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			264 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
| /*
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| Copyright 2014 The Kubernetes Authors.
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| 
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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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| 
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|     http://www.apache.org/licenses/LICENSE-2.0
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| 
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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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| 
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| package defaults
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| 
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| import (
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| 	"k8s.io/apimachinery/pkg/util/sets"
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| 	utilfeature "k8s.io/apiserver/pkg/util/feature"
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| 
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| 	"k8s.io/kubernetes/pkg/features"
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| 	"k8s.io/kubernetes/plugin/pkg/scheduler/algorithm"
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| 	"k8s.io/kubernetes/plugin/pkg/scheduler/algorithm/predicates"
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| 	"k8s.io/kubernetes/plugin/pkg/scheduler/algorithm/priorities"
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| 	"k8s.io/kubernetes/plugin/pkg/scheduler/core"
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| 	"k8s.io/kubernetes/plugin/pkg/scheduler/factory"
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| 
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| 	"github.com/golang/glog"
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| )
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| 
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| const (
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| 	// ClusterAutoscalerProvider defines the default autoscaler provider
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| 	ClusterAutoscalerProvider = "ClusterAutoscalerProvider"
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| )
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| 
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| func init() {
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| 	// Register functions that extract metadata used by predicates and priorities computations.
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| 	factory.RegisterPredicateMetadataProducerFactory(
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| 		func(args factory.PluginFactoryArgs) algorithm.PredicateMetadataProducer {
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| 			return predicates.NewPredicateMetadataFactory(args.PodLister)
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| 		})
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| 	factory.RegisterPriorityMetadataProducerFactory(
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| 		func(args factory.PluginFactoryArgs) algorithm.MetadataProducer {
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| 			return priorities.NewPriorityMetadataFactory(args.ServiceLister, args.ControllerLister, args.ReplicaSetLister, args.StatefulSetLister)
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| 		})
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| 
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| 	registerAlgorithmProvider(defaultPredicates(), defaultPriorities())
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| 
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| 	// IMPORTANT NOTES for predicate developers:
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| 	// We are using cached predicate result for pods belonging to the same equivalence class.
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| 	// So when implementing a new predicate, you are expected to check whether the result
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| 	// of your predicate function can be affected by related API object change (ADD/DELETE/UPDATE).
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| 	// If yes, you are expected to invalidate the cached predicate result for related API object change.
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| 	// For example:
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| 	// https://github.com/kubernetes/kubernetes/blob/36a218e/plugin/pkg/scheduler/factory/factory.go#L422
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| 
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| 	// Registers predicates and priorities that are not enabled by default, but user can pick when creating his
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| 	// own set of priorities/predicates.
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| 
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| 	// PodFitsPorts has been replaced by PodFitsHostPorts for better user understanding.
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| 	// For backwards compatibility with 1.0, PodFitsPorts is registered as well.
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| 	factory.RegisterFitPredicate("PodFitsPorts", predicates.PodFitsHostPorts)
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| 	// Fit is defined based on the absence of port conflicts.
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| 	// This predicate is actually a default predicate, because it is invoked from
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| 	// predicates.GeneralPredicates()
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| 	factory.RegisterFitPredicate(predicates.PodFitsHostPortsPred, predicates.PodFitsHostPorts)
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| 	// Fit is determined by resource availability.
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| 	// This predicate is actually a default predicate, because it is invoked from
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| 	// predicates.GeneralPredicates()
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| 	factory.RegisterFitPredicate(predicates.PodFitsResourcesPred, predicates.PodFitsResources)
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| 	// Fit is determined by the presence of the Host parameter and a string match
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| 	// This predicate is actually a default predicate, because it is invoked from
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| 	// predicates.GeneralPredicates()
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| 	factory.RegisterFitPredicate(predicates.HostNamePred, predicates.PodFitsHost)
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| 	// Fit is determined by node selector query.
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| 	factory.RegisterFitPredicate(predicates.MatchNodeSelectorPred, predicates.PodMatchNodeSelector)
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| 
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| 	// Use equivalence class to speed up heavy predicates phase.
