mirror of https://github.com/k3s-io/k3s
476 lines
16 KiB
Go
476 lines
16 KiB
Go
/*
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Copyright 2019 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package bootstrap
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import (
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coordinationv1 "k8s.io/api/coordination/v1"
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corev1 "k8s.io/api/core/v1"
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flowcontrol "k8s.io/api/flowcontrol/v1alpha1"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/apiserver/pkg/authentication/serviceaccount"
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"k8s.io/apiserver/pkg/authentication/user"
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)
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// The objects that define an apiserver's initial behavior. The
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// registered defaulting procedures make no changes to these
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// particular objects (this is verified in the unit tests of the
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// internalbootstrap package; it can not be verified in this package
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// because that would require importing k8s.io/kubernetes).
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var (
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MandatoryPriorityLevelConfigurations = []*flowcontrol.PriorityLevelConfiguration{
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MandatoryPriorityLevelConfigurationExempt,
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MandatoryPriorityLevelConfigurationCatchAll,
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}
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MandatoryFlowSchemas = []*flowcontrol.FlowSchema{
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MandatoryFlowSchemaExempt,
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MandatoryFlowSchemaCatchAll,
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}
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)
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// The objects that define the current suggested additional configuration
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var (
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SuggestedPriorityLevelConfigurations = []*flowcontrol.PriorityLevelConfiguration{
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// "system" priority-level is for the system components that affects self-maintenance of the
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// cluster and the availability of those running pods in the cluster, including kubelet and
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// kube-proxy.
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SuggestedPriorityLevelConfigurationSystem,
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// "leader-election" is dedicated for controllers' leader-election, which majorly affects the
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// availability of any controller runs in the cluster.
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SuggestedPriorityLevelConfigurationLeaderElection,
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// "workload-high" is used by those workloads with higher priority but their failure won't directly
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// impact the existing running pods in the cluster, which includes kube-scheduler, and those well-known
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// built-in workloads such as "deployments", "replicasets" and other low-level custom workload which
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// is important for the cluster.
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SuggestedPriorityLevelConfigurationWorkloadHigh,
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// "workload-low" is used by those workloads with lower priority which availability only has a
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// minor impact on the cluster.
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SuggestedPriorityLevelConfigurationWorkloadLow,
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// "global-default" serves the rest traffic not handled by the other suggested flow-schemas above.
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SuggestedPriorityLevelConfigurationGlobalDefault,
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}
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SuggestedFlowSchemas = []*flowcontrol.FlowSchema{
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SuggestedFlowSchemaSystemNodes, // references "system" priority-level
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SuggestedFlowSchemaSystemLeaderElection, // references "leader-election" priority-level
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SuggestedFlowSchemaWorkloadLeaderElection, // references "leader-election" priority-level
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SuggestedFlowSchemaKubeControllerManager, // references "workload-high" priority-level
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SuggestedFlowSchemaKubeScheduler, // references "workload-high" priority-level
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SuggestedFlowSchemaKubeSystemServiceAccounts, // references "workload-high" priority-level
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SuggestedFlowSchemaServiceAccounts, // references "workload-low" priority-level
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SuggestedFlowSchemaGlobalDefault, // references "global-default" priority-level
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}
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)
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// Mandatory PriorityLevelConfiguration objects
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var (
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MandatoryPriorityLevelConfigurationExempt = newPriorityLevelConfiguration(
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flowcontrol.PriorityLevelConfigurationNameExempt,
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flowcontrol.PriorityLevelConfigurationSpec{
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Type: flowcontrol.PriorityLevelEnablementExempt,
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},
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)
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MandatoryPriorityLevelConfigurationCatchAll = newPriorityLevelConfiguration(
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"catch-all",
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flowcontrol.PriorityLevelConfigurationSpec{
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Type: flowcontrol.PriorityLevelEnablementLimited,
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Limited: &flowcontrol.LimitedPriorityLevelConfiguration{
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AssuredConcurrencyShares: 1,
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LimitResponse: flowcontrol.LimitResponse{
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Type: flowcontrol.LimitResponseTypeReject,
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},
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},
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})
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)
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// Mandatory FlowSchema objects
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var (
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// "exempt" priority-level is used for preventing priority inversion and ensuring that sysadmin
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// requests are always possible.
