// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
#[allow(missing_docs)] // documentation missing in model
#[non_exhaustive]
#[derive(::std::clone::Clone, ::std::cmp::PartialEq, ::std::fmt::Debug)]
pub struct PutScalingPolicyInput {
/// <p>The name of the scaling policy.</p>
/// <p>You cannot change the name of a scaling policy, but you can delete the original scaling policy and create a new scaling policy with the same settings and a different name.</p>
pub policy_name: ::std::option::Option<::std::string::String>,
/// <p>The namespace of the Amazon Web Services service that provides the resource. For a resource provided by your own application or service, use <code>custom-resource</code> instead.</p>
pub service_namespace: ::std::option::Option<crate::types::ServiceNamespace>,
/// <p>The identifier of the resource associated with the scaling policy. This string consists of the resource type and unique identifier.</p>
/// <ul>
/// <li>
/// <p>ECS service - The resource type is <code>service</code> and the unique identifier is the cluster name and service name. Example: <code>service/my-cluster/my-service</code>.</p></li>
/// <li>
/// <p>Spot Fleet - The resource type is <code>spot-fleet-request</code> and the unique identifier is the Spot Fleet request ID. Example: <code>spot-fleet-request/sfr-73fbd2ce-aa30-494c-8788-1cee4EXAMPLE</code>.</p></li>
/// <li>
/// <p>EMR cluster - The resource type is <code>instancegroup</code> and the unique identifier is the cluster ID and instance group ID. Example: <code>instancegroup/j-2EEZNYKUA1NTV/ig-1791Y4E1L8YI0</code>.</p></li>
/// <li>
/// <p>AppStream 2.0 fleet - The resource type is <code>fleet</code> and the unique identifier is the fleet name. Example: <code>fleet/sample-fleet</code>.</p></li>
/// <li>
/// <p>DynamoDB table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>table/my-table</code>.</p></li>
/// <li>
/// <p>DynamoDB global secondary index - The resource type is <code>index</code> and the unique identifier is the index name. Example: <code>table/my-table/index/my-table-index</code>.</p></li>
/// <li>
/// <p>Aurora DB cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:my-db-cluster</code>.</p></li>
/// <li>
/// <p>SageMaker endpoint variant - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>Custom resources are not supported with a resource type. This parameter must specify the <code>OutputValue</code> from the CloudFormation template stack used to access the resources. The unique identifier is defined by the service provider. More information is available in our <a href="https://github.com/aws/aws-auto-scaling-custom-resource">GitHub repository</a>.</p></li>
/// <li>
/// <p>Amazon Comprehend document classification endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:document-classifier-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Amazon Comprehend entity recognizer endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:entity-recognizer-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Lambda provisioned concurrency - The resource type is <code>function</code> and the unique identifier is the function name with a function version or alias name suffix that is not <code>$LATEST</code>. Example: <code>function:my-function:prod</code> or <code>function:my-function:1</code>.</p></li>
/// <li>
/// <p>Amazon Keyspaces table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>keyspace/mykeyspace/table/mytable</code>.</p></li>
/// <li>
/// <p>Amazon MSK cluster - The resource type and unique identifier are specified using the cluster ARN. Example: <code>arn:aws:kafka:us-east-1:123456789012:cluster/demo-cluster-1/6357e0b2-0e6a-4b86-a0b4-70df934c2e31-5</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache replication group - The resource type is <code>replication-group</code> and the unique identifier is the replication group name. Example: <code>replication-group/mycluster</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache cache cluster - The resource type is <code>cache-cluster</code> and the unique identifier is the cache cluster name. Example: <code>cache-cluster/mycluster</code>.</p></li>
/// <li>
/// <p>Neptune cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:mycluster</code>.</p></li>
/// <li>
/// <p>SageMaker serverless endpoint - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>SageMaker inference component - The resource type is <code>inference-component</code> and the unique identifier is the resource ID. Example: <code>inference-component/my-inference-component</code>.</p></li>
/// <li>
/// <p>Pool of WorkSpaces - The resource type is <code>workspacespool</code> and the unique identifier is the pool ID. Example: <code>workspacespool/wspool-123456</code>.</p></li>
/// </ul>
pub resource_id: ::std::option::Option<::std::string::String>,
/// <p>The scalable dimension. This string consists of the service namespace, resource type, and scaling property.</p>
/// <ul>
/// <li>
/// <p><code>ecs:service:DesiredCount</code> - The task count of an ECS service.</p></li>
/// <li>
/// <p><code>elasticmapreduce:instancegroup:InstanceCount</code> - The instance count of an EMR Instance Group.</p></li>
/// <li>
/// <p><code>ec2:spot-fleet-request:TargetCapacity</code> - The target capacity of a Spot Fleet.</p></li>
/// <li>
/// <p><code>appstream:fleet:DesiredCapacity</code> - The capacity of an AppStream 2.0 fleet.</p></li>
/// <li>
/// <p><code>dynamodb:table:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:table:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:index:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>dynamodb:index:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>rds:cluster:ReadReplicaCount</code> - The count of Aurora Replicas in an Aurora DB cluster. Available for Aurora MySQL-compatible edition and Aurora PostgreSQL-compatible edition.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredInstanceCount</code> - The number of EC2 instances for a SageMaker model endpoint variant.</p></li>
/// <li>
/// <p><code>custom-resource:ResourceType:Property</code> - The scalable dimension for a custom resource provided by your own application or service.</p></li>
/// <li>
/// <p><code>comprehend:document-classifier-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend document classification endpoint.</p></li>
/// <li>
/// <p><code>comprehend:entity-recognizer-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend entity recognizer endpoint.</p></li>
/// <li>
/// <p><code>lambda:function:ProvisionedConcurrency</code> - The provisioned concurrency for a Lambda function.</p></li>
/// <li>
