StepAdjustmentBuilder

Struct StepAdjustmentBuilder 

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

A builder for StepAdjustment.

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impl StepAdjustmentBuilder

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pub fn metric_interval_lower_bound(self, input: f64) -> Self

The lower bound for the difference between the alarm threshold and the CloudWatch metric. If the metric value is above the breach threshold, the lower bound is inclusive (the metric must be greater than or equal to the threshold plus the lower bound). Otherwise, it's exclusive (the metric must be greater than the threshold plus the lower bound). A null value indicates negative infinity.

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pub fn set_metric_interval_lower_bound(self, input: Option<f64>) -> Self

The lower bound for the difference between the alarm threshold and the CloudWatch metric. If the metric value is above the breach threshold, the lower bound is inclusive (the metric must be greater than or equal to the threshold plus the lower bound). Otherwise, it's exclusive (the metric must be greater than the threshold plus the lower bound). A null value indicates negative infinity.

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pub fn get_metric_interval_lower_bound(&self) -> &Option<f64>

The lower bound for the difference between the alarm threshold and the CloudWatch metric. If the metric value is above the breach threshold, the lower bound is inclusive (the metric must be greater than or equal to the threshold plus the lower bound). Otherwise, it's exclusive (the metric must be greater than the threshold plus the lower bound). A null value indicates negative infinity.

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pub fn metric_interval_upper_bound(self, input: f64) -> Self

The upper bound for the difference between the alarm threshold and the CloudWatch metric. If the metric value is above the breach threshold, the upper bound is exclusive (the metric must be less than the threshold plus the upper bound). Otherwise, it's inclusive (the metric must be less than or equal to the threshold plus the upper bound). A null value indicates positive infinity.

The upper bound must be greater than the lower bound.

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pub fn set_metric_interval_upper_bound(self, input: Option<f64>) -> Self

The upper bound for the difference between the alarm threshold and the CloudWatch metric. If the metric value is above the breach threshold, the upper bound is exclusive (the metric must be less than the threshold plus the upper bound). Otherwise, it's inclusive (the metric must be less than or equal to the threshold plus the upper bound). A null value indicates positive infinity.

The upper bound must be greater than the lower bound.

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pub fn get_metric_interval_upper_bound(&self) -> &Option<f64>

The upper bound for the difference between the alarm threshold and the CloudWatch metric. If the metric value is above the breach threshold, the upper bound is exclusive (the metric must be less than the threshold plus the upper bound). Otherwise, it's inclusive (the metric must be less than or equal to the threshold plus the upper bound). A null value indicates positive infinity.

The upper bound must be greater than the lower bound.

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

The amount by which to scale, based on the specified adjustment type. A positive value adds to the current capacity while a negative number removes from the current capacity. For exact capacity, you must specify a non-negative value.

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

The amount by which to scale, based on the specified adjustment type. A positive value adds to the current capacity while a negative number removes from the current capacity. For exact capacity, you must specify a non-negative value.

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

The amount by which to scale, based on the specified adjustment type. A positive value adds to the current capacity while a negative number removes from the current capacity. For exact capacity, you must specify a non-negative value.

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pub fn build(self) -> Result<StepAdjustment, BuildError>

Consumes the builder and constructs a StepAdjustment. This method will fail if any of the following fields are not set:

Trait Implementations§

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impl Clone for StepAdjustmentBuilder

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fn clone(&self) -> StepAdjustmentBuilder

Returns a duplicate of the value. Read more
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fn clone_from(&mut self, source: &Self)

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

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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 StepAdjustmentBuilder

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fn default() -> StepAdjustmentBuilder

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

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

Tests for self and other values to be equal, and is used by ==.
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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 StepAdjustmentBuilder

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