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MandatoryFlowSchemaExempt = newFlowSchema(
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"exempt",
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flowcontrol.PriorityLevelConfigurationNameExempt,
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1, // matchingPrecedence
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"", // distinguisherMethodType
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: groups(user.SystemPrivilegedGroup),
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ResourceRules: []flowcontrol.ResourcePolicyRule{
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resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true,
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),
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},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll},
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),
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},
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},
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)
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// "catch-all" priority-level only gets a minimal positive share of concurrency and won't be reaching
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// ideally unless you intentionally deleted the suggested "global-default".
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MandatoryFlowSchemaCatchAll = newFlowSchema(
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"catch-all",
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"catch-all",
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10000, // matchingPrecedence
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flowcontrol.FlowDistinguisherMethodByUserType, // distinguisherMethodType
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: groups(user.AllUnauthenticated, user.AllAuthenticated),
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ResourceRules: []flowcontrol.ResourcePolicyRule{
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resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true,
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),
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},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll},
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),
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},
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},
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)
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)
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// Suggested PriorityLevelConfiguration objects
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var (
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// system priority-level
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SuggestedPriorityLevelConfigurationSystem = newPriorityLevelConfiguration(
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"system",
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flowcontrol.PriorityLevelConfigurationSpec{
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Type: flowcontrol.PriorityLevelEnablementLimited,
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Limited: &flowcontrol.LimitedPriorityLevelConfiguration{
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AssuredConcurrencyShares: 30,
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LimitResponse: flowcontrol.LimitResponse{
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Type: flowcontrol.LimitResponseTypeQueue,
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Queuing: &flowcontrol.QueuingConfiguration{
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Queues: 64,
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HandSize: 6,
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QueueLengthLimit: 50,
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},
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},
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},
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})
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// leader-election priority-level
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SuggestedPriorityLevelConfigurationLeaderElection = newPriorityLevelConfiguration(
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"leader-election",
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flowcontrol.PriorityLevelConfigurationSpec{
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Type: flowcontrol.PriorityLevelEnablementLimited,
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Limited: &flowcontrol.LimitedPriorityLevelConfiguration{
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AssuredConcurrencyShares: 10,
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LimitResponse: flowcontrol.LimitResponse{
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Type: flowcontrol.LimitResponseTypeQueue,
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Queuing: &flowcontrol.QueuingConfiguration{
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Queues: 16,
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HandSize: 4,
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QueueLengthLimit: 50,
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},
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},
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},
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})
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// workload-high priority-level
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SuggestedPriorityLevelConfigurationWorkloadHigh = newPriorityLevelConfiguration(
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"workload-high",
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flowcontrol.PriorityLevelConfigurationSpec{
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Type: flowcontrol.PriorityLevelEnablementLimited,
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Limited: &flowcontrol.LimitedPriorityLevelConfiguration{
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AssuredConcurrencyShares: 40,
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LimitResponse: flowcontrol.LimitResponse{
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Type: flowcontrol.LimitResponseTypeQueue,
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Queuing: &flowcontrol.QueuingConfiguration{
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Queues: 128,
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HandSize: 6,
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QueueLengthLimit: 50,
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},
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},
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},
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})
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// workload-low priority-level
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SuggestedPriorityLevelConfigurationWorkloadLow = newPriorityLevelConfiguration(
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"workload-low",
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flowcontrol.PriorityLevelConfigurationSpec{
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Type: flowcontrol.PriorityLevelEnablementLimited,
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Limited: &flowcontrol.LimitedPriorityLevelConfiguration{
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AssuredConcurrencyShares: 20,
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LimitResponse: flowcontrol.LimitResponse{
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Type: flowcontrol.LimitResponseTypeQueue,
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Queuing: &flowcontrol.QueuingConfiguration{
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Queues: 128,
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HandSize: 6,
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QueueLengthLimit: 50,
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},
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},