/// <p><code>cassandra:table:ReadCapacityUnits</code> - The provisioned read capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>cassandra:table:WriteCapacityUnits</code> - The provisioned write capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>kafka:broker-storage:VolumeSize</code> - The provisioned volume size (in GiB) for brokers in an Amazon MSK cluster.</p></li>
/// <li>
/// <p><code>elasticache:cache-cluster:Nodes</code> - The number of nodes for an Amazon ElastiCache cache cluster.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:NodeGroups</code> - The number of node groups for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:Replicas</code> - The number of replicas per node group for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>neptune:cluster:ReadReplicaCount</code> - The count of read replicas in an Amazon Neptune DB cluster.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredProvisionedConcurrency</code> - The provisioned concurrency for a SageMaker serverless endpoint.</p></li>
/// <li>
/// <p><code>sagemaker:inference-component:DesiredCopyCount</code> - The number of copies across an endpoint for a SageMaker inference component.</p></li>
/// <li>
/// <p><code>workspaces:workspacespool:DesiredUserSessions</code> - The number of user sessions for the WorkSpaces in the pool.</p></li>
/// </ul>
pub scalable_dimension: ::std::option::Option<crate::types::ScalableDimension>,
/// <p>The scaling policy type. This parameter is required if you are creating a scaling policy.</p>
/// <p>The following policy types are supported:</p>
/// <p><code>TargetTrackingScaling</code>—Not supported for Amazon EMR.</p>
/// <p><code>StepScaling</code>—Not supported for DynamoDB, Amazon Comprehend, Lambda, Amazon Keyspaces, Amazon MSK, Amazon ElastiCache, or Neptune.</p>
/// <p><code>PredictiveScaling</code>—Only supported for Amazon ECS.</p>
/// <p>For more information, see <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-target-tracking.html">Target tracking scaling policies</a>, <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-step-scaling-policies.html">Step scaling policies</a>, and <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/aas-create-predictive-scaling-policy.html">Predictive scaling policies</a> in the <i>Application Auto Scaling User Guide</i>.</p>
pub policy_type: ::std::option::Option<crate::types::PolicyType>,
/// <p>A step scaling policy.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>StepScaling</code>.</p>
pub step_scaling_policy_configuration: ::std::option::Option<crate::types::StepScalingPolicyConfiguration>,
/// <p>A target tracking scaling policy. Includes support for predefined or customized metrics.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>TargetTrackingScaling</code>.</p>
pub target_tracking_scaling_policy_configuration: ::std::option::Option<crate::types::TargetTrackingScalingPolicyConfiguration>,
/// <p>The configuration of the predictive scaling policy.</p>
pub predictive_scaling_policy_configuration: ::std::option::Option<crate::types::PredictiveScalingPolicyConfiguration>,
}
impl PutScalingPolicyInput {
/// <p>The name of the scaling policy.</p>
/// <p>You cannot change the name of a scaling policy, but you can delete the original scaling policy and create a new scaling policy with the same settings and a different name.</p>
pub fn policy_name(&self) -> ::std::option::Option<&str> {
self.policy_name.as_deref()
}
/// <p>The namespace of the Amazon Web Services service that provides the resource. For a resource provided by your own application or service, use <code>custom-resource</code> instead.</p>
pub fn service_namespace(&self) -> ::std::option::Option<&crate::types::ServiceNamespace> {
self.service_namespace.as_ref()
}
/// <p>The identifier of the resource associated with the scaling policy. This string consists of the resource type and unique identifier.</p>
/// <ul>
/// <li>
/// <p>ECS service - The resource type is <code>service</code> and the unique identifier is the cluster name and service name. Example: <code>service/my-cluster/my-service</code>.</p></li>
/// <li>
/// <p>Spot Fleet - The resource type is <code>spot-fleet-request</code> and the unique identifier is the Spot Fleet request ID. Example: <code>spot-fleet-request/sfr-73fbd2ce-aa30-494c-8788-1cee4EXAMPLE</code>.</p></li>
/// <li>
/// <p>EMR cluster - The resource type is <code>instancegroup</code> and the unique identifier is the cluster ID and instance group ID. Example: <code>instancegroup/j-2EEZNYKUA1NTV/ig-1791Y4E1L8YI0</code>.</p></li>
/// <li>
/// <p>AppStream 2.0 fleet - The resource type is <code>fleet</code> and the unique identifier is the fleet name. Example: <code>fleet/sample-fleet</code>.</p></li>
/// <li>
/// <p>DynamoDB table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>table/my-table</code>.</p></li>
/// <li>
/// <p>DynamoDB global secondary index - The resource type is <code>index</code> and the unique identifier is the index name. Example: <code>table/my-table/index/my-table-index</code>.</p></li>
/// <li>
/// <p>Aurora DB cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:my-db-cluster</code>.</p></li>
/// <li>
/// <p>SageMaker endpoint variant - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>Custom resources are not supported with a resource type. This parameter must specify the <code>OutputValue</code> from the CloudFormation template stack used to access the resources. The unique identifier is defined by the service provider. More information is available in our <a href="https://github.com/aws/aws-auto-scaling-custom-resource">GitHub repository</a>.</p></li>
/// <li>
/// <p>Amazon Comprehend document classification endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:document-classifier-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Amazon Comprehend entity recognizer endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:entity-recognizer-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Lambda provisioned concurrency - The resource type is <code>function</code> and the unique identifier is the function name with a function version or alias name suffix that is not <code>$LATEST</code>. Example: <code>function:my-function:prod</code> or <code>function:my-function:1</code>.</p></li>
/// <li>
/// <p>Amazon Keyspaces table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>keyspace/mykeyspace/table/mytable</code>.</p></li>
/// <li>
/// <p>Amazon MSK cluster - The resource type and unique identifier are specified using the cluster ARN. Example: <code>arn:aws:kafka:us-east-1:123456789012:cluster/demo-cluster-1/6357e0b2-0e6a-4b86-a0b4-70df934c2e31-5</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache replication group - The resource type is <code>replication-group</code> and the unique identifier is the replication group name. Example: <code>replication-group/mycluster</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache cache cluster - The resource type is <code>cache-cluster</code> and the unique identifier is the cache cluster name. Example: <code>cache-cluster/mycluster</code>.</p></li>
