579,23 @@ "additionalProperties": { "type": "string" }, - "description": "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.", + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", "type": "object" } }, "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" }, "storageClassName": { - "description": "storageClassName is the name of the StorageClass required by the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "description": "storageClassName is the name of the StorageClass required by the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "type": "string" + }, + "volumeAttributesClassName": { + "description": "volumeAttributesClassName may be used to set the VolumeAttributesClass used by this claim.\nIf specified, the CSI driver will create or update the volume with the attributes defined\nin the corresponding VolumeAttributesClass. This has a different purpose than storageClassName,\nit can be changed after the claim is created. An empty string value means that no VolumeAttributesClass\nwill be applied to the claim but it's not allowed to reset this field to empty string once it is set.\nIf unspecified and the PersistentVolumeClaim is unbound, the default VolumeAttributesClass\nwill be set by the persistentvolume controller if it exists.\nIf the resource referred to by volumeAttributesClass does not exist, this PersistentVolumeClaim will be\nset to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource\nexists.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#volumeattributesclass\n(Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled.", "type": "string" }, "volumeMode": { - "description": "volumeMode defines what type of volume is required by the claim. Value of Filesystem is implied when not included in claim spec.", + "description": "volumeMode defines what type of volume is required by the claim.\nValue of Filesystem is implied when not included in claim spec.", "type": "string" }, "volumeName": { @@ -504,125 +603,27 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false - }, - "status": { - "description": "status represents the current information/status of a persistent volume claim. Read-only. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", - "properties": { - "accessModes": { - "description": "accessModes contains the actual access modes the volume backing the PVC has. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", - "items": { - "type": "string" - }, - "type": "array" - }, - "allocatedResources": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "allocatedResources is the storage resource within AllocatedResources tracks the capacity allocated to a PVC. It may be larger than the actual capacity when a volume expansion operation is requested. For storage quota, the larger value from allocatedResources and PVC.spec.resources is used. If allocatedResources is not set, PVC.spec.resources alone is used for quota calculation. If a volume expansion capacity request is lowered, allocatedResources is only lowered if there are no expansion operations in progress and if the actual volume capacity is equal or lower than the requested capacity. This is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", - "type": "object" - }, - "capacity": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "capacity represents the actual resources of the underlying volume.", - "type": "object" - }, - "conditions": { - "description": "conditions is the current Condition of persistent volume claim. If underlying persistent volume is being resized then the Condition will be set to 'ResizeStarted'.", - "items": { - "description": "PersistentVolumeClaimCondition contails details about state of pvc", - "properties": { - "lastProbeTime": { - "description": "lastProbeTime is the time we probed the condition.", - "format": "date-time", - "type": "string" - }, - "lastTransitionTime": { - "description": "lastTransitionTime is the time the condition transitioned from one status to another.", - "format": "date-time", - "type": "string" - }, - "message": { - "description": "message is the human-readable message indicating details about last transition.", - "type": "string" - }, - "reason": { - "description": "reason is a unique, this should be a short, machine understandable string that gives the reason for condition's last transition. If it reports \"ResizeStarted\" that means the underlying persistent volume is being resized.", - "type": "string" - }, - "status": { - "type": "string" - }, - "type": { - "description": "PersistentVolumeClaimConditionType is a valid value of PersistentVolumeClaimCondition.Type", - "type": "string" - } - }, - "required": [ - "status", - "type" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "phase": { - "description": "phase represents the current phase of PersistentVolumeClaim.", - "type": "string" - }, - "resizeStatus": { - "description": "resizeStatus stores status of resize operation. ResizeStatus is not set by default but when expansion is complete resizeStatus is set to empty string by resize controller or kubelet. This is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, "required": [ - "count", "name" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "minItems": 1, "type": "array" }, "podDisruptionBudget": { - "description": "PodDisruptionBudget provides access to the default pod disruption budget for the Elasticsearch cluster. The default budget selects all cluster pods and sets `maxUnavailable` to 1. To disable, set `PodDisruptionBudget` to the empty value (`{}` in YAML).", + "description": "PodDisruptionBudget provides access to the default Pod disruption budget for the Elasticsearch cluster.\nThe default budget doesn't allow any Pod to be removed in case the cluster is not green or if there is only one node of type `data` or `master`.\nIn all other cases the default PodDisruptionBudget sets `minUnavailable` equal to the total number of nodes minus 1.\nTo disable, set `PodDisruptionBudget` to the empty value (`{}` in YAML).", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the PDB. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the PDB.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -649,8 +650,7 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the PDB.", @@ -664,7 +664,7 @@ "type": "string" } ], - "description": "An eviction is allowed if at most \"maxUnavailable\" pods selected by \"selector\" are unavailable after the eviction, i.e. even in absence of the evicted pod. For example, one can prevent all voluntary evictions by specifying 0. This is a mutually exclusive setting with \"minAvailable\".", + "description": "An eviction is allowed if at most \"maxUnavailable\" pods selected by\n\"selector\" are unavailable after the eviction, i.e. even in absence of\nthe evicted pod. For example, one can prevent all voluntary evictions\nby specifying 0. This is a mutually exclusive setting with \"minAvailable\".", "x-kubernetes-int-or-string": true }, "minAvailable": { @@ -676,27 +676,27 @@ "type": "string" } ], - "description": "An eviction is allowed if at least \"minAvailable\" pods selected by \"selector\" will still be available after the eviction, i.e. even in the absence of the evicted pod. So for example you can prevent all voluntary evictions by specifying \"100%\".", + "description": "An eviction is allowed if at least \"minAvailable\" pods selected by\n\"selector\" will still be available after the eviction, i.e. even in the\nabsence of the evicted pod. So for example you can prevent all voluntary\nevictions by specifying \"100%\".", "x-kubernetes-int-or-string": true }, "selector": { - "description": "Label query over pods whose evictions are managed by the disruption budget. A null selector selects no pods. An empty selector ({}) also selects no pods, which differs from standard behavior of selecting all pods. In policy/v1, an empty selector will select all pods in the namespace.", + "description": "Label query over pods whose evictions are managed by the disruption\nbudget.\nA null selector will match no pods, while an empty ({}) selector will select\nall pods within the namespace.", "properties": { "matchExpressions": { "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", "properties": { "key": { "description": "key is the label key that the selector applies to.", "type": "string" }, "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", "type": "string" }, "values": { - "description": "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.", + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", "items": { "type": "string" }, @@ -707,8 +707,7 @@ "key", "operator" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -716,21 +715,63 @@ "additionalProperties": { "type": "string" }, - "description": "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.", + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", "type": "object" } }, "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" + }, + "unhealthyPodEvictionPolicy": { + "description": "UnhealthyPodEvictionPolicy defines the criteria for when unhealthy pods\nshould be considered for eviction. Current implementation considers healthy pods,\nas pods that have status.conditions item with type=\"Ready\",status=\"True\".\n\n\nValid policies are IfHealthyBudget and AlwaysAllow.\nIf no policy is specified, the default behavior will be used,\nwhich corresponds to the IfHealthyBudget policy.\n\n\nIfHealthyBudget policy means that running pods (status.phase=\"Running\"),\nbut not yet healthy can be evicted only if the guarded application is not\ndisrupted (status.currentHealthy is at least equal to status.desiredHealthy).\nHealthy pods will be subject to the PDB for eviction.\n\n\nAlwaysAllow policy means that all running pods (status.phase=\"Running\"),\nbut not yet healthy are considered disrupted and can be evicted regardless\nof whether the criteria in a PDB is met. This means perspective running\npods of a disrupted application might not get a chance to become healthy.\nHealthy pods will be subject to the PDB for eviction.\n\n\nAdditional policies may be added in the future.\nClients making eviction decisions should disallow eviction of unhealthy pods\nif they encounter an unrecognized policy in this field.\n\n\nThis field is beta-level. The eviction API uses this field when\nthe feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default).", + "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" + }, + "remoteClusters": { + "description": "RemoteClusters enables you to establish uni-directional connections to a remote Elasticsearch cluster.", + "items": { + "description": "RemoteCluster declares a remote Elasticsearch cluster connection.", + "properties": { + "elasticsearchRef": { + "description": "ElasticsearchRef is a reference to an Elasticsearch cluster running within the same k8s cluster.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "name": { + "description": "Name is the name of the remote cluster as it is set in the Elasticsearch settings.\nThe name is expected to be unique for each remote clusters.", + "minLength": 1, + "type": "string" + } + }, + "required": [ + "name" + ], + "type": "object" + }, + "type": "array" + }, + "revisionHistoryLimit": { + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying StatefulSets.", + "format": "int32", + "type": "integer" }, "secureSettings": { "description": "SecureSettings is a list of references to Kubernetes secrets containing sensitive configuration options for Elasticsearch.", @@ -738,7 +779,7 @@ "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -747,15 +788,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -767,11 +807,267 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, + "serviceAccountName": { + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. a remote Elasticsearch cluster) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", + "type": "string" + }, + "transport": { + "description": "Transport holds transport layer settings for Elasticsearch.", + "properties": { + "service": { + "description": "Service defines the template for the associated Kubernetes Service object.", + "properties": { + "metadata": { + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "Spec is the specification of the service.", + "properties": { + "allocateLoadBalancerNodePorts": { + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", + "type": "boolean" + }, + "clusterIP": { + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "clusterIPs": { + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "externalIPs": { + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", + "items": { + "type": "string" + }, + "type": "array" + }, + "externalName": { + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "type": "string" + }, + "externalTrafficPolicy": { + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", + "type": "string" + }, + "healthCheckNodePort": { + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", + "format": "int32", + "type": "integer" + }, + "internalTrafficPolicy": { + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", + "type": "string" + }, + "ipFamilies": { + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", + "items": { + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "ipFamilyPolicy": { + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", + "type": "string" + }, + "loadBalancerClass": { + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "type": "string" + }, + "loadBalancerIP": { + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", + "type": "string" + }, + "loadBalancerSourceRanges": { + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "items": { + "type": "string" + }, + "type": "array" + }, + "ports": { + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "description": "ServicePort contains information on service's port.", + "properties": { + "appProtocol": { + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", + "type": "string" + }, + "name": { + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", + "type": "string" + }, + "nodePort": { + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "format": "int32", + "type": "integer" + }, + "port": { + "description": "The port that will be exposed by this service.", + "format": "int32", + "type": "integer" + }, + "protocol": { + "default": "TCP", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", + "type": "string" + }, + "targetPort": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "port" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-list-map-keys": [ + "port", + "protocol" + ], + "x-kubernetes-list-type": "map" + }, + "publishNotReadyAddresses": { + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", + "type": "boolean" + }, + "selector": { + "additionalProperties": { + "type": "string" + }, + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "sessionAffinity": { + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "sessionAffinityConfig": { + "description": "sessionAffinityConfig contains the configurations of session affinity.", + "properties": { + "clientIP": { + "description": "clientIP contains the configurations of Client IP based session affinity.", + "properties": { + "timeoutSeconds": { + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", + "format": "int32", + "type": "integer" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "type": { + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "tls": { + "description": "TLS defines options for configuring TLS on the transport layer.", + "properties": { + "certificate": { + "description": "Certificate is a reference to a Kubernetes secret that contains the CA certificate\nand private key for generating node certificates.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The CA certificate in PEM format.\n- `ca.key`: The private key for the CA certificate in PEM format.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "certificateAuthorities": { + "description": "CertificateAuthorities is a reference to a config map that contains one or more x509 certificates for\ntrusted authorities in PEM format. The certificates need to be in a file called `ca.crt`.", + "properties": { + "configMapName": { + "type": "string" + } + }, + "type": "object" + }, + "otherNameSuffix": { + "description": "OtherNameSuffix when defined will be prefixed with the Pod name and used as the common name,\nand the first DNSName, as well as an OtherName required by Elasticsearch in the Subject Alternative Name\nextension of each Elasticsearch node's transport TLS certificate.\nExample: if set to \"node.cluster.local\", the generated certificate will have its otherName set to \".node.cluster.local\".", + "type": "string" + }, + "subjectAltNames": { + "description": "SubjectAlternativeNames is a list of SANs to include in the generated node transport TLS certificates.", + "items": { + "description": "SubjectAlternativeName represents a SAN entry in a x509 certificate.", + "properties": { + "dns": { + "description": "DNS is the DNS name of the subject.", + "type": "string" + }, + "ip": { + "description": "IP is the IP address of the subject.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + }, "updateStrategy": { "description": "UpdateStrategy specifies how updates to the cluster should be performed.", "properties": { @@ -779,53 +1075,230 @@ "description": "ChangeBudget defines the constraints to consider when applying changes to the Elasticsearch cluster.", "properties": { "maxSurge": { - "description": "MaxSurge is the maximum number of new pods that can be created exceeding the original number of pods defined in the specification. MaxSurge is only taken into consideration when scaling up. Setting a negative value will disable the restriction. Defaults to unbounded if not specified.", + "description": "MaxSurge is the maximum number of new Pods that can be created exceeding the original number of Pods defined in\nthe specification. MaxSurge is only taken into consideration when scaling up. Setting a negative value will\ndisable the restriction. Defaults to unbounded if not specified.", "format": "int32", "type": "integer" }, "maxUnavailable": { - "description": "MaxUnavailable is the maximum number of pods that can be unavailable (not ready) during the update due to circumstances under the control of the operator. Setting a negative value will disable this restriction. Defaults to 1 if not specified.", + "description": "MaxUnavailable is the maximum number of Pods that can be unavailable (not ready) during the update due to\ncircumstances under the control of the operator. Setting a negative value will disable this restriction.\nDefaults to 1 if not specified.", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "version": { "description": "Version of Elasticsearch.", "type": "string" + }, + "volumeClaimDeletePolicy": { + "description": "VolumeClaimDeletePolicy sets the policy for handling deletion of PersistentVolumeClaims for all NodeSets.\nPossible values are DeleteOnScaledownOnly and DeleteOnScaledownAndClusterDeletion. Defaults to DeleteOnScaledownAndClusterDeletion.", + "enum": [ + "DeleteOnScaledownOnly", + "DeleteOnScaledownAndClusterDeletion" + ], + "type": "string" } }, "required": [ - "nodeSets" + "nodeSets", + "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { - "description": "ElasticsearchStatus defines the observed state of Elasticsearch", + "description": "ElasticsearchStatus represents the observed state of Elasticsearch.", "properties": { "availableNodes": { + "description": "AvailableNodes is the number of available instances.", "format": "int32", "type": "integer" }, + "conditions": { + "description": "Conditions holds the current service state of an Elasticsearch cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "items": { + "description": "Condition represents Elasticsearch resource's condition.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastTransitionTime": { + "format": "date-time", + "type": "string" + }, + "message": { + "type": "string" + }, + "status": { + "type": "string" + }, + "type": { + "description": "ConditionType defines the condition of an Elasticsearch resource.", + "type": "string" + } + }, + "required": [ + "status", + "type" + ], + "type": "object" + }, + "type": "array" + }, "health": { "description": "ElasticsearchHealth is the health of the cluster as returned by the health API.", "type": "string" }, + "inProgressOperations": { + "description": "InProgressOperations represents changes being applied by the operator to the Elasticsearch cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "downscale": { + "description": "DownscaleOperation provides details about in progress downscale operations.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastUpdatedTime": { + "format": "date-time", + "type": "string" + }, + "nodes": { + "description": "Nodes which are scheduled to be removed from the cluster.", + "items": { + "description": "DownscaledNode provides an overview of in progress changes applied by the operator to remove Elasticsearch nodes from the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "explanation": { + "description": "Explanation provides details about an in progress node shutdown. It is only available for clusters managed with the\nElasticsearch shutdown API.", + "type": "string" + }, + "name": { + "description": "Name of the Elasticsearch node that should be removed.", + "type": "string" + }, + "shutdownStatus": { + "description": "Shutdown status as returned by the Elasticsearch shutdown API.\nIf the Elasticsearch shutdown API is not available, the shutdown status is then inferred from the remaining\nshards on the nodes, as observed by the operator.", + "type": "string" + } + }, + "required": [ + "name", + "shutdownStatus" + ], + "type": "object" + }, + "type": "array" + }, + "stalled": { + "description": "Stalled represents a state where no progress can be made.\nIt is only available for clusters managed with the Elasticsearch shutdown API.", + "type": "boolean" + } + }, + "type": "object" + }, + "upgrade": { + "description": "UpgradeOperation provides an overview of the pending or in progress changes applied by the operator to update the Elasticsearch nodes in the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastUpdatedTime": { + "format": "date-time", + "type": "string" + }, + "nodes": { + "description": "Nodes that must be restarted for upgrade.", + "items": { + "description": "UpgradedNode provides details about the status of nodes which are expected to be updated.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "message": { + "description": "Optional message to explain why a node may not be immediately restarted for upgrade.", + "type": "string" + }, + "name": { + "description": "Name of the Elasticsearch node that should be upgraded.", + "type": "string" + }, + "predicate": { + "description": "Predicate is the name of the predicate currently preventing this node from being deleted for an upgrade.", + "type": "string" + }, + "status": { + "description": "Status states if the node is either in the process of being deleted for an upgrade,\nor blocked by a predicate or another condition stated in the message field.", + "type": "string" + } + }, + "required": [ + "name", + "status" + ], + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "upscale": { + "description": "UpscaleOperation provides an overview of in progress changes applied by the operator to add Elasticsearch nodes to the cluster.\n**This API is in technical preview and may be changed or removed in a future release.**", + "properties": { + "lastUpdatedTime": { + "format": "date-time", + "type": "string" + }, + "nodes": { + "description": "Nodes expected to be added by the operator.", + "items": { + "properties": { + "message": { + "description": "Optional message to explain why a node may not be immediately added.", + "type": "string" + }, + "name": { + "description": "Name of the Elasticsearch node that should be added to the cluster.", + "type": "string" + }, + "status": { + "description": "NewNodeStatus states if a new node is being created, or if the upscale is delayed.", + "type": "string" + } + }, + "required": [ + "name", + "status" + ], + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "required": [ + "downscale", + "upgrade", + "upscale" + ], + "type": "object" + }, + "monitoringAssociationStatus": { + "additionalProperties": { + "description": "AssociationStatus is the status of an association resource.", + "type": "string" + }, + "description": "AssociationStatusMap is the map of association's namespaced name string to its AssociationStatus. For resources that\nhave a single Association of a given type (for ex. single ES reference), this map contains a single entry.", + "type": "object" + }, + "observedGeneration": { + "description": "ObservedGeneration is the most recent generation observed for this Elasticsearch cluster.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Elasticsearch\ncontroller has not yet processed the changes contained in the Elasticsearch specification.", + "format": "int64", + "type": "integer" + }, "phase": { "description": "ElasticsearchOrchestrationPhase is the phase Elasticsearch is in from the controller point of view.", "type": "string" + }, + "version": { + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", + "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/enterprisesearch.k8s.elastic.co/enterprisesearch_v1.json b/enterprisesearch.k8s.elastic.co/enterprisesearch_v1.json index ae5a04de..f1234267 100644 --- a/enterprisesearch.k8s.elastic.co/enterprisesearch_v1.json +++ b/enterprisesearch.k8s.elastic.co/enterprisesearch_v1.json @@ -2,11 +2,11 @@ "description": "EnterpriseSearch is a Kubernetes CRD to represent Enterprise Search.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -21,15 +21,14 @@ "x-kubernetes-preserve-unknown-fields": true }, "configRef": { - "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Enterprise Search configuration. Configuration settings are merged and have precedence over settings specified in `config`.", + "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Enterprise Search configuration.\nConfiguration settings are merged and have precedence over settings specified in `config`.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "count": { "description": "Count of Enterprise Search instances to deploy.", @@ -48,16 +47,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for Enterprise Search resource.", @@ -66,7 +64,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -93,22 +91,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -116,72 +113,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -192,7 +189,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -204,15 +201,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -222,19 +218,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -244,43 +240,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -303,29 +294,25 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Enterprise Search Docker image to deploy.", "type": "string" }, "podTemplate": { - "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the Enterprise Search pods.", + "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on)\nfor the Enterprise Search pods.", "type": "object", "x-kubernetes-preserve-unknown-fields": true }, @@ -335,7 +322,7 @@ "type": "integer" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "version": { @@ -343,8 +330,7 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "EnterpriseSearchStatus defines the observed state of EnterpriseSearch", @@ -368,7 +354,7 @@ "type": "string" }, "observedGeneration": { - "description": "ObservedGeneration represents the .metadata.generation that the status is based upon. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the Enterprise Search controller has not yet processed the changes contained in the Enterprise Search specification.", + "description": "ObservedGeneration represents the .metadata.generation that the status is based upon.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Enterprise Search\ncontroller has not yet processed the changes contained in the Enterprise Search specification.", "format": "int64", "type": "integer" }, @@ -381,13 +367,12 @@ "type": "string" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/enterprisesearch.k8s.elastic.co/enterprisesearch_v1beta1.json b/enterprisesearch.k8s.elastic.co/enterprisesearch_v1beta1.json index 1cb9d587..f1234267 100644 --- a/enterprisesearch.k8s.elastic.co/enterprisesearch_v1beta1.json +++ b/enterprisesearch.k8s.elastic.co/enterprisesearch_v1beta1.json @@ -2,11 +2,11 @@ "description": "EnterpriseSearch is a Kubernetes CRD to represent Enterprise Search.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -21,15 +21,14 @@ "x-kubernetes-preserve-unknown-fields": true }, "configRef": { - "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Enterprise Search configuration. Configuration settings are merged and have precedence over settings specified in `config`.", + "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Enterprise Search configuration.\nConfiguration settings are merged and have precedence over settings specified in `config`.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "count": { "description": "Count of Enterprise Search instances to deploy.", @@ -48,16 +47,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for Enterprise Search resource.", @@ -66,7 +64,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -93,22 +91,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -116,72 +113,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -192,7 +189,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -204,15 +201,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -222,19 +218,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -244,43 +240,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -303,34 +294,35 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Enterprise Search Docker image to deploy.", "type": "string" }, "podTemplate": { - "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the Enterprise Search pods.", + "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on)\nfor the Enterprise Search pods.", "type": "object", "x-kubernetes-preserve-unknown-fields": true }, + "revisionHistoryLimit": { + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying Deployment.", + "format": "int32", + "type": "integer" + }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "version": { @@ -338,8 +330,7 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "EnterpriseSearchStatus defines the observed state of EnterpriseSearch", @@ -362,6 +353,11 @@ "description": "Health of the deployment.", "type": "string" }, + "observedGeneration": { + "description": "ObservedGeneration represents the .metadata.generation that the status is based upon.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Enterprise Search\ncontroller has not yet processed the changes contained in the Enterprise Search specification.", + "format": "int64", + "type": "integer" + }, "selector": { "description": "Selector is the label selector used to find all pods.", "type": "string" @@ -371,13 +367,12 @@ "type": "string" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/kibana.k8s.elastic.co/kibana_v1.json b/kibana.k8s.elastic.co/kibana_v1.json index 3da6f107..7baeabbe 100644 --- a/kibana.k8s.elastic.co/kibana_v1.json +++ b/kibana.k8s.elastic.co/kibana_v1.json @@ -2,11 +2,11 @@ "description": "Kibana represents a Kibana resource in a Kubernetes cluster.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -37,19 +37,18 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "enterpriseSearchRef": { - "description": "EnterpriseSearchRef is a reference to an EnterpriseSearch running in the same Kubernetes cluster. Kibana provides the default Enterprise Search UI starting version 7.14.", + "description": "EnterpriseSearchRef is a reference to an EnterpriseSearch running in the same Kubernetes cluster.\nKibana provides the default Enterprise Search UI starting version 7.14.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -60,16 +59,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for Kibana.", @@ -78,7 +76,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -105,22 +103,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -128,72 +125,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -204,7 +201,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -216,15 +213,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -234,19 +230,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -256,43 +252,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -315,37 +306,33 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Kibana Docker image to deploy.", "type": "string" }, "monitoring": { - "description": "Monitoring enables you to collect and ship log and monitoring data of this Kibana. See https://www.elastic.co/guide/en/kibana/current/xpack-monitoring.html. Metricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different Elasticsearch monitoring clusters running in the same Kubernetes cluster.", + "description": "Monitoring enables you to collect and ship log and monitoring data of this Kibana.\nSee https://www.elastic.co/guide/en/kibana/current/xpack-monitoring.html.\nMetricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different\nElasticsearch monitoring clusters running in the same Kubernetes cluster.", "properties": { "logs": { - "description": "Logs holds references to Elasticsearch clusters which will receive log data from this Kibana.", + "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", "properties": { "elasticsearchRefs": { - "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster. Due to existing limitations, only a single Elasticsearch cluster is currently supported.", + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", "items": { - "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator or a Secret describing an external Elastic resource not managed by the operator.", + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -356,30 +343,28 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "metrics": { - "description": "Metrics holds references to Elasticsearch clusters which will receive monitoring data from this Kibana.", + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", "properties": { "elasticsearchRefs": { - "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster. Due to existing limitations, only a single Elasticsearch cluster is currently supported.", + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", "items": { - "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator or a Secret describing an external Elastic resource not managed by the operator.", + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", "properties": { "name": { "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", @@ -390,26 +375,23 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "podTemplate": { "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the Kibana pods", @@ -427,7 +409,7 @@ "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -436,15 +418,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -456,13 +437,12 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "version": { @@ -473,14 +453,13 @@ "required": [ "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "KibanaStatus defines the observed state of Kibana", "properties": { "associationStatus": { - "description": "AssociationStatus is the status of any auto-linking to Elasticsearch clusters. This field is deprecated and will be removed in a future release. Use ElasticsearchAssociationStatus instead.", + "description": "AssociationStatus is the status of any auto-linking to Elasticsearch clusters.\nThis field is deprecated and will be removed in a future release. Use ElasticsearchAssociationStatus instead.", "type": "string" }, "availableNodes": { @@ -514,7 +493,7 @@ "type": "object" }, "observedGeneration": { - "description": "ObservedGeneration is the most recent generation observed for this Kibana instance. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the Kibana controller has not yet processed the changes contained in the Kibana specification.", + "description": "ObservedGeneration is the most recent generation observed for this Kibana instance.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Kibana\ncontroller has not yet processed the changes contained in the Kibana specification.", "format": "int64", "type": "integer" }, @@ -523,13 +502,12 @@ "type": "string" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/kibana.k8s.elastic.co/kibana_v1alpha1.json b/kibana.k8s.elastic.co/kibana_v1alpha1.json index 2b57e5a9..7baeabbe 100644 --- a/kibana.k8s.elastic.co/kibana_v1alpha1.json +++ b/kibana.k8s.elastic.co/kibana_v1alpha1.json @@ -1,4 +1,513 @@ { - "description": "to not break compatibility when upgrading from previous versions of the CRD", + "description": "Kibana represents a Kibana resource in a Kubernetes cluster.", + "properties": { + "apiVersion": { + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", + "type": "string" + }, + "kind": { + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", + "type": "string" + }, + "metadata": { + "type": "object" + }, + "spec": { + "description": "KibanaSpec holds the specification of a Kibana instance.", + "properties": { + "config": { + "description": "Config holds the Kibana configuration. See: https://www.elastic.co/guide/en/kibana/current/settings.html", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "count": { + "description": "Count of Kibana instances to deploy.", + "format": "int32", + "type": "integer" + }, + "elasticsearchRef": { + "description": "ElasticsearchRef is a reference to an Elasticsearch cluster running in the same Kubernetes cluster.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "enterpriseSearchRef": { + "description": "EnterpriseSearchRef is a reference to an EnterpriseSearch running in the same Kubernetes cluster.\nKibana provides the default Enterprise Search UI starting version 7.14.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "http": { + "description": "HTTP holds the HTTP layer configuration for Kibana.", + "properties": { + "service": { + "description": "Service defines the template for the associated Kubernetes Service object.", + "properties": { + "metadata": { + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", + "properties": { + "annotations": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "finalizers": { + "items": { + "type": "string" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "name": { + "type": "string" + }, + "namespace": { + "type": "string" + } + }, + "type": "object" + }, + "spec": { + "description": "Spec is the specification of the service.", + "properties": { + "allocateLoadBalancerNodePorts": { + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", + "type": "boolean" + }, + "clusterIP": { + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "clusterIPs": { + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "externalIPs": { + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", + "items": { + "type": "string" + }, + "type": "array" + }, + "externalName": { + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "type": "string" + }, + "externalTrafficPolicy": { + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", + "type": "string" + }, + "healthCheckNodePort": { + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", + "format": "int32", + "type": "integer" + }, + "internalTrafficPolicy": { + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", + "type": "string" + }, + "ipFamilies": { + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", + "items": { + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "type": "string" + }, + "type": "array", + "x-kubernetes-list-type": "atomic" + }, + "ipFamilyPolicy": { + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", + "type": "string" + }, + "loadBalancerClass": { + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "type": "string" + }, + "loadBalancerIP": { + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", + "type": "string" + }, + "loadBalancerSourceRanges": { + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "items": { + "type": "string" + }, + "type": "array" + }, + "ports": { + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "items": { + "description": "ServicePort contains information on service's port.", + "properties": { + "appProtocol": { + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", + "type": "string" + }, + "name": { + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", + "type": "string" + }, + "nodePort": { + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "format": "int32", + "type": "integer" + }, + "port": { + "description": "The port that will be exposed by this service.", + "format": "int32", + "type": "integer" + }, + "protocol": { + "default": "TCP", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", + "type": "string" + }, + "targetPort": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "port" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-list-map-keys": [ + "port", + "protocol" + ], + "x-kubernetes-list-type": "map" + }, + "publishNotReadyAddresses": { + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", + "type": "boolean" + }, + "selector": { + "additionalProperties": { + "type": "string" + }, + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "sessionAffinity": { + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "type": "string" + }, + "sessionAffinityConfig": { + "description": "sessionAffinityConfig contains the configurations of session affinity.", + "properties": { + "clientIP": { + "description": "clientIP contains the configurations of Client IP based session affinity.", + "properties": { + "timeoutSeconds": { + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", + "format": "int32", + "type": "integer" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "type": { + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "tls": { + "description": "TLS defines options for configuring TLS for HTTP.", + "properties": { + "certificate": { + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "type": "object" + }, + "selfSignedCertificate": { + "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", + "properties": { + "disabled": { + "description": "Disabled indicates that the provisioning of the self-signed certifcate should be disabled.", + "type": "boolean" + }, + "subjectAltNames": { + "description": "SubjectAlternativeNames is a list of SANs to include in the generated HTTP TLS certificate.", + "items": { + "description": "SubjectAlternativeName represents a SAN entry in a x509 certificate.", + "properties": { + "dns": { + "description": "DNS is the DNS name of the subject.", + "type": "string" + }, + "ip": { + "description": "IP is the IP address of the subject.