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| 	factory.RegisterGetEquivalencePodFunction(
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| 		func(args factory.PluginFactoryArgs) algorithm.GetEquivalencePodFunc {
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| 			return predicates.NewEquivalencePodGenerator(args.PVCInfo)
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| 		},
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| 	)
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| 
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| 	// ServiceSpreadingPriority is a priority config factory that spreads pods by minimizing
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| 	// the number of pods (belonging to the same service) on the same node.
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| 	// Register the factory so that it's available, but do not include it as part of the default priorities
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| 	// Largely replaced by "SelectorSpreadPriority", but registered for backward compatibility with 1.0
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| 	factory.RegisterPriorityConfigFactory(
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| 		"ServiceSpreadingPriority",
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| 		factory.PriorityConfigFactory{
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| 			MapReduceFunction: func(args factory.PluginFactoryArgs) (algorithm.PriorityMapFunction, algorithm.PriorityReduceFunction) {
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| 				return priorities.NewSelectorSpreadPriority(args.ServiceLister, algorithm.EmptyControllerLister{}, algorithm.EmptyReplicaSetLister{}, algorithm.EmptyStatefulSetLister{})
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| 			},
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| 			Weight: 1,
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| 		},
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| 	)
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| 	// EqualPriority is a prioritizer function that gives an equal weight of one to all nodes
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| 	// Register the priority function so that its available
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| 	// but do not include it as part of the default priorities
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| 	factory.RegisterPriorityFunction2("EqualPriority", core.EqualPriorityMap, nil, 1)
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| 	// ImageLocalityPriority prioritizes nodes based on locality of images requested by a pod. Nodes with larger size
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| 	// of already-installed packages required by the pod will be preferred over nodes with no already-installed
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| 	// packages required by the pod or a small total size of already-installed packages required by the pod.
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| 	factory.RegisterPriorityFunction2("ImageLocalityPriority", priorities.ImageLocalityPriorityMap, nil, 1)
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| 	// Optional, cluster-autoscaler friendly priority function - give used nodes higher priority.
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| 	factory.RegisterPriorityFunction2("MostRequestedPriority", priorities.MostRequestedPriorityMap, nil, 1)
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| 	// Prioritizes nodes that satisfy pod's resource limits
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| 	if utilfeature.DefaultFeatureGate.Enabled(features.ResourceLimitsPriorityFunction) {
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| 		factory.RegisterPriorityFunction2("ResourceLimitsPriority", priorities.ResourceLimitsPriorityMap, nil, 1)
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| 	}
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| }
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| 
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| func defaultPredicates() sets.String {
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| 	return sets.NewString(
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| 		// Fit is determined by volume zone requirements.
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| 		factory.RegisterFitPredicateFactory(
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| 			predicates.NoVolumeZoneConflictPred,
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| 			func(args factory.PluginFactoryArgs) algorithm.FitPredicate {
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| 				return predicates.NewVolumeZonePredicate(args.PVInfo, args.PVCInfo, args.StorageClassInfo)
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| 			},
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| 		),
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| 		// Fit is determined by whether or not there would be too many AWS EBS volumes attached to the node
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| 		factory.RegisterFitPredicateFactory(
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| 			predicates.MaxEBSVolumeCountPred,
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| 			func(args factory.PluginFactoryArgs) algorithm.FitPredicate {
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| 				return predicates.NewMaxPDVolumeCountPredicate(predicates.EBSVolumeFilterType, args.PVInfo, args.PVCInfo)
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| 			},
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| 		),
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| 		// Fit is determined by whether or not there would be too many GCE PD volumes attached to the node
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| 		factory.RegisterFitPredicateFactory(
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| 			predicates.MaxGCEPDVolumeCountPred,
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| 			func(args factory.PluginFactoryArgs) algorithm.FitPredicate {
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| 				return predicates.NewMaxPDVolumeCountPredicate(predicates.GCEPDVolumeFilterType, args.PVInfo, args.PVCInfo)
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| 			},
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| 		),
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| 		// Fit is determined by whether or not there would be too many Azure Disk volumes attached to the node
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| 		factory.RegisterFitPredicateFactory(
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| 			predicates.MaxAzureDiskVolumeCountPred,
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| 			func(args factory.PluginFactoryArgs) algorithm.FitPredicate {
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| 				return predicates.NewMaxPDVolumeCountPredicate(predicates.AzureDiskVolumeFilterType, args.PVInfo, args.PVCInfo)
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| 			},
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| 		),
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| 		// Fit is determined by inter-pod affinity.