/// <li>
/// <p>Neptune cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:mycluster</code>.</p></li>
/// <li>
/// <p>SageMaker serverless endpoint - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>SageMaker inference component - The resource type is <code>inference-component</code> and the unique identifier is the resource ID. Example: <code>inference-component/my-inference-component</code>.</p></li>
/// <li>
/// <p>Pool of WorkSpaces - The resource type is <code>workspacespool</code> and the unique identifier is the pool ID. Example: <code>workspacespool/wspool-123456</code>.</p></li>
/// </ul>
pub fn resource_id(&self) -> ::std::option::Option<&str> {
self.resource_id.as_deref()
}
/// <p>The scalable dimension. This string consists of the service namespace, resource type, and scaling property.</p>
/// <ul>
/// <li>
/// <p><code>ecs:service:DesiredCount</code> - The task count of an ECS service.</p></li>
/// <li>
/// <p><code>elasticmapreduce:instancegroup:InstanceCount</code> - The instance count of an EMR Instance Group.</p></li>
/// <li>
/// <p><code>ec2:spot-fleet-request:TargetCapacity</code> - The target capacity of a Spot Fleet.</p></li>
/// <li>
/// <p><code>appstream:fleet:DesiredCapacity</code> - The capacity of an AppStream 2.0 fleet.</p></li>
/// <li>
/// <p><code>dynamodb:table:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:table:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:index:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>dynamodb:index:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>rds:cluster:ReadReplicaCount</code> - The count of Aurora Replicas in an Aurora DB cluster. Available for Aurora MySQL-compatible edition and Aurora PostgreSQL-compatible edition.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredInstanceCount</code> - The number of EC2 instances for a SageMaker model endpoint variant.</p></li>
/// <li>
/// <p><code>custom-resource:ResourceType:Property</code> - The scalable dimension for a custom resource provided by your own application or service.</p></li>
/// <li>
/// <p><code>comprehend:document-classifier-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend document classification endpoint.</p></li>
/// <li>
/// <p><code>comprehend:entity-recognizer-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend entity recognizer endpoint.</p></li>
/// <li>
/// <p><code>lambda:function:ProvisionedConcurrency</code> - The provisioned concurrency for a Lambda function.</p></li>
/// <li>
/// <p><code>cassandra:table:ReadCapacityUnits</code> - The provisioned read capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>cassandra:table:WriteCapacityUnits</code> - The provisioned write capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>kafka:broker-storage:VolumeSize</code> - The provisioned volume size (in GiB) for brokers in an Amazon MSK cluster.</p></li>
/// <li>
/// <p><code>elasticache:cache-cluster:Nodes</code> - The number of nodes for an Amazon ElastiCache cache cluster.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:NodeGroups</code> - The number of node groups for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:Replicas</code> - The number of replicas per node group for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>neptune:cluster:ReadReplicaCount</code> - The count of read replicas in an Amazon Neptune DB cluster.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredProvisionedConcurrency</code> - The provisioned concurrency for a SageMaker serverless endpoint.</p></li>
/// <li>
/// <p><code>sagemaker:inference-component:DesiredCopyCount</code> - The number of copies across an endpoint for a SageMaker inference component.</p></li>
/// <li>
/// <p><code>workspaces:workspacespool:DesiredUserSessions</code> - The number of user sessions for the WorkSpaces in the pool.</p></li>
/// </ul>
pub fn scalable_dimension(&self) -> ::std::option::Option<&crate::types::ScalableDimension> {
self.scalable_dimension.as_ref()
}
/// <p>The scaling policy type. This parameter is required if you are creating a scaling policy.</p>
/// <p>The following policy types are supported:</p>
/// <p><code>TargetTrackingScaling</code>—Not supported for Amazon EMR.</p>
/// <p><code>StepScaling</code>—Not supported for DynamoDB, Amazon Comprehend, Lambda, Amazon Keyspaces, Amazon MSK, Amazon ElastiCache, or Neptune.</p>
/// <p><code>PredictiveScaling</code>—Only supported for Amazon ECS.</p>
/// <p>For more information, see <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-target-tracking.html">Target tracking scaling policies</a>, <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-step-scaling-policies.html">Step scaling policies</a>, and <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/aas-create-predictive-scaling-policy.html">Predictive scaling policies</a> in the <i>Application Auto Scaling User Guide</i>.</p>
pub fn policy_type(&self) -> ::std::option::Option<&crate::types::PolicyType> {
self.policy_type.as_ref()
}
/// <p>A step scaling policy.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>StepScaling</code>.</p>
pub fn step_scaling_policy_configuration(&self) -> ::std::option::Option<&crate::types::StepScalingPolicyConfiguration> {
self.step_scaling_policy_configuration.as_ref()
}
/// <p>A target tracking scaling policy. Includes support for predefined or customized metrics.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>TargetTrackingScaling</code>.</p>
pub fn target_tracking_scaling_policy_configuration(&self) -> ::std::option::Option<&crate::types::TargetTrackingScalingPolicyConfiguration> {
self.target_tracking_scaling_policy_configuration.as_ref()
}
/// <p>The configuration of the predictive scaling policy.</p>
pub fn predictive_scaling_policy_configuration(&self) -> ::std::option::Option<&crate::types::PredictiveScalingPolicyConfiguration> {
self.predictive_scaling_policy_configuration.as_ref()
}
}
impl PutScalingPolicyInput {
/// Creates a new builder-style object to manufacture [`PutScalingPolicyInput`](crate::operation::put_scaling_policy::PutScalingPolicyInput).
pub fn builder() -> crate::operation::put_scaling_policy::builders::PutScalingPolicyInputBuilder {
crate::operation::put_scaling_policy::builders::PutScalingPolicyInputBuilder::default()
}
}
/// A builder for [`PutScalingPolicyInput`](crate::operation::put_scaling_policy::PutScalingPolicyInput).
