Struct ComputeLimitsBuilder

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#[non_exhaustive]
pub struct ComputeLimitsBuilder { /* private fields */ }
Expand description

A builder for ComputeLimits.

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impl ComputeLimitsBuilder

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pub fn unit_type(self, input: ComputeLimitsUnitType) -> Self

The unit type used for specifying a managed scaling policy.

This field is required.
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pub fn set_unit_type(self, input: Option<ComputeLimitsUnitType>) -> Self

The unit type used for specifying a managed scaling policy.

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pub fn get_unit_type(&self) -> &Option<ComputeLimitsUnitType>

The unit type used for specifying a managed scaling policy.

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pub fn minimum_capacity_units(self, input: i32) -> Self

The lower boundary of Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. Managed scaling activities are not allowed beyond this boundary. The limit only applies to the core and task nodes. The master node cannot be scaled after initial configuration.

This field is required.
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pub fn set_minimum_capacity_units(self, input: Option<i32>) -> Self

The lower boundary of Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. Managed scaling activities are not allowed beyond this boundary. The limit only applies to the core and task nodes. The master node cannot be scaled after initial configuration.

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pub fn get_minimum_capacity_units(&self) -> &Option<i32>

The lower boundary of Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. Managed scaling activities are not allowed beyond this boundary. The limit only applies to the core and task nodes. The master node cannot be scaled after initial configuration.

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pub fn maximum_capacity_units(self, input: i32) -> Self

The upper boundary of Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. Managed scaling activities are not allowed beyond this boundary. The limit only applies to the core and task nodes. The master node cannot be scaled after initial configuration.

This field is required.
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pub fn set_maximum_capacity_units(self, input: Option<i32>) -> Self

The upper boundary of Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. Managed scaling activities are not allowed beyond this boundary. The limit only applies to the core and task nodes. The master node cannot be scaled after initial configuration.

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pub fn get_maximum_capacity_units(&self) -> &Option<i32>

The upper boundary of Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. Managed scaling activities are not allowed beyond this boundary. The limit only applies to the core and task nodes. The master node cannot be scaled after initial configuration.

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pub fn maximum_on_demand_capacity_units(self, input: i32) -> Self

The upper boundary of On-Demand Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. The On-Demand units are not allowed to scale beyond this boundary. The parameter is used to split capacity allocation between On-Demand and Spot Instances.

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pub fn set_maximum_on_demand_capacity_units(self, input: Option<i32>) -> Self

The upper boundary of On-Demand Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. The On-Demand units are not allowed to scale beyond this boundary. The parameter is used to split capacity allocation between On-Demand and Spot Instances.

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pub fn get_maximum_on_demand_capacity_units(&self) -> &Option<i32>

The upper boundary of On-Demand Amazon EC2 units. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. The On-Demand units are not allowed to scale beyond this boundary. The parameter is used to split capacity allocation between On-Demand and Spot Instances.

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pub fn maximum_core_capacity_units(self, input: i32) -> Self

The upper boundary of Amazon EC2 units for core node type in a cluster. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. The core units are not allowed to scale beyond this boundary. The parameter is used to split capacity allocation between core and task nodes.

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pub fn set_maximum_core_capacity_units(self, input: Option<i32>) -> Self

The upper boundary of Amazon EC2 units for core node type in a cluster. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. The core units are not allowed to scale beyond this boundary. The parameter is used to split capacity allocation between core and task nodes.

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pub fn get_maximum_core_capacity_units(&self) -> &Option<i32>

The upper boundary of Amazon EC2 units for core node type in a cluster. It is measured through vCPU cores or instances for instance groups and measured through units for instance fleets. The core units are not allowed to scale beyond this boundary. The parameter is used to split capacity allocation between core and task nodes.

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pub fn build(self) -> ComputeLimits

Consumes the builder and constructs a ComputeLimits.

Trait Implementations§

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impl Clone for ComputeLimitsBuilder

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fn clone(&self) -> ComputeLimitsBuilder

Returns a duplicate of the value. Read more
1.0.0 · Source§

const fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Debug for ComputeLimitsBuilder

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fn fmt(&self, f: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more
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impl Default for ComputeLimitsBuilder

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fn default() -> ComputeLimitsBuilder

Returns the “default value” for a type. Read more
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impl PartialEq for ComputeLimitsBuilder

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fn eq(&self, other: &ComputeLimitsBuilder) -> bool

Tests for self and other values to be equal, and is used by ==.
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const fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl StructuralPartialEq for ComputeLimitsBuilder

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