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| 		factory.RegisterFitPredicateFactory(
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| 			predicates.MatchInterPodAffinityPred,
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| 			func(args factory.PluginFactoryArgs) algorithm.FitPredicate {
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| 				return predicates.NewPodAffinityPredicate(args.NodeInfo, args.PodLister)
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| 			},
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| 		),
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| 
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| 		// Fit is determined by non-conflicting disk volumes.
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| 		factory.RegisterFitPredicate(predicates.NoDiskConflictPred, predicates.NoDiskConflict),
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| 
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| 		// GeneralPredicates are the predicates that are enforced by all Kubernetes components
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| 		// (e.g. kubelet and all schedulers)
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| 		factory.RegisterFitPredicate(predicates.GeneralPred, predicates.GeneralPredicates),
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| 
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| 		// Fit is determined by node memory pressure condition.
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| 		factory.RegisterFitPredicate(predicates.CheckNodeMemoryPressurePred, predicates.CheckNodeMemoryPressurePredicate),
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| 
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| 		// Fit is determined by node disk pressure condition.
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| 		factory.RegisterFitPredicate(predicates.CheckNodeDiskPressurePred, predicates.CheckNodeDiskPressurePredicate),
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| 
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| 		// Fit is determined by node conditions: not ready, network unavailable or out of disk.
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| 		factory.RegisterMandatoryFitPredicate(predicates.CheckNodeConditionPred, predicates.CheckNodeConditionPredicate),
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| 
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| 		// Fit is determined based on whether a pod can tolerate all of the node's taints
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| 		factory.RegisterFitPredicate(predicates.PodToleratesNodeTaintsPred, predicates.PodToleratesNodeTaints),
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| 
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| 		// Fit is determined by volume topology requirements.
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| 		factory.RegisterFitPredicateFactory(
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| 			predicates.CheckVolumeBindingPred,
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| 			func(args factory.PluginFactoryArgs) algorithm.FitPredicate {
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| 				return predicates.NewVolumeBindingPredicate(args.VolumeBinder)
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| 			},
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| 		),
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| 	)
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| }
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| 
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| // ApplyFeatureGates applies algorithm by feature gates.
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| func ApplyFeatureGates() {
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| 
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| 	if utilfeature.DefaultFeatureGate.Enabled(features.TaintNodesByCondition) {
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| 		// Remove "CheckNodeCondition" predicate
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| 		factory.RemoveFitPredicate(predicates.CheckNodeConditionPred)
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| 		// Remove Key "CheckNodeCondition" From All Algorithm Provider
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| 		// The key will be removed from all providers which in algorithmProviderMap[]
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| 		// if you just want remove specific provider, call func RemovePredicateKeyFromAlgoProvider()
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| 		factory.RemovePredicateKeyFromAlgorithmProviderMap(predicates.CheckNodeConditionPred)
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| 
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| 		// Fit is determined based on whether a pod can tolerate all of the node's taints
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| 		factory.RegisterMandatoryFitPredicate(predicates.PodToleratesNodeTaintsPred, predicates.PodToleratesNodeTaints)
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| 		// Insert Key "PodToleratesNodeTaints" To All Algorithm Provider
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| 		// The key will insert to all providers which in algorithmProviderMap[]
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| 		// if you just want insert to specific provider, call func InsertPredicateKeyToAlgoProvider()
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| 		factory.InsertPredicateKeyToAlgorithmProviderMap(predicates.PodToleratesNodeTaintsPred)
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| 
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| 		glog.Warningf("TaintNodesByCondition is enabled, PodToleratesNodeTaints predicate is mandatory")
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| 	}
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| }
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| 
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| func registerAlgorithmProvider(predSet, priSet sets.String) {
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| 	// Registers algorithm providers. By default we use 'DefaultProvider', but user can specify one to be used
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| 	// by specifying flag.