#[derive(::std::clone::Clone, ::std::cmp::PartialEq, ::std::default::Default, ::std::fmt::Debug)]
#[non_exhaustive]
pub struct PutScalingPolicyInputBuilder {
pub(crate) policy_name: ::std::option::Option<::std::string::String>,
pub(crate) service_namespace: ::std::option::Option<crate::types::ServiceNamespace>,
pub(crate) resource_id: ::std::option::Option<::std::string::String>,
pub(crate) scalable_dimension: ::std::option::Option<crate::types::ScalableDimension>,
pub(crate) policy_type: ::std::option::Option<crate::types::PolicyType>,
pub(crate) step_scaling_policy_configuration: ::std::option::Option<crate::types::StepScalingPolicyConfiguration>,
pub(crate) target_tracking_scaling_policy_configuration: ::std::option::Option<crate::types::TargetTrackingScalingPolicyConfiguration>,
pub(crate) predictive_scaling_policy_configuration: ::std::option::Option<crate::types::PredictiveScalingPolicyConfiguration>,
}
impl PutScalingPolicyInputBuilder {
/// <p>The name of the scaling policy.</p>
/// <p>You cannot change the name of a scaling policy, but you can delete the original scaling policy and create a new scaling policy with the same settings and a different name.</p>
/// This field is required.
pub fn policy_name(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
self.policy_name = ::std::option::Option::Some(input.into());
self
}
/// <p>The name of the scaling policy.</p>
/// <p>You cannot change the name of a scaling policy, but you can delete the original scaling policy and create a new scaling policy with the same settings and a different name.</p>
pub fn set_policy_name(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
self.policy_name = input;
self
}
/// <p>The name of the scaling policy.</p>
/// <p>You cannot change the name of a scaling policy, but you can delete the original scaling policy and create a new scaling policy with the same settings and a different name.</p>
pub fn get_policy_name(&self) -> &::std::option::Option<::std::string::String> {
&self.policy_name
}
/// <p>The namespace of the Amazon Web Services service that provides the resource. For a resource provided by your own application or service, use <code>custom-resource</code> instead.</p>
/// This field is required.
pub fn service_namespace(mut self, input: crate::types::ServiceNamespace) -> Self {
self.service_namespace = ::std::option::Option::Some(input);
self
}
/// <p>The namespace of the Amazon Web Services service that provides the resource. For a resource provided by your own application or service, use <code>custom-resource</code> instead.</p>
pub fn set_service_namespace(mut self, input: ::std::option::Option<crate::types::ServiceNamespace>) -> Self {
self.service_namespace = input;
self
}
/// <p>The namespace of the Amazon Web Services service that provides the resource. For a resource provided by your own application or service, use <code>custom-resource</code> instead.</p>
pub fn get_service_namespace(&self) -> &::std::option::Option<crate::types::ServiceNamespace> {
&self.service_namespace
}
/// <p>The identifier of the resource associated with the scaling policy. This string consists of the resource type and unique identifier.</p>
/// <ul>
/// <li>
/// <p>ECS service - The resource type is <code>service</code> and the unique identifier is the cluster name and service name. Example: <code>service/my-cluster/my-service</code>.</p></li>
/// <li>
/// <p>Spot Fleet - The resource type is <code>spot-fleet-request</code> and the unique identifier is the Spot Fleet request ID. Example: <code>spot-fleet-request/sfr-73fbd2ce-aa30-494c-8788-1cee4EXAMPLE</code>.</p></li>
/// <li>
/// <p>EMR cluster - The resource type is <code>instancegroup</code> and the unique identifier is the cluster ID and instance group ID. Example: <code>instancegroup/j-2EEZNYKUA1NTV/ig-1791Y4E1L8YI0</code>.</p></li>
/// <li>
/// <p>AppStream 2.0 fleet - The resource type is <code>fleet</code> and the unique identifier is the fleet name. Example: <code>fleet/sample-fleet</code>.</p></li>
/// <li>
/// <p>DynamoDB table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>table/my-table</code>.</p></li>
/// <li>
/// <p>DynamoDB global secondary index - The resource type is <code>index</code> and the unique identifier is the index name. Example: <code>table/my-table/index/my-table-index</code>.</p></li>
/// <li>
/// <p>Aurora DB cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:my-db-cluster</code>.</p></li>
/// <li>
/// <p>SageMaker endpoint variant - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>Custom resources are not supported with a resource type. This parameter must specify the <code>OutputValue</code> from the CloudFormation template stack used to access the resources. The unique identifier is defined by the service provider. More information is available in our <a href="https://github.com/aws/aws-auto-scaling-custom-resource">GitHub repository</a>.</p></li>
/// <li>
/// <p>Amazon Comprehend document classification endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:document-classifier-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Amazon Comprehend entity recognizer endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:entity-recognizer-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Lambda provisioned concurrency - The resource type is <code>function</code> and the unique identifier is the function name with a function version or alias name suffix that is not <code>$LATEST</code>. Example: <code>function:my-function:prod</code> or <code>function:my-function:1</code>.</p></li>
/// <li>
/// <p>Amazon Keyspaces table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>keyspace/mykeyspace/table/mytable</code>.</p></li>
/// <li>
/// <p>Amazon MSK cluster - The resource type and unique identifier are specified using the cluster ARN. Example: <code>arn:aws:kafka:us-east-1:123456789012:cluster/demo-cluster-1/6357e0b2-0e6a-4b86-a0b4-70df934c2e31-5</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache replication group - The resource type is <code>replication-group</code> and the unique identifier is the replication group name. Example: <code>replication-group/mycluster</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache cache cluster - The resource type is <code>cache-cluster</code> and the unique identifier is the cache cluster name. Example: <code>cache-cluster/mycluster</code>.</p></li>
/// <li>
/// <p>Neptune cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:mycluster</code>.</p></li>
/// <li>
/// <p>SageMaker serverless endpoint - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>SageMaker inference component - The resource type is <code>inference-component</code> and the unique identifier is the resource ID. Example: <code>inference-component/my-inference-component</code>.</p></li>
/// <li>
/// <p>Pool of WorkSpaces - The resource type is <code>workspacespool</code> and the unique identifier is the pool ID. Example: <code>workspacespool/wspool-123456</code>.</p></li>
/// </ul>
/// This field is required.