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "image": { + "description": "Image is the Kibana Docker image to deploy.", + "type": "string" + }, + "monitoring": { + "description": "Monitoring enables you to collect and ship log and monitoring data of this Kibana.\nSee https://www.elastic.co/guide/en/kibana/current/xpack-monitoring.html.\nMetricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different\nElasticsearch monitoring clusters running in the same Kubernetes cluster.", + "properties": { + "logs": { + "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "metrics": { + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "podTemplate": { + "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the Kibana pods", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "revisionHistoryLimit": { + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying Deployment.", + "format": "int32", + "type": "integer" + }, + "secureSettings": { + "description": "SecureSettings is a list of references to Kubernetes secrets containing sensitive configuration options for Kibana.", + "items": { + "description": "SecretSource defines a data source based on a Kubernetes Secret.", + "properties": { + "entries": { + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", + "items": { + "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", + "properties": { + "key": { + "description": "Key is the key contained in the secret.", + "type": "string" + }, + "path": { + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", + "type": "string" + } + }, + "required": [ + "key" + ], + "type": "object" + }, + "type": "array" + }, + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "required": [ + "secretName" + ], + "type": "object" + }, + "type": "array" + }, + "serviceAccountName": { + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", + "type": "string" + }, + "version": { + "description": "Version of Kibana.", + "type": "string" + } + }, + "required": [ + "version" + ], + "type": "object" + }, + "status": { + "description": "KibanaStatus defines the observed state of Kibana", + "properties": { + "associationStatus": { + "description": "AssociationStatus is the status of any auto-linking to Elasticsearch clusters.\nThis field is deprecated and will be removed in a future release. Use ElasticsearchAssociationStatus instead.", + "type": "string" + }, + "availableNodes": { + "description": "AvailableNodes is the number of available replicas in the deployment.", + "format": "int32", + "type": "integer" + }, + "count": { + "description": "Count corresponds to Scale.Status.Replicas, which is the actual number of observed instances of the scaled object.", + "format": "int32", + "type": "integer" + }, + "elasticsearchAssociationStatus": { + "description": "ElasticsearchAssociationStatus is the status of any auto-linking to Elasticsearch clusters.", + "type": "string" + }, + "enterpriseSearchAssociationStatus": { + "description": "EnterpriseSearchAssociationStatus is the status of any auto-linking to Enterprise Search.", + "type": "string" + }, + "health": { + "description": "Health of the deployment.", + "type": "string" + }, + "monitoringAssociationStatus": { + "additionalProperties": { + "description": "AssociationStatus is the status of an association resource.", + "type": "string" + }, + "description": "MonitoringAssociationStatus is the status of any auto-linking to monitoring Elasticsearch clusters.", + "type": "object" + }, + "observedGeneration": { + "description": "ObservedGeneration is the most recent generation observed for this Kibana instance.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Kibana\ncontroller has not yet processed the changes contained in the Kibana specification.", + "format": "int64", + "type": "integer" + }, + "selector": { + "description": "Selector is the label selector used to find all pods.", + "type": "string" + }, + "version": { + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", + "type": "string" + } + }, + "type": "object" + } + }, "type": "object" -} +} \ No newline at end of file diff --git a/kibana.k8s.elastic.co/kibana_v1beta1.json b/kibana.k8s.elastic.co/kibana_v1beta1.json index 729bb2cf..7baeabbe 100644 --- a/kibana.k8s.elastic.co/kibana_v1beta1.json +++ b/kibana.k8s.elastic.co/kibana_v1beta1.json @@ -2,11 +2,11 @@ "description": "Kibana represents a Kibana resource in a Kubernetes cluster.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -29,19 +29,45 @@ "description": "ElasticsearchRef is a reference to an Elasticsearch cluster running in the same Kubernetes cluster.", "properties": { "name": { - "description": "Name of the Kubernetes object.", + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", "type": "string" }, "namespace": { "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" } }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false + "type": "object" + }, + "enterpriseSearchRef": { + "description": "EnterpriseSearchRef is a reference to an EnterpriseSearch running in the same Kubernetes cluster.\nKibana provides the default Enterprise Search UI starting version 7.14.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for Kibana.", @@ -50,7 +76,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -77,22 +103,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -100,72 +125,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -176,7 +201,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -188,15 +213,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -206,19 +230,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -228,43 +252,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -287,39 +306,110 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Kibana Docker image to deploy.", "type": "string" }, + "monitoring": { + "description": "Monitoring enables you to collect and ship log and monitoring data of this Kibana.\nSee https://www.elastic.co/guide/en/kibana/current/xpack-monitoring.html.\nMetricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different\nElasticsearch monitoring clusters running in the same Kubernetes cluster.", + "properties": { + "logs": { + "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "metrics": { + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" + }, + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" + }, + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" + }, + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + } + }, + "type": "object" + }, "podTemplate": { "description": "PodTemplate provides customisation options (labels, annotations, affinity rules, resource requests, and so on) for the Kibana pods", "type": "object", "x-kubernetes-preserve-unknown-fields": true }, + "revisionHistoryLimit": { + "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying Deployment.", + "format": "int32", + "type": "integer" + }, "secureSettings": { "description": "SecureSettings is a list of references to Kubernetes secrets containing sensitive configuration options for Kibana.", "items": { "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -328,15 +418,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -348,38 +437,77 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, + "serviceAccountName": { + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", + "type": "string" + }, "version": { "description": "Version of Kibana.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "required": [ + "version" + ], + "type": "object" }, "status": { "description": "KibanaStatus defines the observed state of Kibana", "properties": { "associationStatus": { - "description": "AssociationStatus is the status of an association resource.", + "description": "AssociationStatus is the status of any auto-linking to Elasticsearch clusters.\nThis field is deprecated and will be removed in a future release. Use ElasticsearchAssociationStatus instead.", "type": "string" }, "availableNodes": { + "description": "AvailableNodes is the number of available replicas in the deployment.", "format": "int32", "type": "integer" }, + "count": { + "description": "Count corresponds to Scale.Status.Replicas, which is the actual number of observed instances of the scaled object.", + "format": "int32", + "type": "integer" + }, + "elasticsearchAssociationStatus": { + "description": "ElasticsearchAssociationStatus is the status of any auto-linking to Elasticsearch clusters.", + "type": "string" + }, + "enterpriseSearchAssociationStatus": { + "description": "EnterpriseSearchAssociationStatus is the status of any auto-linking to Enterprise Search.", + "type": "string" + }, "health": { - "description": "KibanaHealth expresses the status of the Kibana instances.", + "description": "Health of the deployment.", + "type": "string" + }, + "monitoringAssociationStatus": { + "additionalProperties": { + "description": "AssociationStatus is the status of an association resource.", + "type": "string" + }, + "description": "MonitoringAssociationStatus is the status of any auto-linking to monitoring Elasticsearch clusters.", + "type": "object" + }, + "observedGeneration": { + "description": "ObservedGeneration is the most recent generation observed for this Kibana instance.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Kibana\ncontroller has not yet processed the changes contained in the Kibana specification.", + "format": "int64", + "type": "integer" + }, + "selector": { + "description": "Selector is the label selector used to find all pods.", + "type": "string" + }, + "version": { + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/logstash.k8s.elastic.co/logstash_v1alpha1.json b/logstash.k8s.elastic.co/logstash_v1alpha1.json index d2bab9c7..5e205f48 100644 --- a/logstash.k8s.elastic.co/logstash_v1alpha1.json +++ b/logstash.k8s.elastic.co/logstash_v1alpha1.json @@ -2,11 +2,11 @@ "description": "Logstash is the Schema for the logstashes API", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -21,15 +21,14 @@ "x-kubernetes-preserve-unknown-fields": true }, "configRef": { - "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Logstash configuration. Logstash settings must be specified as yaml, under a single \"logstash.yml\" entry. At most one of [`Config`, `ConfigRef`] can be specified.", + "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Logstash configuration.\nLogstash settings must be specified as yaml, under a single \"logstash.yml\" entry. At most one of [`Config`, `ConfigRef`]\ncan be specified.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "count": { "format": "int32", @@ -41,7 +40,7 @@ "description": "ElasticsearchCluster is a named reference to an Elasticsearch cluster which can be used in a Logstash pipeline.", "properties": { "clusterName": { - "description": "ClusterName is an alias for the cluster to be used to refer to the Elasticsearch cluster in Logstash configuration files, and will be used to identify \"named clusters\" in Logstash", + "description": "ClusterName is an alias for the cluster to be used to refer to the Elasticsearch cluster in Logstash\nconfiguration files, and will be used to identify \"named clusters\" in Logstash", "minLength": 1, "type": "string" }, @@ -54,16 +53,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -72,6481 +70,97 @@ "type": "string" }, "monitoring": { - "description": "Monitoring enables you to collect and ship log and monitoring data of this Logstash. Metricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different Elasticsearch monitoring clusters running in the same Kubernetes cluster.", + "description": "Monitoring enables you to collect and ship log and monitoring data of this Logstash.\nMetricbeat and Filebeat are deployed in the same Pod as sidecars and each one sends data to one or two different\nElasticsearch monitoring clusters running in the same Kubernetes cluster.", "properties": { "logs": { "description": "Logs holds references to Elasticsearch clusters which receive log data from an associated resource.", - "properties": { - "elasticsearchRefs": { - "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster. Due to existing limitations, only a single Elasticsearch cluster is currently supported.", - "items": { - "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator or a Secret describing an external Elastic resource not managed by the operator.", - "properties": { - "name": { - "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", - "type": "string" - }, - "namespace": { - "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", - "type": "string" - }, - "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", - "type": "string" - }, - "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "metrics": { - "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", - "properties": { - "elasticsearchRefs": { - "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster. Due to existing limitations, only a single Elasticsearch cluster is currently supported.", - "items": { - "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator or a Secret describing an external Elastic resource not managed by the operator.", - "properties": { - "name": { - "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", - "type": "string" - }, - "namespace": { - "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", - "type": "string" - }, - "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", - "type": "string" - }, - "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "pipelines": { - "description": "Pipelines holds the Logstash Pipelines. At most one of [`Pipelines`, `PipelinesRef`] can be specified.", - "items": { - "type": "object" - }, - "type": "array", - "x-kubernetes-preserve-unknown-fields": true - }, - "pipelinesRef": { - "description": "PipelinesRef contains a reference to an existing Kubernetes Secret holding the Logstash Pipelines. Logstash pipelines must be specified as yaml, under a single \"pipelines.yml\" entry. At most one of [`Pipelines`, `PipelinesRef`] can be specified.", - "properties": { - "secretName": { - "description": "SecretName is the name of the secret.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "podTemplate": { - "description": "PodTemplate provides customisation options for the Logstash pods.", - "properties": { - "metadata": { - "description": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", - "properties": { - "annotations": { - "additionalProperties": { - "type": "string" - }, - "type": "object" - }, - "finalizers": { - "items": { - "type": "string" - }, - "type": "array" - }, - "labels": { - "additionalProperties": { - "type": "string" - }, - "type": "object" - }, - "name": { - "type": "string" - }, - "namespace": { - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "spec": { - "description": "Specification of the desired behavior of the pod. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status", - "properties": { - "activeDeadlineSeconds": { - "description": "Optional duration in seconds the pod may be active on the node relative to StartTime before the system will actively try to mark it failed and kill associated containers. Value must be a positive integer.", - "format": "int64", - "type": "integer" - }, - "affinity": { - "description": "If specified, the pod's scheduling constraints", - "properties": { - "nodeAffinity": { - "description": "Describes node affinity scheduling rules for the pod.", - "properties": { - "preferredDuringSchedulingIgnoredDuringExecution": { - "description": "The scheduler will prefer to schedule pods to nodes that satisfy the affinity expressions specified by this field, but it may choose a node that violates one or more of the expressions. The node that is most preferred is the one with the greatest sum of weights, i.e. for each node that meets all of the scheduling requirements (resource request, requiredDuringScheduling affinity expressions, etc.), compute a sum by iterating through the elements of this field and adding \"weight\" to the sum if the node matches the corresponding matchExpressions; the node(s) with the highest sum are the most preferred.", - "items": { - "description": "An empty preferred scheduling term matches all objects with implicit weight 0 (i.e. it's a no-op). A null preferred scheduling term matches no objects (i.e. is also a no-op).", - "properties": { - "preference": { - "description": "A node selector term, associated with the corresponding weight.", - "properties": { - "matchExpressions": { - "description": "A list of node selector requirements by node's labels.", - "items": { - "description": "A node selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "The label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "Represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists, DoesNotExist. Gt, and Lt.", - "type": "string" - }, - "values": { - "description": "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. If the operator is Gt or Lt, the values array must have a single element, which will be interpreted as an integer. This array is replaced during a strategic merge patch.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchFields": { - "description": "A list of node selector requirements by node's fields.", - "items": { - "description": "A node selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "The label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "Represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists, DoesNotExist. Gt, and Lt.", - "type": "string" - }, - "values": { - "description": "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. If the operator is Gt or Lt, the values array must have a single element, which will be interpreted as an integer. This array is replaced during a strategic merge patch.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "weight": { - "description": "Weight associated with matching the corresponding nodeSelectorTerm, in the range 1-100.", - "format": "int32", - "type": "integer" - } - }, - "required": [ - "preference", - "weight" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "requiredDuringSchedulingIgnoredDuringExecution": { - "description": "If the affinity requirements specified by this field are not met at scheduling time, the pod will not be scheduled onto the node. If the affinity requirements specified by this field cease to be met at some point during pod execution (e.g. due to an update), the system may or may not try to eventually evict the pod from its node.", - "properties": { - "nodeSelectorTerms": { - "description": "Required. A list of node selector terms. The terms are ORed.", - "items": { - "description": "A null or empty node selector term matches no objects. The requirements of them are ANDed. The TopologySelectorTerm type implements a subset of the NodeSelectorTerm.", - "properties": { - "matchExpressions": { - "description": "A list of node selector requirements by node's labels.", - "items": { - "description": "A node selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "The label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "Represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists, DoesNotExist. Gt, and Lt.", - "type": "string" - }, - "values": { - "description": "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. If the operator is Gt or Lt, the values array must have a single element, which will be interpreted as an integer. This array is replaced during a strategic merge patch.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchFields": { - "description": "A list of node selector requirements by node's fields.", - "items": { - "description": "A node selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "The label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "Represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists, DoesNotExist. Gt, and Lt.", - "type": "string" - }, - "values": { - "description": "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. If the operator is Gt or Lt, the values array must have a single element, which will be interpreted as an integer. This array is replaced during a strategic merge patch.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "type": "array" - } - }, - "required": [ - "nodeSelectorTerms" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "podAffinity": { - "description": "Describes pod affinity scheduling rules (e.g. co-locate this pod in the same node, zone, etc. as some other pod(s)).", - "properties": { - "preferredDuringSchedulingIgnoredDuringExecution": { - "description": "The scheduler will prefer to schedule pods to nodes that satisfy the affinity expressions specified by this field, but it may choose a node that violates one or more of the expressions. The node that is most preferred is the one with the greatest sum of weights, i.e. for each node that meets all of the scheduling requirements (resource request, requiredDuringScheduling affinity expressions, etc.), compute a sum by iterating through the elements of this field and adding \"weight\" to the sum if the node has pods which matches the corresponding podAffinityTerm; the node(s) with the highest sum are the most preferred.", - "items": { - "description": "The weights of all of the matched WeightedPodAffinityTerm fields are added per-node to find the most preferred node(s)", - "properties": { - "podAffinityTerm": { - "description": "Required. A pod affinity term, associated with the corresponding weight.", - "properties": { - "labelSelector": { - "description": "A label query over a set of resources, in this case pods.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaceSelector": { - "description": "A label query over the set of namespaces that the term applies to. The term is applied to the union of the namespaces selected by this field and the ones listed in the namespaces field. null selector and null or empty namespaces list means \"this pod's namespace\". An empty selector ({}) matches all namespaces.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaces": { - "description": "namespaces specifies a static list of namespace names that the term applies to. The term is applied to the union of the namespaces listed in this field and the ones selected by namespaceSelector. null or empty namespaces list and null namespaceSelector means \"this pod's namespace\".", - "items": { - "type": "string" - }, - "type": "array" - }, - "topologyKey": { - "description": "This pod should be co-located (affinity) or not co-located (anti-affinity) with the pods matching the labelSelector in the specified namespaces, where co-located is defined as running on a node whose value of the label with key topologyKey matches that of any node on which any of the selected pods is running. Empty topologyKey is not allowed.", - "type": "string" - } - }, - "required": [ - "topologyKey" - ], - "type": "object", - "additionalProperties": false - }, - "weight": { - "description": "weight associated with matching the corresponding podAffinityTerm, in the range 1-100.", - "format": "int32", - "type": "integer" - } - }, - "required": [ - "podAffinityTerm", - "weight" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "requiredDuringSchedulingIgnoredDuringExecution": { - "description": "If the affinity requirements specified by this field are not met at scheduling time, the pod will not be scheduled onto the node. If the affinity requirements specified by this field cease to be met at some point during pod execution (e.g. due to a pod label update), the system may or may not try to eventually evict the pod from its node. When there are multiple elements, the lists of nodes corresponding to each podAffinityTerm are intersected, i.e. all terms must be satisfied.", - "items": { - "description": "Defines a set of pods (namely those matching the labelSelector relative to the given namespace(s)) that this pod should be co-located (affinity) or not co-located (anti-affinity) with, where co-located is defined as running on a node whose value of the label with key matches that of any node on which a pod of the set of pods is running", - "properties": { - "labelSelector": { - "description": "A label query over a set of resources, in this case pods.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaceSelector": { - "description": "A label query over the set of namespaces that the term applies to. The term is applied to the union of the namespaces selected by this field and the ones listed in the namespaces field. null selector and null or empty namespaces list means \"this pod's namespace\". An empty selector ({}) matches all namespaces.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaces": { - "description": "namespaces specifies a static list of namespace names that the term applies to. The term is applied to the union of the namespaces listed in this field and the ones selected by namespaceSelector. null or empty namespaces list and null namespaceSelector means \"this pod's namespace\".", - "items": { - "type": "string" - }, - "type": "array" - }, - "topologyKey": { - "description": "This pod should be co-located (affinity) or not co-located (anti-affinity) with the pods matching the labelSelector in the specified namespaces, where co-located is defined as running on a node whose value of the label with key topologyKey matches that of any node on which any of the selected pods is running. Empty topologyKey is not allowed.", - "type": "string" - } - }, - "required": [ - "topologyKey" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "podAntiAffinity": { - "description": "Describes pod anti-affinity scheduling rules (e.g. avoid putting this pod in the same node, zone, etc. as some other pod(s)).", - "properties": { - "preferredDuringSchedulingIgnoredDuringExecution": { - "description": "The scheduler will prefer to schedule pods to nodes that satisfy the anti-affinity expressions specified by this field, but it may choose a node that violates one or more of the expressions. The node that is most preferred is the one with the greatest sum of weights, i.e. for each node that meets all of the scheduling requirements (resource request, requiredDuringScheduling anti-affinity expressions, etc.), compute a sum by iterating through the elements of this field and adding \"weight\" to the sum if the node has pods which matches the corresponding podAffinityTerm; the node(s) with the highest sum are the most preferred.", - "items": { - "description": "The weights of all of the matched WeightedPodAffinityTerm fields are added per-node to find the most preferred node(s)", - "properties": { - "podAffinityTerm": { - "description": "Required. A pod affinity term, associated with the corresponding weight.", - "properties": { - "labelSelector": { - "description": "A label query over a set of resources, in this case pods.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaceSelector": { - "description": "A label query over the set of namespaces that the term applies to. The term is applied to the union of the namespaces selected by this field and the ones listed in the namespaces field. null selector and null or empty namespaces list means \"this pod's namespace\". An empty selector ({}) matches all namespaces.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaces": { - "description": "namespaces specifies a static list of namespace names that the term applies to. The term is applied to the union of the namespaces listed in this field and the ones selected by namespaceSelector. null or empty namespaces list and null namespaceSelector means \"this pod's namespace\".", - "items": { - "type": "string" - }, - "type": "array" - }, - "topologyKey": { - "description": "This pod should be co-located (affinity) or not co-located (anti-affinity) with the pods matching the labelSelector in the specified namespaces, where co-located is defined as running on a node whose value of the label with key topologyKey matches that of any node on which any of the selected pods is running. Empty topologyKey is not allowed.", - "type": "string" - } - }, - "required": [ - "topologyKey" - ], - "type": "object", - "additionalProperties": false - }, - "weight": { - "description": "weight associated with matching the corresponding podAffinityTerm, in the range 1-100.", - "format": "int32", - "type": "integer" - } - }, - "required": [ - "podAffinityTerm", - "weight" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "requiredDuringSchedulingIgnoredDuringExecution": { - "description": "If the anti-affinity requirements specified by this field are not met at scheduling time, the pod will not be scheduled onto the node. If the anti-affinity requirements specified by this field cease to be met at some point during pod execution (e.g. due to a pod label update), the system may or may not try to eventually evict the pod from its node. When there are multiple elements, the lists of nodes corresponding to each podAffinityTerm are intersected, i.e. all terms must be satisfied.", - "items": { - "description": "Defines a set of pods (namely those matching the labelSelector relative to the given namespace(s)) that this pod should be co-located (affinity) or not co-located (anti-affinity) with, where co-located is defined as running on a node whose value of the label with key matches that of any node on which a pod of the set of pods is running", - "properties": { - "labelSelector": { - "description": "A label query over a set of resources, in this case pods.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaceSelector": { - "description": "A label query over the set of namespaces that the term applies to. The term is applied to the union of the namespaces selected by this field and the ones listed in the namespaces field. null selector and null or empty namespaces list means \"this pod's namespace\". An empty selector ({}) matches all namespaces.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "namespaces": { - "description": "namespaces specifies a static list of namespace names that the term applies to. The term is applied to the union of the namespaces listed in this field and the ones selected by namespaceSelector. null or empty namespaces list and null namespaceSelector means \"this pod's namespace\".", - "items": { - "type": "string" - }, - "type": "array" - }, - "topologyKey": { - "description": "This pod should be co-located (affinity) or not co-located (anti-affinity) with the pods matching the labelSelector in the specified namespaces, where co-located is defined as running on a node whose value of the label with key topologyKey matches that of any node on which any of the selected pods is running. Empty topologyKey is not allowed.", - "type": "string" - } - }, - "required": [ - "topologyKey" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "automountServiceAccountToken": { - "description": "AutomountServiceAccountToken indicates whether a service account token should be automatically mounted.", - "type": "boolean" - }, - "containers": { - "description": "List of containers belonging to the pod. Containers cannot currently be added or removed. There must be at least one container in a Pod. Cannot be updated.", - "items": { - "description": "A single application container that you want to run within a pod.", - "properties": { - "args": { - "description": "Arguments to the entrypoint. The container image's CMD is used if this is not provided. Variable references $(VAR_NAME) are expanded using the container's environment. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Cannot be updated. More info: https://kubernetes.io/docs/tasks/inject-data-application/define-command-argument-container/#running-a-command-in-a-shell", - "items": { - "type": "string" - }, - "type": "array" - }, - "command": { - "description": "Entrypoint array. Not executed within a shell. The container image's ENTRYPOINT is used if this is not provided. Variable references $(VAR_NAME) are expanded using the container's environment. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Cannot be updated. More info: https://kubernetes.io/docs/tasks/inject-data-application/define-command-argument-container/#running-a-command-in-a-shell", - "items": { - "type": "string" - }, - "type": "array" - }, - "env": { - "description": "List of environment variables to set in the container. Cannot be updated.", - "items": { - "description": "EnvVar represents an environment variable present in a Container.", - "properties": { - "name": { - "description": "Name of the environment variable. Must be a C_IDENTIFIER.", - "type": "string" - }, - "value": { - "description": "Variable references $(VAR_NAME) are expanded using the previously defined environment variables in the container and any service environment variables. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Defaults to \"\".", - "type": "string" - }, - "valueFrom": { - "description": "Source for the environment variable's value. Cannot be used if value is not empty.", - "properties": { - "configMapKeyRef": { - "description": "Selects a key of a ConfigMap.", - "properties": { - "key": { - "description": "The key to select.", - "type": "string" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the ConfigMap or its key must be defined", - "type": "boolean" - } - }, - "required": [ - "key" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "fieldRef": { - "description": "Selects a field of the pod: supports metadata.name, metadata.namespace, `metadata.labels['']`, `metadata.annotations['']`, spec.nodeName, spec.serviceAccountName, status.hostIP, status.podIP, status.podIPs.", - "properties": { - "apiVersion": { - "description": "Version of the schema the FieldPath is written in terms of, defaults to \"v1\".", - "type": "string" - }, - "fieldPath": { - "description": "Path of the field to select in the specified API version.", - "type": "string" - } - }, - "required": [ - "fieldPath" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "resourceFieldRef": { - "description": "Selects a resource of the container: only resources limits and requests (limits.cpu, limits.memory, limits.ephemeral-storage, requests.cpu, requests.memory and requests.ephemeral-storage) are currently supported.", - "properties": { - "containerName": { - "description": "Container name: required for volumes, optional for env vars", - "type": "string" - }, - "divisor": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Specifies the output format of the exposed resources, defaults to \"1\"", - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "resource": { - "description": "Required: resource to select", - "type": "string" - } - }, - "required": [ - "resource" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "secretKeyRef": { - "description": "Selects a key of a secret in the pod's namespace", - "properties": { - "key": { - "description": "The key of the secret to select from. Must be a valid secret key.", - "type": "string" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the Secret or its key must be defined", - "type": "boolean" - } - }, - "required": [ - "key" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "envFrom": { - "description": "List of sources to populate environment variables in the container. The keys defined within a source must be a C_IDENTIFIER. All invalid keys will be reported as an event when the container is starting. When a key exists in multiple sources, the value associated with the last source will take precedence. Values defined by an Env with a duplicate key will take precedence. Cannot be updated.", - "items": { - "description": "EnvFromSource represents the source of a set of ConfigMaps", - "properties": { - "configMapRef": { - "description": "The ConfigMap to select from", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the ConfigMap must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "prefix": { - "description": "An optional identifier to prepend to each key in the ConfigMap. Must be a C_IDENTIFIER.", - "type": "string" - }, - "secretRef": { - "description": "The Secret to select from", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the Secret must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "image": { - "description": "Container image name. More info: https://kubernetes.io/docs/concepts/containers/images This field is optional to allow higher level config management to default or override container images in workload controllers like Deployments and StatefulSets.", - "type": "string" - }, - "imagePullPolicy": { - "description": "Image pull policy. One of Always, Never, IfNotPresent. Defaults to Always if :latest tag is specified, or IfNotPresent otherwise. Cannot be updated. More info: https://kubernetes.io/docs/concepts/containers/images#updating-images", - "type": "string" - }, - "lifecycle": { - "description": "Actions that the management system should take in response to container lifecycle events. Cannot be updated.", - "properties": { - "postStart": { - "description": "PostStart is called immediately after a container is created. If the handler fails, the container is terminated and restarted according to its restart policy. Other management of the container blocks until the hook completes. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "tcpSocket": { - "description": "Deprecated. TCPSocket is NOT supported as a LifecycleHandler and kept for the backward compatibility. There are no validation of this field and lifecycle hooks will fail in runtime when tcp handler is specified.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "preStop": { - "description": "PreStop is called immediately before a container is terminated due to an API request or management event such as liveness/startup probe failure, preemption, resource contention, etc. The handler is not called if the container crashes or exits. The Pod's termination grace period countdown begins before the PreStop hook is executed. Regardless of the outcome of the handler, the container will eventually terminate within the Pod's termination grace period (unless delayed by finalizers). Other management of the container blocks until the hook completes or until the termination grace period is reached. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "tcpSocket": { - "description": "Deprecated. TCPSocket is NOT supported as a LifecycleHandler and kept for the backward compatibility. There are no validation of this field and lifecycle hooks will fail in runtime when tcp handler is specified.