Struct Computation

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#[non_exhaustive]
pub struct Computation { pub top_bottom_ranked: Option<TopBottomRankedComputation>, pub top_bottom_movers: Option<TopBottomMoversComputation>, pub total_aggregation: Option<TotalAggregationComputation>, pub maximum_minimum: Option<MaximumMinimumComputation>, pub metric_comparison: Option<MetricComparisonComputation>, pub period_over_period: Option<PeriodOverPeriodComputation>, pub period_to_date: Option<PeriodToDateComputation>, pub growth_rate: Option<GrowthRateComputation>, pub unique_values: Option<UniqueValuesComputation>, pub forecast: Option<ForecastComputation>, }
Expand description

The computation union that is used in an insight visual.

This is a union type structure. For this structure to be valid, only one of the attributes can be defined.

Fields (Non-exhaustive)§

This struct is marked as non-exhaustive
Non-exhaustive structs could have additional fields added in future. Therefore, non-exhaustive structs cannot be constructed in external crates using the traditional Struct { .. } syntax; cannot be matched against without a wildcard ..; and struct update syntax will not work.
§top_bottom_ranked: Option<TopBottomRankedComputation>

The top ranked and bottom ranked computation configuration.

§top_bottom_movers: Option<TopBottomMoversComputation>

The top movers and bottom movers computation configuration.

§total_aggregation: Option<TotalAggregationComputation>

The total aggregation computation configuration.

§maximum_minimum: Option<MaximumMinimumComputation>

The maximum and minimum computation configuration.

§metric_comparison: Option<MetricComparisonComputation>

The metric comparison computation configuration.

§period_over_period: Option<PeriodOverPeriodComputation>

The period over period computation configuration.

§period_to_date: Option<PeriodToDateComputation>

The period to DataSetIdentifier computation configuration.

§growth_rate: Option<GrowthRateComputation>

The growth rate computation configuration.

§unique_values: Option<UniqueValuesComputation>

The unique values computation configuration.

§forecast: Option<ForecastComputation>

The forecast computation configuration.

Implementations§

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impl Computation

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pub fn top_bottom_ranked(&self) -> Option<&TopBottomRankedComputation>

The top ranked and bottom ranked computation configuration.

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pub fn top_bottom_movers(&self) -> Option<&TopBottomMoversComputation>

The top movers and bottom movers computation configuration.

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pub fn total_aggregation(&self) -> Option<&TotalAggregationComputation>

The total aggregation computation configuration.

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pub fn maximum_minimum(&self) -> Option<&MaximumMinimumComputation>

The maximum and minimum computation configuration.

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pub fn metric_comparison(&self) -> Option<&MetricComparisonComputation>

The metric comparison computation configuration.

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pub fn period_over_period(&self) -> Option<&PeriodOverPeriodComputation>

The period over period computation configuration.

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pub fn period_to_date(&self) -> Option<&PeriodToDateComputation>

The period to DataSetIdentifier computation configuration.

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pub fn growth_rate(&self) -> Option<&GrowthRateComputation>

The growth rate computation configuration.

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pub fn unique_values(&self) -> Option<&UniqueValuesComputation>

The unique values computation configuration.

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pub fn forecast(&self) -> Option<&ForecastComputation>

The forecast computation configuration.

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impl Computation

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pub fn builder() -> ComputationBuilder

Creates a new builder-style object to manufacture Computation.

Trait Implementations§

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impl Clone for Computation

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fn clone(&self) -> Computation

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 Computation

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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 PartialEq for Computation

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fn eq(&self, other: &Computation) -> 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 Computation

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