pub fn resource_id(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
self.resource_id = ::std::option::Option::Some(input.into());
self
}
/// <p>The identifier of the resource associated with the scaling policy. This string consists of the resource type and unique identifier.</p>
/// <ul>
/// <li>
/// <p>ECS service - The resource type is <code>service</code> and the unique identifier is the cluster name and service name. Example: <code>service/my-cluster/my-service</code>.</p></li>
/// <li>
/// <p>Spot Fleet - The resource type is <code>spot-fleet-request</code> and the unique identifier is the Spot Fleet request ID. Example: <code>spot-fleet-request/sfr-73fbd2ce-aa30-494c-8788-1cee4EXAMPLE</code>.</p></li>
/// <li>
/// <p>EMR cluster - The resource type is <code>instancegroup</code> and the unique identifier is the cluster ID and instance group ID. Example: <code>instancegroup/j-2EEZNYKUA1NTV/ig-1791Y4E1L8YI0</code>.</p></li>
/// <li>
/// <p>AppStream 2.0 fleet - The resource type is <code>fleet</code> and the unique identifier is the fleet name. Example: <code>fleet/sample-fleet</code>.</p></li>
/// <li>
/// <p>DynamoDB table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>table/my-table</code>.</p></li>
/// <li>
/// <p>DynamoDB global secondary index - The resource type is <code>index</code> and the unique identifier is the index name. Example: <code>table/my-table/index/my-table-index</code>.</p></li>
/// <li>
/// <p>Aurora DB cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:my-db-cluster</code>.</p></li>
/// <li>
/// <p>SageMaker endpoint variant - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>Custom resources are not supported with a resource type. This parameter must specify the <code>OutputValue</code> from the CloudFormation template stack used to access the resources. The unique identifier is defined by the service provider. More information is available in our <a href="https://github.com/aws/aws-auto-scaling-custom-resource">GitHub repository</a>.</p></li>
/// <li>
/// <p>Amazon Comprehend document classification endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:document-classifier-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Amazon Comprehend entity recognizer endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:entity-recognizer-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Lambda provisioned concurrency - The resource type is <code>function</code> and the unique identifier is the function name with a function version or alias name suffix that is not <code>$LATEST</code>. Example: <code>function:my-function:prod</code> or <code>function:my-function:1</code>.</p></li>
/// <li>
/// <p>Amazon Keyspaces table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>keyspace/mykeyspace/table/mytable</code>.</p></li>
/// <li>
/// <p>Amazon MSK cluster - The resource type and unique identifier are specified using the cluster ARN. Example: <code>arn:aws:kafka:us-east-1:123456789012:cluster/demo-cluster-1/6357e0b2-0e6a-4b86-a0b4-70df934c2e31-5</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache replication group - The resource type is <code>replication-group</code> and the unique identifier is the replication group name. Example: <code>replication-group/mycluster</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache cache cluster - The resource type is <code>cache-cluster</code> and the unique identifier is the cache cluster name. Example: <code>cache-cluster/mycluster</code>.</p></li>
/// <li>
/// <p>Neptune cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:mycluster</code>.</p></li>
/// <li>
/// <p>SageMaker serverless endpoint - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>SageMaker inference component - The resource type is <code>inference-component</code> and the unique identifier is the resource ID. Example: <code>inference-component/my-inference-component</code>.</p></li>
/// <li>
/// <p>Pool of WorkSpaces - The resource type is <code>workspacespool</code> and the unique identifier is the pool ID. Example: <code>workspacespool/wspool-123456</code>.</p></li>
/// </ul>
pub fn set_resource_id(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
self.resource_id = input;
self
}
/// <p>The identifier of the resource associated with the scaling policy. This string consists of the resource type and unique identifier.</p>
/// <ul>
/// <li>
/// <p>ECS service - The resource type is <code>service</code> and the unique identifier is the cluster name and service name. Example: <code>service/my-cluster/my-service</code>.</p></li>
/// <li>
/// <p>Spot Fleet - The resource type is <code>spot-fleet-request</code> and the unique identifier is the Spot Fleet request ID. Example: <code>spot-fleet-request/sfr-73fbd2ce-aa30-494c-8788-1cee4EXAMPLE</code>.</p></li>
/// <li>
/// <p>EMR cluster - The resource type is <code>instancegroup</code> and the unique identifier is the cluster ID and instance group ID. Example: <code>instancegroup/j-2EEZNYKUA1NTV/ig-1791Y4E1L8YI0</code>.</p></li>
/// <li>
/// <p>AppStream 2.0 fleet - The resource type is <code>fleet</code> and the unique identifier is the fleet name. Example: <code>fleet/sample-fleet</code>.</p></li>
/// <li>
/// <p>DynamoDB table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>table/my-table</code>.</p></li>
/// <li>
/// <p>DynamoDB global secondary index - The resource type is <code>index</code> and the unique identifier is the index name. Example: <code>table/my-table/index/my-table-index</code>.</p></li>
/// <li>
/// <p>Aurora DB cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:my-db-cluster</code>.</p></li>
/// <li>
/// <p>SageMaker endpoint variant - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>Custom resources are not supported with a resource type. This parameter must specify the <code>OutputValue</code> from the CloudFormation template stack used to access the resources. The unique identifier is defined by the service provider. More information is available in our <a href="https://github.com/aws/aws-auto-scaling-custom-resource">GitHub repository</a>.</p></li>