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "livenessProbe": { - "description": "Periodic probe of container liveness. Container will be restarted if the probe fails. Cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "name": { - "description": "Name of the container specified as a DNS_LABEL. Each container in a pod must have a unique name (DNS_LABEL). Cannot be updated.", - "type": "string" - }, - "ports": { - "description": "List of ports to expose from the container. Not specifying a port here DOES NOT prevent that port from being exposed. Any port which is listening on the default \"0.0.0.0\" address inside a container will be accessible from the network. Modifying this array with strategic merge patch may corrupt the data. For more information See https://github.com/kubernetes/kubernetes/issues/108255. Cannot be updated.", - "items": { - "description": "ContainerPort represents a network port in a single container.", - "properties": { - "containerPort": { - "description": "Number of port to expose on the pod's IP address. This must be a valid port number, 0 < x < 65536.", - "format": "int32", - "type": "integer" - }, - "hostIP": { - "description": "What host IP to bind the external port to.", - "type": "string" - }, - "hostPort": { - "description": "Number of port to expose on the host. If specified, this must be a valid port number, 0 < x < 65536. If HostNetwork is specified, this must match ContainerPort. Most containers do not need this.", - "format": "int32", - "type": "integer" - }, - "name": { - "description": "If specified, this must be an IANA_SVC_NAME and unique within the pod. Each named port in a pod must have a unique name. Name for the port that can be referred to by services.", - "type": "string" - }, - "protocol": { - "default": "TCP", - "description": "Protocol for port. Must be UDP, TCP, or SCTP. Defaults to \"TCP\".", - "type": "string" - } - }, - "required": [ - "containerPort" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "containerPort", - "protocol" - ], - "x-kubernetes-list-type": "map" - }, - "readinessProbe": { - "description": "Periodic probe of container service readiness. Container will be removed from service endpoints if the probe fails. Cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "resizePolicy": { - "description": "Resources resize policy for the container.", - "items": { - "description": "ContainerResizePolicy represents resource resize policy for the container.", - "properties": { - "resourceName": { - "description": "Name of the resource to which this resource resize policy applies. Supported values: cpu, memory.", - "type": "string" - }, - "restartPolicy": { - "description": "Restart policy to apply when specified resource is resized. If not specified, it defaults to NotRequired.", - "type": "string" - } - }, - "required": [ - "resourceName", - "restartPolicy" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-type": "atomic" - }, - "resources": { - "description": "Compute Resources required by this container. Cannot be updated. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "properties": { - "claims": { - "description": "Claims lists the names of resources, defined in spec.resourceClaims, that are used by this container. \n This is an alpha field and requires enabling the DynamicResourceAllocation feature gate. \n This field is immutable. It can only be set for containers.", - "items": { - "description": "ResourceClaim references one entry in PodSpec.ResourceClaims.", - "properties": { - "name": { - "description": "Name must match the name of one entry in pod.spec.resourceClaims of the Pod where this field is used. It makes that resource available inside a container.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "name" - ], - "x-kubernetes-list-type": "map" - }, - "limits": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Limits describes the maximum amount of compute resources allowed. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - }, - "requests": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Requests describes the minimum amount of compute resources required. If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, otherwise to an implementation-defined value. Requests cannot exceed Limits. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - } - }, - "type": "object", - "additionalProperties": false - }, - "restartPolicy": { - "description": "RestartPolicy defines the restart behavior of individual containers in a pod. This field may only be set for init containers, and the only allowed value is \"Always\". For non-init containers or when this field is not specified, the restart behavior is defined by the Pod's restart policy and the container type. Setting the RestartPolicy as \"Always\" for the init container will have the following effect: this init container will be continually restarted on exit until all regular containers have terminated. Once all regular containers have completed, all init containers with restartPolicy \"Always\" will be shut down. This lifecycle differs from normal init containers and is often referred to as a \"sidecar\" container. Although this init container still starts in the init container sequence, it does not wait for the container to complete before proceeding to the next init container. Instead, the next init container starts immediately after this init container is started, or after any startupProbe has successfully completed.", - "type": "string" - }, - "securityContext": { - "description": "SecurityContext defines the security options the container should be run with. If set, the fields of SecurityContext override the equivalent fields of PodSecurityContext. More info: https://kubernetes.io/docs/tasks/configure-pod-container/security-context/", - "properties": { - "allowPrivilegeEscalation": { - "description": "AllowPrivilegeEscalation controls whether a process can gain more privileges than its parent process. This bool directly controls if the no_new_privs flag will be set on the container process. AllowPrivilegeEscalation is true always when the container is: 1) run as Privileged 2) has CAP_SYS_ADMIN Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "capabilities": { - "description": "The capabilities to add/drop when running containers. Defaults to the default set of capabilities granted by the container runtime. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "add": { - "description": "Added capabilities", - "items": { - "description": "Capability represent POSIX capabilities type", - "type": "string" - }, - "type": "array" - }, - "drop": { - "description": "Removed capabilities", - "items": { - "description": "Capability represent POSIX capabilities type", - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "privileged": { - "description": "Run container in privileged mode. Processes in privileged containers are essentially equivalent to root on the host. Defaults to false. Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "procMount": { - "description": "procMount denotes the type of proc mount to use for the containers. The default is DefaultProcMount which uses the container runtime defaults for readonly paths and masked paths. This requires the ProcMountType feature flag to be enabled. Note that this field cannot be set when spec.os.name is windows.", - "type": "string" - }, - "readOnlyRootFilesystem": { - "description": "Whether this container has a read-only root filesystem. Default is false. Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "runAsGroup": { - "description": "The GID to run the entrypoint of the container process. Uses runtime default if unset. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "runAsNonRoot": { - "description": "Indicates that the container must run as a non-root user. If true, the Kubelet will validate the image at runtime to ensure that it does not run as UID 0 (root) and fail to start the container if it does. If unset or false, no such validation will be performed. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "boolean" - }, - "runAsUser": { - "description": "The UID to run the entrypoint of the container process. Defaults to user specified in image metadata if unspecified. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "seLinuxOptions": { - "description": "The SELinux context to be applied to the container. If unspecified, the container runtime will allocate a random SELinux context for each container. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "level": { - "description": "Level is SELinux level label that applies to the container.", - "type": "string" - }, - "role": { - "description": "Role is a SELinux role label that applies to the container.", - "type": "string" - }, - "type": { - "description": "Type is a SELinux type label that applies to the container.", - "type": "string" - }, - "user": { - "description": "User is a SELinux user label that applies to the container.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "seccompProfile": { - "description": "The seccomp options to use by this container. If seccomp options are provided at both the pod & container level, the container options override the pod options. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "localhostProfile": { - "description": "localhostProfile indicates a profile defined in a file on the node should be used. The profile must be preconfigured on the node to work. Must be a descending path, relative to the kubelet's configured seccomp profile location. Must be set if type is \"Localhost\". Must NOT be set for any other type.", - "type": "string" - }, - "type": { - "description": "type indicates which kind of seccomp profile will be applied. Valid options are: \n Localhost - a profile defined in a file on the node should be used. RuntimeDefault - the container runtime default profile should be used. Unconfined - no profile should be applied.", - "type": "string" - } - }, - "required": [ - "type" - ], - "type": "object", - "additionalProperties": false - }, - "windowsOptions": { - "description": "The Windows specific settings applied to all containers. If unspecified, the options from the PodSecurityContext will be used. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is linux.", - "properties": { - "gmsaCredentialSpec": { - "description": "GMSACredentialSpec is where the GMSA admission webhook (https://github.com/kubernetes-sigs/windows-gmsa) inlines the contents of the GMSA credential spec named by the GMSACredentialSpecName field.", - "type": "string" - }, - "gmsaCredentialSpecName": { - "description": "GMSACredentialSpecName is the name of the GMSA credential spec to use.", - "type": "string" - }, - "hostProcess": { - "description": "HostProcess determines if a container should be run as a 'Host Process' container. All of a Pod's containers must have the same effective HostProcess value (it is not allowed to have a mix of HostProcess containers and non-HostProcess containers). In addition, if HostProcess is true then HostNetwork must also be set to true.", - "type": "boolean" - }, - "runAsUserName": { - "description": "The UserName in Windows to run the entrypoint of the container process. Defaults to the user specified in image metadata if unspecified. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "startupProbe": { - "description": "StartupProbe indicates that the Pod has successfully initialized. If specified, no other probes are executed until this completes successfully. If this probe fails, the Pod will be restarted, just as if the livenessProbe failed. This can be used to provide different probe parameters at the beginning of a Pod's lifecycle, when it might take a long time to load data or warm a cache, than during steady-state operation. This cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "stdin": { - "description": "Whether this container should allocate a buffer for stdin in the container runtime. If this is not set, reads from stdin in the container will always result in EOF. Default is false.", - "type": "boolean" - }, - "stdinOnce": { - "description": "Whether the container runtime should close the stdin channel after it has been opened by a single attach. When stdin is true the stdin stream will remain open across multiple attach sessions. If stdinOnce is set to true, stdin is opened on container start, is empty until the first client attaches to stdin, and then remains open and accepts data until the client disconnects, at which time stdin is closed and remains closed until the container is restarted. If this flag is false, a container processes that reads from stdin will never receive an EOF. Default is false", - "type": "boolean" - }, - "terminationMessagePath": { - "description": "Optional: Path at which the file to which the container's termination message will be written is mounted into the container's filesystem. Message written is intended to be brief final status, such as an assertion failure message. Will be truncated by the node if greater than 4096 bytes. The total message length across all containers will be limited to 12kb. Defaults to /dev/termination-log. Cannot be updated.", - "type": "string" - }, - "terminationMessagePolicy": { - "description": "Indicate how the termination message should be populated. File will use the contents of terminationMessagePath to populate the container status message on both success and failure. FallbackToLogsOnError will use the last chunk of container log output if the termination message file is empty and the container exited with an error. The log output is limited to 2048 bytes or 80 lines, whichever is smaller. Defaults to File. Cannot be updated.", - "type": "string" - }, - "tty": { - "description": "Whether this container should allocate a TTY for itself, also requires 'stdin' to be true. Default is false.", - "type": "boolean" - }, - "volumeDevices": { - "description": "volumeDevices is the list of block devices to be used by the container.", - "items": { - "description": "volumeDevice describes a mapping of a raw block device within a container.", - "properties": { - "devicePath": { - "description": "devicePath is the path inside of the container that the device will be mapped to.", - "type": "string" - }, - "name": { - "description": "name must match the name of a persistentVolumeClaim in the pod", - "type": "string" - } - }, - "required": [ - "devicePath", - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "volumeMounts": { - "description": "Pod volumes to mount into the container's filesystem. Cannot be updated.", - "items": { - "description": "VolumeMount describes a mounting of a Volume within a container.", - "properties": { - "mountPath": { - "description": "Path within the container at which the volume should be mounted. Must not contain ':'.", - "type": "string" - }, - "mountPropagation": { - "description": "mountPropagation determines how mounts are propagated from the host to container and the other way around. When not set, MountPropagationNone is used. This field is beta in 1.10.", - "type": "string" - }, - "name": { - "description": "This must match the Name of a Volume.", - "type": "string" - }, - "readOnly": { - "description": "Mounted read-only if true, read-write otherwise (false or unspecified). Defaults to false.", - "type": "boolean" - }, - "subPath": { - "description": "Path within the volume from which the container's volume should be mounted. Defaults to \"\" (volume's root).", - "type": "string" - }, - "subPathExpr": { - "description": "Expanded path within the volume from which the container's volume should be mounted. Behaves similarly to SubPath but environment variable references $(VAR_NAME) are expanded using the container's environment. Defaults to \"\" (volume's root). SubPathExpr and SubPath are mutually exclusive.", - "type": "string" - } - }, - "required": [ - "mountPath", - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "workingDir": { - "description": "Container's working directory. If not specified, the container runtime's default will be used, which might be configured in the container image. Cannot be updated.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "dnsConfig": { - "description": "Specifies the DNS parameters of a pod. Parameters specified here will be merged to the generated DNS configuration based on DNSPolicy.", - "properties": { - "nameservers": { - "description": "A list of DNS name server IP addresses. This will be appended to the base nameservers generated from DNSPolicy. Duplicated nameservers will be removed.", - "items": { - "type": "string" - }, - "type": "array" - }, - "options": { - "description": "A list of DNS resolver options. This will be merged with the base options generated from DNSPolicy. Duplicated entries will be removed. Resolution options given in Options will override those that appear in the base DNSPolicy.", - "items": { - "description": "PodDNSConfigOption defines DNS resolver options of a pod.", - "properties": { - "name": { - "description": "Required.", - "type": "string" - }, - "value": { - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "searches": { - "description": "A list of DNS search domains for host-name lookup. This will be appended to the base search paths generated from DNSPolicy. Duplicated search paths will be removed.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "dnsPolicy": { - "description": "Set DNS policy for the pod. Defaults to \"ClusterFirst\". Valid values are 'ClusterFirstWithHostNet', 'ClusterFirst', 'Default' or 'None'. DNS parameters given in DNSConfig will be merged with the policy selected with DNSPolicy. To have DNS options set along with hostNetwork, you have to specify DNS policy explicitly to 'ClusterFirstWithHostNet'.", - "type": "string" - }, - "enableServiceLinks": { - "description": "EnableServiceLinks indicates whether information about services should be injected into pod's environment variables, matching the syntax of Docker links. Optional: Defaults to true.", - "type": "boolean" - }, - "ephemeralContainers": { - "description": "List of ephemeral containers run in this pod. Ephemeral containers may be run in an existing pod to perform user-initiated actions such as debugging. This list cannot be specified when creating a pod, and it cannot be modified by updating the pod spec. In order to add an ephemeral container to an existing pod, use the pod's ephemeralcontainers subresource.", - "items": { - "description": "An EphemeralContainer is a temporary container that you may add to an existing Pod for user-initiated activities such as debugging. Ephemeral containers have no resource or scheduling guarantees, and they will not be restarted when they exit or when a Pod is removed or restarted. The kubelet may evict a Pod if an ephemeral container causes the Pod to exceed its resource allocation. \n To add an ephemeral container, use the ephemeralcontainers subresource of an existing Pod. Ephemeral containers may not be removed or restarted.", - "properties": { - "args": { - "description": "Arguments to the entrypoint. The image's CMD is used if this is not provided. Variable references $(VAR_NAME) are expanded using the container's environment. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Cannot be updated. More info: https://kubernetes.io/docs/tasks/inject-data-application/define-command-argument-container/#running-a-command-in-a-shell", - "items": { - "type": "string" - }, - "type": "array" - }, - "command": { - "description": "Entrypoint array. Not executed within a shell. The image's ENTRYPOINT is used if this is not provided. Variable references $(VAR_NAME) are expanded using the container's environment. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Cannot be updated. More info: https://kubernetes.io/docs/tasks/inject-data-application/define-command-argument-container/#running-a-command-in-a-shell", - "items": { - "type": "string" - }, - "type": "array" - }, - "env": { - "description": "List of environment variables to set in the container. Cannot be updated.", - "items": { - "description": "EnvVar represents an environment variable present in a Container.", - "properties": { - "name": { - "description": "Name of the environment variable. Must be a C_IDENTIFIER.", - "type": "string" - }, - "value": { - "description": "Variable references $(VAR_NAME) are expanded using the previously defined environment variables in the container and any service environment variables. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Defaults to \"\".", - "type": "string" - }, - "valueFrom": { - "description": "Source for the environment variable's value. Cannot be used if value is not empty.", - "properties": { - "configMapKeyRef": { - "description": "Selects a key of a ConfigMap.", - "properties": { - "key": { - "description": "The key to select.", - "type": "string" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the ConfigMap or its key must be defined", - "type": "boolean" - } - }, - "required": [ - "key" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "fieldRef": { - "description": "Selects a field of the pod: supports metadata.name, metadata.namespace, `metadata.labels['']`, `metadata.annotations['']`, spec.nodeName, spec.serviceAccountName, status.hostIP, status.podIP, status.podIPs.", - "properties": { - "apiVersion": { - "description": "Version of the schema the FieldPath is written in terms of, defaults to \"v1\".", - "type": "string" - }, - "fieldPath": { - "description": "Path of the field to select in the specified API version.", - "type": "string" - } - }, - "required": [ - "fieldPath" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "resourceFieldRef": { - "description": "Selects a resource of the container: only resources limits and requests (limits.cpu, limits.memory, limits.ephemeral-storage, requests.cpu, requests.memory and requests.ephemeral-storage) are currently supported.", - "properties": { - "containerName": { - "description": "Container name: required for volumes, optional for env vars", - "type": "string" - }, - "divisor": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Specifies the output format of the exposed resources, defaults to \"1\"", - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "resource": { - "description": "Required: resource to select", - "type": "string" - } - }, - "required": [ - "resource" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "secretKeyRef": { - "description": "Selects a key of a secret in the pod's namespace", - "properties": { - "key": { - "description": "The key of the secret to select from. Must be a valid secret key.", - "type": "string" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the Secret or its key must be defined", - "type": "boolean" - } - }, - "required": [ - "key" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "envFrom": { - "description": "List of sources to populate environment variables in the container. The keys defined within a source must be a C_IDENTIFIER. All invalid keys will be reported as an event when the container is starting. When a key exists in multiple sources, the value associated with the last source will take precedence. Values defined by an Env with a duplicate key will take precedence. Cannot be updated.", - "items": { - "description": "EnvFromSource represents the source of a set of ConfigMaps", - "properties": { - "configMapRef": { - "description": "The ConfigMap to select from", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the ConfigMap must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "prefix": { - "description": "An optional identifier to prepend to each key in the ConfigMap. Must be a C_IDENTIFIER.", - "type": "string" - }, - "secretRef": { - "description": "The Secret to select from", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the Secret must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "image": { - "description": "Container image name. More info: https://kubernetes.io/docs/concepts/containers/images", - "type": "string" - }, - "imagePullPolicy": { - "description": "Image pull policy. One of Always, Never, IfNotPresent. Defaults to Always if :latest tag is specified, or IfNotPresent otherwise. Cannot be updated. More info: https://kubernetes.io/docs/concepts/containers/images#updating-images", - "type": "string" - }, - "lifecycle": { - "description": "Lifecycle is not allowed for ephemeral containers.", - "properties": { - "postStart": { - "description": "PostStart is called immediately after a container is created. If the handler fails, the container is terminated and restarted according to its restart policy. Other management of the container blocks until the hook completes. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "tcpSocket": { - "description": "Deprecated. TCPSocket is NOT supported as a LifecycleHandler and kept for the backward compatibility. There are no validation of this field and lifecycle hooks will fail in runtime when tcp handler is specified.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "preStop": { - "description": "PreStop is called immediately before a container is terminated due to an API request or management event such as liveness/startup probe failure, preemption, resource contention, etc. The handler is not called if the container crashes or exits. The Pod's termination grace period countdown begins before the PreStop hook is executed. Regardless of the outcome of the handler, the container will eventually terminate within the Pod's termination grace period (unless delayed by finalizers). Other management of the container blocks until the hook completes or until the termination grace period is reached. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "tcpSocket": { - "description": "Deprecated. TCPSocket is NOT supported as a LifecycleHandler and kept for the backward compatibility. There are no validation of this field and lifecycle hooks will fail in runtime when tcp handler is specified.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "livenessProbe": { - "description": "Probes are not allowed for ephemeral containers.", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "name": { - "description": "Name of the ephemeral container specified as a DNS_LABEL. This name must be unique among all containers, init containers and ephemeral containers.", - "type": "string" - }, - "ports": { - "description": "Ports are not allowed for ephemeral containers.", - "items": { - "description": "ContainerPort represents a network port in a single container.", - "properties": { - "containerPort": { - "description": "Number of port to expose on the pod's IP address. This must be a valid port number, 0 < x < 65536.", - "format": "int32", - "type": "integer" - }, - "hostIP": { - "description": "What host IP to bind the external port to.", - "type": "string" - }, - "hostPort": { - "description": "Number of port to expose on the host. If specified, this must be a valid port number, 0 < x < 65536. If HostNetwork is specified, this must match ContainerPort. Most containers do not need this.", - "format": "int32", - "type": "integer" - }, - "name": { - "description": "If specified, this must be an IANA_SVC_NAME and unique within the pod. Each named port in a pod must have a unique name. Name for the port that can be referred to by services.", - "type": "string" - }, - "protocol": { - "default": "TCP", - "description": "Protocol for port. Must be UDP, TCP, or SCTP. Defaults to \"TCP\".", - "type": "string" - } - }, - "required": [ - "containerPort" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "containerPort", - "protocol" - ], - "x-kubernetes-list-type": "map" - }, - "readinessProbe": { - "description": "Probes are not allowed for ephemeral containers.", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "resizePolicy": { - "description": "Resources resize policy for the container.", - "items": { - "description": "ContainerResizePolicy represents resource resize policy for the container.", - "properties": { - "resourceName": { - "description": "Name of the resource to which this resource resize policy applies. Supported values: cpu, memory.", - "type": "string" - }, - "restartPolicy": { - "description": "Restart policy to apply when specified resource is resized. If not specified, it defaults to NotRequired.", - "type": "string" - } - }, - "required": [ - "resourceName", - "restartPolicy" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-type": "atomic" - }, - "resources": { - "description": "Resources are not allowed for ephemeral containers. Ephemeral containers use spare resources already allocated to the pod.", - "properties": { - "claims": { - "description": "Claims lists the names of resources, defined in spec.resourceClaims, that are used by this container. \n This is an alpha field and requires enabling the DynamicResourceAllocation feature gate. \n This field is immutable. It can only be set for containers.", - "items": { - "description": "ResourceClaim references one entry in PodSpec.ResourceClaims.", - "properties": { - "name": { - "description": "Name must match the name of one entry in pod.spec.resourceClaims of the Pod where this field is used. It makes that resource available inside a container.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "name" - ], - "x-kubernetes-list-type": "map" - }, - "limits": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Limits describes the maximum amount of compute resources allowed. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - }, - "requests": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Requests describes the minimum amount of compute resources required. If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, otherwise to an implementation-defined value. Requests cannot exceed Limits. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - } - }, - "type": "object", - "additionalProperties": false - }, - "restartPolicy": { - "description": "Restart policy for the container to manage the restart behavior of each container within a pod. This may only be set for init containers. You cannot set this field on ephemeral containers.", - "type": "string" - }, - "securityContext": { - "description": "Optional: SecurityContext defines the security options the ephemeral container should be run with. If set, the fields of SecurityContext override the equivalent fields of PodSecurityContext.", - "properties": { - "allowPrivilegeEscalation": { - "description": "AllowPrivilegeEscalation controls whether a process can gain more privileges than its parent process. This bool directly controls if the no_new_privs flag will be set on the container process. AllowPrivilegeEscalation is true always when the container is: 1) run as Privileged 2) has CAP_SYS_ADMIN Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "capabilities": { - "description": "The capabilities to add/drop when running containers. Defaults to the default set of capabilities granted by the container runtime. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "add": { - "description": "Added capabilities", - "items": { - "description": "Capability represent POSIX capabilities type", - "type": "string" - }, - "type": "array" - }, - "drop": { - "description": "Removed capabilities", - "items": { - "description": "Capability represent POSIX capabilities type", - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "privileged": { - "description": "Run container in privileged mode. Processes in privileged containers are essentially equivalent to root on the host. Defaults to false. Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "procMount": { - "description": "procMount denotes the type of proc mount to use for the containers. The default is DefaultProcMount which uses the container runtime defaults for readonly paths and masked paths. This requires the ProcMountType feature flag to be enabled. Note that this field cannot be set when spec.os.name is windows.", - "type": "string" - }, - "readOnlyRootFilesystem": { - "description": "Whether this container has a read-only root filesystem. Default is false. Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "runAsGroup": { - "description": "The GID to run the entrypoint of the container process. Uses runtime default if unset. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "runAsNonRoot": { - "description": "Indicates that the container must run as a non-root user. If true, the Kubelet will validate the image at runtime to ensure that it does not run as UID 0 (root) and fail to start the container if it does. If unset or false, no such validation will be performed. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "boolean" - }, - "runAsUser": { - "description": "The UID to run the entrypoint of the container process. Defaults to user specified in image metadata if unspecified. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "seLinuxOptions": { - "description": "The SELinux context to be applied to the container. If unspecified, the container runtime will allocate a random SELinux context for each container. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "level": { - "description": "Level is SELinux level label that applies to the container.", - "type": "string" - }, - "role": { - "description": "Role is a SELinux role label that applies to the container.", - "type": "string" - }, - "type": { - "description": "Type is a SELinux type label that applies to the container.", - "type": "string" - }, - "user": { - "description": "User is a SELinux user label that applies to the container.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "seccompProfile": { - "description": "The seccomp options to use by this container. If seccomp options are provided at both the pod & container level, the container options override the pod options. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "localhostProfile": { - "description": "localhostProfile indicates a profile defined in a file on the node should be used. The profile must be preconfigured on the node to work. Must be a descending path, relative to the kubelet's configured seccomp profile location. Must be set if type is \"Localhost\". Must NOT be set for any other type.", - "type": "string" - }, - "type": { - "description": "type indicates which kind of seccomp profile will be applied. Valid options are: \n Localhost - a profile defined in a file on the node should be used. RuntimeDefault - the container runtime default profile should be used. Unconfined - no profile should be applied.", - "type": "string" - } - }, - "required": [ - "type" - ], - "type": "object", - "additionalProperties": false - }, - "windowsOptions": { - "description": "The Windows specific settings applied to all containers. If unspecified, the options from the PodSecurityContext will be used. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is linux.", - "properties": { - "gmsaCredentialSpec": { - "description": "GMSACredentialSpec is where the GMSA admission webhook (https://github.com/kubernetes-sigs/windows-gmsa) inlines the contents of the GMSA credential spec named by the GMSACredentialSpecName field.", - "type": "string" - }, - "gmsaCredentialSpecName": { - "description": "GMSACredentialSpecName is the name of the GMSA credential spec to use.", - "type": "string" - }, - "hostProcess": { - "description": "HostProcess determines if a container should be run as a 'Host Process' container. All of a Pod's containers must have the same effective HostProcess value (it is not allowed to have a mix of HostProcess containers and non-HostProcess containers). In addition, if HostProcess is true then HostNetwork must also be set to true.", - "type": "boolean" - }, - "runAsUserName": { - "description": "The UserName in Windows to run the entrypoint of the container process. Defaults to the user specified in image metadata if unspecified. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "startupProbe": { - "description": "Probes are not allowed for ephemeral containers.", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "stdin": { - "description": "Whether this container should allocate a buffer for stdin in the container runtime. If this is not set, reads from stdin in the container will always result in EOF. Default is false.", - "type": "boolean" - }, - "stdinOnce": { - "description": "Whether the container runtime should close the stdin channel after it has been opened by a single attach. When stdin is true the stdin stream will remain open across multiple attach sessions. If stdinOnce is set to true, stdin is opened on container start, is empty until the first client attaches to stdin, and then remains open and accepts data until the client disconnects, at which time stdin is closed and remains closed until the container is restarted. If this flag is false, a container processes that reads from stdin will never receive an EOF. Default is false", - "type": "boolean" - }, - "targetContainerName": { - "description": "If set, the name of the container from PodSpec that this ephemeral container targets. The ephemeral container will be run in the namespaces (IPC, PID, etc) of this container. If not set then the ephemeral container uses the namespaces configured in the Pod spec. \n The container runtime must implement support for this feature. If the runtime does not support namespace targeting then the result of setting this field is undefined.", - "type": "string" - }, - "terminationMessagePath": { - "description": "Optional: Path at which the file to which the container's termination message will be written is mounted into the container's filesystem. Message written is intended to be brief final status, such as an assertion failure message. Will be truncated by the node if greater than 4096 bytes. The total message length across all containers will be limited to 12kb. Defaults to /dev/termination-log. Cannot be updated.", - "type": "string" - }, - "terminationMessagePolicy": { - "description": "Indicate how the termination message should be populated. File will use the contents of terminationMessagePath to populate the container status message on both success and failure. FallbackToLogsOnError will use the last chunk of container log output if the termination message file is empty and the container exited with an error. The log output is limited to 2048 bytes or 80 lines, whichever is smaller. Defaults to File. Cannot be updated.", - "type": "string" - }, - "tty": { - "description": "Whether this container should allocate a TTY for itself, also requires 'stdin' to be true. Default is false.", - "type": "boolean" - }, - "volumeDevices": { - "description": "volumeDevices is the list of block devices to be used by the container.", - "items": { - "description": "volumeDevice describes a mapping of a raw block device within a container.", - "properties": { - "devicePath": { - "description": "devicePath is the path inside of the container that the device will be mapped to.", - "type": "string" - }, - "name": { - "description": "name must match the name of a persistentVolumeClaim in the pod", - "type": "string" - } - }, - "required": [ - "devicePath", - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "volumeMounts": { - "description": "Pod volumes to mount into the container's filesystem. Subpath mounts are not allowed for ephemeral containers. Cannot be updated.", - "items": { - "description": "VolumeMount describes a mounting of a Volume within a container.", - "properties": { - "mountPath": { - "description": "Path within the container at which the volume should be mounted. Must not contain ':'.", - "type": "string" - }, - "mountPropagation": { - "description": "mountPropagation determines how mounts are propagated from the host to container and the other way around. When not set, MountPropagationNone is used. This field is beta in 1.10.", - "type": "string" - }, - "name": { - "description": "This must match the Name of a Volume.", - "type": "string" - }, - "readOnly": { - "description": "Mounted read-only if true, read-write otherwise (false or unspecified). Defaults to false.", - "type": "boolean" - }, - "subPath": { - "description": "Path within the volume from which the container's volume should be mounted. Defaults to \"\" (volume's root).", - "type": "string" - }, - "subPathExpr": { - "description": "Expanded path within the volume from which the container's volume should be mounted. Behaves similarly to SubPath but environment variable references $(VAR_NAME) are expanded using the container's environment. Defaults to \"\" (volume's root). SubPathExpr and SubPath are mutually exclusive.", - "type": "string" - } - }, - "required": [ - "mountPath", - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "workingDir": { - "description": "Container's working directory. If not specified, the container runtime's default will be used, which might be configured in the container image. Cannot be updated.