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},
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})
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// global-default priority-level
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SuggestedPriorityLevelConfigurationGlobalDefault = newPriorityLevelConfiguration(
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"global-default",
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flowcontrol.PriorityLevelConfigurationSpec{
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Type: flowcontrol.PriorityLevelEnablementLimited,
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Limited: &flowcontrol.LimitedPriorityLevelConfiguration{
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AssuredConcurrencyShares: 100,
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LimitResponse: flowcontrol.LimitResponse{
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Type: flowcontrol.LimitResponseTypeQueue,
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Queuing: &flowcontrol.QueuingConfiguration{
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Queues: 128,
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HandSize: 6,
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QueueLengthLimit: 50,
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},
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},
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},
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})
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)
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// Suggested FlowSchema objects
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var (
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SuggestedFlowSchemaSystemNodes = newFlowSchema(
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"system-nodes", "system", 500,
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flowcontrol.FlowDistinguisherMethodByUserType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: groups(user.NodesGroup), // the nodes group
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ResourceRules: []flowcontrol.ResourcePolicyRule{resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true)},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll}),
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},
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},
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)
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SuggestedFlowSchemaSystemLeaderElection = newFlowSchema(
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"system-leader-election", "leader-election", 100,
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flowcontrol.FlowDistinguisherMethodByUserType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: append(
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users(user.KubeControllerManager, user.KubeScheduler),
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kubeSystemServiceAccount(flowcontrol.NameAll)...),
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ResourceRules: []flowcontrol.ResourcePolicyRule{
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resourceRule(
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[]string{"get", "create", "update"},
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[]string{corev1.GroupName},
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[]string{"endpoints", "configmaps"},
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[]string{"kube-system"},
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false),
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resourceRule(
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[]string{"get", "create", "update"},
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[]string{coordinationv1.GroupName},
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[]string{"leases"},
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[]string{flowcontrol.NamespaceEvery},
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false),
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},
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},
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)
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SuggestedFlowSchemaWorkloadLeaderElection = newFlowSchema(
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"workload-leader-election", "leader-election", 200,
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flowcontrol.FlowDistinguisherMethodByUserType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: kubeSystemServiceAccount(flowcontrol.NameAll),
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ResourceRules: []flowcontrol.ResourcePolicyRule{
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resourceRule(
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[]string{"get", "create", "update"},
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[]string{corev1.GroupName},
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[]string{"endpoints", "configmaps"},
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[]string{flowcontrol.NamespaceEvery},
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false),
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resourceRule(
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[]string{"get", "create", "update"},
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[]string{coordinationv1.GroupName},
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[]string{"leases"},
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[]string{flowcontrol.NamespaceEvery},
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false),
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},
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},
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)
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SuggestedFlowSchemaKubeControllerManager = newFlowSchema(
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"kube-controller-manager", "workload-high", 800,
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flowcontrol.FlowDistinguisherMethodByNamespaceType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: users(user.KubeControllerManager),
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ResourceRules: []flowcontrol.ResourcePolicyRule{resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true)},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll}),
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},
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},
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)
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SuggestedFlowSchemaKubeScheduler = newFlowSchema(
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"kube-scheduler", "workload-high", 800,
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flowcontrol.FlowDistinguisherMethodByNamespaceType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: users(user.KubeScheduler),
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ResourceRules: []flowcontrol.ResourcePolicyRule{resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true)},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll}),
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},
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},
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)
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SuggestedFlowSchemaKubeSystemServiceAccounts = newFlowSchema(
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"kube-system-service-accounts", "workload-high", 900,
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flowcontrol.FlowDistinguisherMethodByNamespaceType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: kubeSystemServiceAccount(flowcontrol.NameAll),
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ResourceRules: []flowcontrol.ResourcePolicyRule{resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true)},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll}),
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},
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},
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)