/// <li>
/// <p>Amazon Comprehend document classification endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:document-classifier-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Amazon Comprehend entity recognizer endpoint - The resource type and unique identifier are specified using the endpoint ARN. Example: <code>arn:aws:comprehend:us-west-2:123456789012:entity-recognizer-endpoint/EXAMPLE</code>.</p></li>
/// <li>
/// <p>Lambda provisioned concurrency - The resource type is <code>function</code> and the unique identifier is the function name with a function version or alias name suffix that is not <code>$LATEST</code>. Example: <code>function:my-function:prod</code> or <code>function:my-function:1</code>.</p></li>
/// <li>
/// <p>Amazon Keyspaces table - The resource type is <code>table</code> and the unique identifier is the table name. Example: <code>keyspace/mykeyspace/table/mytable</code>.</p></li>
/// <li>
/// <p>Amazon MSK cluster - The resource type and unique identifier are specified using the cluster ARN. Example: <code>arn:aws:kafka:us-east-1:123456789012:cluster/demo-cluster-1/6357e0b2-0e6a-4b86-a0b4-70df934c2e31-5</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache replication group - The resource type is <code>replication-group</code> and the unique identifier is the replication group name. Example: <code>replication-group/mycluster</code>.</p></li>
/// <li>
/// <p>Amazon ElastiCache cache cluster - The resource type is <code>cache-cluster</code> and the unique identifier is the cache cluster name. Example: <code>cache-cluster/mycluster</code>.</p></li>
/// <li>
/// <p>Neptune cluster - The resource type is <code>cluster</code> and the unique identifier is the cluster name. Example: <code>cluster:mycluster</code>.</p></li>
/// <li>
/// <p>SageMaker serverless endpoint - The resource type is <code>variant</code> and the unique identifier is the resource ID. Example: <code>endpoint/my-end-point/variant/KMeansClustering</code>.</p></li>
/// <li>
/// <p>SageMaker inference component - The resource type is <code>inference-component</code> and the unique identifier is the resource ID. Example: <code>inference-component/my-inference-component</code>.</p></li>
/// <li>
/// <p>Pool of WorkSpaces - The resource type is <code>workspacespool</code> and the unique identifier is the pool ID. Example: <code>workspacespool/wspool-123456</code>.</p></li>
/// </ul>
pub fn get_resource_id(&self) -> &::std::option::Option<::std::string::String> {
&self.resource_id
}
/// <p>The scalable dimension. This string consists of the service namespace, resource type, and scaling property.</p>
/// <ul>
/// <li>
/// <p><code>ecs:service:DesiredCount</code> - The task count of an ECS service.</p></li>
/// <li>
/// <p><code>elasticmapreduce:instancegroup:InstanceCount</code> - The instance count of an EMR Instance Group.</p></li>
/// <li>
/// <p><code>ec2:spot-fleet-request:TargetCapacity</code> - The target capacity of a Spot Fleet.</p></li>
/// <li>
/// <p><code>appstream:fleet:DesiredCapacity</code> - The capacity of an AppStream 2.0 fleet.</p></li>
/// <li>
/// <p><code>dynamodb:table:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:table:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:index:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>dynamodb:index:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>rds:cluster:ReadReplicaCount</code> - The count of Aurora Replicas in an Aurora DB cluster. Available for Aurora MySQL-compatible edition and Aurora PostgreSQL-compatible edition.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredInstanceCount</code> - The number of EC2 instances for a SageMaker model endpoint variant.</p></li>
/// <li>
/// <p><code>custom-resource:ResourceType:Property</code> - The scalable dimension for a custom resource provided by your own application or service.</p></li>
/// <li>
/// <p><code>comprehend:document-classifier-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend document classification endpoint.</p></li>
/// <li>
/// <p><code>comprehend:entity-recognizer-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend entity recognizer endpoint.</p></li>
/// <li>
/// <p><code>lambda:function:ProvisionedConcurrency</code> - The provisioned concurrency for a Lambda function.</p></li>
/// <li>
/// <p><code>cassandra:table:ReadCapacityUnits</code> - The provisioned read capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>cassandra:table:WriteCapacityUnits</code> - The provisioned write capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>kafka:broker-storage:VolumeSize</code> - The provisioned volume size (in GiB) for brokers in an Amazon MSK cluster.</p></li>
/// <li>
/// <p><code>elasticache:cache-cluster:Nodes</code> - The number of nodes for an Amazon ElastiCache cache cluster.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:NodeGroups</code> - The number of node groups for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:Replicas</code> - The number of replicas per node group for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>neptune:cluster:ReadReplicaCount</code> - The count of read replicas in an Amazon Neptune DB cluster.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredProvisionedConcurrency</code> - The provisioned concurrency for a SageMaker serverless endpoint.</p></li>
/// <li>
/// <p><code>sagemaker:inference-component:DesiredCopyCount</code> - The number of copies across an endpoint for a SageMaker inference component.</p></li>
/// <li>
/// <p><code>workspaces:workspacespool:DesiredUserSessions</code> - The number of user sessions for the WorkSpaces in the pool.</p></li>
/// </ul>
/// This field is required.