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "hostAliases": { - "description": "HostAliases is an optional list of hosts and IPs that will be injected into the pod's hosts file if specified. This is only valid for non-hostNetwork pods.", - "items": { - "description": "HostAlias holds the mapping between IP and hostnames that will be injected as an entry in the pod's hosts file.", - "properties": { - "hostnames": { - "description": "Hostnames for the above IP address.", - "items": { - "type": "string" - }, - "type": "array" - }, - "ip": { - "description": "IP address of the host file entry.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "hostIPC": { - "description": "Use the host's ipc namespace. Optional: Default to false.", - "type": "boolean" - }, - "hostNetwork": { - "description": "Host networking requested for this pod. Use the host's network namespace. If this option is set, the ports that will be used must be specified. Default to false.", - "type": "boolean" - }, - "hostPID": { - "description": "Use the host's pid namespace. Optional: Default to false.", - "type": "boolean" - }, - "hostUsers": { - "description": "Use the host's user namespace. Optional: Default to true. If set to true or not present, the pod will be run in the host user namespace, useful for when the pod needs a feature only available to the host user namespace, such as loading a kernel module with CAP_SYS_MODULE. When set to false, a new userns is created for the pod. Setting false is useful for mitigating container breakout vulnerabilities even allowing users to run their containers as root without actually having root privileges on the host. This field is alpha-level and is only honored by servers that enable the UserNamespacesSupport feature.", - "type": "boolean" - }, - "hostname": { - "description": "Specifies the hostname of the Pod If not specified, the pod's hostname will be set to a system-defined value.", - "type": "string" - }, - "imagePullSecrets": { - "description": "ImagePullSecrets is an optional list of references to secrets in the same namespace to use for pulling any of the images used by this PodSpec. If specified, these secrets will be passed to individual puller implementations for them to use. More info: https://kubernetes.io/docs/concepts/containers/images#specifying-imagepullsecrets-on-a-pod", - "items": { - "description": "LocalObjectReference contains enough information to let you locate the referenced object inside the same namespace.", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "type": "array" - }, - "initContainers": { - "description": "List of initialization containers belonging to the pod. Init containers are executed in order prior to containers being started. If any init container fails, the pod is considered to have failed and is handled according to its restartPolicy. The name for an init container or normal container must be unique among all containers. Init containers may not have Lifecycle actions, Readiness probes, Liveness probes, or Startup probes. The resourceRequirements of an init container are taken into account during scheduling by finding the highest request/limit for each resource type, and then using the max of of that value or the sum of the normal containers. Limits are applied to init containers in a similar fashion. Init containers cannot currently be added or removed. Cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/init-containers/", - "items": { - "description": "A single application container that you want to run within a pod.", - "properties": { - "args": { - "description": "Arguments to the entrypoint. The container image's CMD is used if this is not provided. Variable references $(VAR_NAME) are expanded using the container's environment. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Cannot be updated. More info: https://kubernetes.io/docs/tasks/inject-data-application/define-command-argument-container/#running-a-command-in-a-shell", - "items": { - "type": "string" - }, - "type": "array" - }, - "command": { - "description": "Entrypoint array. Not executed within a shell. The container image's ENTRYPOINT is used if this is not provided. Variable references $(VAR_NAME) are expanded using the container's environment. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Cannot be updated. More info: https://kubernetes.io/docs/tasks/inject-data-application/define-command-argument-container/#running-a-command-in-a-shell", - "items": { - "type": "string" - }, - "type": "array" - }, - "env": { - "description": "List of environment variables to set in the container. Cannot be updated.", - "items": { - "description": "EnvVar represents an environment variable present in a Container.", - "properties": { - "name": { - "description": "Name of the environment variable. Must be a C_IDENTIFIER.", - "type": "string" - }, - "value": { - "description": "Variable references $(VAR_NAME) are expanded using the previously defined environment variables in the container and any service environment variables. If a variable cannot be resolved, the reference in the input string will be unchanged. Double $$ are reduced to a single $, which allows for escaping the $(VAR_NAME) syntax: i.e. \"$$(VAR_NAME)\" will produce the string literal \"$(VAR_NAME)\". Escaped references will never be expanded, regardless of whether the variable exists or not. Defaults to \"\".", - "type": "string" - }, - "valueFrom": { - "description": "Source for the environment variable's value. Cannot be used if value is not empty.", - "properties": { - "configMapKeyRef": { - "description": "Selects a key of a ConfigMap.", - "properties": { - "key": { - "description": "The key to select.", - "type": "string" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the ConfigMap or its key must be defined", - "type": "boolean" - } - }, - "required": [ - "key" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "fieldRef": { - "description": "Selects a field of the pod: supports metadata.name, metadata.namespace, `metadata.labels['']`, `metadata.annotations['']`, spec.nodeName, spec.serviceAccountName, status.hostIP, status.podIP, status.podIPs.", - "properties": { - "apiVersion": { - "description": "Version of the schema the FieldPath is written in terms of, defaults to \"v1\".", - "type": "string" - }, - "fieldPath": { - "description": "Path of the field to select in the specified API version.", - "type": "string" - } - }, - "required": [ - "fieldPath" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "resourceFieldRef": { - "description": "Selects a resource of the container: only resources limits and requests (limits.cpu, limits.memory, limits.ephemeral-storage, requests.cpu, requests.memory and requests.ephemeral-storage) are currently supported.", - "properties": { - "containerName": { - "description": "Container name: required for volumes, optional for env vars", - "type": "string" - }, - "divisor": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Specifies the output format of the exposed resources, defaults to \"1\"", - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "resource": { - "description": "Required: resource to select", - "type": "string" - } - }, - "required": [ - "resource" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "secretKeyRef": { - "description": "Selects a key of a secret in the pod's namespace", - "properties": { - "key": { - "description": "The key of the secret to select from. Must be a valid secret key.", - "type": "string" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the Secret or its key must be defined", - "type": "boolean" - } - }, - "required": [ - "key" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "envFrom": { - "description": "List of sources to populate environment variables in the container. The keys defined within a source must be a C_IDENTIFIER. All invalid keys will be reported as an event when the container is starting. When a key exists in multiple sources, the value associated with the last source will take precedence. Values defined by an Env with a duplicate key will take precedence. Cannot be updated.", - "items": { - "description": "EnvFromSource represents the source of a set of ConfigMaps", - "properties": { - "configMapRef": { - "description": "The ConfigMap to select from", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the ConfigMap must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "prefix": { - "description": "An optional identifier to prepend to each key in the ConfigMap. Must be a C_IDENTIFIER.", - "type": "string" - }, - "secretRef": { - "description": "The Secret to select from", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "Specify whether the Secret must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "image": { - "description": "Container image name. More info: https://kubernetes.io/docs/concepts/containers/images This field is optional to allow higher level config management to default or override container images in workload controllers like Deployments and StatefulSets.", - "type": "string" - }, - "imagePullPolicy": { - "description": "Image pull policy. One of Always, Never, IfNotPresent. Defaults to Always if :latest tag is specified, or IfNotPresent otherwise. Cannot be updated. More info: https://kubernetes.io/docs/concepts/containers/images#updating-images", - "type": "string" - }, - "lifecycle": { - "description": "Actions that the management system should take in response to container lifecycle events. Cannot be updated.", - "properties": { - "postStart": { - "description": "PostStart is called immediately after a container is created. If the handler fails, the container is terminated and restarted according to its restart policy. Other management of the container blocks until the hook completes. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "tcpSocket": { - "description": "Deprecated. TCPSocket is NOT supported as a LifecycleHandler and kept for the backward compatibility. There are no validation of this field and lifecycle hooks will fail in runtime when tcp handler is specified.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "preStop": { - "description": "PreStop is called immediately before a container is terminated due to an API request or management event such as liveness/startup probe failure, preemption, resource contention, etc. The handler is not called if the container crashes or exits. The Pod's termination grace period countdown begins before the PreStop hook is executed. Regardless of the outcome of the handler, the container will eventually terminate within the Pod's termination grace period (unless delayed by finalizers). Other management of the container blocks until the hook completes or until the termination grace period is reached. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "tcpSocket": { - "description": "Deprecated. TCPSocket is NOT supported as a LifecycleHandler and kept for the backward compatibility. There are no validation of this field and lifecycle hooks will fail in runtime when tcp handler is specified.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "livenessProbe": { - "description": "Periodic probe of container liveness. Container will be restarted if the probe fails. Cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "name": { - "description": "Name of the container specified as a DNS_LABEL. Each container in a pod must have a unique name (DNS_LABEL). Cannot be updated.", - "type": "string" - }, - "ports": { - "description": "List of ports to expose from the container. Not specifying a port here DOES NOT prevent that port from being exposed. Any port which is listening on the default \"0.0.0.0\" address inside a container will be accessible from the network. Modifying this array with strategic merge patch may corrupt the data. For more information See https://github.com/kubernetes/kubernetes/issues/108255. Cannot be updated.", - "items": { - "description": "ContainerPort represents a network port in a single container.", - "properties": { - "containerPort": { - "description": "Number of port to expose on the pod's IP address. This must be a valid port number, 0 < x < 65536.", - "format": "int32", - "type": "integer" - }, - "hostIP": { - "description": "What host IP to bind the external port to.", - "type": "string" - }, - "hostPort": { - "description": "Number of port to expose on the host. If specified, this must be a valid port number, 0 < x < 65536. If HostNetwork is specified, this must match ContainerPort. Most containers do not need this.", - "format": "int32", - "type": "integer" - }, - "name": { - "description": "If specified, this must be an IANA_SVC_NAME and unique within the pod. Each named port in a pod must have a unique name. Name for the port that can be referred to by services.", - "type": "string" - }, - "protocol": { - "default": "TCP", - "description": "Protocol for port. Must be UDP, TCP, or SCTP. Defaults to \"TCP\".", - "type": "string" - } - }, - "required": [ - "containerPort" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "containerPort", - "protocol" - ], - "x-kubernetes-list-type": "map" - }, - "readinessProbe": { - "description": "Periodic probe of container service readiness. Container will be removed from service endpoints if the probe fails. Cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "resizePolicy": { - "description": "Resources resize policy for the container.", - "items": { - "description": "ContainerResizePolicy represents resource resize policy for the container.", - "properties": { - "resourceName": { - "description": "Name of the resource to which this resource resize policy applies. Supported values: cpu, memory.", - "type": "string" - }, - "restartPolicy": { - "description": "Restart policy to apply when specified resource is resized. If not specified, it defaults to NotRequired.", - "type": "string" - } - }, - "required": [ - "resourceName", - "restartPolicy" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-type": "atomic" - }, - "resources": { - "description": "Compute Resources required by this container. Cannot be updated. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "properties": { - "claims": { - "description": "Claims lists the names of resources, defined in spec.resourceClaims, that are used by this container. \n This is an alpha field and requires enabling the DynamicResourceAllocation feature gate. \n This field is immutable. It can only be set for containers.", - "items": { - "description": "ResourceClaim references one entry in PodSpec.ResourceClaims.", - "properties": { - "name": { - "description": "Name must match the name of one entry in pod.spec.resourceClaims of the Pod where this field is used. It makes that resource available inside a container.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "name" - ], - "x-kubernetes-list-type": "map" - }, - "limits": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Limits describes the maximum amount of compute resources allowed. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - }, - "requests": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Requests describes the minimum amount of compute resources required. If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, otherwise to an implementation-defined value. Requests cannot exceed Limits. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - } - }, - "type": "object", - "additionalProperties": false - }, - "restartPolicy": { - "description": "RestartPolicy defines the restart behavior of individual containers in a pod. This field may only be set for init containers, and the only allowed value is \"Always\". For non-init containers or when this field is not specified, the restart behavior is defined by the Pod's restart policy and the container type. Setting the RestartPolicy as \"Always\" for the init container will have the following effect: this init container will be continually restarted on exit until all regular containers have terminated. Once all regular containers have completed, all init containers with restartPolicy \"Always\" will be shut down. This lifecycle differs from normal init containers and is often referred to as a \"sidecar\" container. Although this init container still starts in the init container sequence, it does not wait for the container to complete before proceeding to the next init container. Instead, the next init container starts immediately after this init container is started, or after any startupProbe has successfully completed.", - "type": "string" - }, - "securityContext": { - "description": "SecurityContext defines the security options the container should be run with. If set, the fields of SecurityContext override the equivalent fields of PodSecurityContext. More info: https://kubernetes.io/docs/tasks/configure-pod-container/security-context/", - "properties": { - "allowPrivilegeEscalation": { - "description": "AllowPrivilegeEscalation controls whether a process can gain more privileges than its parent process. This bool directly controls if the no_new_privs flag will be set on the container process. AllowPrivilegeEscalation is true always when the container is: 1) run as Privileged 2) has CAP_SYS_ADMIN Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "capabilities": { - "description": "The capabilities to add/drop when running containers. Defaults to the default set of capabilities granted by the container runtime. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "add": { - "description": "Added capabilities", - "items": { - "description": "Capability represent POSIX capabilities type", - "type": "string" - }, - "type": "array" - }, - "drop": { - "description": "Removed capabilities", - "items": { - "description": "Capability represent POSIX capabilities type", - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "privileged": { - "description": "Run container in privileged mode. Processes in privileged containers are essentially equivalent to root on the host. Defaults to false. Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "procMount": { - "description": "procMount denotes the type of proc mount to use for the containers. The default is DefaultProcMount which uses the container runtime defaults for readonly paths and masked paths. This requires the ProcMountType feature flag to be enabled. Note that this field cannot be set when spec.os.name is windows.", - "type": "string" - }, - "readOnlyRootFilesystem": { - "description": "Whether this container has a read-only root filesystem. Default is false. Note that this field cannot be set when spec.os.name is windows.", - "type": "boolean" - }, - "runAsGroup": { - "description": "The GID to run the entrypoint of the container process. Uses runtime default if unset. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "runAsNonRoot": { - "description": "Indicates that the container must run as a non-root user. If true, the Kubelet will validate the image at runtime to ensure that it does not run as UID 0 (root) and fail to start the container if it does. If unset or false, no such validation will be performed. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "boolean" - }, - "runAsUser": { - "description": "The UID to run the entrypoint of the container process. Defaults to user specified in image metadata if unspecified. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "seLinuxOptions": { - "description": "The SELinux context to be applied to the container. If unspecified, the container runtime will allocate a random SELinux context for each container. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "level": { - "description": "Level is SELinux level label that applies to the container.", - "type": "string" - }, - "role": { - "description": "Role is a SELinux role label that applies to the container.", - "type": "string" - }, - "type": { - "description": "Type is a SELinux type label that applies to the container.", - "type": "string" - }, - "user": { - "description": "User is a SELinux user label that applies to the container.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "seccompProfile": { - "description": "The seccomp options to use by this container. If seccomp options are provided at both the pod & container level, the container options override the pod options. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "localhostProfile": { - "description": "localhostProfile indicates a profile defined in a file on the node should be used. The profile must be preconfigured on the node to work. Must be a descending path, relative to the kubelet's configured seccomp profile location. Must be set if type is \"Localhost\". Must NOT be set for any other type.", - "type": "string" - }, - "type": { - "description": "type indicates which kind of seccomp profile will be applied. Valid options are: \n Localhost - a profile defined in a file on the node should be used. RuntimeDefault - the container runtime default profile should be used. Unconfined - no profile should be applied.", - "type": "string" - } - }, - "required": [ - "type" - ], - "type": "object", - "additionalProperties": false - }, - "windowsOptions": { - "description": "The Windows specific settings applied to all containers. If unspecified, the options from the PodSecurityContext will be used. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is linux.", - "properties": { - "gmsaCredentialSpec": { - "description": "GMSACredentialSpec is where the GMSA admission webhook (https://github.com/kubernetes-sigs/windows-gmsa) inlines the contents of the GMSA credential spec named by the GMSACredentialSpecName field.", - "type": "string" - }, - "gmsaCredentialSpecName": { - "description": "GMSACredentialSpecName is the name of the GMSA credential spec to use.", - "type": "string" - }, - "hostProcess": { - "description": "HostProcess determines if a container should be run as a 'Host Process' container. All of a Pod's containers must have the same effective HostProcess value (it is not allowed to have a mix of HostProcess containers and non-HostProcess containers). In addition, if HostProcess is true then HostNetwork must also be set to true.", - "type": "boolean" - }, - "runAsUserName": { - "description": "The UserName in Windows to run the entrypoint of the container process. Defaults to the user specified in image metadata if unspecified. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "startupProbe": { - "description": "StartupProbe indicates that the Pod has successfully initialized. If specified, no other probes are executed until this completes successfully. If this probe fails, the Pod will be restarted, just as if the livenessProbe failed. This can be used to provide different probe parameters at the beginning of a Pod's lifecycle, when it might take a long time to load data or warm a cache, than during steady-state operation. This cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "properties": { - "exec": { - "description": "Exec specifies the action to take.", - "properties": { - "command": { - "description": "Command is the command line to execute inside the container, the working directory for the command is root ('/') in the container's filesystem. The command is simply exec'd, it is not run inside a shell, so traditional shell instructions ('|', etc) won't work. To use a shell, you need to explicitly call out to that shell. Exit status of 0 is treated as live/healthy and non-zero is unhealthy.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "failureThreshold": { - "description": "Minimum consecutive failures for the probe to be considered failed after having succeeded. Defaults to 3. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "grpc": { - "description": "GRPC specifies an action involving a GRPC port.", - "properties": { - "port": { - "description": "Port number of the gRPC service. Number must be in the range 1 to 65535.", - "format": "int32", - "type": "integer" - }, - "service": { - "description": "Service is the name of the service to place in the gRPC HealthCheckRequest (see https://github.com/grpc/grpc/blob/master/doc/health-checking.md). \n If this is not specified, the default behavior is defined by gRPC.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "httpGet": { - "description": "HTTPGet specifies the http request to perform.", - "properties": { - "host": { - "description": "Host name to connect to, defaults to the pod IP. You probably want to set \"Host\" in httpHeaders instead.", - "type": "string" - }, - "httpHeaders": { - "description": "Custom headers to set in the request. HTTP allows repeated headers.", - "items": { - "description": "HTTPHeader describes a custom header to be used in HTTP probes", - "properties": { - "name": { - "description": "The header field name. This will be canonicalized upon output, so case-variant names will be understood as the same header.", - "type": "string" - }, - "value": { - "description": "The header field value", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "path": { - "description": "Path to access on the HTTP server.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Name or number of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - }, - "scheme": { - "description": "Scheme to use for connecting to the host. Defaults to HTTP.", - "type": "string" - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "initialDelaySeconds": { - "description": "Number of seconds after the container has started before liveness probes are initiated. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - }, - "periodSeconds": { - "description": "How often (in seconds) to perform the probe. Default to 10 seconds. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "successThreshold": { - "description": "Minimum consecutive successes for the probe to be considered successful after having failed. Defaults to 1. Must be 1 for liveness and startup. Minimum value is 1.", - "format": "int32", - "type": "integer" - }, - "tcpSocket": { - "description": "TCPSocket specifies an action involving a TCP port.", - "properties": { - "host": { - "description": "Optional: Host name to connect to, defaults to the pod IP.", - "type": "string" - }, - "port": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Number or name of the port to access on the container. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.", - "x-kubernetes-int-or-string": true - } - }, - "required": [ - "port" - ], - "type": "object", - "additionalProperties": false - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully upon probe failure. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. If this value is nil, the pod's terminationGracePeriodSeconds will be used. Otherwise, this value overrides the value provided by the pod spec. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). This is a beta field and requires enabling ProbeTerminationGracePeriod feature gate. Minimum value is 1. spec.terminationGracePeriodSeconds is used if unset.", - "format": "int64", - "type": "integer" - }, - "timeoutSeconds": { - "description": "Number of seconds after which the probe times out. Defaults to 1 second. Minimum value is 1. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#container-probes", - "format": "int32", - "type": "integer" - } - }, - "type": "object", - "additionalProperties": false - }, - "stdin": { - "description": "Whether this container should allocate a buffer for stdin in the container runtime. If this is not set, reads from stdin in the container will always result in EOF. Default is false.", - "type": "boolean" - }, - "stdinOnce": { - "description": "Whether the container runtime should close the stdin channel after it has been opened by a single attach. When stdin is true the stdin stream will remain open across multiple attach sessions. If stdinOnce is set to true, stdin is opened on container start, is empty until the first client attaches to stdin, and then remains open and accepts data until the client disconnects, at which time stdin is closed and remains closed until the container is restarted. If this flag is false, a container processes that reads from stdin will never receive an EOF. Default is false", - "type": "boolean" - }, - "terminationMessagePath": { - "description": "Optional: Path at which the file to which the container's termination message will be written is mounted into the container's filesystem. Message written is intended to be brief final status, such as an assertion failure message. Will be truncated by the node if greater than 4096 bytes. The total message length across all containers will be limited to 12kb. Defaults to /dev/termination-log. Cannot be updated.", - "type": "string" - }, - "terminationMessagePolicy": { - "description": "Indicate how the termination message should be populated. File will use the contents of terminationMessagePath to populate the container status message on both success and failure. FallbackToLogsOnError will use the last chunk of container log output if the termination message file is empty and the container exited with an error. The log output is limited to 2048 bytes or 80 lines, whichever is smaller. Defaults to File. Cannot be updated.", - "type": "string" - }, - "tty": { - "description": "Whether this container should allocate a TTY for itself, also requires 'stdin' to be true. Default is false.", - "type": "boolean" - }, - "volumeDevices": { - "description": "volumeDevices is the list of block devices to be used by the container.", - "items": { - "description": "volumeDevice describes a mapping of a raw block device within a container.", - "properties": { - "devicePath": { - "description": "devicePath is the path inside of the container that the device will be mapped to.", - "type": "string" - }, - "name": { - "description": "name must match the name of a persistentVolumeClaim in the pod", - "type": "string" - } - }, - "required": [ - "devicePath", - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "volumeMounts": { - "description": "Pod volumes to mount into the container's filesystem. Cannot be updated.", - "items": { - "description": "VolumeMount describes a mounting of a Volume within a container.", - "properties": { - "mountPath": { - "description": "Path within the container at which the volume should be mounted. Must not contain ':'.", - "type": "string" - }, - "mountPropagation": { - "description": "mountPropagation determines how mounts are propagated from the host to container and the other way around. When not set, MountPropagationNone is used. This field is beta in 1.10.", - "type": "string" - }, - "name": { - "description": "This must match the Name of a Volume.", - "type": "string" - }, - "readOnly": { - "description": "Mounted read-only if true, read-write otherwise (false or unspecified). Defaults to false.", - "type": "boolean" - }, - "subPath": { - "description": "Path within the volume from which the container's volume should be mounted. Defaults to \"\" (volume's root).", - "type": "string" - }, - "subPathExpr": { - "description": "Expanded path within the volume from which the container's volume should be mounted. Behaves similarly to SubPath but environment variable references $(VAR_NAME) are expanded using the container's environment. Defaults to \"\" (volume's root). SubPathExpr and SubPath are mutually exclusive.", - "type": "string" - } - }, - "required": [ - "mountPath", - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "workingDir": { - "description": "Container's working directory. If not specified, the container runtime's default will be used, which might be configured in the container image. Cannot be updated.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "nodeName": { - "description": "NodeName is a request to schedule this pod onto a specific node. If it is non-empty, the scheduler simply schedules this pod onto that node, assuming that it fits resource requirements.", - "type": "string" - }, - "nodeSelector": { - "additionalProperties": { - "type": "string" - }, - "description": "NodeSelector is a selector which must be true for the pod to fit on a node. Selector which must match a node's labels for the pod to be scheduled on that node. More info: https://kubernetes.io/docs/concepts/configuration/assign-pod-node/", - "type": "object", - "x-kubernetes-map-type": "atomic" - }, - "os": { - "description": "Specifies the OS of the containers in the pod. Some pod and container fields are restricted if this is set. \n If the OS field is set to linux, the following fields must be unset: -securityContext.windowsOptions \n If the OS field is set to windows, following fields must be unset: - spec.hostPID - spec.hostIPC - spec.hostUsers - spec.securityContext.seLinuxOptions - spec.securityContext.seccompProfile - spec.securityContext.fsGroup - spec.securityContext.fsGroupChangePolicy - spec.securityContext.sysctls - spec.shareProcessNamespace - spec.securityContext.runAsUser - spec.securityContext.runAsGroup - spec.securityContext.supplementalGroups - spec.containers[*].securityContext.seLinuxOptions - spec.containers[*].securityContext.seccompProfile - spec.containers[*].securityContext.capabilities - spec.containers[*].securityContext.readOnlyRootFilesystem - spec.containers[*].securityContext.privileged - spec.containers[*].securityContext.allowPrivilegeEscalation - spec.containers[*].securityContext.procMount - spec.containers[*].securityContext.runAsUser - spec.containers[*].securityContext.runAsGroup", - "properties": { - "name": { - "description": "Name is the name of the operating system. The currently supported values are linux and windows. Additional value may be defined in future and can be one of: https://github.com/opencontainers/runtime-spec/blob/master/config.md#platform-specific-configuration Clients should expect to handle additional values and treat unrecognized values in this field as os: null", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "overhead": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Overhead represents the resource overhead associated with running a pod for a given RuntimeClass. This field will be autopopulated at admission time by the RuntimeClass admission controller. If the RuntimeClass admission controller is enabled, overhead must not be set in Pod create requests. The RuntimeClass admission controller will reject Pod create requests which have the overhead already set. If RuntimeClass is configured and selected in the PodSpec, Overhead will be set to the value defined in the corresponding RuntimeClass, otherwise it will remain unset and treated as zero. More info: https://git.k8s.io/enhancements/keps/sig-node/688-pod-overhead/README.md", - "type": "object" - }, - "preemptionPolicy": { - "description": "PreemptionPolicy is the Policy for preempting pods with lower priority. One of Never, PreemptLowerPriority. Defaults to PreemptLowerPriority if unset.", - "type": "string" - }, - "priority": { - "description": "The priority value. Various system components use this field to find the priority of the pod. When Priority Admission Controller is enabled, it prevents users from setting this field. The admission controller populates this field from PriorityClassName. The higher the value, the higher the priority.", - "format": "int32", - "type": "integer" - }, - "priorityClassName": { - "description": "If specified, indicates the pod's priority. \"system-node-critical\" and \"system-cluster-critical\" are two special keywords which indicate the highest priorities with the former being the highest priority. Any other name must be defined by creating a PriorityClass object with that name. If not specified, the pod priority will be default or zero if there is no default.", - "type": "string" - }, - "readinessGates": { - "description": "If specified, all readiness gates will be evaluated for pod readiness. A pod is ready when all its containers are ready AND all conditions specified in the readiness gates have status equal to \"True\" More info: https://git.k8s.io/enhancements/keps/sig-network/580-pod-readiness-gates", - "items": { - "description": "PodReadinessGate contains the reference to a pod condition", - "properties": { - "conditionType": { - "description": "ConditionType refers to a condition in the pod's condition list with matching type.", - "type": "string" - } - }, - "required": [ - "conditionType" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "resourceClaims": { - "description": "ResourceClaims defines which ResourceClaims must be allocated and reserved before the Pod is allowed to start. The resources will be made available to those containers which consume them by name. \n This is an alpha field and requires enabling the DynamicResourceAllocation feature gate. \n This field is immutable.", - "items": { - "description": "PodResourceClaim references exactly one ResourceClaim through a ClaimSource. It adds a name to it that uniquely identifies the ResourceClaim inside the Pod. Containers that need access to the ResourceClaim reference it with this name.", - "properties": { - "name": { - "description": "Name uniquely identifies this resource claim inside the pod. This must be a DNS_LABEL.", - "type": "string" - }, - "source": { - "description": "Source describes where to find the ResourceClaim.", - "properties": { - "resourceClaimName": { - "description": "ResourceClaimName is the name of a ResourceClaim object in the same namespace as this pod.", - "type": "string" - }, - "resourceClaimTemplateName": { - "description": "ResourceClaimTemplateName is the name of a ResourceClaimTemplate object in the same namespace as this pod. \n The template will be used to create a new ResourceClaim, which will be bound to this pod. When this pod is deleted, the ResourceClaim will also be deleted. The pod name and resource name, along with a generated component, will be used to form a unique name for the ResourceClaim, which will be recorded in pod.status.resourceClaimStatuses. \n This field is immutable and no changes will be made to the corresponding ResourceClaim by the control plane after creating the ResourceClaim.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "name" - ], - "x-kubernetes-list-type": "map" - }, - "restartPolicy": { - "description": "Restart policy for all containers within the pod. One of Always, OnFailure, Never. In some contexts, only a subset of those values may be permitted. Default to Always. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle/#restart-policy", - "type": "string" - }, - "runtimeClassName": { - "description": "RuntimeClassName refers to a RuntimeClass object in the node.k8s.io group, which should be used to run this pod. If no RuntimeClass resource matches the named class, the pod will not be run. If unset or empty, the \"legacy\" RuntimeClass will be used, which is an implicit class with an empty definition that uses the default runtime handler. More info: https://git.k8s.io/enhancements/keps/sig-node/585-runtime-class", - "type": "string" - }, - "schedulerName": { - "description": "If specified, the pod will be dispatched by specified scheduler. If not specified, the pod will be dispatched by default scheduler.", - "type": "string" - }, - "schedulingGates": { - "description": "SchedulingGates is an opaque list of values that if specified will block scheduling the pod. If schedulingGates is not empty, the pod will stay in the SchedulingGated state and the scheduler will not attempt to schedule the pod. \n SchedulingGates can only be set at pod creation time, and be removed only afterwards. \n This is a beta feature enabled by the PodSchedulingReadiness feature gate.", - "items": { - "description": "PodSchedulingGate is associated to a Pod to guard its scheduling.", - "properties": { - "name": { - "description": "Name of the scheduling gate. Each scheduling gate must have a unique name field.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "name" - ], - "x-kubernetes-list-type": "map" - }, - "securityContext": { - "description": "SecurityContext holds pod-level security attributes and common container settings. Optional: Defaults to empty. See type description for default values of each field.", - "properties": { - "fsGroup": { - "description": "A special supplemental group that applies to all containers in a pod. Some volume types allow the Kubelet to change the ownership of that volume to be owned by the pod: \n 1. The owning GID will be the FSGroup 2. The setgid bit is set (new files created in the volume will be owned by FSGroup) 3. The permission bits are OR'd with rw-rw---- \n If unset, the Kubelet will not modify the ownership and permissions of any volume. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "fsGroupChangePolicy": { - "description": "fsGroupChangePolicy defines behavior of changing ownership and permission of the volume before being exposed inside Pod. This field will only apply to volume types which support fsGroup based ownership(and permissions). It will have no effect on ephemeral volume types such as: secret, configmaps and emptydir. Valid values are \"OnRootMismatch\" and \"Always\". If not specified, \"Always\" is used. Note that this field cannot be set when spec.os.name is windows.", - "type": "string" - }, - "runAsGroup": { - "description": "The GID to run the entrypoint of the container process. Uses runtime default if unset. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "runAsNonRoot": { - "description": "Indicates that the container must run as a non-root user. If true, the Kubelet will validate the image at runtime to ensure that it does not run as UID 0 (root) and fail to start the container if it does. If unset or false, no such validation will be performed. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "boolean" - }, - "runAsUser": { - "description": "The UID to run the entrypoint of the container process. Defaults to user specified in image metadata if unspecified. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", - "format": "int64", - "type": "integer" - }, - "seLinuxOptions": { - "description": "The SELinux context to be applied to all containers. If unspecified, the container runtime will allocate a random SELinux context for each container. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "level": { - "description": "Level is SELinux level label that applies to the container.", - "type": "string" - }, - "role": { - "description": "Role is a SELinux role label that applies to the container.", - "type": "string" - }, - "type": { - "description": "Type is a SELinux type label that applies to the container.", - "type": "string" - }, - "user": { - "description": "User is a SELinux user label that applies to the container.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "seccompProfile": { - "description": "The seccomp options to use by the containers in this pod. Note that this field cannot be set when spec.os.name is windows.", - "properties": { - "localhostProfile": { - "description": "localhostProfile indicates a profile defined in a file on the node should be used. The profile must be preconfigured on the node to work. Must be a descending path, relative to the kubelet's configured seccomp profile location. Must be set if type is \"Localhost\". Must NOT be set for any other type.", - "type": "string" - }, - "type": { - "description": "type indicates which kind of seccomp profile will be applied. Valid options are: \n Localhost - a profile defined in a file on the node should be used. RuntimeDefault - the container runtime default profile should be used. Unconfined - no profile should be applied.", - "type": "string" - } - }, - "required": [ - "type" - ], - "type": "object", - "additionalProperties": false - }, - "supplementalGroups": { - "description": "A list of groups applied to the first process run in each container, in addition to the container's primary GID, the fsGroup (if specified), and group memberships defined in the container image for the uid of the container process. If unspecified, no additional groups are added to any container. Note that group memberships defined in the container image for the uid of the container process are still effective, even if they are not included in this list. Note that this field cannot be set when spec.os.name is windows.", - "items": { - "format": "int64", - "type": "integer" - }, - "type": "array" - }, - "sysctls": { - "description": "Sysctls hold a list of namespaced sysctls used for the pod. Pods with unsupported sysctls (by the container runtime) might fail to launch. Note that this field cannot be set when spec.os.name is windows.", - "items": { - "description": "Sysctl defines a kernel parameter to be set", - "properties": { - "name": { - "description": "Name of a property to set", - "type": "string" - }, - "value": { - "description": "Value of a property to set", - "type": "string" - } - }, - "required": [ - "name", - "value" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "windowsOptions": { - "description": "The Windows specific settings applied to all containers. If unspecified, the options within a container's SecurityContext will be used. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is linux.", - "properties": { - "gmsaCredentialSpec": { - "description": "GMSACredentialSpec is where the GMSA admission webhook (https://github.com/kubernetes-sigs/windows-gmsa) inlines the contents of the GMSA credential spec named by the GMSACredentialSpecName field.", - "type": "string" - }, - "gmsaCredentialSpecName": { - "description": "GMSACredentialSpecName is the name of the GMSA credential spec to use.", - "type": "string" - }, - "hostProcess": { - "description": "HostProcess determines if a container should be run as a 'Host Process' container. All of a Pod's containers must have the same effective HostProcess value (it is not allowed to have a mix of HostProcess containers and non-HostProcess containers). In addition, if HostProcess is true then HostNetwork must also be set to true.", - "type": "boolean" - }, - "runAsUserName": { - "description": "The UserName in Windows to run the entrypoint of the container process. Defaults to the user specified in image metadata if unspecified. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "serviceAccount": { - "description": "DeprecatedServiceAccount is a depreciated alias for ServiceAccountName. Deprecated: Use serviceAccountName instead.", - "type": "string" - }, - "serviceAccountName": { - "description": "ServiceAccountName is the name of the ServiceAccount to use to run this pod. More info: https://kubernetes.io/docs/tasks/configure-pod-container/configure-service-account/", - "type": "string" - }, - "setHostnameAsFQDN": { - "description": "If true the pod's hostname will be configured as the pod's FQDN, rather than the leaf name (the default). In Linux containers, this means setting the FQDN in the hostname field of the kernel (the nodename field of struct utsname). In Windows containers, this means setting the registry value of hostname for the registry key HKEY_LOCAL_MACHINE\\\\SYSTEM\\\\CurrentControlSet\\\\Services\\\\Tcpip\\\\Parameters to FQDN. If a pod does not have FQDN, this has no effect. Default to false.", - "type": "boolean" - }, - "shareProcessNamespace": { - "description": "Share a single process namespace between all of the containers in a pod. When this is set containers will be able to view and signal processes from other containers in the same pod, and the first process in each container will not be assigned PID 1. HostPID and ShareProcessNamespace cannot both be set. Optional: Default to false.", - "type": "boolean" - }, - "subdomain": { - "description": "If specified, the fully qualified Pod hostname will be \"...svc.\". If not specified, the pod will not have a domainname at all.", - "type": "string" - }, - "terminationGracePeriodSeconds": { - "description": "Optional duration in seconds the pod needs to terminate gracefully. May be decreased in delete request. Value must be non-negative integer. The value zero indicates stop immediately via the kill signal (no opportunity to shut down). If this value is nil, the default grace period will be used instead. The grace period is the duration in seconds after the processes running in the pod are sent a termination signal and the time when the processes are forcibly halted with a kill signal. Set this value longer than the expected cleanup time for your process. Defaults to 30 seconds.", - "format": "int64", - "type": "integer" - }, - "tolerations": { - "description": "If specified, the pod's tolerations.", - "items": { - "description": "The pod this Toleration is attached to tolerates any taint that matches the triple using the matching operator .", - "properties": { - "effect": { - "description": "Effect indicates the taint effect to match. Empty means match all taint effects. When specified, allowed values are NoSchedule, PreferNoSchedule and NoExecute.", - "type": "string" - }, - "key": { - "description": "Key is the taint key that the toleration applies to. Empty means match all taint keys. If the key is empty, operator must be Exists; this combination means to match all values and all keys.", - "type": "string" - }, - "operator": { - "description": "Operator represents a key's relationship to the value. Valid operators are Exists and Equal. Defaults to Equal. Exists is equivalent to wildcard for value, so that a pod can tolerate all taints of a particular category.", - "type": "string" - }, - "tolerationSeconds": { - "description": "TolerationSeconds represents the period of time the toleration (which must be of effect NoExecute, otherwise this field is ignored) tolerates the taint. By default, it is not set, which means tolerate the taint forever (do not evict). Zero and negative values will be treated as 0 (evict immediately) by the system.", - "format": "int64", - "type": "integer" - }, - "value": { - "description": "Value is the taint value the toleration matches to. If the operator is Exists, the value should be empty, otherwise just a regular string.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "topologySpreadConstraints": { - "description": "TopologySpreadConstraints describes how a group of pods ought to spread across topology domains. Scheduler will schedule pods in a way which abides by the constraints. All topologySpreadConstraints are ANDed.", - "items": { - "description": "TopologySpreadConstraint specifies how to spread matching pods among the given topology.", - "properties": { - "labelSelector": { - "description": "LabelSelector is used to find matching pods. Pods that match this label selector are counted to determine the number of pods in their corresponding topology domain.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "matchLabelKeys": { - "description": "MatchLabelKeys is a set of pod label keys to select the pods over which spreading will be calculated. The keys are used to lookup values from the incoming pod labels, those key-value labels are ANDed with labelSelector to select the group of existing pods over which spreading will be calculated for the incoming pod. The same key is forbidden to exist in both MatchLabelKeys and LabelSelector. MatchLabelKeys cannot be set when LabelSelector isn't set. Keys that don't exist in the incoming pod labels will be ignored. A null or empty list means only match against labelSelector. \n This is a beta field and requires the MatchLabelKeysInPodTopologySpread feature gate to be enabled (enabled by default).", - "items": { - "type": "string" - }, - "type": "array", - "x-kubernetes-list-type": "atomic" - }, - "maxSkew": { - "description": "MaxSkew describes the degree to which pods may be unevenly distributed. When `whenUnsatisfiable=DoNotSchedule`, it is the maximum permitted difference between the number of matching pods in the target topology and the global minimum. The global minimum is the minimum number of matching pods in an eligible domain or zero if the number of eligible domains is less than MinDomains. For example, in a 3-zone cluster, MaxSkew is set to 1, and pods with the same labelSelector spread as 2/2/1: In this case, the global minimum is 1. | zone1 | zone2 | zone3 | | P P | P P | P | - if MaxSkew is 1, incoming pod can only be scheduled to zone3 to become 2/2/2; scheduling it onto zone1(zone2) would make the ActualSkew(3-1) on zone1(zone2) violate MaxSkew(1). - if MaxSkew is 2, incoming pod can be scheduled onto any zone. When `whenUnsatisfiable=ScheduleAnyway`, it is used to give higher precedence to topologies that satisfy it. It's a required field. Default value is 1 and 0 is not allowed.", - "format": "int32", - "type": "integer" - }, - "minDomains": { - "description": "MinDomains indicates a minimum number of eligible domains. When the number of eligible domains with matching topology keys is less than minDomains, Pod Topology Spread treats \"global minimum\" as 0, and then the calculation of Skew is performed. And when the number of eligible domains with matching topology keys equals or greater than minDomains, this value has no effect on scheduling. As a result, when the number of eligible domains is less than minDomains, scheduler won't schedule more than maxSkew Pods to those domains. If value is nil, the constraint behaves as if MinDomains is equal to 1. Valid values are integers greater than 0. When value is not nil, WhenUnsatisfiable must be DoNotSchedule. \n For example, in a 3-zone cluster, MaxSkew is set to 2, MinDomains is set to 5 and pods with the same labelSelector spread as 2/2/2: | zone1 | zone2 | zone3 | | P P | P P | P P | The number of domains is less than 5(MinDomains), so \"global minimum\" is treated as 0. In this situation, new pod with the same labelSelector cannot be scheduled, because computed skew will be 3(3 - 0) if new Pod is scheduled to any of the three zones, it will violate MaxSkew. \n This is a beta field and requires the MinDomainsInPodTopologySpread feature gate to be enabled (enabled by default).", - "format": "int32", - "type": "integer" - }, - "nodeAffinityPolicy": { - "description": "NodeAffinityPolicy indicates how we will treat Pod's nodeAffinity/nodeSelector when calculating pod topology spread skew. Options are: - Honor: only nodes matching nodeAffinity/nodeSelector are included in the calculations. - Ignore: nodeAffinity/nodeSelector are ignored. All nodes are included in the calculations. \n If this value is nil, the behavior is equivalent to the Honor policy. This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag.", - "type": "string" - }, - "nodeTaintsPolicy": { - "description": "NodeTaintsPolicy indicates how we will treat node taints when calculating pod topology spread skew. Options are: - Honor: nodes without taints, along with tainted nodes for which the incoming pod has a toleration, are included. - Ignore: node taints are ignored. All nodes are included. \n If this value is nil, the behavior is equivalent to the Ignore policy. This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag.", - "type": "string" - }, - "topologyKey": { - "description": "TopologyKey is the key of node labels. Nodes that have a label with this key and identical values are considered to be in the same topology. We consider each as a \"bucket\", and try to put balanced number of pods into each bucket. We define a domain as a particular instance of a topology. Also, we define an eligible domain as a domain whose nodes meet the requirements of nodeAffinityPolicy and nodeTaintsPolicy. e.g. If TopologyKey is \"kubernetes.io/hostname\", each Node is a domain of that topology. And, if TopologyKey is \"topology.kubernetes.io/zone\", each zone is a domain of that topology. It's a required field.", - "type": "string" - }, - "whenUnsatisfiable": { - "description": "WhenUnsatisfiable indicates how to deal with a pod if it doesn't satisfy the spread constraint. - DoNotSchedule (default) tells the scheduler not to schedule it. - ScheduleAnyway tells the scheduler to schedule the pod in any location, but giving higher precedence to topologies that would help reduce the skew. A constraint is considered \"Unsatisfiable\" for an incoming pod if and only if every possible node assignment for that pod would violate \"MaxSkew\" on some topology. For example, in a 3-zone cluster, MaxSkew is set to 1, and pods with the same labelSelector spread as 3/1/1: | zone1 | zone2 | zone3 | | P P P | P | P | If WhenUnsatisfiable is set to DoNotSchedule, incoming pod can only be scheduled to zone2(zone3) to become 3/2/1(3/1/2) as ActualSkew(2-1) on zone2(zone3) satisfies MaxSkew(1). In other words, the cluster can still be imbalanced, but scheduler won't make it *more* imbalanced. It's a required field.", - "type": "string" - } - }, - "required": [ - "maxSkew", - "topologyKey", - "whenUnsatisfiable" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "topologyKey", - "whenUnsatisfiable" - ], - "x-kubernetes-list-type": "map" - }, - "volumes": { - "description": "List of volumes that can be mounted by containers belonging to the pod. More info: https://kubernetes.io/docs/concepts/storage/volumes", - "items": { - "description": "Volume represents a named volume in a pod that may be accessed by any container in the pod.", - "properties": { - "awsElasticBlockStore": { - "description": "awsElasticBlockStore represents an AWS Disk resource that is attached to a kubelet's host machine and then exposed to the pod. More info: https://kubernetes.io/docs/concepts/storage/volumes#awselasticblockstore", - "properties": { - "fsType": { - "description": "fsType is the filesystem type of the volume that you want to mount. Tip: Ensure that the filesystem type is supported by the host operating system. Examples: \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified. More info: https://kubernetes.io/docs/concepts/storage/volumes#awselasticblockstore TODO: how do we prevent errors in the filesystem from compromising the machine", - "type": "string" - }, - "partition": { - "description": "partition is the partition in the volume that you want to mount. If omitted, the default is to mount by volume name. Examples: For volume /dev/sda1, you specify the partition as \"1\". Similarly, the volume partition for /dev/sda is \"0\" (or you can leave the property empty).", - "format": "int32", - "type": "integer" - }, - "readOnly": { - "description": "readOnly value true will force the readOnly setting in VolumeMounts. More info: https://kubernetes.io/docs/concepts/storage/volumes#awselasticblockstore", - "type": "boolean" - }, - "volumeID": { - "description": "volumeID is unique ID of the persistent disk resource in AWS (Amazon EBS volume). More info: https://kubernetes.io/docs/concepts/storage/volumes#awselasticblockstore", - "type": "string" - } - }, - "required": [ - "volumeID" - ], - "type": "object", - "additionalProperties": false - }, - "azureDisk": { - "description": "azureDisk represents an Azure Data Disk mount on the host and bind mount to the pod.", - "properties": { - "cachingMode": { - "description": "cachingMode is the Host Caching mode: None, Read Only, Read Write.", - "type": "string" - }, - "diskName": { - "description": "diskName is the Name of the data disk in the blob storage", - "type": "string" - }, - "diskURI": { - "description": "diskURI is the URI of data disk in the blob storage", - "type": "string" - }, - "fsType": { - "description": "fsType is Filesystem type to mount. Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified.", - "type": "string" - }, - "kind": { - "description": "kind expected values are Shared: multiple blob disks per storage account Dedicated: single blob disk per storage account Managed: azure managed data disk (only in managed availability set). defaults to shared", - "type": "string" - }, - "readOnly": { - "description": "readOnly Defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts.", - "type": "boolean" - } - }, - "required": [ - "diskName", - "diskURI" - ], - "type": "object", - "additionalProperties": false - }, - "azureFile": { - "description": "azureFile represents an Azure File Service mount on the host and bind mount to the pod.", - "properties": { - "readOnly": { - "description": "readOnly defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts.", - "type": "boolean" - }, - "secretName": { - "description": "secretName is the name of secret that contains Azure Storage Account Name and Key", - "type": "string" - }, - "shareName": { - "description": "shareName is the azure share Name", - "type": "string" - } - }, - "required": [ - "secretName", - "shareName" - ], - "type": "object", - "additionalProperties": false - }, - "cephfs": { - "description": "cephFS represents a Ceph FS mount on the host that shares a pod's lifetime", - "properties": { - "monitors": { - "description": "monitors is Required: Monitors is a collection of Ceph monitors More info: https://examples.k8s.io/volumes/cephfs/README.md#how-to-use-it", - "items": { - "type": "string" - }, - "type": "array" - }, - "path": { - "description": "path is Optional: Used as the mounted root, rather than the full Ceph tree, default is /", - "type": "string" - }, - "readOnly": { - "description": "readOnly is Optional: Defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts. More info: https://examples.k8s.io/volumes/cephfs/README.md#how-to-use-it", - "type": "boolean" - }, - "secretFile": { - "description": "secretFile is Optional: SecretFile is the path to key ring for User, default is /etc/ceph/user.secret More info: https://examples.k8s.io/volumes/cephfs/README.md#how-to-use-it", - "type": "string" - }, - "secretRef": { - "description": "secretRef is Optional: SecretRef is reference to the authentication secret for User, default is empty. More info: https://examples.k8s.io/volumes/cephfs/README.md#how-to-use-it", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "user": { - "description": "user is optional: User is the rados user name, default is admin More info: https://examples.k8s.io/volumes/cephfs/README.md#how-to-use-it", - "type": "string" - } - }, - "required": [ - "monitors" - ], - "type": "object", - "additionalProperties": false - }, - "cinder": { - "description": "cinder represents a cinder volume attached and mounted on kubelets host machine. More info: https://examples.k8s.io/mysql-cinder-pd/README.md", - "properties": { - "fsType": { - "description": "fsType is the filesystem type to mount. Must be a filesystem type supported by the host operating system. Examples: \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified. More info: https://examples.k8s.io/mysql-cinder-pd/README.md", - "type": "string" - }, - "readOnly": { - "description": "readOnly defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts. More info: https://examples.k8s.io/mysql-cinder-pd/README.md", - "type": "boolean" - }, - "secretRef": { - "description": "secretRef is optional: points to a secret object containing parameters used to connect to OpenStack.", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "volumeID": { - "description": "volumeID used to identify the volume in cinder. More info: https://examples.k8s.io/mysql-cinder-pd/README.md", - "type": "string" - } - }, - "required": [ - "volumeID" - ], - "type": "object", - "additionalProperties": false - }, - "configMap": { - "description": "configMap represents a configMap that should populate this volume", - "properties": { - "defaultMode": { - "description": "defaultMode is optional: mode bits used to set permissions on created files by default. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. Defaults to 0644. Directories within the path are not affected by this setting. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "items": { - "description": "items if unspecified, each key-value pair in the Data field of the referenced ConfigMap will be projected into the volume as a file whose name is the key and content is the value. If specified, the listed keys will be projected into the specified paths, and unlisted keys will not be present. If a key is specified which is not present in the ConfigMap, the volume setup will error unless it is marked optional. Paths must be relative and may not contain the '..' path or start with '..'.", - "items": { - "description": "Maps a string key to a path within a volume.", - "properties": { - "key": { - "description": "key is the key to project.", - "type": "string" - }, - "mode": { - "description": "mode is Optional: mode bits used to set permissions on this file. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. If not specified, the volume defaultMode will be used. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "path": { - "description": "path is the relative path of the file to map the key to. May not be an absolute path. May not contain the path element '..'. May not start with the string '..'.", - "type": "string" - } - }, - "required": [ - "key", - "path" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "optional specify whether the ConfigMap or its keys must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "csi": { - "description": "csi (Container Storage Interface) represents ephemeral storage that is handled by certain external CSI drivers (Beta feature).", - "properties": { - "driver": { - "description": "driver is the name of the CSI driver that handles this volume. Consult with your admin for the correct name as registered in the cluster.", - "type": "string" - }, - "fsType": { - "description": "fsType to mount. Ex. \"ext4\", \"xfs\", \"ntfs\". If not provided, the empty value is passed to the associated CSI driver which will determine the default filesystem to apply.", - "type": "string" - }, - "nodePublishSecretRef": { - "description": "nodePublishSecretRef is a reference to the secret object containing sensitive information to pass to the CSI driver to complete the CSI NodePublishVolume and NodeUnpublishVolume calls. This field is optional, and may be empty if no secret is required. If the secret object contains more than one secret, all secret references are passed.", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "readOnly": { - "description": "readOnly specifies a read-only configuration for the volume. Defaults to false (read/write).", - "type": "boolean" - }, - "volumeAttributes": { - "additionalProperties": { - "type": "string" - }, - "description": "volumeAttributes stores driver-specific properties that are passed to the CSI driver. Consult your driver's documentation for supported values.", - "type": "object" - } - }, - "required": [ - "driver" - ], - "type": "object", - "additionalProperties": false - }, - "downwardAPI": { - "description": "downwardAPI represents downward API about the pod that should populate this volume", - "properties": { - "defaultMode": { - "description": "Optional: mode bits to use on created files by default. Must be a Optional: mode bits used to set permissions on created files by default. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. Defaults to 0644. Directories within the path are not affected by this setting. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "items": { - "description": "Items is a list of downward API volume file", - "items": { - "description": "DownwardAPIVolumeFile represents information to create the file containing the pod field", - "properties": { - "fieldRef": { - "description": "Required: Selects a field of the pod: only annotations, labels, name and namespace are supported.", - "properties": { - "apiVersion": { - "description": "Version of the schema the FieldPath is written in terms of, defaults to \"v1\".", - "type": "string" - }, - "fieldPath": { - "description": "Path of the field to select in the specified API version.", - "type": "string" - } - }, - "required": [ - "fieldPath" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "mode": { - "description": "Optional: mode bits used to set permissions on this file, must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. If not specified, the volume defaultMode will be used. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "path": { - "description": "Required: Path is the relative path name of the file to be created. Must not be absolute or contain the '..' path. Must be utf-8 encoded. The first item of the relative path must not start with '..'", - "type": "string" - }, - "resourceFieldRef": { - "description": "Selects a resource of the container: only resources limits and requests (limits.cpu, limits.memory, requests.cpu and requests.memory) are currently supported.", - "properties": { - "containerName": { - "description": "Container name: required for volumes, optional for env vars", - "type": "string" - }, - "divisor": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Specifies the output format of the exposed resources, defaults to \"1\"", - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "resource": { - "description": "Required: resource to select", - "type": "string" - } - }, - "required": [ - "resource" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "required": [ - "path" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "emptyDir": { - "description": "emptyDir represents a temporary directory that shares a pod's lifetime. More info: https://kubernetes.io/docs/concepts/storage/volumes#emptydir", - "properties": { - "medium": { - "description": "medium represents what type of storage medium should back this directory. The default is \"\" which means to use the node's default medium. Must be an empty string (default) or Memory. More info: https://kubernetes.io/docs/concepts/storage/volumes#emptydir", - "type": "string" - }, - "sizeLimit": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "sizeLimit is the total amount of local storage required for this EmptyDir volume. The size limit is also applicable for memory medium. The maximum usage on memory medium EmptyDir would be the minimum value between the SizeLimit specified here and the sum of memory limits of all containers in a pod. The default is nil which means that the limit is undefined. More info: https://kubernetes.io/docs/concepts/storage/volumes#emptydir", - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - } - }, - "type": "object", - "additionalProperties": false - }, - "ephemeral": { - "description": "ephemeral represents a volume that is handled by a cluster storage driver. The volume's lifecycle is tied to the pod that defines it - it will be created before the pod starts, and deleted when the pod is removed. \n Use this if: a) the volume is only needed while the pod runs, b) features of normal volumes like restoring from snapshot or capacity tracking are needed, c) the storage driver is specified through a storage class, and d) the storage driver supports dynamic volume provisioning through a PersistentVolumeClaim (see EphemeralVolumeSource for more information on the connection between this volume type and PersistentVolumeClaim). \n Use PersistentVolumeClaim or one of the vendor-specific APIs for volumes that persist for longer than the lifecycle of an individual pod. \n Use CSI for light-weight local ephemeral volumes if the CSI driver is meant to be used that way - see the documentation of the driver for more information. \n A pod can use both types of ephemeral volumes and persistent volumes at the same time.", - "properties": { - "volumeClaimTemplate": { - "description": "Will be used to create a stand-alone PVC to provision the volume. The pod in which this EphemeralVolumeSource is embedded will be the owner of the PVC, i.e. the PVC will be deleted together with the pod. The name of the PVC will be `-` where `` is the name from the `PodSpec.Volumes` array entry. Pod validation will reject the pod if the concatenated name is not valid for a PVC (for example, too long). \n An existing PVC with that name that is not owned by the pod will *not* be used for the pod to avoid using an unrelated volume by mistake. Starting the pod is then blocked until the unrelated PVC is removed. If such a pre-created PVC is meant to be used by the pod, the PVC has to updated with an owner reference to the pod once the pod exists. Normally this should not be necessary, but it may be useful when manually reconstructing a broken cluster. \n This field is read-only and no changes will be made by Kubernetes to the PVC after it has been created. \n Required, must not be nil.", - "properties": { - "metadata": { - "description": "May contain labels and annotations that will be copied into the PVC when creating it. No other fields are allowed and will be rejected during validation.", - "properties": { - "annotations": { - "additionalProperties": { - "type": "string" - }, - "type": "object" - }, - "finalizers": { - "items": { - "type": "string" - }, - "type": "array" - }, - "labels": { - "additionalProperties": { - "type": "string" - }, - "type": "object" - }, - "name": { - "type": "string" - }, - "namespace": { - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "spec": { - "description": "The specification for the PersistentVolumeClaim. The entire content is copied unchanged into the PVC that gets created from this template. The same fields as in a PersistentVolumeClaim are also valid here.", - "properties": { - "accessModes": { - "description": "accessModes contains the desired access modes the volume should have. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", - "items": { - "type": "string" - }, - "type": "array" - }, - "dataSource": { - "description": "dataSource field can be used to specify either: * An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot) * An existing PVC (PersistentVolumeClaim) If the provisioner or an external controller can support the specified data source, it will create a new volume based on the contents of the specified data source. When the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef, and dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified. If the namespace is specified, then dataSourceRef will not be copied to dataSource.", - "properties": { - "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", - "type": "string" - }, - "kind": { - "description": "Kind is the type of resource being referenced", - "type": "string" - }, - "name": { - "description": "Name is the name of resource being referenced", - "type": "string" - } - }, - "required": [ - "kind", - "name" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "dataSourceRef": { - "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty volume is desired. This may be any object from a non-empty API group (non core object) or a PersistentVolumeClaim object. When this field is specified, volume binding will only succeed if the type of the specified object matches some installed volume populator or dynamic provisioner. This field will replace the functionality of the dataSource field and as such if both fields are non-empty, they must have the same value. For backwards compatibility, when namespace isn't specified in dataSourceRef, both fields (dataSource and dataSourceRef) will be set to the same value automatically if one of them is empty and the other is non-empty. When namespace is specified in dataSourceRef, dataSource isn't set to the same value and must be empty. There are three important differences between dataSource and dataSourceRef: * While dataSource only allows two specific types of objects, dataSourceRef allows any non-core object, as well as PersistentVolumeClaim objects. * While dataSource ignores disallowed values (dropping them), dataSourceRef preserves all values, and generates an error if a disallowed value is specified. * While dataSource only allows local objects, dataSourceRef allows objects in any namespaces. (Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled. (Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", - "properties": { - "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", - "type": "string" - }, - "kind": { - "description": "Kind is the type of resource being referenced", - "type": "string" - }, - "name": { - "description": "Name is the name of resource being referenced", - "type": "string" - }, - "namespace": { - "description": "Namespace is the namespace of resource being referenced Note that when a namespace is specified, a gateway.networking.k8s.io/ReferenceGrant object is required in the referent namespace to allow that namespace's owner to accept the reference. See the ReferenceGrant documentation for details. (Alpha) This field requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", - "type": "string" - } - }, - "required": [ - "kind", - "name" - ], - "type": "object", - "additionalProperties": false - }, - "resources": { - "description": "resources represents the minimum resources the volume should have. If RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements that are lower than previous value but must still be higher than capacity recorded in the status field of the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", - "properties": { - "claims": { - "description": "Claims lists the names of resources, defined in spec.resourceClaims, that are used by this container. \n This is an alpha field and requires enabling the DynamicResourceAllocation feature gate. \n This field is immutable. It can only be set for containers.", - "items": { - "description": "ResourceClaim references one entry in PodSpec.ResourceClaims.", - "properties": { - "name": { - "description": "Name must match the name of one entry in pod.spec.resourceClaims of the Pod where this field is used. It makes that resource available inside a container.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "name" - ], - "x-kubernetes-list-type": "map" - }, - "limits": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Limits describes the maximum amount of compute resources allowed. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - }, - "requests": { - "additionalProperties": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "description": "Requests describes the minimum amount of compute resources required. If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, otherwise to an implementation-defined value. Requests cannot exceed Limits. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", - "type": "object" - } - }, - "type": "object", - "additionalProperties": false - }, - "selector": { - "description": "selector is a label query over volumes to consider for binding.", - "properties": { - "matchExpressions": { - "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", - "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", - "properties": { - "key": { - "description": "key is the label key that the selector applies to.", - "type": "string" - }, - "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", - "type": "string" - }, - "values": { - "description": "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.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "required": [ - "key", - "operator" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "matchLabels": { - "additionalProperties": { - "type": "string" - }, - "description": "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.", - "type": "object" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "storageClassName": { - "description": "storageClassName is the name of the StorageClass required by the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", - "type": "string" - }, - "volumeMode": { - "description": "volumeMode defines what type of volume is required by the claim. Value of Filesystem is implied when not included in claim spec.", - "type": "string" - }, - "volumeName": { - "description": "volumeName is the binding reference to the PersistentVolume backing this claim.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - } - }, - "required": [ - "spec" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "fc": { - "description": "fc represents a Fibre Channel resource that is attached to a kubelet's host machine and then exposed to the pod.", - "properties": { - "fsType": { - "description": "fsType is the filesystem type to mount. Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified. TODO: how do we prevent errors in the filesystem from compromising the machine", - "type": "string" - }, - "lun": { - "description": "lun is Optional: FC target lun number", - "format": "int32", - "type": "integer" - }, - "readOnly": { - "description": "readOnly is Optional: Defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts.", - "type": "boolean" - }, - "targetWWNs": { - "description": "targetWWNs is Optional: FC target worldwide names (WWNs)", - "items": { - "type": "string" - }, - "type": "array" - }, - "wwids": { - "description": "wwids Optional: FC volume world wide identifiers (wwids) Either wwids or combination of targetWWNs and lun must be set, but not both simultaneously.", - "items": { - "type": "string" - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "flexVolume": { - "description": "flexVolume represents a generic volume resource that is provisioned/attached using an exec based plugin.", - "properties": { - "driver": { - "description": "driver is the name of the driver to use for this volume.", - "type": "string" - }, - "fsType": { - "description": "fsType is the filesystem type to mount. Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\", \"ntfs\". The default filesystem depends on FlexVolume script.", - "type": "string" - }, - "options": { - "additionalProperties": { - "type": "string" - }, - "description": "options is Optional: this field holds extra command options if any.", - "type": "object" - }, - "readOnly": { - "description": "readOnly is Optional: defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts.", - "type": "boolean" - }, - "secretRef": { - "description": "secretRef is Optional: secretRef is reference to the secret object containing sensitive information to pass to the plugin scripts. This may be empty if no secret object is specified. If the secret object contains more than one secret, all secrets are passed to the plugin scripts.", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "required": [ - "driver" - ], - "type": "object", - "additionalProperties": false - }, - "flocker": { - "description": "flocker represents a Flocker volume attached to a kubelet's host machine. This depends on the Flocker control service being running", - "properties": { - "datasetName": { - "description": "datasetName is Name of the dataset stored as metadata -> name on the dataset for Flocker should be considered as deprecated", - "type": "string" - }, - "datasetUUID": { - "description": "datasetUUID is the UUID of the dataset. This is unique identifier of a Flocker dataset", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false - }, - "gcePersistentDisk": { - "description": "gcePersistentDisk represents a GCE Disk resource that is attached to a kubelet's host machine and then exposed to the pod. More info: https://kubernetes.io/docs/concepts/storage/volumes#gcepersistentdisk", - "properties": { - "fsType": { - "description": "fsType is filesystem type of the volume that you want to mount. Tip: Ensure that the filesystem type is supported by the host operating system. Examples: \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified. More info: https://kubernetes.io/docs/concepts/storage/volumes#gcepersistentdisk TODO: how do we prevent errors in the filesystem from compromising the machine", - "type": "string" - }, - "partition": { - "description": "partition is the partition in the volume that you want to mount. If omitted, the default is to mount by volume name. Examples: For volume /dev/sda1, you specify the partition as \"1\". Similarly, the volume partition for /dev/sda is \"0\" (or you can leave the property empty). More info: https://kubernetes.io/docs/concepts/storage/volumes#gcepersistentdisk", - "format": "int32", - "type": "integer" - }, - "pdName": { - "description": "pdName is unique name of the PD resource in GCE. Used to identify the disk in GCE. More info: https://kubernetes.io/docs/concepts/storage/volumes#gcepersistentdisk", - "type": "string" - }, - "readOnly": { - "description": "readOnly here will force the ReadOnly setting in VolumeMounts. Defaults to false. More info: https://kubernetes.io/docs/concepts/storage/volumes#gcepersistentdisk", - "type": "boolean" - } - }, - "required": [ - "pdName" - ], - "type": "object", - "additionalProperties": false - }, - "gitRepo": { - "description": "gitRepo represents a git repository at a particular revision. DEPRECATED: GitRepo is deprecated. To provision a container with a git repo, mount an EmptyDir into an InitContainer that clones the repo using git, then mount the EmptyDir into the Pod's container.", - "properties": { - "directory": { - "description": "directory is the target directory name. Must not contain or start with '..'. If '.' is supplied, the volume directory will be the git repository. Otherwise, if specified, the volume will contain the git repository in the subdirectory with the given name.", - "type": "string" - }, - "repository": { - "description": "repository is the URL", - "type": "string" - }, - "revision": { - "description": "revision is the commit hash for the specified revision.", - "type": "string" - } - }, - "required": [ - "repository" - ], - "type": "object", - "additionalProperties": false - }, - "glusterfs": { - "description": "glusterfs represents a Glusterfs mount on the host that shares a pod's lifetime. More info: https://examples.k8s.io/volumes/glusterfs/README.md", - "properties": { - "endpoints": { - "description": "endpoints is the endpoint name that details Glusterfs topology. More info: https://examples.k8s.io/volumes/glusterfs/README.md#create-a-pod", - "type": "string" - }, - "path": { - "description": "path is the Glusterfs volume path. More info: https://examples.k8s.io/volumes/glusterfs/README.md#create-a-pod", - "type": "string" - }, - "readOnly": { - "description": "readOnly here will force the Glusterfs volume to be mounted with read-only permissions. Defaults to false. More info: https://examples.k8s.io/volumes/glusterfs/README.md#create-a-pod", - "type": "boolean" - } - }, - "required": [ - "endpoints", - "path" - ], - "type": "object", - "additionalProperties": false - }, - "hostPath": { - "description": "hostPath represents a pre-existing file or directory on the host machine that is directly exposed to the container. This is generally used for system agents or other privileged things that are allowed to see the host machine. Most containers will NOT need this. More info: https://kubernetes.io/docs/concepts/storage/volumes#hostpath --- TODO(jonesdl) We need to restrict who can use host directory mounts and who can/can not mount host directories as read/write.", - "properties": { - "path": { - "description": "path of the directory on the host. If the path is a symlink, it will follow the link to the real path. More info: https://kubernetes.io/docs/concepts/storage/volumes#hostpath", - "type": "string" - }, - "type": { - "description": "type for HostPath Volume Defaults to \"\" More info: https://kubernetes.io/docs/concepts/storage/volumes#hostpath", - "type": "string" - } - }, - "required": [ - "path" - ], - "type": "object", - "additionalProperties": false - }, - "iscsi": { - "description": "iscsi represents an ISCSI Disk resource that is attached to a kubelet's host machine and then exposed to the pod. More info: https://examples.k8s.io/volumes/iscsi/README.md", - "properties": { - "chapAuthDiscovery": { - "description": "chapAuthDiscovery defines whether support iSCSI Discovery CHAP authentication", - "type": "boolean" - }, - "chapAuthSession": { - "description": "chapAuthSession defines whether support iSCSI Session CHAP authentication", - "type": "boolean" - }, - "fsType": { - "description": "fsType is the filesystem type of the volume that you want to mount. Tip: Ensure that the filesystem type is supported by the host operating system. Examples: \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified. More info: https://kubernetes.io/docs/concepts/storage/volumes#iscsi TODO: how do we prevent errors in the filesystem from compromising the machine", - "type": "string" - }, - "initiatorName": { - "description": "initiatorName is the custom iSCSI Initiator Name. If initiatorName is specified with iscsiInterface simultaneously, new iSCSI interface : will be created for the connection.", - "type": "string" - }, - "iqn": { - "description": "iqn is the target iSCSI Qualified Name.", - "type": "string" - }, - "iscsiInterface": { - "description": "iscsiInterface is the interface Name that uses an iSCSI transport. Defaults to 'default' (tcp).", - "type": "string" - }, - "lun": { - "description": "lun represents iSCSI Target Lun number.", - "format": "int32", - "type": "integer" - }, - "portals": { - "description": "portals is the iSCSI Target Portal List. The portal is either an IP or ip_addr:port if the port is other than default (typically TCP ports 860 and 3260).", - "items": { - "type": "string" - }, - "type": "array" - }, - "readOnly": { - "description": "readOnly here will force the ReadOnly setting in VolumeMounts. Defaults to false.", - "type": "boolean" - }, - "secretRef": { - "description": "secretRef is the CHAP Secret for iSCSI target and initiator authentication", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "targetPortal": { - "description": "targetPortal is iSCSI Target Portal. The Portal is either an IP or ip_addr:port if the port is other than default (typically TCP ports 860 and 3260).", - "type": "string" - } - }, - "required": [ - "iqn", - "lun", - "targetPortal" - ], - "type": "object", - "additionalProperties": false - }, + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { "name": { - "description": "name of the volume. Must be a DNS_LABEL and unique within the pod. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names", + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", "type": "string" }, - "nfs": { - "description": "nfs represents an NFS mount on the host that shares a pod's lifetime More info: https://kubernetes.io/docs/concepts/storage/volumes#nfs", - "properties": { - "path": { - "description": "path that is exported by the NFS server. More info: https://kubernetes.io/docs/concepts/storage/volumes#nfs", - "type": "string" - }, - "readOnly": { - "description": "readOnly here will force the NFS export to be mounted with read-only permissions. Defaults to false. More info: https://kubernetes.io/docs/concepts/storage/volumes#nfs", - "type": "boolean" - }, - "server": { - "description": "server is the hostname or IP address of the NFS server. More info: https://kubernetes.io/docs/concepts/storage/volumes#nfs", - "type": "string" - } - }, - "required": [ - "path", - "server" - ], - "type": "object", - "additionalProperties": false - }, - "persistentVolumeClaim": { - "description": "persistentVolumeClaimVolumeSource represents a reference to a PersistentVolumeClaim in the same namespace. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", - "properties": { - "claimName": { - "description": "claimName is the name of a PersistentVolumeClaim in the same namespace as the pod using this volume. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", - "type": "string" - }, - "readOnly": { - "description": "readOnly Will force the ReadOnly setting in VolumeMounts. Default false.", - "type": "boolean" - } - }, - "required": [ - "claimName" - ], - "type": "object", - "additionalProperties": false - }, - "photonPersistentDisk": { - "description": "photonPersistentDisk represents a PhotonController persistent disk attached and mounted on kubelets host machine", - "properties": { - "fsType": { - "description": "fsType is the filesystem type to mount. Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified.", - "type": "string" - }, - "pdID": { - "description": "pdID is the ID that identifies Photon Controller persistent disk", - "type": "string" - } - }, - "required": [ - "pdID" - ], - "type": "object", - "additionalProperties": false - }, - "portworxVolume": { - "description": "portworxVolume represents a portworx volume attached and mounted on kubelets host machine", - "properties": { - "fsType": { - "description": "fSType represents the filesystem type to mount Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\". Implicitly inferred to be \"ext4\" if unspecified.", - "type": "string" - }, - "readOnly": { - "description": "readOnly defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts.", - "type": "boolean" - }, - "volumeID": { - "description": "volumeID uniquely identifies a Portworx volume", - "type": "string" - } - }, - "required": [ - "volumeID" - ], - "type": "object", - "additionalProperties": false - }, - "projected": { - "description": "projected items for all in one resources secrets, configmaps, and downward API", - "properties": { - "defaultMode": { - "description": "defaultMode are the mode bits used to set permissions on created files by default. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. Directories within the path are not affected by this setting. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "sources": { - "description": "sources is the list of volume projections", - "items": { - "description": "Projection that may be projected along with other supported volume types", - "properties": { - "configMap": { - "description": "configMap information about the configMap data to project", - "properties": { - "items": { - "description": "items if unspecified, each key-value pair in the Data field of the referenced ConfigMap will be projected into the volume as a file whose name is the key and content is the value. If specified, the listed keys will be projected into the specified paths, and unlisted keys will not be present. If a key is specified which is not present in the ConfigMap, the volume setup will error unless it is marked optional. Paths must be relative and may not contain the '..' path or start with '..'.", - "items": { - "description": "Maps a string key to a path within a volume.", - "properties": { - "key": { - "description": "key is the key to project.", - "type": "string" - }, - "mode": { - "description": "mode is Optional: mode bits used to set permissions on this file. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. If not specified, the volume defaultMode will be used. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "path": { - "description": "path is the relative path of the file to map the key to. May not be an absolute path. May not contain the path element '..'. May not start with the string '..'.", - "type": "string" - } - }, - "required": [ - "key", - "path" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "optional specify whether the ConfigMap or its keys must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "downwardAPI": { - "description": "downwardAPI information about the downwardAPI data to project", - "properties": { - "items": { - "description": "Items is a list of DownwardAPIVolume file", - "items": { - "description": "DownwardAPIVolumeFile represents information to create the file containing the pod field", - "properties": { - "fieldRef": { - "description": "Required: Selects a field of the pod: only annotations, labels, name and namespace are supported.", - "properties": { - "apiVersion": { - "description": "Version of the schema the FieldPath is written in terms of, defaults to \"v1\".", - "type": "string" - }, - "fieldPath": { - "description": "Path of the field to select in the specified API version.", - "type": "string" - } - }, - "required": [ - "fieldPath" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "mode": { - "description": "Optional: mode bits used to set permissions on this file, must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. If not specified, the volume defaultMode will be used. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "path": { - "description": "Required: Path is the relative path name of the file to be created. Must not be absolute or contain the '..' path. Must be utf-8 encoded. The first item of the relative path must not start with '..'", - "type": "string" - }, - "resourceFieldRef": { - "description": "Selects a resource of the container: only resources limits and requests (limits.cpu, limits.memory, requests.cpu and requests.memory) are currently supported.", - "properties": { - "containerName": { - "description": "Container name: required for volumes, optional for env vars", - "type": "string" - }, - "divisor": { - "anyOf": [ - { - "type": "integer" - }, - { - "type": "string" - } - ], - "description": "Specifies the output format of the exposed resources, defaults to \"1\"", - "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", - "x-kubernetes-int-or-string": true - }, - "resource": { - "description": "Required: resource to select", - "type": "string" - } - }, - "required": [ - "resource" - ], - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - } - }, - "required": [ - "path" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "secret": { - "description": "secret information about the secret data to project", - "properties": { - "items": { - "description": "items if unspecified, each key-value pair in the Data field of the referenced Secret will be projected into the volume as a file whose name is the key and content is the value. If specified, the listed keys will be projected into the specified paths, and unlisted keys will not be present. If a key is specified which is not present in the Secret, the volume setup will error unless it is marked optional. Paths must be relative and may not contain the '..' path or start with '..'.", - "items": { - "description": "Maps a string key to a path within a volume.", - "properties": { - "key": { - "description": "key is the key to project.", - "type": "string" - }, - "mode": { - "description": "mode is Optional: mode bits used to set permissions on this file. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. If not specified, the volume defaultMode will be used. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "path": { - "description": "path is the relative path of the file to map the key to. May not be an absolute path. May not contain the path element '..'. May not start with the string '..'.", - "type": "string" - } - }, - "required": [ - "key", - "path" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - }, - "optional": { - "description": "optional field specify whether the Secret or its key must be defined", - "type": "boolean" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "serviceAccountToken": { - "description": "serviceAccountToken is information about the serviceAccountToken data to project", - "properties": { - "audience": { - "description": "audience is the intended audience of the token. A recipient of a token must identify itself with an identifier specified in the audience of the token, and otherwise should reject the token. The audience defaults to the identifier of the apiserver.", - "type": "string" - }, - "expirationSeconds": { - "description": "expirationSeconds is the requested duration of validity of the service account token. As the token approaches expiration, the kubelet volume plugin will proactively rotate the service account token. The kubelet will start trying to rotate the token if the token is older than 80 percent of its time to live or if the token is older than 24 hours.Defaults to 1 hour and must be at least 10 minutes.", - "format": "int64", - "type": "integer" - }, - "path": { - "description": "path is the path relative to the mount point of the file to project the token into.", - "type": "string" - } - }, - "required": [ - "path" - ], - "type": "object", - "additionalProperties": false - } - }, - "type": "object", - "additionalProperties": false - }, - "type": "array" - } - }, - "type": "object", - "additionalProperties": false - }, - "quobyte": { - "description": "quobyte represents a Quobyte mount on the host that shares a pod's lifetime", - "properties": { - "group": { - "description": "group to map volume access to Default is no group", - "type": "string" - }, - "readOnly": { - "description": "readOnly here will force the Quobyte volume to be mounted with read-only permissions. Defaults to false.", - "type": "boolean" - }, - "registry": { - "description": "registry represents a single or multiple Quobyte Registry services specified as a string as host:port pair (multiple entries are separated with commas) which acts as the central registry for volumes", - "type": "string" - }, - "tenant": { - "description": "tenant owning the given Quobyte volume in the Backend Used with dynamically provisioned Quobyte volumes, value is set by the plugin", - "type": "string" - }, - "user": { - "description": "user to map volume access to Defaults to serivceaccount user", - "type": "string" - }, - "volume": { - "description": "volume is a string that references an already created Quobyte volume by name.", - "type": "string" - } - }, - "required": [ - "registry", - "volume" - ], - "type": "object", - "additionalProperties": false + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" }, - "rbd": { - "description": "rbd represents a Rados Block Device mount on the host that shares a pod's lifetime. More info: https://examples.k8s.io/volumes/rbd/README.md", - "properties": { - "fsType": { - "description": "fsType is the filesystem type of the volume that you want to mount. Tip: Ensure that the filesystem type is supported by the host operating system. Examples: \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified. More info: https://kubernetes.io/docs/concepts/storage/volumes#rbd TODO: how do we prevent errors in the filesystem from compromising the machine", - "type": "string" - }, - "image": { - "description": "image is the rados image name. More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it", - "type": "string" - }, - "keyring": { - "description": "keyring is the path to key ring for RBDUser. Default is /etc/ceph/keyring. More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it", - "type": "string" - }, - "monitors": { - "description": "monitors is a collection of Ceph monitors. More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it", - "items": { - "type": "string" - }, - "type": "array" - }, - "pool": { - "description": "pool is the rados pool name. Default is rbd. More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it", - "type": "string" - }, - "readOnly": { - "description": "readOnly here will force the ReadOnly setting in VolumeMounts. Defaults to false. More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it", - "type": "boolean" - }, - "secretRef": { - "description": "secretRef is name of the authentication secret for RBDUser. If provided overrides keyring. Default is nil. More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "user": { - "description": "user is the rados user name. Default is admin. More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it", - "type": "string" - } - }, - "required": [ - "image", - "monitors" - ], - "type": "object", - "additionalProperties": false + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" }, - "scaleIO": { - "description": "scaleIO represents a ScaleIO persistent volume attached and mounted on Kubernetes nodes.", - "properties": { - "fsType": { - "description": "fsType is the filesystem type to mount. Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\", \"ntfs\". Default is \"xfs\".", - "type": "string" - }, - "gateway": { - "description": "gateway is the host address of the ScaleIO API Gateway.", - "type": "string" - }, - "protectionDomain": { - "description": "protectionDomain is the name of the ScaleIO Protection Domain for the configured storage.", - "type": "string" - }, - "readOnly": { - "description": "readOnly Defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts.", - "type": "boolean" - }, - "secretRef": { - "description": "secretRef references to the secret for ScaleIO user and other sensitive information. If this is not provided, Login operation will fail.", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "sslEnabled": { - "description": "sslEnabled Flag enable/disable SSL communication with Gateway, default false", - "type": "boolean" - }, - "storageMode": { - "description": "storageMode indicates whether the storage for a volume should be ThickProvisioned or ThinProvisioned. Default is ThinProvisioned.", - "type": "string" - }, - "storagePool": { - "description": "storagePool is the ScaleIO Storage Pool associated with the protection domain.", - "type": "string" - }, - "system": { - "description": "system is the name of the storage system as configured in ScaleIO.", - "type": "string" - }, - "volumeName": { - "description": "volumeName is the name of a volume already created in the ScaleIO system that is associated with this volume source.", - "type": "string" - } - }, - "required": [ - "gateway", - "secretRef", - "system" - ], - "type": "object", - "additionalProperties": false + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "metrics": { + "description": "Metrics holds references to Elasticsearch clusters which receive monitoring data from this resource.", + "properties": { + "elasticsearchRefs": { + "description": "ElasticsearchRefs is a reference to a list of monitoring Elasticsearch clusters running in the same Kubernetes cluster.\nDue to existing limitations, only a single Elasticsearch cluster is currently supported.", + "items": { + "description": "ObjectSelector defines a reference to a Kubernetes object which can be an Elastic resource managed by the operator\nor a Secret describing an external Elastic resource not managed by the operator.", + "properties": { + "name": { + "description": "Name of an existing Kubernetes object corresponding to an Elastic resource managed by ECK.", + "type": "string" }, - "secret": { - "description": "secret represents a secret that should populate this volume. More info: https://kubernetes.io/docs/concepts/storage/volumes#secret", - "properties": { - "defaultMode": { - "description": "defaultMode is Optional: mode bits used to set permissions on created files by default. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. Defaults to 0644. Directories within the path are not affected by this setting. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "items": { - "description": "items If unspecified, each key-value pair in the Data field of the referenced Secret will be projected into the volume as a file whose name is the key and content is the value. If specified, the listed keys will be projected into the specified paths, and unlisted keys will not be present. If a key is specified which is not present in the Secret, the volume setup will error unless it is marked optional. Paths must be relative and may not contain the '..' path or start with '..'.", - "items": { - "description": "Maps a string key to a path within a volume.", - "properties": { - "key": { - "description": "key is the key to project.", - "type": "string" - }, - "mode": { - "description": "mode is Optional: mode bits used to set permissions on this file. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. If not specified, the volume defaultMode will be used. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", - "format": "int32", - "type": "integer" - }, - "path": { - "description": "path is the relative path of the file to map the key to. May not be an absolute path. May not contain the path element '..'. May not start with the string '..'.", - "type": "string" - } - }, - "required": [ - "key", - "path" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array" - }, - "optional": { - "description": "optional field specify whether the Secret or its keys must be defined", - "type": "boolean" - }, - "secretName": { - "description": "secretName is the name of the secret in the pod's namespace to use. More info: https://kubernetes.io/docs/concepts/storage/volumes#secret", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false + "namespace": { + "description": "Namespace of the Kubernetes object. If empty, defaults to the current namespace.", + "type": "string" }, - "storageos": { - "description": "storageOS represents a StorageOS volume attached and mounted on Kubernetes nodes.", - "properties": { - "fsType": { - "description": "fsType is the filesystem type to mount. Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified.", - "type": "string" - }, - "readOnly": { - "description": "readOnly defaults to false (read/write). ReadOnly here will force the ReadOnly setting in VolumeMounts.", - "type": "boolean" - }, - "secretRef": { - "description": "secretRef specifies the secret to use for obtaining the StorageOS API credentials. If not specified, default values will be attempted.", - "properties": { - "name": { - "description": "Name of the referent. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names TODO: Add other useful fields. apiVersion, kind, uid?", - "type": "string" - } - }, - "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false - }, - "volumeName": { - "description": "volumeName is the human-readable name of the StorageOS volume. Volume names are only unique within a namespace.", - "type": "string" - }, - "volumeNamespace": { - "description": "volumeNamespace specifies the scope of the volume within StorageOS. If no namespace is specified then the Pod's namespace will be used. This allows the Kubernetes name scoping to be mirrored within StorageOS for tighter integration. Set VolumeName to any name to override the default behaviour. Set to \"default\" if you are not using namespaces within StorageOS. Namespaces that do not pre-exist within StorageOS will be created.", - "type": "string" - } - }, - "type": "object", - "additionalProperties": false + "secretName": { + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", + "type": "string" }, - "vsphereVolume": { - "description": "vsphereVolume represents a vSphere volume attached and mounted on kubelets host machine", - "properties": { - "fsType": { - "description": "fsType is filesystem type to mount. Must be a filesystem type supported by the host operating system. Ex. \"ext4\", \"xfs\", \"ntfs\". Implicitly inferred to be \"ext4\" if unspecified.", - "type": "string" - }, - "storagePolicyID": { - "description": "storagePolicyID is the storage Policy Based Management (SPBM) profile ID associated with the StoragePolicyName.", - "type": "string" - }, - "storagePolicyName": { - "description": "storagePolicyName is the storage Policy Based Management (SPBM) profile name.", - "type": "string" - }, - "volumePath": { - "description": "volumePath is the path that identifies vSphere volume vmdk", - "type": "string" - } - }, - "required": [ - "volumePath" - ], - "type": "object", - "additionalProperties": false + "serviceName": { + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", + "type": "string" } }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "required": [ - "containers" - ], - "type": "object", - "additionalProperties": false + "type": "object" + } + }, + "type": "object" + }, + "pipelines": { + "description": "Pipelines holds the Logstash Pipelines. At most one of [`Pipelines`, `PipelinesRef`] can be specified.", + "items": { + "type": "object" + }, + "type": "array", + "x-kubernetes-preserve-unknown-fields": true + }, + "pipelinesRef": { + "description": "PipelinesRef contains a reference to an existing Kubernetes Secret holding the Logstash Pipelines.\nLogstash pipelines must be specified as yaml, under a single \"pipelines.yml\" entry. At most one of [`Pipelines`, `PipelinesRef`]\ncan be specified.", + "properties": { + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" } }, + "type": "object" + }, + "podTemplate": { + "description": "PodTemplate provides customisation options for the Logstash pods.", "type": "object", - "x-kubernetes-preserve-unknown-fields": true, - "additionalProperties": false + "x-kubernetes-preserve-unknown-fields": true }, "revisionHistoryLimit": { "description": "RevisionHistoryLimit is the number of revisions to retain to allow rollback in the underlying StatefulSet.", @@ -6554,12 +168,12 @@ "type": "integer" }, "secureSettings": { - "description": "SecureSettings is a list of references to Kubernetes Secrets containing sensitive configuration options for the Logstash. Secrets data can be then referenced in the Logstash config using the Secret's keys or as specified in `Entries` field of each SecureSetting.", + "description": "SecureSettings is a list of references to Kubernetes Secrets containing sensitive configuration options for the Logstash.\nSecrets data can be then referenced in the Logstash config using the Secret's keys or as specified in `Entries` field of\neach SecureSetting.", "items": { "description": "SecretSource defines a data source based on a Kubernetes Secret.", "properties": { "entries": { - "description": "Entries define how to project each key-value pair in the secret to filesystem paths. If not defined, all keys will be projected to similarly named paths in the filesystem. If defined, only the specified keys will be projected to the corresponding paths.", + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", "items": { "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", "properties": { @@ -6568,15 +182,14 @@ "type": "string" }, "path": { - "description": "Path is the relative file path to map the key to. Path must not be an absolute file path and must not contain any \"..\" components.", + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", "type": "string" } }, "required": [ "key" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -6588,17 +201,16 @@ "required": [ "secretName" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to Elasticsearch resource in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to Elasticsearch resource in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "services": { - "description": "Services contains details of services that Logstash should expose - similar to the HTTP layer configuration for the rest of the stack, but also applicable for more use cases than the metrics API, as logstash may need to be opened up for other services: Beats, TCP, UDP, etc, inputs.", + "description": "Services contains details of services that Logstash should expose - similar to the HTTP layer configuration for the\nrest of the stack, but also applicable for more use cases than the metrics API, as logstash may need to\nbe opened up for other services: Beats, TCP, UDP, etc, inputs.", "items": { "properties": { "name": { @@ -6608,7 +220,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -6635,22 +247,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -6658,72 +269,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy describes how nodes distribute service traffic they receive on one of the Service's \"externally-facing\" addresses (NodePorts, ExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure the service in a way that assumes that external load balancers will take care of balancing the service traffic between nodes, and so each node will deliver traffic only to the node-local endpoints of the service, without masquerading the client source IP. (Traffic mistakenly sent to a node with no endpoints will be dropped.) The default value, \"Cluster\", uses the standard behavior of routing to all endpoints evenly (possibly modified by topology and other features). Note that traffic sent to an External IP or LoadBalancer IP from within the cluster will always get \"Cluster\" semantics, but clients sending to a NodePort from within the cluster may need to take traffic policy into account when picking a node.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type). This field cannot be updated once set.", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy describes how nodes distribute service traffic they receive on the ClusterIP. If set to \"Local\", the proxy will assume that pods only want to talk to endpoints of the service on the same node as the pod, dropping the traffic if there are no local endpoints. The default value, \"Cluster\", uses the standard behavior of routing to all endpoints evenly (possibly modified by topology and other features).", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations. Using it is non-portable and it may not support dual-stack. Users are encouraged to use implementation-specific annotations when available.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This is used as a hint for implementations to offer richer behavior for protocols that they understand. This field follows standard Kubernetes label syntax. Valid values are either: \n * Un-prefixed protocol names - reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). \n * Kubernetes-defined prefixed names: * 'kubernetes.io/h2c' - HTTP/2 over cleartext as described in https://www.rfc-editor.org/rfc/rfc7540 * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455 * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455 \n * Other protocols should use implementation-defined prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -6734,7 +345,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -6746,15 +357,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -6764,19 +374,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -6786,43 +396,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -6845,44 +450,73 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, + "updateStrategy": { + "description": "UpdateStrategy is a StatefulSetUpdateStrategy. The default type is \"RollingUpdate\".", + "properties": { + "rollingUpdate": { + "description": "RollingUpdate is used to communicate parameters when Type is RollingUpdateStatefulSetStrategyType.", + "properties": { + "maxUnavailable": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "description": "The maximum number of pods that can be unavailable during the update.\nValue can be an absolute number (ex: 5) or a percentage of desired pods (ex: 10%).\nAbsolute number is calculated from percentage by rounding up. This can not be 0.\nDefaults to 1. This field is alpha-level and is only honored by servers that enable the\nMaxUnavailableStatefulSet feature. The field applies to all pods in the range 0 to\nReplicas-1. That means if there is any unavailable pod in the range 0 to Replicas-1, it\nwill be counted towards MaxUnavailable.", + "x-kubernetes-int-or-string": true + }, + "partition": { + "description": "Partition indicates the ordinal at which the StatefulSet should be partitioned\nfor updates. During a rolling update, all pods from ordinal Replicas-1 to\nPartition are updated. All pods from ordinal Partition-1 to 0 remain untouched.\nThis is helpful in being able to do a canary based deployment. The default value is 0.", + "format": "int32", + "type": "integer" + } + }, + "type": "object" + }, + "type": { + "description": "Type indicates the type of the StatefulSetUpdateStrategy.\nDefault is RollingUpdate.", + "type": "string" + } + }, + "type": "object" + }, "version": { "description": "Version of the Logstash.", "type": "string" }, "volumeClaimTemplates": { - "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod. Every claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate. Items defined here take precedence over any default claims added by the operator with the same name.", + "description": "VolumeClaimTemplates is a list of persistent volume claims to be used by each Pod.\nEvery claim in this list must have a matching volumeMount in one of the containers defined in the PodTemplate.\nItems defined here take precedence over any default claims added by the operator with the same name.", "items": { "description": "PersistentVolumeClaim is a user's request for and claim to a persistent volume", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { - "description": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "description": "Standard object's metadata.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", "properties": { "annotations": { "additionalProperties": { @@ -6909,24 +543,23 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { - "description": "spec defines the desired characteristics of a volume requested by a pod author. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", + "description": "spec defines the desired characteristics of a volume requested by a pod author.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", "properties": { "accessModes": { - "description": "accessModes contains the desired access modes the volume should have. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", + "description": "accessModes contains the desired access modes the volume should have.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", "items": { "type": "string" }, "type": "array" }, "dataSource": { - "description": "dataSource field can be used to specify either: * An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot) * An existing PVC (PersistentVolumeClaim) If the provisioner or an external controller can support the specified data source, it will create a new volume based on the contents of the specified data source. When the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef, and dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified. If the namespace is specified, then dataSourceRef will not be copied to dataSource.", + "description": "dataSource field can be used to specify either:\n* An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot)\n* An existing PVC (PersistentVolumeClaim)\nIf the provisioner or an external controller can support the specified data source,\nit will create a new volume based on the contents of the specified data source.\nWhen the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef,\nand dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified.\nIf the namespace is specified, then dataSourceRef will not be copied to dataSource.", "properties": { "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", "type": "string" }, "kind": { @@ -6943,14 +576,13 @@ "name" ], "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" }, "dataSourceRef": { - "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty volume is desired. This may be any object from a non-empty API group (non core object) or a PersistentVolumeClaim object. When this field is specified, volume binding will only succeed if the type of the specified object matches some installed volume populator or dynamic provisioner. This field will replace the functionality of the dataSource field and as such if both fields are non-empty, they must have the same value. For backwards compatibility, when namespace isn't specified in dataSourceRef, both fields (dataSource and dataSourceRef) will be set to the same value automatically if one of them is empty and the other is non-empty. When namespace is specified in dataSourceRef, dataSource isn't set to the same value and must be empty. There are three important differences between dataSource and dataSourceRef: * While dataSource only allows two specific types of objects, dataSourceRef allows any non-core object, as well as PersistentVolumeClaim objects. * While dataSource ignores disallowed values (dropping them), dataSourceRef preserves all values, and generates an error if a disallowed value is specified. * While dataSource only allows local objects, dataSourceRef allows objects in any namespaces. (Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled. (Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "description": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty\nvolume is desired. This may be any object from a non-empty API group (non\ncore object) or a PersistentVolumeClaim object.\nWhen this field is specified, volume binding will only succeed if the type of\nthe specified object matches some installed volume populator or dynamic\nprovisioner.\nThis field will replace the functionality of the dataSource field and as such\nif both fields are non-empty, they must have the same value. For backwards\ncompatibility, when namespace isn't specified in dataSourceRef,\nboth fields (dataSource and dataSourceRef) will be set to the same\nvalue automatically if one of them is empty and the other is non-empty.\nWhen namespace is specified in dataSourceRef,\ndataSource isn't set to the same value and must be empty.\nThere are three important differences between dataSource and dataSourceRef:\n* While dataSource only allows two specific types of objects, dataSourceRef\n allows any non-core object, as well as PersistentVolumeClaim objects.\n* While dataSource ignores disallowed values (dropping them), dataSourceRef\n preserves all values, and generates an error if a disallowed value is\n specified.\n* While dataSource only allows local objects, dataSourceRef allows objects\n in any namespaces.\n(Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled.\n(Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", "properties": { "apiGroup": { - "description": "APIGroup is the group for the resource being referenced. If APIGroup is not specified, the specified Kind must be in the core API group. For any other third-party types, APIGroup is required.", + "description": "APIGroup is the group for the resource being referenced.\nIf APIGroup is not specified, the specified Kind must be in the core API group.\nFor any other third-party types, APIGroup is required.", "type": "string" }, "kind": { @@ -6962,7 +594,7 @@ "type": "string" }, "namespace": { - "description": "Namespace is the namespace of resource being referenced Note that when a namespace is specified, a gateway.networking.k8s.io/ReferenceGrant object is required in the referent namespace to allow that namespace's owner to accept the reference. See the ReferenceGrant documentation for details. (Alpha) This field requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", + "description": "Namespace is the namespace of resource being referenced\nNote that when a namespace is specified, a gateway.networking.k8s.io/ReferenceGrant object is required in the referent namespace to allow that namespace's owner to accept the reference. See the ReferenceGrant documentation for details.\n(Alpha) This field requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", "type": "string" } }, @@ -6970,34 +602,11 @@ "kind", "name" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "resources": { - "description": "resources represents the minimum resources the volume should have. If RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements that are lower than previous value but must still be higher than capacity recorded in the status field of the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", + "description": "resources represents the minimum resources the volume should have.\nIf RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements\nthat are lower than previous value but must still be higher than capacity recorded in the\nstatus field of the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources", "properties": { - "claims": { - "description": "Claims lists the names of resources, defined in spec.resourceClaims, that are used by this container. \n This is an alpha field and requires enabling the DynamicResourceAllocation feature gate. \n This field is immutable. It can only be set for containers.", - "items": { - "description": "ResourceClaim references one entry in PodSpec.ResourceClaims.", - "properties": { - "name": { - "description": "Name must match the name of one entry in pod.spec.resourceClaims of the Pod where this field is used. It makes that resource available inside a container.", - "type": "string" - } - }, - "required": [ - "name" - ], - "type": "object", - "additionalProperties": false - }, - "type": "array", - "x-kubernetes-list-map-keys": [ - "name" - ], - "x-kubernetes-list-type": "map" - }, "limits": { "additionalProperties": { "anyOf": [ @@ -7011,7 +620,7 @@ "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", "x-kubernetes-int-or-string": true }, - "description": "Limits describes the maximum amount of compute resources allowed. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "description": "Limits describes the maximum amount of compute resources allowed.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", "type": "object" }, "requests": { @@ -7027,12 +636,11 @@ "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", "x-kubernetes-int-or-string": true }, - "description": "Requests describes the minimum amount of compute resources required. If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, otherwise to an implementation-defined value. Requests cannot exceed Limits. More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", + "description": "Requests describes the minimum amount of compute resources required.\nIf Requests is omitted for a container, it defaults to Limits if that is explicitly specified,\notherwise to an implementation-defined value. Requests cannot exceed Limits.\nMore info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/", "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selector": { "description": "selector is a label query over volumes to consider for binding.", @@ -7040,18 +648,18 @@ "matchExpressions": { "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", "items": { - "description": "A label selector requirement is a selector that contains values, a key, and an operator that relates the key and values.", + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", "properties": { "key": { "description": "key is the label key that the selector applies to.", "type": "string" }, "operator": { - "description": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists and DoesNotExist.", + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", "type": "string" }, "values": { - "description": "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.", + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", "items": { "type": "string" }, @@ -7062,8 +670,7 @@ "key", "operator" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, @@ -7071,20 +678,23 @@ "additionalProperties": { "type": "string" }, - "description": "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.", + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", "type": "object" } }, "type": "object", - "x-kubernetes-map-type": "atomic", - "additionalProperties": false + "x-kubernetes-map-type": "atomic" }, "storageClassName": { - "description": "storageClassName is the name of the StorageClass required by the claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "description": "storageClassName is the name of the StorageClass required by the claim.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#class-1", + "type": "string" + }, + "volumeAttributesClassName": { + "description": "volumeAttributesClassName may be used to set the VolumeAttributesClass used by this claim.\nIf specified, the CSI driver will create or update the volume with the attributes defined\nin the corresponding VolumeAttributesClass. This has a different purpose than storageClassName,\nit can be changed after the claim is created. An empty string value means that no VolumeAttributesClass\nwill be applied to the claim but it's not allowed to reset this field to empty string once it is set.\nIf unspecified and the PersistentVolumeClaim is unbound, the default VolumeAttributesClass\nwill be set by the persistentvolume controller if it exists.\nIf the resource referred to by volumeAttributesClass does not exist, this PersistentVolumeClaim will be\nset to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource\nexists.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#volumeattributesclass\n(Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled.", "type": "string" }, "volumeMode": { - "description": "volumeMode defines what type of volume is required by the claim. Value of Filesystem is implied when not included in claim spec.", + "description": "volumeMode defines what type of volume is required by the claim.\nValue of Filesystem is implied when not included in claim spec.", "type": "string" }, "volumeName": { @@ -7092,14 +702,13 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { - "description": "status represents the current information/status of a persistent volume claim. Read-only. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", + "description": "status represents the current information/status of a persistent volume claim.\nRead-only.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims", "properties": { "accessModes": { - "description": "accessModes contains the actual access modes the volume backing the PVC has. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", + "description": "accessModes contains the actual access modes the volume backing the PVC has.\nMore info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#access-modes-1", "items": { "type": "string" }, @@ -7107,10 +716,10 @@ }, "allocatedResourceStatuses": { "additionalProperties": { - "description": "When a controller receives persistentvolume claim update with ClaimResourceStatus for a resource that it does not recognizes, then it should ignore that update and let other controllers handle it.", + "description": "When a controller receives persistentvolume claim update with ClaimResourceStatus for a resource\nthat it does not recognizes, then it should ignore that update and let other controllers\nhandle it.", "type": "string" }, - "description": "allocatedResourceStatuses stores status of resource being resized for the given PVC. Key names follow standard Kubernetes label syntax. Valid values are either: * Un-prefixed keys: - storage - the capacity of the volume. * Custom resources must use implementation-defined prefixed names such as \"example.com/my-custom-resource\" Apart from above values - keys that are unprefixed or have kubernetes.io prefix are considered reserved and hence may not be used. \n ClaimResourceStatus can be in any of following states: - ControllerResizeInProgress: State set when resize controller starts resizing the volume in control-plane. - ControllerResizeFailed: State set when resize has failed in resize controller with a terminal error. - NodeResizePending: State set when resize controller has finished resizing the volume but further resizing of volume is needed on the node. - NodeResizeInProgress: State set when kubelet starts resizing the volume. - NodeResizeFailed: State set when resizing has failed in kubelet with a terminal error. Transient errors don't set NodeResizeFailed. For example: if expanding a PVC for more capacity - this field can be one of the following states: - pvc.status.allocatedResourceStatus['storage'] = \"ControllerResizeInProgress\" - pvc.status.allocatedResourceStatus['storage'] = \"ControllerResizeFailed\" - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizePending\" - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizeInProgress\" - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizeFailed\" When this field is not set, it means that no resize operation is in progress for the given PVC. \n A controller that receives PVC update with previously unknown resourceName or ClaimResourceStatus should ignore the update for the purpose it was designed. For example - a controller that only is responsible for resizing capacity of the volume, should ignore PVC updates that change other valid resources associated with PVC. \n This is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", + "description": "allocatedResourceStatuses stores status of resource being resized for the given PVC.\nKey names follow standard Kubernetes label syntax. Valid values are either:\n\t* Un-prefixed keys:\n\t\t- storage - the capacity of the volume.\n\t* Custom resources must use implementation-defined prefixed names such as \"example.com/my-custom-resource\"\nApart from above values - keys that are unprefixed or have kubernetes.io prefix are considered\nreserved and hence may not be used.\n\n\nClaimResourceStatus can be in any of following states:\n\t- ControllerResizeInProgress:\n\t\tState set when resize controller starts resizing the volume in control-plane.\n\t- ControllerResizeFailed:\n\t\tState set when resize has failed in resize controller with a terminal error.\n\t- NodeResizePending:\n\t\tState set when resize controller has finished resizing the volume but further resizing of\n\t\tvolume is needed on the node.\n\t- NodeResizeInProgress:\n\t\tState set when kubelet starts resizing the volume.\n\t- NodeResizeFailed:\n\t\tState set when resizing has failed in kubelet with a terminal error. Transient errors don't set\n\t\tNodeResizeFailed.\nFor example: if expanding a PVC for more capacity - this field can be one of the following states:\n\t- pvc.status.allocatedResourceStatus['storage'] = \"ControllerResizeInProgress\"\n - pvc.status.allocatedResourceStatus['storage'] = \"ControllerResizeFailed\"\n - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizePending\"\n - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizeInProgress\"\n - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizeFailed\"\nWhen this field is not set, it means that no resize operation is in progress for the given PVC.\n\n\nA controller that receives PVC update with previously unknown resourceName or ClaimResourceStatus\nshould ignore the update for the purpose it was designed. For example - a controller that\nonly is responsible for resizing capacity of the volume, should ignore PVC updates that change other valid\nresources associated with PVC.\n\n\nThis is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", "type": "object", "x-kubernetes-map-type": "granular" }, @@ -7127,7 +736,7 @@ "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", "x-kubernetes-int-or-string": true }, - "description": "allocatedResources tracks the resources allocated to a PVC including its capacity. Key names follow standard Kubernetes label syntax. Valid values are either: * Un-prefixed keys: - storage - the capacity of the volume. * Custom resources must use implementation-defined prefixed names such as \"example.com/my-custom-resource\" Apart from above values - keys that are unprefixed or have kubernetes.io prefix are considered reserved and hence may not be used. \n Capacity reported here may be larger than the actual capacity when a volume expansion operation is requested. For storage quota, the larger value from allocatedResources and PVC.spec.resources is used. If allocatedResources is not set, PVC.spec.resources alone is used for quota calculation. If a volume expansion capacity request is lowered, allocatedResources is only lowered if there are no expansion operations in progress and if the actual volume capacity is equal or lower than the requested capacity. \n A controller that receives PVC update with previously unknown resourceName should ignore the update for the purpose it was designed. For example - a controller that only is responsible for resizing capacity of the volume, should ignore PVC updates that change other valid resources associated with PVC. \n This is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", + "description": "allocatedResources tracks the resources allocated to a PVC including its capacity.\nKey names follow standard Kubernetes label syntax. Valid values are either:\n\t* Un-prefixed keys:\n\t\t- storage - the capacity of the volume.\n\t* Custom resources must use implementation-defined prefixed names such as \"example.com/my-custom-resource\"\nApart from above values - keys that are unprefixed or have kubernetes.io prefix are considered\nreserved and hence may not be used.\n\n\nCapacity reported here may be larger than the actual capacity when a volume expansion operation\nis requested.\nFor storage quota, the larger value from allocatedResources and PVC.spec.resources is used.\nIf allocatedResources is not set, PVC.spec.resources alone is used for quota calculation.\nIf a volume expansion capacity request is lowered, allocatedResources is only\nlowered if there are no expansion operations in progress and if the actual volume capacity\nis equal or lower than the requested capacity.\n\n\nA controller that receives PVC update with previously unknown resourceName\nshould ignore the update for the purpose it was designed. For example - a controller that\nonly is responsible for resizing capacity of the volume, should ignore PVC updates that change other valid\nresources associated with PVC.\n\n\nThis is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", "type": "object" }, "capacity": { @@ -7147,7 +756,7 @@ "type": "object" }, "conditions": { - "description": "conditions is the current Condition of persistent volume claim. If underlying persistent volume is being resized then the Condition will be set to 'ResizeStarted'.", + "description": "conditions is the current Condition of persistent volume claim. If underlying persistent volume is being\nresized then the Condition will be set to 'ResizeStarted'.", "items": { "description": "PersistentVolumeClaimCondition contains details about state of pvc", "properties": { @@ -7166,7 +775,7 @@ "type": "string" }, "reason": { - "description": "reason is a unique, this should be a short, machine understandable string that gives the reason for condition's last transition. If it reports \"ResizeStarted\" that means the underlying persistent volume is being resized.", + "description": "reason is a unique, this should be a short, machine understandable string that gives the reason\nfor condition's last transition. If it reports \"ResizeStarted\" that means the underlying\npersistent volume is being resized.", "type": "string" }, "status": { @@ -7181,22 +790,40 @@ "status", "type" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" }, + "currentVolumeAttributesClassName": { + "description": "currentVolumeAttributesClassName is the current name of the VolumeAttributesClass the PVC is using.\nWhen unset, there is no VolumeAttributeClass applied to this PersistentVolumeClaim\nThis is an alpha field and requires enabling VolumeAttributesClass feature.", + "type": "string" + }, + "modifyVolumeStatus": { + "description": "ModifyVolumeStatus represents the status object of ControllerModifyVolume operation.\nWhen this is unset, there is no ModifyVolume operation being attempted.\nThis is an alpha field and requires enabling VolumeAttributesClass feature.", + "properties": { + "status": { + "description": "status is the status of the ControllerModifyVolume operation. It can be in any of following states:\n - Pending\n Pending indicates that the PersistentVolumeClaim cannot be modified due to unmet requirements, such as\n the specified VolumeAttributesClass not existing.\n - InProgress\n InProgress indicates that the volume is being modified.\n - Infeasible\n Infeasible indicates that the request has been rejected as invalid by the CSI driver. To\n\t resolve the error, a valid VolumeAttributesClass needs to be specified.\nNote: New statuses can be added in the future. Consumers should check for unknown statuses and fail appropriately.", + "type": "string" + }, + "targetVolumeAttributesClassName": { + "description": "targetVolumeAttributesClassName is the name of the VolumeAttributesClass the PVC currently being reconciled", + "type": "string" + } + }, + "required": [ + "status" + ], + "type": "object" + }, "phase": { "description": "phase represents the current phase of PersistentVolumeClaim.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } @@ -7204,8 +831,7 @@ "required": [ "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "LogstashStatus defines the observed state of Logstash", @@ -7226,6 +852,9 @@ "format": "int32", "type": "integer" }, + "health": { + "type": "string" + }, "monitoringAssociationStatus": { "additionalProperties": { "description": "AssociationStatus is the status of an association resource.", @@ -7235,7 +864,7 @@ "type": "object" }, "observedGeneration": { - "description": "ObservedGeneration is the most recent generation observed for this Logstash instance. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the Logstash controller has not yet processed the changes contained in the Logstash specification.", + "description": "ObservedGeneration is the most recent generation observed for this Logstash instance.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Logstash\ncontroller has not yet processed the changes contained in the Logstash specification.", "format": "int64", "type": "integer" }, @@ -7243,16 +872,15 @@ "type": "string" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, "required": [ "selector" ], - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/maps.k8s.elastic.co/elasticmapsserver_v1alpha1.json b/maps.k8s.elastic.co/elasticmapsserver_v1alpha1.json index e7903978..b40cd910 100644 --- a/maps.k8s.elastic.co/elasticmapsserver_v1alpha1.json +++ b/maps.k8s.elastic.co/elasticmapsserver_v1alpha1.json @@ -2,11 +2,11 @@ "description": "ElasticMapsServer represents an Elastic Map Server resource in a Kubernetes cluster.", "properties": { "apiVersion": { - "description": "APIVersion 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", + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", "type": "string" }, "kind": { - "description": "Kind 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", + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "type": "string" }, "metadata": { @@ -21,15 +21,14 @@ "x-kubernetes-preserve-unknown-fields": true }, "configRef": { - "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Elastic Maps Server configuration. Configuration settings are merged and have precedence over settings specified in `config`.", + "description": "ConfigRef contains a reference to an existing Kubernetes Secret holding the Elastic Maps Server configuration.\nConfiguration settings are merged and have precedence over settings specified in `config`.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "count": { "description": "Count of Elastic Maps Server instances to deploy.", @@ -48,16 +47,15 @@ "type": "string" }, "secretName": { - "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an Elastic resource not managed by the operator. The referenced secret must contain the following: - `url`: the URL to reach the Elastic resource - `username`: the username of the user to be authenticated to the Elastic resource - `password`: the password of the user to be authenticated to the Elastic resource - `ca.crt`: the CA certificate in PEM format (optional). This field cannot be used in combination with the other fields name, namespace or serviceName.", + "description": "SecretName is the name of an existing Kubernetes secret that contains connection information for associating an\nElastic resource not managed by the operator. The referenced secret must contain the following:\n- `url`: the URL to reach the Elastic resource\n- `username`: the username of the user to be authenticated to the Elastic resource\n- `password`: the password of the user to be authenticated to the Elastic resource\n- `ca.crt`: the CA certificate in PEM format (optional)\n- `api-key`: the key to authenticate against the Elastic resource instead of a username and password (supported only for `elasticsearchRefs` in AgentSpec and in BeatSpec)\nThis field cannot be used in combination with the other fields name, namespace or serviceName.", "type": "string" }, "serviceName": { - "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced object. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of the referenced resource is used.", + "description": "ServiceName is the name of an existing Kubernetes service which is used to make requests to the referenced\nobject. It has to be in the same namespace as the referenced resource. If left empty, the default HTTP service of\nthe referenced resource is used.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "http": { "description": "HTTP holds the HTTP layer configuration for Elastic Maps Server.", @@ -66,7 +64,7 @@ "description": "Service defines the template for the associated Kubernetes Service object.", "properties": { "metadata": { - "description": "ObjectMeta is the metadata of the service. The name and namespace provided here are managed by ECK and will be ignored.", + "description": "ObjectMeta is the metadata of the service.\nThe name and namespace provided here are managed by ECK and will be ignored.", "properties": { "annotations": { "additionalProperties": { @@ -93,22 +91,21 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "spec": { "description": "Spec is the specification of the service.", "properties": { "allocateLoadBalancerNodePorts": { - "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", + "description": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically\nallocated for services with type LoadBalancer. Default is \"true\". It\nmay be set to \"false\" if the cluster load-balancer does not rely on\nNodePorts. If the caller requests specific NodePorts (by specifying a\nvalue), those requests will be respected, regardless of this field.\nThis field may only be set for services with type LoadBalancer and will\nbe cleared if the type is changed to any other type.", "type": "boolean" }, "clusterIP": { - "description": "clusterIP is the IP address of the service and is usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be blank) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "clusterIP is the IP address of the service and is usually assigned\nrandomly. If an address is specified manually, is in-range (as per\nsystem configuration), and is not in use, it will be allocated to the\nservice; otherwise creation of the service will fail. This field may not\nbe changed through updates unless the type field is also being changed\nto ExternalName (which requires this field to be blank) or the type\nfield is being changed from ExternalName (in which case this field may\noptionally be specified, as describe above). Valid values are \"None\",\nempty string (\"\"), or a valid IP address. Setting this to \"None\" makes a\n\"headless service\" (no virtual IP), which is useful when direct endpoint\nconnections are preferred and proxying is not required. Only applies to\ntypes ClusterIP, NodePort, and LoadBalancer. If this field is specified\nwhen creating a Service of type ExternalName, creation will fail. This\nfield will be wiped when updating a Service to type ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "clusterIPs": { - "description": "ClusterIPs is a list of IP addresses assigned to this service, and are usually assigned randomly. If an address is specified manually, is in-range (as per system configuration), and is not in use, it will be allocated to the service; otherwise creation of the service will fail. This field may not be changed through updates unless the type field is also being changed to ExternalName (which requires this field to be empty) or the type field is being changed from ExternalName (in which case this field may optionally be specified, as describe above). Valid values are \"None\", empty string (\"\"), or a valid IP address. Setting this to \"None\" makes a \"headless service\" (no virtual IP), which is useful when direct endpoint connections are preferred and proxying is not required. Only applies to types ClusterIP, NodePort, and LoadBalancer. If this field is specified when creating a Service of type ExternalName, creation will fail. This field will be wiped when updating a Service to type ExternalName. If this field is not specified, it will be initialized from the clusterIP field. If this field is specified, clients must ensure that clusterIPs[0] and clusterIP have the same value. \n This field may hold a maximum of two entries (dual-stack IPs, in either order). These IPs must correspond to the values of the ipFamilies field. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "ClusterIPs is a list of IP addresses assigned to this service, and are\nusually assigned randomly. If an address is specified manually, is\nin-range (as per system configuration), and is not in use, it will be\nallocated to the service; otherwise creation of the service will fail.\nThis field may not be changed through updates unless the type field is\nalso being changed to ExternalName (which requires this field to be\nempty) or the type field is being changed from ExternalName (in which\ncase this field may optionally be specified, as describe above). Valid\nvalues are \"None\", empty string (\"\"), or a valid IP address. Setting\nthis to \"None\" makes a \"headless service\" (no virtual IP), which is\nuseful when direct endpoint connections are preferred and proxying is\nnot required. Only applies to types ClusterIP, NodePort, and\nLoadBalancer. If this field is specified when creating a Service of type\nExternalName, creation will fail. This field will be wiped when updating\na Service to type ExternalName. If this field is not specified, it will\nbe initialized from the clusterIP field. If this field is specified,\nclients must ensure that clusterIPs[0] and clusterIP have the same\nvalue.\n\n\nThis field may hold a maximum of two entries (dual-stack IPs, in either order).\nThese IPs must correspond to the values of the ipFamilies field. Both\nclusterIPs and ipFamilies are governed by the ipFamilyPolicy field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "type": "string" }, @@ -116,72 +113,72 @@ "x-kubernetes-list-type": "atomic" }, "externalIPs": { - "description": "externalIPs is a list of IP addresses for which nodes in the cluster will also accept traffic for this service. These IPs are not managed by Kubernetes. The user is responsible for ensuring that traffic arrives at a node with this IP. A common example is external load-balancers that are not part of the Kubernetes system.", + "description": "externalIPs is a list of IP addresses for which nodes in the cluster\nwill also accept traffic for this service. These IPs are not managed by\nKubernetes. The user is responsible for ensuring that traffic arrives\nat a node with this IP. A common example is external load-balancers\nthat are not part of the Kubernetes system.", "items": { "type": "string" }, "type": "array" }, "externalName": { - "description": "externalName is the external reference that discovery mechanisms will return as an alias for this service (e.g. a DNS CNAME record). No proxying will be involved. Must be a lowercase RFC-1123 hostname (https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", + "description": "externalName is the external reference that discovery mechanisms will\nreturn as an alias for this service (e.g. a DNS CNAME record). No\nproxying will be involved. Must be a lowercase RFC-1123 hostname\n(https://tools.ietf.org/html/rfc1123) and requires `type` to be \"ExternalName\".", "type": "string" }, "externalTrafficPolicy": { - "description": "externalTrafficPolicy denotes if this Service desires to route external traffic to node-local or cluster-wide endpoints. \"Local\" preserves the client source IP and avoids a second hop for LoadBalancer and Nodeport type services, but risks potentially imbalanced traffic spreading. \"Cluster\" obscures the client source IP and may cause a second hop to another node, but should have good overall load-spreading.", + "description": "externalTrafficPolicy describes how nodes distribute service traffic they\nreceive on one of the Service's \"externally-facing\" addresses (NodePorts,\nExternalIPs, and LoadBalancer IPs). If set to \"Local\", the proxy will configure\nthe service in a way that assumes that external load balancers will take care\nof balancing the service traffic between nodes, and so each node will deliver\ntraffic only to the node-local endpoints of the service, without masquerading\nthe client source IP. (Traffic mistakenly sent to a node with no endpoints will\nbe dropped.) The default value, \"Cluster\", uses the standard behavior of\nrouting to all endpoints evenly (possibly modified by topology and other\nfeatures). Note that traffic sent to an External IP or LoadBalancer IP from\nwithin the cluster will always get \"Cluster\" semantics, but clients sending to\na NodePort from within the cluster may need to take traffic policy into account\nwhen picking a node.", "type": "string" }, "healthCheckNodePort": { - "description": "healthCheckNodePort specifies the healthcheck nodePort for the service. This only applies when type is set to LoadBalancer and externalTrafficPolicy is set to Local. If a value is specified, is in-range, and is not in use, it will be used. If not specified, a value will be automatically allocated. External systems (e.g. load-balancers) can use this port to determine if a given node holds endpoints for this service or not. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type).", + "description": "healthCheckNodePort specifies the healthcheck nodePort for the service.\nThis only applies when type is set to LoadBalancer and\nexternalTrafficPolicy is set to Local. If a value is specified, is\nin-range, and is not in use, it will be used. If not specified, a value\nwill be automatically allocated. External systems (e.g. load-balancers)\ncan use this port to determine if a given node holds endpoints for this\nservice or not. If this field is specified when creating a Service\nwhich does not need it, creation will fail. This field will be wiped\nwhen updating a Service to no longer need it (e.g. changing type).\nThis field cannot be updated once set.", "format": "int32", "type": "integer" }, "internalTrafficPolicy": { - "description": "InternalTrafficPolicy specifies if the cluster internal traffic should be routed to all endpoints or node-local endpoints only. \"Cluster\" routes internal traffic to a Service to all endpoints. \"Local\" routes traffic to node-local endpoints only, traffic is dropped if no node-local endpoints are ready. The default value is \"Cluster\".", + "description": "InternalTrafficPolicy describes how nodes distribute service traffic they\nreceive on the ClusterIP. If set to \"Local\", the proxy will assume that pods\nonly want to talk to endpoints of the service on the same node as the pod,\ndropping the traffic if there are no local endpoints. The default value,\n\"Cluster\", uses the standard behavior of routing to all endpoints evenly\n(possibly modified by topology and other features).", "type": "string" }, "ipFamilies": { - "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this service. This field is usually assigned automatically based on cluster configuration and the ipFamilyPolicy field. If this field is specified manually, the requested family is available in the cluster, and ipFamilyPolicy allows it, it will be used; otherwise creation of the service will fail. This field is conditionally mutable: it allows for adding or removing a secondary IP family, but it does not allow changing the primary IP family of the Service. Valid values are \"IPv4\" and \"IPv6\". This field only applies to Services of types ClusterIP, NodePort, and LoadBalancer, and does apply to \"headless\" services. This field will be wiped when updating a Service to type ExternalName. \n This field may hold a maximum of two entries (dual-stack families, in either order). These families must correspond to the values of the clusterIPs field, if specified. Both clusterIPs and ipFamilies are governed by the ipFamilyPolicy field.", + "description": "IPFamilies is a list of IP families (e.g. IPv4, IPv6) assigned to this\nservice. This field is usually assigned automatically based on cluster\nconfiguration and the ipFamilyPolicy field. If this field is specified\nmanually, the requested family is available in the cluster,\nand ipFamilyPolicy allows it, it will be used; otherwise creation of\nthe service will fail. This field is conditionally mutable: it allows\nfor adding or removing a secondary IP family, but it does not allow\nchanging the primary IP family of the Service. Valid values are \"IPv4\"\nand \"IPv6\". This field only applies to Services of types ClusterIP,\nNodePort, and LoadBalancer, and does apply to \"headless\" services.\nThis field will be wiped when updating a Service to type ExternalName.\n\n\nThis field may hold a maximum of two entries (dual-stack families, in\neither order). These families must correspond to the values of the\nclusterIPs field, if specified. Both clusterIPs and ipFamilies are\ngoverned by the ipFamilyPolicy field.", "items": { - "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used to express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", + "description": "IPFamily represents the IP Family (IPv4 or IPv6). This type is used\nto express the family of an IP expressed by a type (e.g. service.spec.ipFamilies).", "type": "string" }, "type": "array", "x-kubernetes-list-type": "atomic" }, "ipFamilyPolicy": { - "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by this Service. If there is no value provided, then this field will be set to SingleStack. Services can be \"SingleStack\" (a single IP family), \"PreferDualStack\" (two IP families on dual-stack configured clusters or a single IP family on single-stack clusters), or \"RequireDualStack\" (two IP families on dual-stack configured clusters, otherwise fail). The ipFamilies and clusterIPs fields depend on the value of this field. This field will be wiped when updating a service to type ExternalName.", + "description": "IPFamilyPolicy represents the dual-stack-ness requested or required by\nthis Service. If there is no value provided, then this field will be set\nto SingleStack. Services can be \"SingleStack\" (a single IP family),\n\"PreferDualStack\" (two IP families on dual-stack configured clusters or\na single IP family on single-stack clusters), or \"RequireDualStack\"\n(two IP families on dual-stack configured clusters, otherwise fail). The\nipFamilies and clusterIPs fields depend on the value of this field. This\nfield will be wiped when updating a service to type ExternalName.", "type": "string" }, "loadBalancerClass": { - "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", + "description": "loadBalancerClass is the class of the load balancer implementation this Service belongs to.\nIf specified, the value of this field must be a label-style identifier, with an optional prefix,\ne.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users.\nThis field can only be set when the Service type is 'LoadBalancer'. If not set, the default load\nbalancer implementation is used, today this is typically done through the cloud provider integration,\nbut should apply for any default implementation. If set, it is assumed that a load balancer\nimplementation is watching for Services with a matching class. Any default load balancer\nimplementation (e.g. cloud providers) should ignore Services that set this field.\nThis field can only be set when creating or updating a Service to type 'LoadBalancer'.