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| 	factory.RegisterAlgorithmProvider(factory.DefaultProvider, predSet, priSet)
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| 	// Cluster autoscaler friendly scheduling algorithm.
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| 	factory.RegisterAlgorithmProvider(ClusterAutoscalerProvider, predSet,
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| 		copyAndReplace(priSet, "LeastRequestedPriority", "MostRequestedPriority"))
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| }
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| 
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| func defaultPriorities() sets.String {
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| 	return sets.NewString(
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| 		// spreads pods by minimizing the number of pods (belonging to the same service or replication controller) on the same node.
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| 		factory.RegisterPriorityConfigFactory(
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| 			"SelectorSpreadPriority",
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| 			factory.PriorityConfigFactory{
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| 				MapReduceFunction: func(args factory.PluginFactoryArgs) (algorithm.PriorityMapFunction, algorithm.PriorityReduceFunction) {
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| 					return priorities.NewSelectorSpreadPriority(args.ServiceLister, args.ControllerLister, args.ReplicaSetLister, args.StatefulSetLister)
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| 				},
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| 				Weight: 1,
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| 			},
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| 		),
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| 		// pods should be placed in the same topological domain (e.g. same node, same rack, same zone, same power domain, etc.)
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| 		// as some other pods, or, conversely, should not be placed in the same topological domain as some other pods.
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| 		factory.RegisterPriorityConfigFactory(
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| 			"InterPodAffinityPriority",
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| 			factory.PriorityConfigFactory{
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| 				Function: func(args factory.PluginFactoryArgs) algorithm.PriorityFunction {
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| 					return priorities.NewInterPodAffinityPriority(args.NodeInfo, args.NodeLister, args.PodLister, args.HardPodAffinitySymmetricWeight)
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| 				},
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| 				Weight: 1,
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| 			},
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| 		),
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| 
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| 		// Prioritize nodes by least requested utilization.
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| 		factory.RegisterPriorityFunction2("LeastRequestedPriority", priorities.LeastRequestedPriorityMap, nil, 1),
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| 
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| 		// Prioritizes nodes to help achieve balanced resource usage
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| 		factory.RegisterPriorityFunction2("BalancedResourceAllocation", priorities.BalancedResourceAllocationMap, nil, 1),
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| 
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| 		// Set this weight large enough to override all other priority functions.
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| 		// TODO: Figure out a better way to do this, maybe at same time as fixing #24720.
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| 		factory.RegisterPriorityFunction2("NodePreferAvoidPodsPriority", priorities.CalculateNodePreferAvoidPodsPriorityMap, nil, 10000),
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| 
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| 		// Prioritizes nodes that have labels matching NodeAffinity
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| 		factory.RegisterPriorityFunction2("NodeAffinityPriority", priorities.CalculateNodeAffinityPriorityMap, priorities.CalculateNodeAffinityPriorityReduce, 1),
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| 
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| 		// Prioritizes nodes that marked with taint which pod can tolerate.
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| 		factory.RegisterPriorityFunction2("TaintTolerationPriority", priorities.ComputeTaintTolerationPriorityMap, priorities.ComputeTaintTolerationPriorityReduce, 1),
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| 	)
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| }
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| 
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| func copyAndReplace(set sets.String, replaceWhat, replaceWith string) sets.String {
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| 	result := sets.NewString(set.List()...)
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| 	if result.Has(replaceWhat) {
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| 		result.Delete(replaceWhat)
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| 		result.Insert(replaceWith)
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| 	}
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| 	return result
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| }
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