pub fn scalable_dimension(mut self, input: crate::types::ScalableDimension) -> Self {
self.scalable_dimension = ::std::option::Option::Some(input);
self
}
/// <p>The scalable dimension. This string consists of the service namespace, resource type, and scaling property.</p>
/// <ul>
/// <li>
/// <p><code>ecs:service:DesiredCount</code> - The task count of an ECS service.</p></li>
/// <li>
/// <p><code>elasticmapreduce:instancegroup:InstanceCount</code> - The instance count of an EMR Instance Group.</p></li>
/// <li>
/// <p><code>ec2:spot-fleet-request:TargetCapacity</code> - The target capacity of a Spot Fleet.</p></li>
/// <li>
/// <p><code>appstream:fleet:DesiredCapacity</code> - The capacity of an AppStream 2.0 fleet.</p></li>
/// <li>
/// <p><code>dynamodb:table:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:table:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:index:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>dynamodb:index:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>rds:cluster:ReadReplicaCount</code> - The count of Aurora Replicas in an Aurora DB cluster. Available for Aurora MySQL-compatible edition and Aurora PostgreSQL-compatible edition.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredInstanceCount</code> - The number of EC2 instances for a SageMaker model endpoint variant.</p></li>
/// <li>
/// <p><code>custom-resource:ResourceType:Property</code> - The scalable dimension for a custom resource provided by your own application or service.</p></li>
/// <li>
/// <p><code>comprehend:document-classifier-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend document classification endpoint.</p></li>
/// <li>
/// <p><code>comprehend:entity-recognizer-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend entity recognizer endpoint.</p></li>
/// <li>
/// <p><code>lambda:function:ProvisionedConcurrency</code> - The provisioned concurrency for a Lambda function.</p></li>
/// <li>
/// <p><code>cassandra:table:ReadCapacityUnits</code> - The provisioned read capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>cassandra:table:WriteCapacityUnits</code> - The provisioned write capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>kafka:broker-storage:VolumeSize</code> - The provisioned volume size (in GiB) for brokers in an Amazon MSK cluster.</p></li>
/// <li>
/// <p><code>elasticache:cache-cluster:Nodes</code> - The number of nodes for an Amazon ElastiCache cache cluster.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:NodeGroups</code> - The number of node groups for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:Replicas</code> - The number of replicas per node group for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>neptune:cluster:ReadReplicaCount</code> - The count of read replicas in an Amazon Neptune DB cluster.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredProvisionedConcurrency</code> - The provisioned concurrency for a SageMaker serverless endpoint.</p></li>
/// <li>
/// <p><code>sagemaker:inference-component:DesiredCopyCount</code> - The number of copies across an endpoint for a SageMaker inference component.</p></li>
/// <li>
/// <p><code>workspaces:workspacespool:DesiredUserSessions</code> - The number of user sessions for the WorkSpaces in the pool.</p></li>
/// </ul>
pub fn set_scalable_dimension(mut self, input: ::std::option::Option<crate::types::ScalableDimension>) -> Self {
self.scalable_dimension = input;
self
}
/// <p>The scalable dimension. This string consists of the service namespace, resource type, and scaling property.</p>
/// <ul>
/// <li>
/// <p><code>ecs:service:DesiredCount</code> - The task count of an ECS service.</p></li>
/// <li>
/// <p><code>elasticmapreduce:instancegroup:InstanceCount</code> - The instance count of an EMR Instance Group.</p></li>
/// <li>
/// <p><code>ec2:spot-fleet-request:TargetCapacity</code> - The target capacity of a Spot Fleet.</p></li>
/// <li>
/// <p><code>appstream:fleet:DesiredCapacity</code> - The capacity of an AppStream 2.0 fleet.</p></li>
/// <li>
/// <p><code>dynamodb:table:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:table:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB table.</p></li>
/// <li>
/// <p><code>dynamodb:index:ReadCapacityUnits</code> - The provisioned read capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>dynamodb:index:WriteCapacityUnits</code> - The provisioned write capacity for a DynamoDB global secondary index.</p></li>
/// <li>
/// <p><code>rds:cluster:ReadReplicaCount</code> - The count of Aurora Replicas in an Aurora DB cluster. Available for Aurora MySQL-compatible edition and Aurora PostgreSQL-compatible edition.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredInstanceCount</code> - The number of EC2 instances for a SageMaker model endpoint variant.</p></li>
/// <li>
/// <p><code>custom-resource:ResourceType:Property</code> - The scalable dimension for a custom resource provided by your own application or service.</p></li>
/// <li>
/// <p><code>comprehend:document-classifier-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend document classification endpoint.</p></li>
/// <li>
/// <p><code>comprehend:entity-recognizer-endpoint:DesiredInferenceUnits</code> - The number of inference units for an Amazon Comprehend entity recognizer endpoint.</p></li>
/// <li>
/// <p><code>lambda:function:ProvisionedConcurrency</code> - The provisioned concurrency for a Lambda function.</p></li>
/// <li>
/// <p><code>cassandra:table:ReadCapacityUnits</code> - The provisioned read capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>cassandra:table:WriteCapacityUnits</code> - The provisioned write capacity for an Amazon Keyspaces table.</p></li>
/// <li>
/// <p><code>kafka:broker-storage:VolumeSize</code> - The provisioned volume size (in GiB) for brokers in an Amazon MSK cluster.</p></li>
/// <li>
/// <p><code>elasticache:cache-cluster:Nodes</code> - The number of nodes for an Amazon ElastiCache cache cluster.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:NodeGroups</code> - The number of node groups for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>elasticache:replication-group:Replicas</code> - The number of replicas per node group for an Amazon ElastiCache replication group.</p></li>
/// <li>
/// <p><code>neptune:cluster:ReadReplicaCount</code> - The count of read replicas in an Amazon Neptune DB cluster.</p></li>
/// <li>
/// <p><code>sagemaker:variant:DesiredProvisionedConcurrency</code> - The provisioned concurrency for a SageMaker serverless endpoint.</p></li>
/// <li>
/// <p><code>sagemaker:inference-component:DesiredCopyCount</code> - The number of copies across an endpoint for a SageMaker inference component.</p></li>
/// <li>
/// <p><code>workspaces:workspacespool:DesiredUserSessions</code> - The number of user sessions for the WorkSpaces in the pool.</p></li>
/// </ul>
pub fn get_scalable_dimension(&self) -> &::std::option::Option<crate::types::ScalableDimension> {