\nOnce set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "type": "string" }, "loadBalancerIP": { - "description": "Only applies to Service Type: LoadBalancer. This feature depends on whether the underlying cloud-provider supports specifying the loadBalancerIP when a load balancer is created. This field will be ignored if the cloud-provider does not support the feature. Deprecated: This field was under-specified and its meaning varies across implementations, and it cannot support dual-stack. As of Kubernetes v1.24, users are encouraged to use implementation-specific annotations when available. This field may be removed in a future API version.", + "description": "Only applies to Service Type: LoadBalancer.\nThis feature depends on whether the underlying cloud-provider supports specifying\nthe loadBalancerIP when a load balancer is created.\nThis field will be ignored if the cloud-provider does not support the feature.\nDeprecated: This field was under-specified and its meaning varies across implementations.\nUsing it is non-portable and it may not support dual-stack.\nUsers are encouraged to use implementation-specific annotations when available.", "type": "string" }, "loadBalancerSourceRanges": { - "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider load-balancer will be restricted to the specified client IPs. This field will be ignored if the cloud-provider does not support the feature.\" More info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", + "description": "If specified and supported by the platform, this will restrict traffic through the cloud-provider\nload-balancer will be restricted to the specified client IPs. This field will be ignored if the\ncloud-provider does not support the feature.\"\nMore info: https://kubernetes.io/docs/tasks/access-application-cluster/create-external-load-balancer/", "items": { "type": "string" }, "type": "array" }, "ports": { - "description": "The list of ports that are exposed by this service. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "The list of ports that are exposed by this service.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "items": { "description": "ServicePort contains information on service's port.", "properties": { "appProtocol": { - "description": "The application protocol for this port. This field follows standard Kubernetes label syntax. Un-prefixed names are reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names). Non-standard protocols should use prefixed names such as mycompany.com/my-custom-protocol.", + "description": "The application protocol for this port.\nThis is used as a hint for implementations to offer richer behavior for protocols that they understand.\nThis field follows standard Kubernetes label syntax.\nValid values are either:\n\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per\nRFC-6335 and https://www.iana.org/assignments/service-names).\n\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n\n* Other protocols should use implementation-defined prefixed names such as\nmycompany.com/my-custom-protocol.", "type": "string" }, "name": { - "description": "The name of this port within the service. This must be a DNS_LABEL. All ports within a ServiceSpec must have unique names. When considering the endpoints for a Service, this must match the 'name' field in the EndpointPort. Optional if only one ServicePort is defined on this service.", + "description": "The name of this port within the service. This must be a DNS_LABEL.\nAll ports within a ServiceSpec must have unique names. When considering\nthe endpoints for a Service, this must match the 'name' field in the\nEndpointPort.\nOptional if only one ServicePort is defined on this service.", "type": "string" }, "nodePort": { - "description": "The port on each node on which this service is exposed when type is NodePort or LoadBalancer. Usually assigned by the system. If a value is specified, in-range, and not in use it will be used, otherwise the operation will fail. If not specified, a port will be allocated if this Service requires one. If this field is specified when creating a Service which does not need it, creation will fail. This field will be wiped when updating a Service to no longer need it (e.g. changing type from NodePort to ClusterIP). More info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", + "description": "The port on each node on which this service is exposed when type is\nNodePort or LoadBalancer. Usually assigned by the system. If a value is\nspecified, in-range, and not in use it will be used, otherwise the\noperation will fail. If not specified, a port will be allocated if this\nService requires one. If this field is specified when creating a\nService which does not need it, creation will fail. This field will be\nwiped when updating a Service to no longer need it (e.g. changing type\nfrom NodePort to ClusterIP).\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport", "format": "int32", "type": "integer" }, @@ -192,7 +189,7 @@ }, "protocol": { "default": "TCP", - "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\". Default is TCP.", + "description": "The IP protocol for this port. Supports \"TCP\", \"UDP\", and \"SCTP\".\nDefault is TCP.", "type": "string" }, "targetPort": { @@ -204,15 +201,14 @@ "type": "string" } ], - "description": "Number or name of the port to access on the pods targeted by the service. Number must be in the range 1 to 65535. Name must be an IANA_SVC_NAME. If this is a string, it will be looked up as a named port in the target Pod's container ports. If this is not specified, the value of the 'port' field is used (an identity map). This field is ignored for services with clusterIP=None, and should be omitted or set equal to the 'port' field. More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", + "description": "Number or name of the port to access on the pods targeted by the service.\nNumber must be in the range 1 to 65535. Name must be an IANA_SVC_NAME.\nIf this is a string, it will be looked up as a named port in the\ntarget Pod's container ports. If this is not specified, the value\nof the 'port' field is used (an identity map).\nThis field is ignored for services with clusterIP=None, and should be\nomitted or set equal to the 'port' field.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service", "x-kubernetes-int-or-string": true } }, "required": [ "port" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array", "x-kubernetes-list-map-keys": [ @@ -222,19 +218,19 @@ "x-kubernetes-list-type": "map" }, "publishNotReadyAddresses": { - "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this Service should disregard any indications of ready/not-ready. The primary use case for setting this field is for a StatefulSet's Headless Service to propagate SRV DNS records for its Pods for the purpose of peer discovery. The Kubernetes controllers that generate Endpoints and EndpointSlice resources for Services interpret this to mean that all endpoints are considered \"ready\" even if the Pods themselves are not. Agents which consume only Kubernetes generated endpoints through the Endpoints or EndpointSlice resources can safely assume this behavior.", + "description": "publishNotReadyAddresses indicates that any agent which deals with endpoints for this\nService should disregard any indications of ready/not-ready.\nThe primary use case for setting this field is for a StatefulSet's Headless Service to\npropagate SRV DNS records for its Pods for the purpose of peer discovery.\nThe Kubernetes controllers that generate Endpoints and EndpointSlice resources for\nServices interpret this to mean that all endpoints are considered \"ready\" even if the\nPods themselves are not. Agents which consume only Kubernetes generated endpoints\nthrough the Endpoints or EndpointSlice resources can safely assume this behavior.", "type": "boolean" }, "selector": { "additionalProperties": { "type": "string" }, - "description": "Route service traffic to pods with label keys and values matching this selector. If empty or not present, the service is assumed to have an external process managing its endpoints, which Kubernetes will not modify. Only applies to types ClusterIP, NodePort, and LoadBalancer. Ignored if type is ExternalName. More info: https://kubernetes.io/docs/concepts/services-networking/service/", + "description": "Route service traffic to pods with label keys and values matching this\nselector. If empty or not present, the service is assumed to have an\nexternal process managing its endpoints, which Kubernetes will not\nmodify. Only applies to types ClusterIP, NodePort, and LoadBalancer.\nIgnored if type is ExternalName.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/", "type": "object", "x-kubernetes-map-type": "atomic" }, "sessionAffinity": { - "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity. Enable client IP based session affinity. Must be ClientIP or None. Defaults to None. More info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", + "description": "Supports \"ClientIP\" and \"None\". Used to maintain session affinity.\nEnable client IP based session affinity.\nMust be ClientIP or None.\nDefaults to None.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#virtual-ips-and-service-proxies", "type": "string" }, "sessionAffinityConfig": { @@ -244,43 +240,38 @@ "description": "clientIP contains the configurations of Client IP based session affinity.", "properties": { "timeoutSeconds": { - "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", + "description": "timeoutSeconds specifies the seconds of ClientIP type session sticky time.\nThe value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\".\nDefault value is 10800(for 3 hours).", "format": "int32", "type": "integer" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": { - "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid options are ExternalName, ClusterIP, NodePort, and LoadBalancer. \"ClusterIP\" allocates a cluster-internal IP address for load-balancing to endpoints. Endpoints are determined by the selector or if that is not specified, by manual construction of an Endpoints object or EndpointSlice objects. If clusterIP is \"None\", no virtual IP is allocated and the endpoints are published as a set of endpoints rather than a virtual IP. \"NodePort\" builds on ClusterIP and allocates a port on every node which routes to the same endpoints as the clusterIP. \"LoadBalancer\" builds on NodePort and creates an external load-balancer (if supported in the current cloud) which routes to the same endpoints as the clusterIP. \"ExternalName\" aliases this service to the specified externalName. Several other fields do not apply to ExternalName services. More info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", + "description": "type determines how the Service is exposed. Defaults to ClusterIP. Valid\noptions are ExternalName, ClusterIP, NodePort, and LoadBalancer.\n\"ClusterIP\" allocates a cluster-internal IP address for load-balancing\nto endpoints. Endpoints are determined by the selector or if that is not\nspecified, by manual construction of an Endpoints object or\nEndpointSlice objects. If clusterIP is \"None\", no virtual IP is\nallocated and the endpoints are published as a set of endpoints rather\nthan a virtual IP.\n\"NodePort\" builds on ClusterIP and allocates a port on every node which\nroutes to the same endpoints as the clusterIP.\n\"LoadBalancer\" builds on NodePort and creates an external load-balancer\n(if supported in the current cloud) which routes to the same endpoints\nas the clusterIP.\n\"ExternalName\" aliases this service to the specified externalName.\nSeveral other fields do not apply to ExternalName services.\nMore info: https://kubernetes.io/docs/concepts/services-networking/service/#publishing-services-service-types", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "tls": { "description": "TLS defines options for configuring TLS for HTTP.", "properties": { "certificate": { - "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS. The referenced secret should contain the following: \n - `ca.crt`: The certificate authority (optional). - `tls.crt`: The certificate (or a chain). - `tls.key`: The private key to the first certificate in the certificate chain.", + "description": "Certificate is a reference to a Kubernetes secret that contains the certificate and private key for enabling TLS.\nThe referenced secret should contain the following:\n\n\n- `ca.crt`: The certificate authority (optional).\n- `tls.crt`: The certificate (or a chain).\n- `tls.key`: The private key to the first certificate in the certificate chain.", "properties": { "secretName": { "description": "SecretName is the name of the secret.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "selfSignedCertificate": { "description": "SelfSignedCertificate allows configuring the self-signed certificate generated by the operator.", @@ -303,22 +294,18 @@ "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "type": "array" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, - "type": "object", - "additionalProperties": false + "type": "object" }, "image": { "description": "Image is the Elastic Maps Server Docker image to deploy.", @@ -335,7 +322,7 @@ "type": "integer" }, "serviceAccountName": { - "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace. Can only be used if ECK is enforcing RBAC on references.", + "description": "ServiceAccountName is used to check access from the current resource to a resource (for ex. Elasticsearch) in a different namespace.\nCan only be used if ECK is enforcing RBAC on references.", "type": "string" }, "version": { @@ -346,8 +333,7 @@ "required": [ "version" ], - "type": "object", - "additionalProperties": false + "type": "object" }, "status": { "description": "MapsStatus defines the observed state of Elastic Maps Server", @@ -371,7 +357,7 @@ "type": "string" }, "observedGeneration": { - "description": "ObservedGeneration is the most recent generation observed for this Elastic Maps Server. It corresponds to the metadata generation, which is updated on mutation by the API Server. If the generation observed in status diverges from the generation in metadata, the Elastic Maps controller has not yet processed the changes contained in the Elastic Maps specification.", + "description": "ObservedGeneration is the most recent generation observed for this Elastic Maps Server.\nIt corresponds to the metadata generation, which is updated on mutation by the API Server.\nIf the generation observed in status diverges from the generation in metadata, the Elastic\nMaps controller has not yet processed the changes contained in the Elastic Maps specification.", "format": "int64", "type": "integer" }, @@ -380,13 +366,12 @@ "type": "string" }, "version": { - "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run in parallel: this value specifies the lowest version currently running.", + "description": "Version of the stack resource currently running. During version upgrades, multiple versions may run\nin parallel: this value specifies the lowest version currently running.", "type": "string" } }, - "type": "object", - "additionalProperties": false + "type": "object" } }, "type": "object" -} +} \ No newline at end of file diff --git a/pingcap.com/backup_v1alpha1.json b/pingcap.com/backup_v1alpha1.json new file mode 100644 index 00000000..5d8a1d06 --- /dev/null +++ b/pingcap.com/backup_v1alpha1.json @@ -0,0 +1,3540 @@ +{ + "properties": { + "apiVersion": { + "type": "string" + }, + "kind": { + "type": "string" + }, + "metadata": { + "type": "object" + }, + "spec": { + "properties": { + "additionalVolumeMounts": { + "items": { + "properties": { + "mountPath": { + "type": "string" + }, + "mountPropagation": { + "type": "string" + }, + "name": { + "type": "string" + }, + "readOnly": { + "type": "boolean" + }, + "subPath": { + "type": "string" + }, + "subPathExpr": { + "type": "string" + } + }, + "required": [ + "mountPath", + "name" + ], + "type": "object" + }, + "type": "array" + }, + "additionalVolumes": { + "items": { + "properties": { + "awsElasticBlockStore": { + "properties": { + "fsType": { + "type": "string" + }, + "partition": { + "format": "int32", + "type": "integer" + }, + "readOnly": { + "type": "boolean" + }, + "volumeID": { + "type": "string" + } + }, + "required": [ + "volumeID" + ], + "type": "object" + }, + "azureDisk": { + "properties": { + "cachingMode": { + "type": "string" + }, + "diskName": { + "type": "string" + }, + "diskURI": { + "type": "string" + }, + "fsType": { + "type": "string" + }, + "kind": { + "type": "string" + }, + "readOnly": { + "type": "boolean" + } + }, + "required": [ + "diskName", + "diskURI" + ], + "type": "object" + }, + "azureFile": { + "properties": { + "readOnly": { + "type": "boolean" + }, + "secretName": { + "type": "string" + }, + "shareName": { + "type": "string" + } + }, + "required": [ + "secretName", + "shareName" + ], + "type": "object" + }, + "cephfs": { + "properties": { + "monitors": { + "items": { + "type": "string" + }, + "type": "array" + }, + "path": { + "type": "string" + }, + "readOnly": { + "type": "boolean" + }, + "secretFile": { + "type": "string" + }, + "secretRef": { + "properties": { + "name": { + "type": "string" + } + }, + "type": "object" + }, + "user": { + "type": "string" + } + }, + "required": [ + "monitors" + ], + "type": "object" + }, + "cinder": { + "properties": { + "fsType": { + "type": "string" + }, + "readOnly": { + "type": "boolean" + }, + "secretRef": { + "properties": { + "name": { + "type": "string" + } + }, + "type": "object" + }, + "volumeID": { + "type": "string" + } + }, + "required": [ + "volumeID" + ], + "type": "object" + }, + "configMap": { + "properties": { + "defaultMode": { + "format": "int32", + "type": "integer" + }, + "items": { + "items": { + "properties": { + "key": { + "type": "string" + }, + "mode": { + "format": "int32", + "type": "integer" + }, + "path": { + "type": "string" + } + }, + "required": [ + "key", + "path" + ], + "type": "object" + }, + "type": "array" + }, + "name": { + "type": "string" + }, + "optional": { + "type": "boolean" + } + }, + "type": "object" + }, + "csi": { + "properties": { + "driver": { + "type": "string" + }, + "fsType": { + "type": "string" + }, + "nodePublishSecretRef": { + "properties": { + "name": { + "type": "string" + } + }, + "type": "object" + }, + "readOnly": { + "type": "boolean" + }, + "volumeAttributes": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + } + }, + "required": [ + "driver" + ], + "type": "object" + }, + "downwardAPI": { + "properties": { + "defaultMode": { + "format": "int32", + "type": "integer" + }, + "items": { + "items": { + "properties": { + "fieldRef": { + "properties": { + "apiVersion": { + "type": "string" + }, + "fieldPath": { + "type": "string" + } + }, + "required": [ + "fieldPath" + ], + "type": "object" + }, + "mode": { + "format": "int32", + "type": "integer" + }, + "path": { 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"type": "string" + } + }, + "required": [ + "name", + "value" + ], + "type": "object" + }, + "type": "array" + }, + "path": { + "type": "string" + }, + "port": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "x-kubernetes-int-or-string": true + }, + "scheme": { + "type": "string" + } + }, + "required": [ + "port" + ], + "type": "object" + }, + "initialDelaySeconds": { + "format": "int32", + "type": "integer" + }, + "periodSeconds": { + "format": "int32", + "type": "integer" + }, + "successThreshold": { + "format": "int32", + "type": "integer" + }, + "tcpSocket": { + "properties": { + "host": { + "type": "string" + }, + "port": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "x-kubernetes-int-or-string": true + } + }, + "required": [ + "port" + ], + "type": "object" + }, + "terminationGracePeriodSeconds": { + "format": "int64", + "type": "integer" + }, + "timeoutSeconds": { + "format": "int32", + "type": "integer" + } + }, + "type": "object" + }, + "stdin": { + "type": "boolean" + }, + "stdinOnce": { + "type": "boolean" + }, + "terminationMessagePath": { + "type": "string" + }, + "terminationMessagePolicy": { + "type": "string" + }, + "tty": { + "type": "boolean" + }, + "volumeDevices": { + "items": { + "properties": { + "devicePath": { + "type": "string" + }, + "name": { + "type": "string" + } + }, + "required": [ + "devicePath", + "name" + ], + "type": "object" + }, + "type": "array" + }, + "volumeMounts": { + "items": { + "properties": { + "mountPath": { + "type": "string" + }, + "mountPropagation": { + "type": "string" + }, + "name": { + "type": "string" + }, + "readOnly": { + "type": "boolean" + }, + "subPath": { + "type": "string" + }, + "subPathExpr": { + "type": "string" + } + }, + "required": [ + "mountPath", + "name" + ], + "type": "object" + }, + "type": "array" + }, + "workingDir": { + "type": "string" + } + }, + "required": [ + "name" + ], + "type": "object" + }, + "type": "array" + }, + "labels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "limits": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "type": "object" + }, + "nodeSelector": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "podManagementPolicy": { + "type": "string" + }, + "podSecurityContext": { + "properties": { + "fsGroup": { + "format": "int64", + "type": "integer" + }, + "fsGroupChangePolicy": { + "type": "string" + }, + "runAsGroup": { + "format": "int64", + "type": "integer" + }, + "runAsNonRoot": { + "type": "boolean" + }, + "runAsUser": { + "format": "int64", + "type": "integer" + }, + "seLinuxOptions": { + "properties": { + "level": { + "type": "string" + }, + "role": { + "type": "string" + }, + "type": { + "type": "string" + }, + "user": { + "type": "string" + } + }, + "type": "object" + }, + "seccompProfile": { + "properties": { + "localhostProfile": { + "type": "string" + }, + "type": { + "type": "string" + } + }, + "required": [ + "type" + ], + "type": "object" + }, + "supplementalGroups": { + "items": { + "format": "int64", + "type": "integer" + }, + "type": "array" + }, + "sysctls": { + "items": { + "properties": { + "name": { + "type": "string" + }, + "value": { + "type": "string" + } + }, + "required": [ + "name", + "value" + ], + "type": "object" + }, + "type": "array" + }, + "windowsOptions": { + "properties": { + "gmsaCredentialSpec": { + "type": "string" + }, + "gmsaCredentialSpecName": { + "type": "string" + }, + "hostProcess": { + "type": "boolean" + }, + "runAsUserName": { + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "priorityClassName": { + "type": "string" + }, + "readinessProbe": { + "properties": { + "initialDelaySeconds": { + "format": "int32", + "minimum": 0, + "type": "integer" + }, + "periodSeconds": { + "format": "int32", + "minimum": 1, + "type": "integer" + }, + "type": { + "enum": [ + "tcp", + "command" + ], + "type": "string" + } + }, + "type": "object" + }, + "requests": { + "additionalProperties": { + "anyOf": [ + { + "type": "integer" + }, + { + "type": "string" + } + ], + "pattern": "^(\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\\+|-)?(([0-9]+(\\.[0-9]*)?)|(\\.[0-9]+))))?$", + "x-kubernetes-int-or-string": true + }, + "type": "object" + }, + "schedulerName": { + "type": "string" + }, + "statefulSetUpdateStrategy": { + "type": "string" + }, + "storageClassName": { + "type": "string" + }, + "storageVolumes": { + "items": { + "properties": { + "mountPath": { + "type": "string" + }, + "name": { + "type": "string" + }, + "storageClassName": { + "type": "string" + }, + "storageSize": { + "type": "string" + } + }, + "required": [ + "name", + "storageSize" + ], + "type": "object" + }, + "type": "array" + }, + "suspendAction": { + "properties": { + "suspendStatefulSet": { + "type": "boolean" + } + }, + "type": "object" + }, + "terminationGracePeriodSeconds": { + "format": "int64", + "type": "integer" + }, + "tolerations": { + "items": { + "properties": { + "effect": { + "type": "string" + }, + "key": { + "type": "string" + }, + "operator": { + "type": "string" + }, + "tolerationSeconds": { + "format": "int64", + "type": "integer" + }, + "value": { + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + }, + "topologySpreadConstraints": { + "items": { + "properties": { + "matchLabels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "maxSkew": { + "default": 1, + "format": "int32", + "type": "integer" + }, + "minDomains": { + "format": "int32", + "type": "integer" + }, + "nodeAffinityPolicy": { + "type": "string" + }, + "topologyKey": { + "type": "string" + } + }, + "required": [ + "topologyKey" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-list-map-keys": [ + "topologyKey" + ], + "x-kubernetes-list-type": "map" + }, + "version": { + "type": "string" + } + }, + "type": "object" + }, + "nodeSelector": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "paused": { + "type": "boolean" + }, + "podManagementPolicy": { + "type": "string" + }, + "podSecurityContext": { + "properties": { + "fsGroup": { + "format": "int64", + "type": "integer" + }, + "fsGroupChangePolicy": { + "type": "string" + }, + "runAsGroup": { + "format": "int64", + "type": "integer" + }, + "runAsNonRoot": { + "type": "boolean" + }, + "runAsUser": { + "format": "int64", + "type": "integer" + }, + "seLinuxOptions": { + "properties": { + "level": { + "type": "string" + }, + "role": { + "type": "string" + }, + "type": { + "type": "string" + }, + "user": { + "type": "string" + } + }, + "type": "object" + }, + "seccompProfile": { + "properties": { + "localhostProfile": { + "type": "string" + }, + "type": { + "type": "string" + } + }, + "required": [ + "type" + ], + "type": "object" + }, + "supplementalGroups": { + "items": { + "format": "int64", + "type": "integer" + }, + "type": "array" + }, + "sysctls": { + "items": { + "properties": { + "name": { + "type": "string" + }, + "value": { + "type": "string" + } + }, + "required": [ + "name", + "value" + ], + "type": "object" + }, + "type": "array" + }, + "windowsOptions": { + "properties": { + "gmsaCredentialSpec": { + "type": "string" + }, + "gmsaCredentialSpecName": { + "type": "string" + }, + "hostProcess": { + "type": "boolean" + }, + "runAsUserName": { + "type": "string" + } + }, + "type": "object" + } + }, + "type": "object" + }, + "preferIPv6": { + "type": "boolean" + }, + "priorityClassName": { + "type": "string" + }, + "pvReclaimPolicy": { + "default": "Retain", + "type": "string" + }, + "readinessProbe": { + "properties": { + "initialDelaySeconds": { + "format": "int32", + "minimum": 0, + "type": "integer" + }, + "periodSeconds": { + "format": "int32", + "minimum": 1, + "type": "integer" + }, + "type": { + "enum": [ + "tcp", + "command" + ], + "type": "string" + } + }, + "type": "object" + }, + "schedulerName": { + "type": "string" + }, + "statefulSetUpdateStrategy": { + "type": "string" + }, + "suspendAction": { + "properties": { + "suspendStatefulSet": { + "type": "boolean" + } + }, + "type": "object" + }, + "terminationGracePeriodSeconds": { + "format": "int64", + "type": "integer" + }, + "tolerations": { + "items": { + "properties": { + "effect": { + "type": "string" + }, + "key": { + "type": "string" + }, + "operator": { + "type": "string" + }, + "tolerationSeconds": { + "format": "int64", + "type": "integer" + }, + "value": { + "type": "string" + } + }, + "type": "object" + }, + "type": "array" + }, + "topologySpreadConstraints": { + "items": { + "properties": { + "matchLabels": { + "additionalProperties": { + "type": "string" + }, + "type": "object" + }, + "maxSkew": { + "default": 1, + "format": "int32", + "type": "integer" + }, + "minDomains": { + "format": "int32", + "type": "integer" + }, + "nodeAffinityPolicy": { + "type": "string" + }, + "topologyKey": { + "type": "string" + } + }, + "required": [ + "topologyKey" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-list-map-keys": [ + "topologyKey" + ], + "x-kubernetes-list-type": "map" + }, + "version": { + "type": "string" + } + }, + "required": [ + "clusters", + "ngMonitoring" + ], + "type": "object" + }, + "status": { + "properties": { + "ngMonitoring": { + "properties": { + "phase": { + "type": "string" + }, + "statefulSet": { + "properties": { + "availableReplicas": { + "format": "int32", + "type": "integer" + }, + "collisionCount": { + "format": "int32", + "type": "integer" + }, + "conditions": { + "items": { + "properties": { + "lastTransitionTime": { + "format": "date-time", + "type": "string" + }, + "message": { + "type": "string" + }, + "reason": { + "type": "string" + }, + "status": { + "type": "string" + }, + "type": { + "type": "string" + } + }, + "required": [ + "status", + "type" + ], + "type": "object" + }, + "type": "array" + }, + "currentReplicas": { + "format": "int32", + "type": "integer" + }, + "currentRevision": { + "type": "string" + }, + "observedGeneration": { + "format": "int64", + "type": "integer" + }, + "readyReplicas": { + "format": "int32", + "type": "integer" + }, + "replicas": { + "format": "int32", + "type": "integer" + }, + "updateRevision": { + "type": "string" + }, + "updatedReplicas": { + "format": "int32", + "type": "integer" + } + }, + "required": [ + "replicas" + ], + "type": "object" + }, + "synced": { + "type": "boolean" + } + }, + "type": "object" + } + }, + "type": "object" + } + }, + "required": [ + "metadata", + "spec" + ], + "type": "object" +} \ No newline at end of file diff --git a/stackconfigpolicy.k8s.elastic.co/stackconfigpolicy_v1alpha1.json b/stackconfigpolicy.k8s.elastic.co/stackconfigpolicy_v1alpha1.json new file mode 100644 index 00000000..ee530769 --- /dev/null +++ b/stackconfigpolicy.k8s.elastic.co/stackconfigpolicy_v1alpha1.json @@ -0,0 +1,370 @@ +{ + "description": "StackConfigPolicy represents a StackConfigPolicy resource in a Kubernetes cluster.", + "properties": { + "apiVersion": { + "description": "APIVersion defines the versioned schema of this representation of an object.\nServers should convert recognized schemas to the latest internal value, and\nmay reject unrecognized values.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources", + "type": "string" + }, + "kind": { + "description": "Kind is a string value representing the REST resource this object represents.\nServers may infer this from the endpoint the client submits requests to.\nCannot be updated.\nIn CamelCase.\nMore info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", + "type": "string" + }, + "metadata": { + "type": "object" + }, + "spec": { + "properties": { + "elasticsearch": { + "properties": { + "clusterSettings": { + "description": "ClusterSettings holds the Elasticsearch cluster settings (/_cluster/settings)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "config": { + "description": "Config holds the settings that go into elasticsearch.yml.", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "indexLifecyclePolicies": { + "description": "IndexLifecyclePolicies holds the Index Lifecycle policies settings (/_ilm/policy)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "indexTemplates": { + "description": "IndexTemplates holds the Index and Component Templates settings", + "properties": { + "componentTemplates": { + "description": "ComponentTemplates holds the Component Templates settings (/_component_template)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "composableIndexTemplates": { + "description": "ComposableIndexTemplates holds the Index Templates settings (/_index_template)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + } + }, + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "ingestPipelines": { + "description": "IngestPipelines holds the Ingest Pipelines settings (/_ingest/pipeline)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "secretMounts": { + "description": "SecretMounts are additional Secrets that need to be mounted into the Elasticsearch pods.", + "items": { + "description": "SecretMount contains information about additional secrets to be mounted to the elasticsearch pods", + "properties": { + "mountPath": { + "description": "MountPath denotes the path to which the secret should be mounted to inside the elasticsearch pod", + "type": "string" + }, + "secretName": { + "description": "SecretName denotes the name of the secret that needs to be mounted to the elasticsearch pod", + "type": "string" + } + }, + "type": "object" + }, + "type": "array", + "x-kubernetes-preserve-unknown-fields": true + }, + "secureSettings": { + "description": "SecureSettings are additional Secrets that contain data to be configured to Elasticsearch's keystore.", + "items": { + "description": "SecretSource defines a data source based on a Kubernetes Secret.", + "properties": { + "entries": { + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", + "items": { + "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", + "properties": { + "key": { + "description": "Key is the key contained in the secret.", + "type": "string" + }, + "path": { + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", + "type": "string" + } + }, + "required": [ + "key" + ], + "type": "object" + }, + "type": "array" + }, + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "required": [ + "secretName" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-preserve-unknown-fields": true + }, + "securityRoleMappings": { + "description": "SecurityRoleMappings holds the Role Mappings settings (/_security/role_mapping)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "snapshotLifecyclePolicies": { + "description": "SnapshotLifecyclePolicies holds the Snapshot Lifecycle Policies settings (/_slm/policy)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "snapshotRepositories": { + "description": "SnapshotRepositories holds the Snapshot Repositories settings (/_snapshot)", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + } + }, + "type": "object" + }, + "kibana": { + "properties": { + "config": { + "description": "Config holds the settings that go into kibana.yml.", + "type": "object", + "x-kubernetes-preserve-unknown-fields": true + }, + "secureSettings": { + "description": "SecureSettings are additional Secrets that contain data to be configured to Kibana's keystore.", + "items": { + "description": "SecretSource defines a data source based on a Kubernetes Secret.", + "properties": { + "entries": { + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", + "items": { + "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", + "properties": { + "key": { + "description": "Key is the key contained in the secret.", + "type": "string" + }, + "path": { + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", + "type": "string" + } + }, + "required": [ + "key" + ], + "type": "object" + }, + "type": "array" + }, + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "required": [ + "secretName" + ], + "type": "object" + }, + "type": "array", + "x-kubernetes-preserve-unknown-fields": true + } + }, + "type": "object" + }, + "resourceSelector": { + "description": "A label selector is a label query over a set of resources. The result of matchLabels and\nmatchExpressions are ANDed. An empty label selector matches all objects. A null\nlabel selector matches no objects.", + "properties": { + "matchExpressions": { + "description": "matchExpressions is a list of label selector requirements. The requirements are ANDed.", + "items": { + "description": "A label selector requirement is a selector that contains values, a key, and an operator that\nrelates the key and values.", + "properties": { + "key": { + "description": "key is the label key that the selector applies to.", + "type": "string" + }, + "operator": { + "description": "operator represents a key's relationship to a set of values.\nValid operators are In, NotIn, Exists and DoesNotExist.", + "type": "string" + }, + "values": { + "description": "values is an array of string values. If the operator is In or NotIn,\nthe values array must be non-empty. If the operator is Exists or DoesNotExist,\nthe values array must be empty. This array is replaced during a strategic\nmerge patch.", + "items": { + "type": "string" + }, + "type": "array" + } + }, + "required": [ + "key", + "operator" + ], + "type": "object" + }, + "type": "array" + }, + "matchLabels": { + "additionalProperties": { + "type": "string" + }, + "description": "matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels\nmap is equivalent to an element of matchExpressions, whose key field is \"key\", the\noperator is \"In\", and the values array contains only \"value\". The requirements are ANDed.", + "type": "object" + } + }, + "type": "object", + "x-kubernetes-map-type": "atomic" + }, + "secureSettings": { + "description": "Deprecated: SecureSettings only applies to Elasticsearch and is deprecated. It must be set per application instead.", + "items": { + "description": "SecretSource defines a data source based on a Kubernetes Secret.", + "properties": { + "entries": { + "description": "Entries define how to project each key-value pair in the secret to filesystem paths.\nIf not defined, all keys will be projected to similarly named paths in the filesystem.\nIf defined, only the specified keys will be projected to the corresponding paths.", + "items": { + "description": "KeyToPath defines how to map a key in a Secret object to a filesystem path.", + "properties": { + "key": { + "description": "Key is the key contained in the secret.", + "type": "string" + }, + "path": { + "description": "Path is the relative file path to map the key to.\nPath must not be an absolute file path and must not contain any \"..\" components.", + "type": "string" + } + }, + "required": [ + "key" + ], + "type": "object" + }, + "type": "array" + }, + "secretName": { + "description": "SecretName is the name of the secret.", + "type": "string" + } + }, + "required": [ + "secretName" + ], + "type": "object" + }, + "type": "array" + } + }, + "type": "object" + }, + "status": { + "properties": { + "details": { + "additionalProperties": { + "additionalProperties": { + "description": "ResourcePolicyStatus models the status of the policy for one resource to be configured.", + "properties": { + "currentVersion": { + "description": "CurrentVersion denotes the current version of filesettings applied to the Elasticsearch cluster\nThis field does not apply to Kibana resources", + "format": "int64", + "type": "integer" + }, + "error": { + "properties": { + "message": { + "type": "string" + }, + "version": { + "format": "int64", + "type": "integer" + } + }, + "type": "object" + }, + "expectedVersion": { + "description": "ExpectedVersion denotes the expected version of filesettings that should be applied to the Elasticsearch cluster\nThis field does not apply to Kibana resources", + "format": "int64", + "type": "integer" + }, + "phase": { + "type": "string" + } + }, + "type": "object" + }, + "type": "object" + }, + "description": "Details holds the status details for each resource to be configured.", + "type": "object" + }, + "errors": { + "description": "Errors is the number of resources which have an incorrect configuration", + "type": "integer" + }, + "observedGeneration": { + "description": "ObservedGeneration is the most recent generation observed for this StackConfigPolicy.", + "format": "int64", + "type": "integer" + }, + "phase": { + "description": "Phase is the phase of the StackConfigPolicy.", + "type": "string" + }, + "ready": { + "description": "Ready is the number of resources successfully configured.", + "type": "integer" + }, + "readyCount": { + "description": "ReadyCount is a human representation of the number of resources successfully configured.", + "type": "string" + }, + "resources": { + "description": "Resources is the number of resources to be configured.", + "type": "integer" + }, + "resourcesStatuses": { + "additionalProperties": { + "description": "ResourcePolicyStatus models the status of the policy for one resource to be configured.", + "properties": { + "currentVersion": { + "description": "CurrentVersion denotes the current version of filesettings applied to the Elasticsearch cluster\nThis field does not apply to Kibana resources", + "format": "int64", + "type": "integer" + }, + "error": { + "properties": { + "message": { + "type": "string" + }, + "version": { + "format": "int64", + "type": "integer" + } + }, + "type": "object" + }, + "expectedVersion": { + "description": "ExpectedVersion denotes the expected version of filesettings that should be applied to the Elasticsearch cluster\nThis field does not apply to Kibana resources", + "format": "int64", + "type": "integer" + }, + "phase": { + "type": "string" + } + }, + "type": "object" + }, + "description": "ResourcesStatuses holds the status for each resource to be configured.\nDeprecated: Details is used to store the status of resources from ECK 2.11", + "type": "object" + } + }, + "type": "object" + } + }, + "type": "object" +} \ No newline at end of file