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SuggestedFlowSchemaServiceAccounts = newFlowSchema(
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"service-accounts", "workload-low", 9000,
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flowcontrol.FlowDistinguisherMethodByUserType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: groups(serviceaccount.AllServiceAccountsGroup),
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ResourceRules: []flowcontrol.ResourcePolicyRule{resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true)},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll}),
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},
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},
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)
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SuggestedFlowSchemaGlobalDefault = newFlowSchema(
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"global-default", "global-default", 9900,
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flowcontrol.FlowDistinguisherMethodByUserType,
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flowcontrol.PolicyRulesWithSubjects{
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Subjects: groups(user.AllUnauthenticated, user.AllAuthenticated),
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ResourceRules: []flowcontrol.ResourcePolicyRule{resourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.APIGroupAll},
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[]string{flowcontrol.ResourceAll},
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[]string{flowcontrol.NamespaceEvery},
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true)},
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NonResourceRules: []flowcontrol.NonResourcePolicyRule{
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nonResourceRule(
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[]string{flowcontrol.VerbAll},
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[]string{flowcontrol.NonResourceAll}),
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},
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},
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)
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)
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func newPriorityLevelConfiguration(name string, spec flowcontrol.PriorityLevelConfigurationSpec) *flowcontrol.PriorityLevelConfiguration {
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return &flowcontrol.PriorityLevelConfiguration{
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ObjectMeta: metav1.ObjectMeta{Name: name},
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Spec: spec}
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}
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func newFlowSchema(name, plName string, matchingPrecedence int32, dmType flowcontrol.FlowDistinguisherMethodType, rules ...flowcontrol.PolicyRulesWithSubjects) *flowcontrol.FlowSchema {
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var dm *flowcontrol.FlowDistinguisherMethod
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if dmType != "" {
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dm = &flowcontrol.FlowDistinguisherMethod{Type: dmType}
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}
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return &flowcontrol.FlowSchema{
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ObjectMeta: metav1.ObjectMeta{Name: name},
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Spec: flowcontrol.FlowSchemaSpec{
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PriorityLevelConfiguration: flowcontrol.PriorityLevelConfigurationReference{
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Name: plName,
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},
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MatchingPrecedence: matchingPrecedence,
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DistinguisherMethod: dm,
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Rules: rules},
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}
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}
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func groups(names ...string) []flowcontrol.Subject {
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ans := make([]flowcontrol.Subject, len(names))
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for idx, name := range names {
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ans[idx] = flowcontrol.Subject{
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Kind: flowcontrol.SubjectKindGroup,
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Group: &flowcontrol.GroupSubject{
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Name: name,
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},
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}
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}
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return ans
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}
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func users(names ...string) []flowcontrol.Subject {
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ans := make([]flowcontrol.Subject, len(names))
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for idx, name := range names {
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ans[idx] = flowcontrol.Subject{
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Kind: flowcontrol.SubjectKindUser,
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User: &flowcontrol.UserSubject{
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Name: name,
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},
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}
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}
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return ans
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}
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func kubeSystemServiceAccount(names ...string) []flowcontrol.Subject {
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subjects := []flowcontrol.Subject{}
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for _, name := range names {
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subjects = append(subjects, flowcontrol.Subject{
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Kind: flowcontrol.SubjectKindServiceAccount,
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ServiceAccount: &flowcontrol.ServiceAccountSubject{
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Name: name,
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Namespace: metav1.NamespaceSystem,
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},
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})
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}
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return subjects
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}
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func resourceRule(verbs []string, groups []string, resources []string, namespaces []string, clusterScoped bool) flowcontrol.ResourcePolicyRule {
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return flowcontrol.ResourcePolicyRule{
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Verbs: verbs,
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APIGroups: groups,
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Resources: resources,
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Namespaces: namespaces,
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ClusterScope: clusterScoped,
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}
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}
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func nonResourceRule(verbs []string, nonResourceURLs []string) flowcontrol.NonResourcePolicyRule {
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return flowcontrol.NonResourcePolicyRule{Verbs: verbs, NonResourceURLs: nonResourceURLs}
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}
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