&self.scalable_dimension
}
/// <p>The scaling policy type. This parameter is required if you are creating a scaling policy.</p>
/// <p>The following policy types are supported:</p>
/// <p><code>TargetTrackingScaling</code>—Not supported for Amazon EMR.</p>
/// <p><code>StepScaling</code>—Not supported for DynamoDB, Amazon Comprehend, Lambda, Amazon Keyspaces, Amazon MSK, Amazon ElastiCache, or Neptune.</p>
/// <p><code>PredictiveScaling</code>—Only supported for Amazon ECS.</p>
/// <p>For more information, see <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-target-tracking.html">Target tracking scaling policies</a>, <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-step-scaling-policies.html">Step scaling policies</a>, and <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/aas-create-predictive-scaling-policy.html">Predictive scaling policies</a> in the <i>Application Auto Scaling User Guide</i>.</p>
pub fn policy_type(mut self, input: crate::types::PolicyType) -> Self {
self.policy_type = ::std::option::Option::Some(input);
self
}
/// <p>The scaling policy type. This parameter is required if you are creating a scaling policy.</p>
/// <p>The following policy types are supported:</p>
/// <p><code>TargetTrackingScaling</code>—Not supported for Amazon EMR.</p>
/// <p><code>StepScaling</code>—Not supported for DynamoDB, Amazon Comprehend, Lambda, Amazon Keyspaces, Amazon MSK, Amazon ElastiCache, or Neptune.</p>
/// <p><code>PredictiveScaling</code>—Only supported for Amazon ECS.</p>
/// <p>For more information, see <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-target-tracking.html">Target tracking scaling policies</a>, <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-step-scaling-policies.html">Step scaling policies</a>, and <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/aas-create-predictive-scaling-policy.html">Predictive scaling policies</a> in the <i>Application Auto Scaling User Guide</i>.</p>
pub fn set_policy_type(mut self, input: ::std::option::Option<crate::types::PolicyType>) -> Self {
self.policy_type = input;
self
}
/// <p>The scaling policy type. This parameter is required if you are creating a scaling policy.</p>
/// <p>The following policy types are supported:</p>
/// <p><code>TargetTrackingScaling</code>—Not supported for Amazon EMR.</p>
/// <p><code>StepScaling</code>—Not supported for DynamoDB, Amazon Comprehend, Lambda, Amazon Keyspaces, Amazon MSK, Amazon ElastiCache, or Neptune.</p>
/// <p><code>PredictiveScaling</code>—Only supported for Amazon ECS.</p>
/// <p>For more information, see <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-target-tracking.html">Target tracking scaling policies</a>, <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/application-auto-scaling-step-scaling-policies.html">Step scaling policies</a>, and <a href="https://docs.aws.amazon.com/autoscaling/application/userguide/aas-create-predictive-scaling-policy.html">Predictive scaling policies</a> in the <i>Application Auto Scaling User Guide</i>.</p>
pub fn get_policy_type(&self) -> &::std::option::Option<crate::types::PolicyType> {
&self.policy_type
}
/// <p>A step scaling policy.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>StepScaling</code>.</p>
pub fn step_scaling_policy_configuration(mut self, input: crate::types::StepScalingPolicyConfiguration) -> Self {
self.step_scaling_policy_configuration = ::std::option::Option::Some(input);
self
}
/// <p>A step scaling policy.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>StepScaling</code>.</p>
pub fn set_step_scaling_policy_configuration(mut self, input: ::std::option::Option<crate::types::StepScalingPolicyConfiguration>) -> Self {
self.step_scaling_policy_configuration = input;
self
}
/// <p>A step scaling policy.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>StepScaling</code>.</p>
pub fn get_step_scaling_policy_configuration(&self) -> &::std::option::Option<crate::types::StepScalingPolicyConfiguration> {
&self.step_scaling_policy_configuration
}
/// <p>A target tracking scaling policy. Includes support for predefined or customized metrics.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>TargetTrackingScaling</code>.</p>
pub fn target_tracking_scaling_policy_configuration(mut self, input: crate::types::TargetTrackingScalingPolicyConfiguration) -> Self {
self.target_tracking_scaling_policy_configuration = ::std::option::Option::Some(input);
self
}
/// <p>A target tracking scaling policy. Includes support for predefined or customized metrics.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>TargetTrackingScaling</code>.</p>
pub fn set_target_tracking_scaling_policy_configuration(
mut self,
input: ::std::option::Option<crate::types::TargetTrackingScalingPolicyConfiguration>,
) -> Self {
self.target_tracking_scaling_policy_configuration = input;
self
}
/// <p>A target tracking scaling policy. Includes support for predefined or customized metrics.</p>
/// <p>This parameter is required if you are creating a policy and the policy type is <code>TargetTrackingScaling</code>.</p>
pub fn get_target_tracking_scaling_policy_configuration(&self) -> &::std::option::Option<crate::types::TargetTrackingScalingPolicyConfiguration> {
&self.target_tracking_scaling_policy_configuration
}
/// <p>The configuration of the predictive scaling policy.</p>
pub fn predictive_scaling_policy_configuration(mut self, input: crate::types::PredictiveScalingPolicyConfiguration) -> Self {
self.predictive_scaling_policy_configuration = ::std::option::Option::Some(input);
self
}
/// <p>The configuration of the predictive scaling policy.</p>
pub fn set_predictive_scaling_policy_configuration(
mut self,
input: ::std::option::Option<crate::types::PredictiveScalingPolicyConfiguration>,
) -> Self {
self.predictive_scaling_policy_configuration = input;
self
}
/// <p>The configuration of the predictive scaling policy.</p>
pub fn get_predictive_scaling_policy_configuration(&self) -> &::std::option::Option<crate::types::PredictiveScalingPolicyConfiguration> {
&self.predictive_scaling_policy_configuration
}
/// Consumes the builder and constructs a [`PutScalingPolicyInput`](crate::operation::put_scaling_policy::PutScalingPolicyInput).
pub fn build(
self,
) -> ::std::result::Result<crate::operation::put_scaling_policy::PutScalingPolicyInput, ::aws_smithy_types::error::operation::BuildError> {
::std::result::Result::Ok(crate::operation::put_scaling_policy::PutScalingPolicyInput {
policy_name: self.policy_name,
service_namespace: self.service_namespace,
resource_id: self.resource_id,
scalable_dimension: self.scalable_dimension,
policy_type: self.policy_type,
step_scaling_policy_configuration: self.step_scaling_policy_configuration,
target_tracking_scaling_policy_configuration: self.target_tracking_scaling_policy_configuration,
predictive_scaling_policy_configuration: self.predictive_scaling_policy_configuration,
})
}
}